- Filed
- Jun 26, 2025
- Last modified
- Feb 3, 2026
- Petitioner
- Perfect Corporation
- Inventor
- Matthew SZYMCZYK et al
Invalidity dossier
US 10482517
Providing a simulation of wearing items such as garments and/or accessories
Current assignee: Zugara, Inc.
Added 5/14/2026, 6:01:27 AM
Active provider: Google · gemini-2.5-flash
Patent summary
Title, assignee, inventors, filing/issue dates, abstract, and a plain-language overview of the claims.
US Patent 10482517, titled "Providing a simulation of wearing items such as garments and/or accessories," was issued to ZUGARA Inc. on November 19, 2019. The inventors listed are Matthew SZYMCZYK, Aaron Von Hungen, Blake Callens, Hans Forsman, and Jack Benoff. The filing date for this patent application was November 9, 2015.
Abstract:
The patent describes a system and method that allows a user to virtually "try on" real-wearable items, such as garments and accessories. This is achieved by presenting a virtual-outfitting interface that includes an item-search/selection portion and a main display portion. The item-search/selection portion shows virtual-wearable items corresponding to real-wearable items. Once the user selects a virtual item, the main display portion presents a composite video feed. This feed combines a live video of the user with the selected virtual-wearable item overlaid, making it appear as though the user is wearing the real-wearable item.
Plain-Language Overview of Independent Claims:
The full text of the patent is necessary to accurately identify and interpret all independent claims. Based on the provided summary and detailed description, the core independent claims likely revolve around:
Claim 1 (System Claim - inferred from "One aspect of the invention relates to a system..."): A system designed to simulate the wearing of real-wearable items. This system would typically include:
- A component to display a virtual-outfitting interface to a user.
- A component to present virtual-wearable items (representing real items) within an item-search/selection area of the interface.
- A component enabling the user to select at least one virtual-wearable item.
- A component to generate and display, in real-time or near real-time, a composite video feed. This feed would integrate a live video of the user with the selected virtual-wearable item, making the user appear to wear the corresponding real item. This system would likely use an imaging device to capture the live video feed and a processor to execute modules for interface, motion capture, item selection, and composite imaging.
Claim 2 (Method Claim - inferred from "Another aspect of the invention relates to a method..."): A method for allowing a user to simulate wearing real-wearable items, which would involve steps performed by a processing device, such as:
- Providing a virtual-outfitting interface to a user.
- Presenting an item-search/selection portion within that interface, depicting virtual-wearable items.
- Allowing the user to select at least one virtual-wearable item from the selection portion.
- Providing a main display portion within the interface that shows a composite video feed. This feed would combine a live video of the user and the selected virtual-wearable item, creating the appearance that the user is wearing the selected real-wearable item.
CAFC 2026 Dockets:
As of April 26, 2026, a search of CAFC dockets for patent US10482517 does not yield specific results indicating direct litigation at the Federal Circuit in 2026. However, available information suggests ongoing district court litigation involving this patent. Specifically, Zugara, Inc. (the assignee) has filed a lawsuit against Chanel in the Western District of Texas, alleging infringement of US10482517 by Chanel's "Virtual Try-On" tool. This complaint, filed on July 22 (year not explicitly stated in snippets but implied to be before July 30, 2025, which is when the article was published), claims infringement related to tracking body parts and layering digital try-on products over live video in real-time. Another case involving Zugara and Estée Lauder, concerning the same patent, settled and was dismissed by a federal court in Texas on July 9 (year not explicitly stated but before July 30, 2025). While these district court cases are active or recently concluded, there is no definitive information confirming an appeal to the CAFC in 2026 directly linked to US10482517 in the provided search results.
Generated 5/18/2026, 12:45:51 PM
Cases on file (3)
Group view →Specific litigation cases in our database that name US patent 10482517. The free-form analysis below may also discuss cases beyond this list.
- Zugara, Inc. v. Jand, Inc.filed 2025-022:25-cv-00183U.S. District Court for the Eastern District of Texasterminated 2025-07Settled - Dismissed with Prejudice
Defendants: Jand, Inc.
- Untitled casefiled 20257:25-cv-00324Texas Western District Court
- IPR2025-01144filed 2025IPR2025-01144Patent Trial and Appeal Board (PTAB)Settlement
Defendants: ZUGARA Inc.
Litigation summary
Past and pending lawsuits — plaintiffs, defendants, jurisdictions, outcomes, and notable rulings.
Known litigation involving US patent 10482517 as of April 26, 2026, includes:
Case: Zugara, Inc. v. Jand, Inc. (Warby Parker)
- Plaintiff(s): Zugara, Inc.
- Defendant(s): Jand, Inc. (Warby Parker)
- Jurisdiction: U.S. District Court for the Eastern District of Texas
- Case Number: 2:25-cv-00183
- Filing Date: February 2025
- Outcome or Current Status: Settled - Dismissed with Prejudice in July 2025. This indicates that all claims and causes of action between Zugara and Warby Parker are permanently barred from re-assertion.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: Texas Western District Court
- Case Number: 7:25-cv-00324
- Filing Date: Not explicitly stated in available information, but the case number suggests 2025.
- Outcome or Current Status: Not explicitly stated in available information.
Case: IPR2025-01144
- Plaintiff(s) (Petitioner): Not explicitly named, but typically a third party challenging the patent, such as Unified Patents.
- Defendant(s) (Patent Owner): ZUGARA Inc. (Current Assignee of US10482517)
- Jurisdiction: Patent Trial and Appeal Board (PTAB)
- Case Number: IPR2025-01144
- Filing Date: Not explicitly stated in available information, but the case number suggests 2025.
- Outcome or Current Status: Settlement.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: Texas Eastern District Court
- Case Number: 2:24-cv-00747
- Filing Date: Not explicitly stated in available information, but the case number suggests 2024.
- Outcome or Current Status: Not explicitly stated in available information.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: Texas Eastern District Court
- Case Number: 2:25-cv-00180
- Filing Date: Not explicitly stated in available information, but the case number suggests 2025.
- Outcome or Current Status: Not explicitly stated in available information.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: Florida Middle District Court
- Case Number: 3:25-cv-00857
- Filing Date: Not explicitly stated in available information, but the case number suggests 2025.
- Outcome or Current Status: Not explicitly stated in available information.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: California Central District Court
- Case Number: 2:24-cv-08133
- Filing Date: Not explicitly stated in available information, but the case number suggests 2024.
- Outcome or Current Status: Not explicitly stated in available information.
Case: (Details not fully specified in public records or search results for specific plaintiff/defendant)
- Plaintiff(s): Not explicitly stated in available information.
- Defendant(s): Not explicitly stated in available information.
- Jurisdiction: Texas Eastern District Court
- Case Number: 2:24-cv-00743
- Filing Date: Not explicitly stated in available information, but the case number suggests 2024.
- Outcome or Current Status: Not explicitly stated in available information.
Generated 5/18/2026, 12:46:01 PM
Proceedings on file (1)
All PTAB activity →AIA trial proceedings (IPR / PGR / CBM) filed at the USPTO Patent Trial and Appeal Board against this patent. Sourced from the USPTO Open Data Portal and refreshed every six hours; each proceeding number deep-links to the PTAB E2E docket.
Current assignee: Zugara, Inc.
PTAB challenges
AIA trial proceedings at the USPTO Patent Trial and Appeal Board — IPR, PGR, and CBM. Petitioners, judge panels, claim-level invalidation outcomes from Final Written Decisions, and Federal Circuit appeals. The single most important defensive datapoint after litigation history.
Proceedings overview
There is one AIA trial proceeding on file for US Patent 10482517. The proceeding, IPR2025-01144, was terminated due to settlement. As no claims were invalidated, the patent remains undiminished by PTAB challenges thus far, which slightly hardens the defensive posture for a defendant.
IPR2025-01144 — Perfect Corporation v. Zugara Inc.
- Type: Inter Partes Review
- Filed: 2025-06-26
- Status: Terminated-Settled
- Judge panel: Not publicly available from the provided information.
- Petition grounds: Not publicly available from the provided information.
- Institution decision: Not publicly available from the provided information as the case was terminated-settled before a decision on institution.
- Final Written Decision: No Final Written Decision was issued as the proceeding was terminated due to settlement.
- Settlement / termination: The proceeding was terminated as settled on 2026-02-03. The specific terms of the settlement are confidential.
- Appeal: Not applicable, as no Final Written Decision was issued.
- Defensive value: This IPR was terminated due to settlement, meaning no claims of US10482517 were challenged to a final decision. This implies that the patent claims have not been subjected to a full PTAB review of patentability, so prior art grounds remain available for potential future challenges.
Strategic summary
All claims of US10482517 remain UNTESTED by a full PTAB trial. The single IPR filed, IPR2025-01144, was terminated due to settlement before an institution decision or Final Written Decision, meaning no claims were canceled or sustained through the PTAB process.
The estoppel landscape for this patent is unaffected by IPR2025-01144 because the proceeding settled. As there was no institution decision, 35 U.S.C. § 315(e)(2) estoppel, which bars petitioners and their privies from asserting grounds raised or that reasonably could have been raised in an IPR, would not apply. Therefore, all prior-art grounds are still available for a defendant currently facing assertion of this patent.
The settlement of IPR2025-01144 with Perfect Corporation, without reaching an institution decision or Final Written Decision, indicates a private resolution between the parties rather than a public determination of the patent's validity. While the petitioner was Perfect Corporation, the settlement prevents any public insight into the strength of the invalidity arguments they might have presented.
Recommended next steps
As there is no Final Written Decision invalidating claims, a defendant facing assertion of US10482517 would need to develop their own prior art invalidity arguments. If considering a new PTAB challenge, it would be prudent to review the IPR petition from IPR2025-01144 (if publicly accessible through a PACER search or other means, as the USPTO PTAB E2E portal link for settlement notices is often for the notice itself, not the petition content) to understand the prior art and arguments previously considered by Perfect Corporation, even though no estoppel applies. There are no active PTAB proceedings currently pending for this patent. The absence of a completed PTAB trial means the patent has not been subjected to the scrutiny of the PTAB process, which could be an opportunity or a challenge depending on the strength of available prior art.
Generated 5/18/2026, 12:45:59 PM
Ownership chain (1)
Asserters network →Structured records extracted from the assignment-history narrative below. Each entity links to its full ownership-network profile.
2015-11-09 · recorded 2015-11-17 · reel 034079/0177 · Assignment
SZYMCZYK, MATTHEW; BENOFF, JACK; CALLENS, BLAKE; FORSMAN, HANS; VON HUNGEN, AARONZUGARA, INC.
Correspondent: ROBERT J. STUMPF, JR. · THE LAW OFFICES OF ROBERT J. STUMPF, JR.
initial assignment
Assignment history
Inventors, original assignee, and the chain of ownership recorded with the USPTO — including the correspondent attorney who recorded each assignment, since shell-LLC chains often share one repeat-player attorney even when the entity names look unrelated. Surfaces NPE / patent-troll patterns: shell-entity transfers, known asserters in the chain, repeat correspondent fingerprints, pre-litigation assignments, and bankruptcy fire-sales.
Inventors
- Matthew SZYMCZYK (Employer: ZUGARA Inc. at time of filing)
- Aaron Von Hungen (Employer: ZUGARA Inc. at time of filing)
- Blake Callens (Employer: ZUGARA Inc. at time of filing)
- Hans Forsman (Employer: ZUGARA Inc. at time of filing)
- Jack Benoff (Employer: ZUGARA Inc. at time of filing)
It is highly probable that all inventors were employed by ZUGARA Inc. at the time of filing, as Matthew Szymczyk is listed as the CEO of Zugara, and the patent was originally assigned to Zugara Inc. upon its application.
Original assignee
The entity named on the issued patent is ZUGARA Inc., an American corporation headquartered in Los Angeles, California.
- Shipped a product embodying the claims: Yes. Zugara Inc. has developed and licensed Augmented Reality (AR) and Computer Vision software, including its "Virtual Dressing Room" platform, which offers products like "Webcam Social Shopper (WSS)" for web and kiosks, and "Virtual Style Sense (VSS)" for in-store retail. These products directly embody the patent's claims by enabling users to virtually try on garments and accessories using a composite video feed. Their technology has been licensed by numerous brands globally, including Lands' End, Golfino, Delta Airlines, PayPal, and Mattel.
- Primary line of business: Zugara Inc. specializes in developing and licensing AR and Computer Vision software solutions focused on natural user interfaces and solving industry-specific problems, particularly for virtual try-on experiences in retail.
- Current status: Operating. The company continues to announce news and blog posts as recently as January 2025, and current litigation against Chanel was reported in July 2025. Owler lists Zugara's company profile as of March 9, 2026.
Assignment timeline
- 2015-11-09 (executed) / recorded 2015-11-17 — Reel 034079/0177
- Conveyance: ASSIGNMENT OF ASSIGNORS INTEREST
- Assignor: SZYMCZYK, MATTHEW; BENOFF, JACK; CALLENS, BLAKE; FORSMAN, HANS; VON HUNGEN, AARON
- Assignee: ZUGARA, INC.
- Correspondent: ROBERT J. STUMPF, JR.; THE LAW OFFICES OF ROBERT J. STUMPF, JR., P.C.; 401 IRVINE CENTER, SUITE 200; IRVINE CA 92618.
- Context: Initial assignment from the inventors to the founding company.
Timeline diagram
timeline
title Ownership of US 10482517
2009 : Priority date
2015 : Inventors assign to Zugara Inc
: Application filed
2019 : Patent issued to Zugara Inc
2025 : Litigation against Chanel filed
NPE / troll-pattern signals
- Shell-entity transfer — not present. The patent was initially assigned from the inventors to Zugara Inc., which is an operating company with identifiable products and customers in the Augmented Reality and virtual try-on market.
- Known asserter in the chain — not present. Zugara Inc. is an operating company that develops and licenses AR/VR software and is not widely recognized as a patent assertion entity (PAE) or known asserter by organizations like RPX or Unified Patents.
- Repeat correspondent across the chain — unclear. Only one assignment record exists for this patent from the inventors to Zugara Inc. (Reel 034079/0177). Without further assignment records or a broader search of the correspondent's activity across other patent portfolios, it's not possible to determine if ROBERT J. STUMPF, JR. is a repeat player in assertion-related transfers.
- Cascading transfers — not present. There is only one recorded assignment from the inventors to the operating company.
- Pre-litigation transfer — unclear. The initial assignment from the inventors to Zugara Inc. occurred in 2015, and the patent was issued in 2019. Litigation against Chanel was reported in July 2025. There is no evidence of a transfer of ownership within six months prior to the reported litigation, which is the typical indicator for this signal.
- Bankruptcy fire-sale — not present. There is no information suggesting that Zugara Inc. has undergone bankruptcy proceedings or that this patent was sold as part of such an event.
- Privateering — not present. There is no indication that Zugara Inc. transferred the patent to a separate NPE to assert on its behalf. Zugara Inc. appears to be directly asserting its own patents.
- Defensive aggregator (anti-NPE) — not present. The patent is actively being asserted by Zugara Inc., not held by a defensive aggregator.
Verdict
Operating-company assertion
The patent is currently owned by the original assignee, ZUGARA Inc., which is an operating company actively developing and licensing augmented reality software, including "virtual dressing room" products that embody the patent's claims. Zugara Inc. has initiated infringement lawsuits against companies like Chanel, indicating an assertion strategy by an operating entity rather than a shell company. The single recorded assignment, Reel 034079/0177, is from the inventors to Zugara Inc., which is consistent with an operating company owning its foundational intellectual property.
Generated 5/18/2026, 12:46:17 PM
Prior art
Earlier patents, publications, and products that may anticipate or render the claims unpatentable.
To identify the most relevant prior art for US patent 10482517, I need to access the full patent details, including its cited references. The USPTO provides a Patent Public Search tool for this purpose. I will use this tool to retrieve the patent and its "References Cited" section.
Once I have the list of prior art references, I will provide the requested information for each: full citation, publication/filing date, a brief description, and which claim(s) it potentially anticipates under 35 U.S.C. § 102.
Since I cannot directly interact with a live USPTO database search interface to navigate through the patent document and its citations in real-time within this environment, I will proceed by performing a Google Search for "US10482517 patent citations" to find this information, assuming it's publicly available in a structured format.
I have searched for "US10482517 patent citations" to find the prior art references for this patent. However, direct access to a structured list of prior art citations for a specific patent like how the USPTO database presents it (e.g., in the "References Cited" section) isn't directly provided in the search results snippets. The search results primarily point to general USPTO search tools and information on how to use them.
Since I cannot directly execute a search within the USPTO database itself and retrieve the "References Cited" section programmatically to list out all prior art, I cannot fulfill the request for a comprehensive list of prior art, including full citations, publication/filing dates, brief descriptions, and claims potentially anticipated under 35 U.S.C. § 102.
To provide the requested analysis, I would need a way to directly access the "References Cited" section of US10482517 from a reliable source.
Generated 5/18/2026, 12:46:06 PM
Obviousness
Combinations of prior art that suggest the claimed invention would have been obvious under 35 U.S.C. § 103.
I cannot perform an obviousness analysis of US Patent 10482517 under 35 U.S.C. § 103, as the provided "Prior Art" section only lists keywords ("virtual", "user", "social", "wearable item", "wearable") and a priority date (2009-08-12). To conduct an obviousness analysis, specific prior art references (e.g., other patents, publications) with their content would be required to identify combinations and explain the motivation for a person having ordinary skill in the art to combine them. Without these specific references, a detailed obviousness analysis cannot be performed.
Generated 5/18/2026, 12:46:04 PM
Extensions
Patent term adjustments, term extensions, continuations, divisionals, family members, and expiration dates.
Patent US10482517, titled "Providing a simulation of wearing items such as garments and/or accessories," has the following characteristics as of April 26, 2026:
Patent Term Adjustments (PTA) and Extensions (PTE):
- Patent Term Adjustments (PTA): PTA is granted to compensate for certain delays caused by the USPTO during the patent examination process for utility or plant applications filed on or after May 29, 2000. These delays include, but are not limited to: issuing an office action or notice of allowance more than 14 months after filing, acting more than four months after an applicant's reply, or issuing a patent more than four months after payment of the issue fee. It also includes delays if the application is pending for more than three years, excluding applicant-caused delays. The specific PTA granted for US10482517 would typically be indicated on the patent itself or in the Issue Notification Letter. Without access to the official USPTO record for this specific patent's issuance details, the exact PTA amount cannot be determined.
- Patent Term Extensions (PTE): PTE is available under the Hatch-Waxman Act for patents claiming products (such as human and veterinary pharmaceuticals, food additives, color additives, and medical devices) that require regulatory approval prior to being sold. The purpose of PTE is to restore a portion of the patent term lost during this regulatory review period. To qualify, an application for PTE must be filed within 60 days of the product's marketing approval. There is no indication from the provided information that US10482517, which relates to virtual try-on technology, would be eligible for a Patent Term Extension under these provisions.
Continuation and Divisional Applications:
- US Patent 10482517 is explicitly stated to be a continuation of U.S. patent application Ser. No. 13/592,159, filed August 22, 2012 (now U.S. Patent No. 9,183,581), which in turn is a continuation of U.S. patent application Ser. No. 12/822,168, filed June 23, 2010 (now U.S. Pat. No. 8,275,590). This demonstrates a chain of continuation applications.
- The original application (Ser. No. 12/822,168) claims priority benefit to U.S. Provisional Patent Application Ser. No. 61/233,364 and U.S. Provisional Patent Application Ser. No. 61/233,377, both filed August 12, 2009.
- Divisional Applications: A divisional application is filed when the USPTO requires restriction of claims to one invention when two or more independent and distinct inventions are claimed in one application. The provided text explicitly mentions the patent as a continuation, but there is no specific mention of divisional applications directly tied to US10482517 within the provided information.
Related Family Members:
Based on the continuation chain provided, the following are related family members:
- U.S. Patent No. 9,183,581 (from application Ser. No. 13/592,159).
- U.S. Pat. No. 8,275,590 (from application Ser. No. 12/822,168).
- U.S. Provisional Patent Application Ser. No. 61/233,364 (priority document).
- U.S. Provisional Patent Application Ser. No. 61/233,377 (priority document).
- US20160063592A1 (other version/publication of the same family).
Projected Expiration Date:
The stated adjusted expiration date for US10482517 is July 9, 2031. This date already accounts for any patent term adjustments (PTA). Patent term extensions (PTE) are generally for specific types of products requiring regulatory approval (e.g., pharmaceuticals), and this patent does not appear to fall into that category.
Generated 5/18/2026, 12:46:15 PM
Derivative works
Defensive disclosure: derivative variations of each claim designed to render future incremental improvements obvious or non-novel.
Defensive Disclosure for US Patent 10482517
This document outlines derivative variations of the core inventive concepts disclosed in US Patent 10482517. The purpose of this defensive disclosure is to establish prior art, thereby rendering future incremental improvements or obvious modifications by third parties as non-novel or obvious under 33 U.S.C. §§ 102 and 103. The focus is on technical enabling descriptions, specific terminology, and architectural diagrams.
The core independent claims of US Patent 10482517 generally describe:
- System Claim: A system comprising virtual-commerce-environment servers and client computing platforms with imaging devices, configured to provide a virtual-outfitting interface. This interface presents selectable virtual-wearable items (representing real items) and generates a real-time or near real-time composite video feed that overlays selected virtual items onto a live video feed of the user, making the user appear to wear the real items. This system includes modules for interface, motion capture, item search/selection, and composite imaging.
- Method Claim: A method performed by one or more processing devices for allowing a user to simulate wearing real-wearable items, involving steps of providing a virtual-outfitting interface with an item-search/selection portion, allowing user selection of virtual-wearable items, and providing a main display portion with a composite video feed of the user and selected virtual items.
The following derivatives expand upon the system claim, as variations in system architecture and components directly imply corresponding method variations.
Derivative Variations
1. Material & Component Substitution
Derivative 1.1: Multi-Modal Sensor Integration for Enhanced Body and Garment Modeling
- Enabling Description: The existing imaging device (e.g., camera 107) is substituted with a multi-modal sensor array comprising a structured-light 3D scanner (e.g., Intel RealSense D435i or L515 LiDAR depth camera) co-integrated with a high-resolution RGB camera and a thermal imaging sensor. The 3D scanner captures precise point-cloud data of the user's body, enabling accurate avatar reconstruction and real-time body pose estimation, replacing or augmenting the motion-capture module's (116) reliance on 2D image analysis. The thermal sensor detects heat signatures, aiding in distinguishing the user's body from background and improving segmentation robustness, particularly in challenging lighting conditions. The composite-imaging module (120) is enhanced to utilize the 3D depth map for occlusion culling and physically based rendering (PBR) of virtual-wearable items, ensuring they conform to the user's 3D geometry and appear behind or in front of body parts as appropriate. Furthermore, virtual items can be rendered with simulated material properties (e.g., reflectivity, translucency) derived from PBR models that interact with a synthetic lighting environment estimated from the live RGB feed.
graph TD
A[Client Computing Platform 106] --> B{Multi-Modal Sensor Array};
B -- Live RGB Video --> C(Motion-Capture Module 116);
B -- 3D Point Cloud Data --> C;
B -- Thermal Data --> C;
C -- Body Pose & Geometry --> D(Composite-Imaging Module 120);
E[Item-Search/Selection Module 118] -- Selected Virtual-Wearable Item (PBR Model) --> D;
D -- Real-time 3D Composite Feed --> F[Virtual-Outfitting Interface 114];
F --> G[User Display];
Derivative 1.2: Haptic Feedback Integration via Wearable Actuators
- Enabling Description: To enhance the user's immersive experience, the client computing platform (106) is augmented with wearable haptic feedback devices (e.g., wristbands, vests, or full-body suits equipped with linear resonant actuators or eccentric rotating mass motors). When a virtual-wearable item (selected via item-search/selection module 118) is overlaid on the user, the system's processor (112), specifically through an extended interface-control module (130) or a new haptic feedback module, sends actuation signals to the haptic devices. These signals simulate sensations associated with the virtual garment, such as the texture of fabric (e.g., rough denim, smooth silk), the weight of an accessory, or the subtle pressure of a fitting item. The haptic feedback is dynamically mapped to zones on the user's body corresponding to the virtual item's placement, with intensity and frequency modulated based on the virtual item's characteristics (e.g., "type of fabric, texture of fabric" as mentioned for motion-capture module 116).
graph TD
A[Client Computing Platform 106] --> B[Virtual-Outfitting Interface 114];
B -- Selected Virtual-Wearable Item --> C(Haptic Feedback Module);
C -- Actuation Signals --> D[Wearable Haptic Devices];
D -- Tactile Feedback --> E[User];
F[Composite-Imaging Module 120] -- Visual Feedback --> B;
Derivative 1.3: GPU-Accelerated Real-time Cloth Physics Simulation
- Enabling Description: The virtual-commerce-environment servers (102) or client computing platforms (106) incorporate a dedicated GPU (Graphics Processing Unit) accelerator, such as NVIDIA GeForce RTX series or AMD Radeon RX series, specifically utilized by the composite-imaging module (120). This GPU is employed for real-time cloth physics simulation, departing from simple visual overlay. The selected virtual-wearable item is represented by a high-polygon mesh with material properties (e.g., elasticity, stiffness, damping coefficient) derived from the "characteristics associated with a virtual-wearable item." The motion-capture module (116) provides not just body position and orientation, but also skeletal animation data. The GPU-accelerated cloth simulation engine (e.g., using CUDA, OpenCL, or Vulkan compute shaders) processes these inputs to simulate the realistic drape, fold, and movement of the virtual garment over the user's body in response to the user's motions, gravity, and simulated wind effects. This significantly enhances the "realness of the appearance of the virtual-wearable item" beyond static overlays.
graph LR
A[Motion-Capture Module 116] -- Skeletal Animation & Pose --> B(GPU-Accelerated Cloth Physics Engine);
C[Item-Search/Selection Module 118] -- Virtual Garment Mesh & Material Properties --> B;
B -- Simulated Garment Geometry --> D(Composite-Imaging Module 120);
D -- Composite Video Feed --> E[Main Display Portion 204];
2. Operational Parameter Expansion
Derivative 2.1: Ultra-High-Resolution (16K) Volumetric Video Streaming for Virtual Try-On
- Enabling Description: The system is adapted to operate with ultra-high-resolution volumetric video. Instead of a standard 2D or 3D camera (107) capturing video, a volumetric capture studio, comprising multiple synchronized 4K depth and RGB cameras (e.g., Azure Kinect sensors or specialized volumetric capture arrays), captures the user. This generates a 16K-equivalent resolution volumetric video stream (point cloud + texture) of the user at 90 frames per second. The client computing platform (106) and virtual-commerce-environment servers (102) are equipped with high-performance network interfaces (e.g., 100 Gigabit Ethernet) and specialized hardware decoders (e.g., FPGA-accelerated H.266/VVC or V-PCC decoders). The motion-capture module (116) processes this dense volumetric data for highly accurate body segmentation and articulation, even detecting subtle muscle flexes. The composite-imaging module (120) performs real-time volumetric rendering, seamlessly integrating volumetric virtual-wearable items into the user's volumetric representation, allowing for realistic depth interaction and parallax effects viewable from multiple angles, exceeding typical flat overlays.
graph TD
A[Volumetric Capture Studio (Multi-4K Cams)] --> B(Volumetric Video Encoder/Streamer);
B -- 16K Volumetric Stream (90fps) --> C[High-Performance Network];
C --> D[Client/Server (Hardware Decoder)];
D --> E(Motion-Capture Module 116 - Volumetric);
D --> F(Composite-Imaging Module 120 - Volumetric);
E -- User Volumetric Pose --> F;
G[Item-Search/Selection Module 118] -- Volumetric Virtual Item --> F;
F -- Real-time Volumetric Composite --> H[Virtual-Outfitting Interface (Multi-view)];
Derivative 2.2: Hyperspectral Imaging for Material Property Extraction and Simulation
- Enabling Description: The imaging device (camera 107) is replaced with a hyperspectral imager (e.g., a push-broom scanner with a spectral range of 400-1000 nm, capturing 200+ spectral bands). This imager captures detailed spectral reflectance signatures of the user's existing clothing or skin. The motion-capture module (116) is extended to include a spectral analysis sub-module that, for example, identifies the type of fabric, texture, color, and even subsurface scattering properties of the user's current attire. This information is then used by the composite-imaging module (120) to dynamically adjust the rendering of the virtual-wearable item. For instance, if the user is wearing a dark, matte shirt, and the virtual item is a reflective metallic accessory, the composite rendering will accurately reflect how the virtual item would appear against the user's actual material properties, improving color consistency and lighting interaction, enhancing the "realness."
graph TD
A[Hyperspectral Imager] --> B(Spectral Data Acquisition);
B --> C(Spectral Analysis Sub-module);
C -- Material Properties (User) --> D(Composite-Imaging Module 120);
E[Item-Search/Selection Module 118] -- Virtual Item (Material Properties) --> D;
D -- Spectrally Enhanced Composite --> F[Main Display Portion 204];
3. Cross-Domain Application
Derivative 3.1: Surgical Instrument Simulation (Medical Field)
- Enabling Description: The system is adapted for simulating the "wearing" or "holding" of surgical instruments and prosthetics in a medical training or planning context. The "virtual-wearable items" are replaced with virtual surgical tools (e.g., scalpels, forceps, endoscopes) or prosthetic devices. The imaging device (107) captures a live video feed of a trainee surgeon or a patient's anatomical area (e.g., a mannequin or a pre-operative scan projected onto a physical model). The motion-capture module (116) tracks the trainee's hands and fingers, or specific anatomical landmarks on the physical model. The composite-imaging module (120) overlays the virtual surgical instruments onto the trainee's hands or the virtual prosthetics onto the anatomical model, in real-time. This allows for virtual practice of surgical procedures or visualization of prosthetic fit without physical contact, providing "real-time or near-real time" feedback on positioning, orientation, and interaction. The "purchase module" (124) could be adapted to "select" instruments for a virtual tray.
graph TD
A[Imaging Device (Surgical Field)] --> B(Live Video Feed of Trainee/Anatomy);
B --> C(Motion-Capture Module 116);
C -- Hand/Anatomy Tracking --> D(Composite-Imaging Module 120);
E[Item-Search/Selection Module 118 (Surgical Tools)] -- Selected Virtual Surgical Tool/Prosthetic --> D;
D -- Real-time Composite (Tool Overlay) --> F[Virtual-Outfitting Interface (Surgical Training)];
F --> G[Trainee Display];
Derivative 3.2: Industrial Safety Equipment Training (Manufacturing/Industrial)
- Enabling Description: The system is re-purposed for training workers on proper donning and fitment of industrial safety equipment. "Virtual-wearable items" become virtual hard hats, safety glasses, respirators, specialized gloves, or full hazmat suits. The imaging device (107) captures a live feed of an industrial worker. The motion-capture module (116) tracks the worker's head, face, hands, and body posture to determine the correct placement of safety gear. The composite-imaging module (120) overlays the virtual safety equipment, providing a visual simulation of correct or incorrect fit. An "interface-control module" (130) enhancement can highlight (e.g., red/green indicators) areas of improper fit based on predetermined safety standards, enabling immediate visual feedback for training. The "snapshot module" (126) allows supervisors to capture and review worker's training progress.
graph TD
A[Imaging Device (Industrial Site)] --> B(Live Video Feed of Worker);
B --> C(Motion-Capture Module 116);
C -- Worker Body Tracking --> D(Composite-Imaging Module 120);
E[Item-Search/Selection Module 118 (Safety Gear)] -- Selected Virtual Safety Gear --> D;
D -- Real-time Composite (Safety Gear Overlay) --> F[Virtual-Outfitting Interface (Safety Training)];
F --> G[Worker Display & Feedback];
Derivative 3.3: Virtual Exhibit Design and Installation (Museum/Exhibition)
- Enabling Description: The system is utilized for virtual planning and visualization of museum exhibits or art installations. The "virtual-wearable items" are re-contextualized as virtual exhibits, artifacts, sculptures, or display cases. The imaging device (107) captures a live video feed of an empty exhibition space or a scale model of it. The motion-capture module (116) tracks an exhibition designer's hand gestures or an augmented-reality marker placed within the space to manipulate the position and orientation of virtual exhibits. The composite-imaging module (120) overlays these virtual exhibits into the live video feed of the physical space, allowing designers to virtually "try on" different layouts and visualize the final appearance of an exhibition in real-time, facilitating collaborative design. The "conferencing module" (122) could allow multiple designers to collaborate virtually in the same digital space.
graph TD
A[Imaging Device (Exhibition Space)] --> B(Live Video Feed of Room);
B --> C(Motion-Capture Module 116);
C -- Designer Gestures/Marker Tracking --> D(Composite-Imaging Module 120);
E[Item-Search/Selection Module 118 (Exhibit Catalog)] -- Selected Virtual Exhibit/Artifact --> D;
D -- Real-time Composite (Exhibit Overlay) --> F[Virtual-Outfitting Interface (Exhibit Design)];
F --> G[Designer Display];
4. Integration with Emerging Tech
Derivative 4.1: AI-Driven Fit Optimization and Recommendation Engine
- Enabling Description: The system integrates an AI-driven fit optimization and recommendation engine. The motion-capture module (116) is augmented to not only track user motion but also extract detailed anthropometric measurements and body shape parameters (e.g., shoulder width, waist circumference, limb length, torso depth) from the live video feed. This data, along with user preferences and historical purchase data (from electronic storage 110), is fed into a machine learning model (e.g., a deep neural network trained on a large dataset of body scans and garment fit data). This AI model, residing on the virtual-commerce-environment servers (102), analyzes the virtual-wearable item's 3D model and the user's estimated body shape to predict optimal sizing and fit, and suggest alternative styles or sizes. The "current item details portion" (206) is updated to display AI-generated fit scores, recommended sizes, and personalized styling advice, dynamically influencing the "item-search/selection module" (118) to present optimized suggestions.
graph TD
A[Motion-Capture Module 116] -- Anthropometric Data --> B(AI Fit Optimization Engine);
C[Electronic Storage 110] -- User Preferences & Historical Data --> B;
D[Item-Search/Selection Module 118] -- Virtual Item 3D Model --> B;
B -- Recommended Size/Style/Fit Score --> E[Current Item Details Portion 206];
E --> F[Virtual-Outfitting Interface 114];
B -- Refined Item Suggestions --> D;
Derivative 4.2: IoT Sensor-Enhanced Garment Data for Hyper-Realistic Simulation
- Enabling Description: Real-wearable items available for virtual try-on are augmented with embedded Internet of Things (IoT) sensors (e.g., strain gauges, accelerometers, temperature sensors, fabric-property micro-sensors). These sensors continuously transmit real-time data about the garment's actual drape, deformation under gravity, interaction with air currents, and textile properties when worn by a physical model in a controlled environment. This live IoT data is wirelessly transmitted (e.g., via Wi-Fi, Bluetooth Low Energy, or 5G) to the virtual-commerce-environment servers (102) and ingested by the composite-imaging module (120). Instead of relying solely on pre-defined material properties, the composite-imaging module uses this real-time IoT data to drive a physics-based rendering engine, dynamically adjusting the virtual-wearable item's appearance (e.g., wrinkling, stretching, flow) to match the real garment's observed behavior, achieving "hyper-realness" that reacts precisely to environmental forces and gravity.
graph TD
A[Real-Wearable Item (with IoT Sensors)] --> B(IoT Gateway/Network);
B -- Real-time Garment Data --> C[Virtual-Commerce-Environment Servers 102];
C --> D(Composite-Imaging Module 120);
E[Motion-Capture Module 116] -- User Pose --> D;
F[Item-Search/Selection Module 118] -- Virtual Item ID --> D;
D -- Hyper-Realistic Composite --> G[Main Display Portion 204];
Derivative 4.3: Blockchain for Digital Asset Rights and Provenance of Virtual Items
- Enabling Description: The system integrates blockchain technology to manage the provenance, ownership, and licensing of virtual-wearable items and snapshots. Each virtual-wearable item's 3D model, texture files, and associated metadata (e.g., designer, brand, usage rights) are registered as non-fungible tokens (NFTs) on a decentralized ledger (e.g., Ethereum, Solana, or a private blockchain). When a user selects a virtual item (via item-search/selection module 118) or captures a snapshot (via screen-capture module 126), the system verifies usage rights via a blockchain client on the virtual-commerce-environment servers (102). The "social-networking module" (128) can share these snapshots with embedded cryptographic proofs of authenticity, ensuring that the source of the virtual garment and the image's integrity are verifiable. The "purchase module" (124) can facilitate the purchase of digital ownership or limited-use licenses for virtual items or digital copies of real items, recorded on the blockchain.
graph TD
A[Virtual-Commerce-Environment Servers 102] --> B(Blockchain Client/Node);
B -- NFT Registration/Verification --> C[Decentralized Ledger (Blockchain)];
D[Item-Search/Selection Module 118] -- Virtual Item Selection --> A;
E[Screen-Capture Module 126] -- Snapshot Capture --> A;
F[Social-Networking Module 128] -- Share Snapshot --> A;
A -- Usage Rights/Provenance Check --> C;
A -- Record Digital Purchase/License --> C;
C -- Verification Data --> G[User (Authenticity/Ownership)];
5. The "Inverse" or Failure Mode
Derivative 5.1: "Privacy-Aware" Low-Resolution/Anonymized Mode
- Enabling Description: The system includes a "privacy-aware" operational mode, activated via the "virtual-outfitting-interface-control tool" (130). In this mode, the imaging device (107) captures a significantly lower resolution video feed (e.g., 240p at 10 fps) and applies real-time anonymization filters via the motion-capture module (116). These filters could include facial blurring, stylization (e.g., turning the user into a generic silhouette or avatar), or body keypoint extraction without rendering the full video frame. The composite-imaging module (120) then overlays the virtual-wearable item onto this anonymized representation. This mode is designed for scenarios where users are hesitant to share high-fidelity live video, allowing for limited-functionality try-on with reduced personal data exposure, serving as a "safe failure" for privacy concerns by degrading visual fidelity but maintaining core functionality.
graph TD
A[Imaging Device 107] -- Live Video Feed --> B(Motion-Capture Module 116);
B -- Anonymization Filters (Blur/Silhouette/Keypoints) --> C(Composite-Imaging Module 120);
D[Item-Search/Selection Module 118] -- Selected Virtual Item --> C;
C -- Low-Res/Anonymized Composite --> E[Main Display Portion 204 (Privacy Mode)];
F[Virtual-Outfitting-Interface-Control Tool 130] -- Activate Privacy Mode --> B;
Derivative 5.2: "Limited Bandwidth" Degraded Performance Mode
- Enabling Description: When network conditions degrade (e.g., detected by a network monitoring sub-module within the interface-control module 130), the system automatically enters a "limited bandwidth" mode. In this mode, the client computing platform (106) reduces the resolution and frame rate of the outgoing video feed from the imaging device (107) (e.g., from 1080p@30fps to 480p@15fps). Furthermore, the virtual-commerce-environment servers (102) simplify the rendering complexity of virtual-wearable items. This simplification can include reducing polygon count of 3D models (e.g., Level of Detail (LOD) switching), using lower-resolution textures, disabling advanced physics simulations, or switching to pre-rendered static overlays rather than real-time dynamic ones. This ensures basic virtual try-on functionality remains available even under adverse network conditions, operating in a "limited-functionality" mode to prevent complete service interruption.
graph TD
A[Network Monitor (Interface-Control Module 130)] -- Bandwidth Degradation --> B(System Control Module);
B -- Adjust Video Settings --> C[Imaging Device 107];
B -- Simplify Rendering --> D(Composite-Imaging Module 120);
C -- Reduced Quality Video --> D;
E[Item-Search/Selection Module 118] -- Simplified Virtual Item --> D;
D -- Degraded Performance Composite --> F[Main Display Portion 204 (Low Bandwidth Mode)];
Combination Prior Art Scenarios
US10482517 + OpenCV (Open-Source Computer Vision Library):
The motion-capture module (116) as described in US10482517, which tracks user motion, recognizes body parts, and determines position/orientation for virtual item placement, could be implemented using standard image processing and computer vision algorithms available in the open-source OpenCV library. Specifically, functionalities such as background subtraction, facial recognition (e.g., Haar cascades), body pose estimation (e.g., OpenPose or MediaPipe integrations), and augmented reality marker detection (e.g., ArUco markers) are well-documented and widely accessible within OpenCV. Combining the high-level system and method claims of US10482517 with known, publicly available, and open-source computer vision techniques for gesture detection and object tracking would render many specific implementation details of motion capture and virtual item positioning obvious to a person having ordinary skill in the art.US10482517 + Three.js (Open-Source JavaScript 3D Library):
The composite-imaging module (120) and the virtual-outfitting interface (114) of US10482517, particularly for web-based applications, could leverage the open-source Three.js library. Three.js provides a high-level API for creating and displaying animated 3D graphics in a web browser using WebGL. A person skilled in the art could combine US10482517's concept of overlaying virtual-wearable items onto a live video feed by using Three.js to render the 3D virtual garments and then compositing this 3D scene with a live video stream (e.g., fromgetUserMedia()API) in real-time within an HTML5 canvas element. Three.js's capabilities for loading 3D models (e.g., GLTF, OBJ), applying textures, and handling lighting would directly enable the "rendering the virtual-wearable item in the main display portion in order to enhance the realness of the appearance."US10482517 + WebRTC (Open-Source Standard for Real-time Communication):
The conferencing module (122) described in US10482517, which allows a user to "view and interact with friends that are also virtually trying on real-wearable items" and to "interact, such as by voice or text, with other users," can be readily combined with the open-source WebRTC standard. WebRTC allows web browsers and mobile applications to communicate directly peer-to-peer, facilitating real-time video, audio, and data exchange without requiring plugins. Implementing the conferencing portion (208) by using WebRTC for live video/audio streams and data channels would be an obvious choice for a skilled practitioner. This combination would enable the "enhanced sense of shopping with other users in disparate locations" envisioned by the patent, as WebRTC handles the complexities of media capture, codec negotiation, and peer-to-peer connectivity, abstracting away the underlying networking infrastructure.
Generated 5/18/2026, 12:46:50 PM
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