Fit Simulation Garment Actuators for Online Clothing Sizing
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Solution Overview
Problem
Consumers face challenges when shopping for clothing online due to varying sizing standards across manufacturers and countries, leading to uncertainty about how clothing will fit without physical presence.
Innovation Solution
A body measurement garment equipped with sensors that generate accurate body measurements, allowing for the creation of electronic measurement profiles and virtual representations for online shopping, as well as a fit simulation system using a fit simulation garment with actuators to simulate garment fit based on data models.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If standard sizing models are used for clothing manufacturing, then manufacturing efficiency is improved, but fit accuracy deteriorates due to varying sizing standards across manufacturers and countries
Solution Approach 1:
The patent segments the clothing industry into two distinct approaches: standard sizing for mass production and personalized sizing based on individual body measurements. The body measurement garment enables consumers to obtain precise personal measurements, which are then used to generate customized size recommendations, effectively segmenting the market between off-the-shelf and made-to-order clothing
Solution Approach 2:
The patent changes the sizing parameter from standardized size labels (S, M, L, XL) to precise numerical body measurements obtained through the body measurement garment. This parameter transformation allows for accurate fit prediction by comparing actual body dimensions against garment measurement data, eliminating the ambiguity of standardized sizing
2Ease of operation
If consumers shop for clothing remotely without physical presence, then shopping convenience is improved, but fit uncertainty worsens due to inability to discern actual garment appearance and feel
Solution Approach 1:
The patent creates a virtual copy of the garment fit experience by using the body measurement garment to capture precise body dimensions, then comparing these against garment measurement data to generate a virtual representation of how the garment will fit. This digital twin approach allows consumers to visualize and assess fit without physical interaction with the garment
Solution Approach 2:
The patent implements a feedback loop where consumers input body measurement data, receive personalized size recommendations and fit predictions, then can adjust selections based on this feedback. The system continuously refines fit recommendations by comparing predicted fit outcomes with consumer preferences and actual garment performance data
3Measurement precision
If personalized body measurements are collected and processed, then fit simulation accuracy is improved, but system complexity worsens due to need for sensors, actuators, and data processing infrastructure
Solution Approach 1:
The patent introduces a fitting algorithm as an intermediary that processes raw body measurement data from the body measurement garment and translates it into meaningful fit predictions and size recommendations. This algorithmic mediator simplifies the system by automatically handling the complex data processing and comparison tasks, eliminating the need for consumers to manually analyze measurement data
Solution Approach 2:
The patent creates a universal measurement system where the body measurement garment can be used across multiple clothing items and styles. The same sensor-based measurement device and algorithmic processing infrastructure serve diverse garment types, from casual wear to formal attire, reducing overall system complexity through standardized measurement and evaluation protocols
Data Source
AI summary
A system comprising a computer-readable storage medium storing at least one program and a computer-implemented method for simulating the fit of a particular garment on a user using a fit simulation garment. The fit simulation garment is wearable by a user and comprises a plurality of actuators configured to simulate tightness of regions of the particular garment. The method includes receiving a garment fit model defining the fit of the particular garment on the user. The method further includes parsing the garment fit model to generate control data for controlling the fit simulation garment, and transmitting the control data to the fit simulation garment to cause the plurality of actuators to collectively simulate the fit of the particular garment on the user.


