W2W: A Simulated Exploration of IMU Placement Across the Human Body for Designing Smarter Wearable

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ray, Lala Shakti Swarup, Zhou, Bo, Lukowicz, Paul
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915376732831744
author Ray, Lala Shakti Swarup
Zhou, Bo
Lukowicz, Paul
author_facet Ray, Lala Shakti Swarup
Zhou, Bo
Lukowicz, Paul
contents Inertial measurement units (IMUs) are central to wearable systems for activity recognition and pose estimation, but sensor placement remains largely guided by heuristics and convention. In this work, we introduce Where to Wear (W2W), a simulation-based framework for systematic exploration of IMU placement utility across the body. Using labeled motion capture data, W2W generates realistic synthetic IMU signals at 512 anatomically distributed surface patches, enabling high-resolution, task-specific evaluation of sensor performance. We validate reliability of W2W by comparing spatial performance rankings from synthetic data with real IMU recordings in two multimodal datasets, confirming strong agreement in activity-wise trends. Further analysis reveals consistent spatial trends across activity types and uncovers overlooked high-utility regions that are rarely used in commercial systems. These findings challenge long-standing placement norms and highlight opportunities for more efficient, task-adaptive sensor configurations. Overall, our results demonstrate that simulation with W2W can serve as a powerful design tool for optimizing sensor placement, enabling scalable, data-driven strategies that are impractical to obtain through physical experimentation alone.
format Preprint
id arxiv_https___arxiv_org_abs_2507_05532
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle W2W: A Simulated Exploration of IMU Placement Across the Human Body for Designing Smarter Wearable
Ray, Lala Shakti Swarup
Zhou, Bo
Lukowicz, Paul
Human-Computer Interaction
Inertial measurement units (IMUs) are central to wearable systems for activity recognition and pose estimation, but sensor placement remains largely guided by heuristics and convention. In this work, we introduce Where to Wear (W2W), a simulation-based framework for systematic exploration of IMU placement utility across the body. Using labeled motion capture data, W2W generates realistic synthetic IMU signals at 512 anatomically distributed surface patches, enabling high-resolution, task-specific evaluation of sensor performance. We validate reliability of W2W by comparing spatial performance rankings from synthetic data with real IMU recordings in two multimodal datasets, confirming strong agreement in activity-wise trends. Further analysis reveals consistent spatial trends across activity types and uncovers overlooked high-utility regions that are rarely used in commercial systems. These findings challenge long-standing placement norms and highlight opportunities for more efficient, task-adaptive sensor configurations. Overall, our results demonstrate that simulation with W2W can serve as a powerful design tool for optimizing sensor placement, enabling scalable, data-driven strategies that are impractical to obtain through physical experimentation alone.
title W2W: A Simulated Exploration of IMU Placement Across the Human Body for Designing Smarter Wearable
topic Human-Computer Interaction
url https://arxiv.org/abs/2507.05532