paper-with-me

홈 › Papers

Learning-based Bias Correction for Time Difference of Arrival Ultra-wideband Localization of Resource-constrained Mobile Robots

2021-03-02 · Wenda Zhao, Jacopo Panerati, Angela P. Schoellig

Accurate indoor localization is a crucial enabling technology for many robotics applications, from warehouse management to monitoring tasks. Ultra-wideband (UWB) time difference of arrival (TDOA)-based localization is a promising lightweight, low-cost solution that can scale to a large number of devices -- making it especially suited for resource-constrained multi-robot applications. However, the localization accuracy of standard, commercially available UWB radios is often insufficient due to significant measurement bias and outliers. In this letter, we address these issues by proposing a robust UWB TDOA localization framework comprising of (i) learning-based bias correction and (ii) M-estimation-based robust filtering to handle outliers. The key properties of our approach are that (i) the learned biases generalize to different UWB anchor setups and (ii) the approach is computationally efficient enough to run on resource-constrained hardware. We demonstrate our approach on a Crazyflie nano-quadcopter. Experimental results show that the proposed localization framework, relying only on the onboard IMU and UWB, provides an average of 42.08 percent localization error reduction (in three different anchor setups) compared to the baseline approach without bias compensation. {We also show autonomous trajectory tracking on a quadcopter using our UWB TDOA localization approach.}

📄 PDF Abstract BibTeX arXiv:2103.01885

Code (1)

Williamwenda/UWB_TDOA_dataset pytorch

Tasks

Indoor LocalizationManagement

Similar Papers 제목 키워드 기반

Learning-based Bias Correction for Ultra-wideband Localization of Resource-constrained Mobile Robots

2020-03-20 · Wenda Zhao, Abhishek Goudar, Jacopo Panerati, Angela P. Schoellig

Accurate indoor localization is a crucial enabling technology for many robotics applications, from warehouse management to monitoring tasks. Ultra-wideband (UWB) ranging is a promising solution which is low-cost, lightwe…

Indoor LocalizationManagement

Handling systematic node biases in TDoA positioning systems

2025-02-21 · Miquel Garcia-Fernandez

Node-specific hardware biases represent significant error source in wireless Time of Arrival (ToA) and Time Difference of Arrival (TDoA) positioning. While bias estimation and treatment are well-established in Global Nav…

Time of arrival imaging: The proof of concept for a novel medical imaging modality

2020-02-28

It has been shown that with the use of ultra-wideband (UWB) electromagnetic signal and time of arrival (ToA) principle, it is possible to locate medical implants given the permittivity distribution of the body. We propos…

AnatomyImage Reconstruction

On the Dilution of Precision for Time Difference of Arrival with Station Deployment

2021-12-10 · Fengyun Zhang, Hao Li, Yulong Ding, Shuang-Hua Yang 외

The paper aims to reveal the relationship between the performance of moving object tracking algorithms and the tracking anchors (station) deployment. The Dilution of Precision (DoP) for Time difference of arrival (TDoA) …

Object TrackingTAG

Angle of Arrival and Centimeter Distance Estimation on a Smart UWB Sensor Node

2023-12-21 · Tobias Margiani, Silvano Cortesi, Milena Keller, Christian Vogt 외

Accurate and low-power indoor localization is becoming more and more of a necessity to empower novel consumer and industrial applications. In this field, the most promising technology is based on UWB modulation; however,…

Indoor Localization