Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors

Underwater source localization problems are complicated and challenging: 1) the sound propagation speed is often unknown and the unpredictable ocean current might lead to the uncertainties of sensor parameters (i.e., position and velocity); 2) the underwater acoustic signal travels much slower than...

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Main Authors: Bingbing Zhang, Yongchang Hu, Hongyi Wang, Zhaowen Zhuang
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8402219/
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spelling doaj-aa1b2b84d1674755bf98638706a0435c2021-03-29T20:57:15ZengIEEEIEEE Access2169-35362018-01-016366453666110.1109/ACCESS.2018.28526368402219Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter ErrorsBingbing Zhang0https://orcid.org/0000-0002-7536-1607Yongchang Hu1https://orcid.org/0000-0002-9623-9555Hongyi Wang2Zhaowen Zhuang3School of Electronic Science, National University of Defense Technology, Changsha, ChinaFaculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Delft, The NetherlandsSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaUnderwater source localization problems are complicated and challenging: 1) the sound propagation speed is often unknown and the unpredictable ocean current might lead to the uncertainties of sensor parameters (i.e., position and velocity); 2) the underwater acoustic signal travels much slower than the radio one in terrestrial environments, thus resulting into a significantly severe Doppler effect; and 3) energy-efficient techniques are urgently required and hence in favor of the design with a low computational complexity. Considering these issues, we propose a simple and efficient underwater source localization approach based on the time difference of arrival and frequency difference of arrival measurements, which copes with unknown propagation speed and sensor parameter errors. The proposed method mitigates the impact of the Doppler effect for accurately inferring the source parameters (i.e., position and velocity). The Cramér-Rao lower bounds (CRLBs) for this kind of localization are derived and, moreover, the analytical study shows that our method can yield the performance that is very close to the CRLB, particularly under small noise. The numerical results not only confirm the above conclusions but also show that our method outperforms other competing approaches.https://ieeexplore.ieee.org/document/8402219/Underwater localizationalgebraic solutionsound propagation speed uncertaintysensor node uncertaintytime difference of arrival (TDOA)frequency difference of arrival (FDOA)
collection DOAJ
language English
format Article
sources DOAJ
author Bingbing Zhang
Yongchang Hu
Hongyi Wang
Zhaowen Zhuang
spellingShingle Bingbing Zhang
Yongchang Hu
Hongyi Wang
Zhaowen Zhuang
Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
IEEE Access
Underwater localization
algebraic solution
sound propagation speed uncertainty
sensor node uncertainty
time difference of arrival (TDOA)
frequency difference of arrival (FDOA)
author_facet Bingbing Zhang
Yongchang Hu
Hongyi Wang
Zhaowen Zhuang
author_sort Bingbing Zhang
title Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
title_short Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
title_full Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
title_fullStr Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
title_full_unstemmed Underwater Source Localization Using TDOA and FDOA Measurements With Unknown Propagation Speed and Sensor Parameter Errors
title_sort underwater source localization using tdoa and fdoa measurements with unknown propagation speed and sensor parameter errors
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description Underwater source localization problems are complicated and challenging: 1) the sound propagation speed is often unknown and the unpredictable ocean current might lead to the uncertainties of sensor parameters (i.e., position and velocity); 2) the underwater acoustic signal travels much slower than the radio one in terrestrial environments, thus resulting into a significantly severe Doppler effect; and 3) energy-efficient techniques are urgently required and hence in favor of the design with a low computational complexity. Considering these issues, we propose a simple and efficient underwater source localization approach based on the time difference of arrival and frequency difference of arrival measurements, which copes with unknown propagation speed and sensor parameter errors. The proposed method mitigates the impact of the Doppler effect for accurately inferring the source parameters (i.e., position and velocity). The Cramér-Rao lower bounds (CRLBs) for this kind of localization are derived and, moreover, the analytical study shows that our method can yield the performance that is very close to the CRLB, particularly under small noise. The numerical results not only confirm the above conclusions but also show that our method outperforms other competing approaches.
topic Underwater localization
algebraic solution
sound propagation speed uncertainty
sensor node uncertainty
time difference of arrival (TDOA)
frequency difference of arrival (FDOA)
url https://ieeexplore.ieee.org/document/8402219/
work_keys_str_mv AT bingbingzhang underwatersourcelocalizationusingtdoaandfdoameasurementswithunknownpropagationspeedandsensorparametererrors
AT yongchanghu underwatersourcelocalizationusingtdoaandfdoameasurementswithunknownpropagationspeedandsensorparametererrors
AT hongyiwang underwatersourcelocalizationusingtdoaandfdoameasurementswithunknownpropagationspeedandsensorparametererrors
AT zhaowenzhuang underwatersourcelocalizationusingtdoaandfdoameasurementswithunknownpropagationspeedandsensorparametererrors
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