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Passive Localization of Signal Source Based on UAVs in Complex Environment 被引量:5

Passive Localization of Signal Source Based on UAVs in Complex Environment
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摘要 For the influence caused by multipath fading and non-line-of-sight(NLOS)transmission,it is challenging to accurately localize a moving signal source in complex environment by using the wireless sensor network(WSN)on the ground.In this paper,we establish a special WSN in the sky to address this challenge,where each sensor is loaded on an unmanned aerial vehicle(UAV)and the operation center of all the UAVs is fixed on the ground.Based on the analyzing of the optimal distribution and the position error calibration of all the sensors,we formulate the localization scheme to estimate the position of the target source,which combines the time difference of arrival(TDOA)method and the frequency difference of arrival(FDOA)method.Then by employing the semidefinite programming approach,we accurately obtain the position and velocity of the signal source.In the simulation,the validity of the proposed method is verified through the performance comparison. For the influence caused by multipath fading and non-line-of-sight(NLOS) transmission, it is challenging to accurately localize a moving signal source in complex environment by using the wireless sensor network(WSN) on the ground. In this paper, we establish a special WSN in the sky to address this challenge, where each sensor is loaded on an unmanned aerial vehicle(UAV) and the operation center of all the UAVs is fixed on the ground. Based on the analyzing of the optimal distribution and the position error calibration of all the sensors, we formulate the localization scheme to estimate the position of the target source, which combines the time difference of arrival(TDOA) method and the frequency difference of arrival(FDOA) method. Then by employing the semidefinite programming approach, we accurately obtain the position and velocity of the signal source. In the simulation, the validity of the proposed method is verified through the performance comparison.
出处 《China Communications》 SCIE CSCD 2020年第2期107-116,共10页 中国通信(英文版)
基金 supported by The Science and Technology Innovation Team Plan of Shaanxi Province (2017-KCT-30-02) The Key Research and Development Program of Shaanxi Province (2018GY-150) The Foundation Research Project of Shaanxi Province (The Natural Science Fund. 2018JQ6093) The Science and Technology Plan Project of Xi’an City (201805040YD18CG24-3)
关键词 passive localization time difference of arrival wireless sensor network unmanned aerial vehicle semidefinite programming passive localization time difference of arrival wireless sensor network unmanned aerial vehicle semidefinite programming
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