TY - GEN
T1 - Cooperative Transmit Resource Scheduling Algorithm for Asynchronous Tracking in Heterogeneous Multiple Distributed Radar Networks with Imperfect Detection
AU - Shi, Chenguang
AU - Dong, Xili
AU - Tang, Zhicheng
AU - Wang, Ziwei
AU - Salous, Sana
N1 - Publisher Copyright:
© Beijing HIWING Scientific and Technological Information Institute 2024.
PY - 2024
Y1 - 2024
N2 - In this study, we propose a cooperative transmit resource scheduling (CTRS) algorithm for addressing the challenge of asynchronous multiple targets tracking (AMTT) in heterogeneous multiple distributed radar networks (HMDRNs) with imperfect detection performance. The main goal of the CTRS algorithm is to optimize the allocation of heterogeneous illumination resources, such as target-to-radar assignment, transmit power, dwell time length, and signal effective bandwidth, in order to minimize the overall radio frequency resource consumption while meeting the predetermined AMTT requirements and system constraints. To evaluate the accuracy of AMTT under imperfect detection conditions, we employ the Bayesian Cramér-Rao lower bound (BCRLB) as the criterion utility function. Furthermore, we develop a three-step solution approach that combines sequential quadratic programming (SQP) and cyclic minimization algorithm (CMA) to effectively address the resulting problem. Through extensive numerical simulations, we demonstrate the superiority of our proposed algorithm in terms of resource consumption and AMTT accuracy, outperforming existing approaches. The results confirm that our algorithm achieves equivalent AMTT accuracy with reduced resource utilization, showcasing its potential for practical implementation in real-world scenarios.
AB - In this study, we propose a cooperative transmit resource scheduling (CTRS) algorithm for addressing the challenge of asynchronous multiple targets tracking (AMTT) in heterogeneous multiple distributed radar networks (HMDRNs) with imperfect detection performance. The main goal of the CTRS algorithm is to optimize the allocation of heterogeneous illumination resources, such as target-to-radar assignment, transmit power, dwell time length, and signal effective bandwidth, in order to minimize the overall radio frequency resource consumption while meeting the predetermined AMTT requirements and system constraints. To evaluate the accuracy of AMTT under imperfect detection conditions, we employ the Bayesian Cramér-Rao lower bound (BCRLB) as the criterion utility function. Furthermore, we develop a three-step solution approach that combines sequential quadratic programming (SQP) and cyclic minimization algorithm (CMA) to effectively address the resulting problem. Through extensive numerical simulations, we demonstrate the superiority of our proposed algorithm in terms of resource consumption and AMTT accuracy, outperforming existing approaches. The results confirm that our algorithm achieves equivalent AMTT accuracy with reduced resource utilization, showcasing its potential for practical implementation in real-world scenarios.
KW - Cooperative transmit resource scheduling (CTRS)
KW - asynchronous multiple targets tracking (AMTT)
KW - heterogeneous multiple distributed radar networks (HMDRNs)
KW - imperfect detection
UR - https://www.scopus.com/pages/publications/85192150764
U2 - 10.1007/978-981-97-1091-1_1
DO - 10.1007/978-981-97-1091-1_1
M3 - 会议稿件
AN - SCOPUS:85192150764
SN - 9789819710904
T3 - Lecture Notes in Electrical Engineering
SP - 1
EP - 10
BT - Proceedings of 3rd 2023 International Conference on Autonomous Unmanned Systems (3rd ICAUS 2023) - Volume IV
A2 - Qu, Yi
A2 - Gu, Mancang
A2 - Niu, Yifeng
A2 - Fu, Wenxing
PB - Springer Science and Business Media Deutschland GmbH
T2 - 3rd International Conference on Autonomous Unmanned Systems, ICAUS 2023
Y2 - 9 September 2023 through 11 September 2023
ER -