Residential College | false |
Status | 已發表Published |
Game-Theoretic Power Allocation Scheme of Cooperative Localization in Hybrid Active-Passive Wireless Sensor Networks | |
Chen, Yang1,2; Zhao, Yubin2![]() ![]() | |
2024-09-15 | |
Source Publication | IEEE Internet of Things Journal
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ISSN | 2327-4662 |
Volume | 11Issue:18Pages:30027-30039 |
Abstract | A hybrid active-passive wireless sensor network (HWSN) is a cost-effective and energy-efficient way for localization systems. The active sensor nodes, which are targets, can locate themselves by sending wireless power signals to power up the passive sensors, or via cooperative localization among targets. The common used power allocation approaches e.g., semi-definite programming (SDP), are aiming to minimize the overall localization error with energy constraints. However, the global optimum may lead to issues such as decreased individual performance and unbalanced network resources. To address the above challenges, we propose a game theory power allocation framework for the cooperative localization of HWSNs in this paper. We present the Fisher information matrix (FIM) and the corresponding squared position error bound (SPEB) for two types of HWSNs, which are the general cooperation network and tree topology network. For the general cooperation network, we derive the closed-form solution of optimal power allocation using the general bargaining equilibrium. In the tree topology network, we propose a Stackelberg equilibrium approach that effectively adapts the power allocation scheme based on the obtained hierarchical information structure. Extensive simulation results demonstrate that the proposed method outperforms semidefinite programming (SDP) and equal power allocation scheme (EQ) in position estimation error. Specifically, compared to other schemes, our proposed scheme has improved the positioning accuracy by 75% in the general cooperation network and by 70% in the tree topology network. |
Keyword | Cooperative Localization Distance Measurement Game Theory Location Awareness Nash Equilibrium Network Topology Power Allocation Resource Management Topology Wireless Communication Wireless Power Transfer Wireless Sensor Networks |
DOI | 10.1109/JIOT.2024.3407535 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Computer Science ; Engineering ; Telecommunications |
WOS Subject | Computer Science, Information Systems ; Engineering, Electrical & Electronic ; Telecommunications |
WOS ID | WOS:001316227800060 |
Publisher | IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC, 445 HOES LANE, PISCATAWAY, NJ 08855-4141 |
Scopus ID | 2-s2.0-85195375801 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | Faculty of Science and Technology THE STATE KEY LABORATORY OF INTERNET OF THINGS FOR SMART CITY (UNIVERSITY OF MACAU) DEPARTMENT OF COMPUTER AND INFORMATION SCIENCE |
Corresponding Author | Zhao, Yubin |
Affiliation | 1.School of Physics and Electronic Engineering, Hainan Normal University, Haikou 571158, China 2.School of Microelectronics Science and Technology, Sun Yat-Sen University, Zhuhai, China 3.Key Laboratory of Internet of Vehicle Technical Innovation and Testing (CAICT), Ministry of Industry and Information Technology; China Academy of Information and Communications Technology, Beijing, China 4.State Key Lab of IoTSC and Dept. of Computer and Information Science, University of Macau, Macau, China |
Recommended Citation GB/T 7714 | Chen, Yang,Zhao, Yubin,Ge, Yuming,et al. Game-Theoretic Power Allocation Scheme of Cooperative Localization in Hybrid Active-Passive Wireless Sensor Networks[J]. IEEE Internet of Things Journal, 2024, 11(18), 30027-30039. |
APA | Chen, Yang., Zhao, Yubin., Ge, Yuming., & Xu, Cheng Zhong (2024). Game-Theoretic Power Allocation Scheme of Cooperative Localization in Hybrid Active-Passive Wireless Sensor Networks. IEEE Internet of Things Journal, 11(18), 30027-30039. |
MLA | Chen, Yang,et al."Game-Theoretic Power Allocation Scheme of Cooperative Localization in Hybrid Active-Passive Wireless Sensor Networks".IEEE Internet of Things Journal 11.18(2024):30027-30039. |
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