Power Allocation for Coordinated Multi-Point Aided ISAC Systems

Fuente: arXiv
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Main Authors: Zou, Jianpeng, Zhong, Zhanfeng, Wang, Jintao, Shi, Zheng, Yang, Guanghua, Ma, Shaodan
Format: Preprint
Published: 2025
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author Zou, Jianpeng
Zhong, Zhanfeng
Wang, Jintao
Shi, Zheng
Yang, Guanghua
Ma, Shaodan
author_facet Zou, Jianpeng
Zhong, Zhanfeng
Wang, Jintao
Shi, Zheng
Yang, Guanghua
Ma, Shaodan
contents In this letter, we investigate a coordinated multiple point (CoMP)-aided integrated sensing and communication (ISAC) system that supports multiple users and targets. Multiple base stations (BSs) employ a coordinated power allocation strategy to serve their associated single-antenna communication users (CUs) while utilizing the echo signals for joint radar target (RT) detection. The probability of detection (PoD) of the CoMP-ISAC system is then proposed for assessing the sensing performance. To maximize the sum rate while ensuring the PoD for each RT and adhering to the total transmit power budget across all BSs, we introduce an efficient power allocation strategy. Finally, simulation results are provided to validate the analytical findings, demonstrating that the proposed power allocation scheme effectively enhances the sum rate while satisfying the sensing requirements.
format Preprint
id arxiv_https___arxiv_org_abs_2503_07139
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Power Allocation for Coordinated Multi-Point Aided ISAC Systems
Zou, Jianpeng
Zhong, Zhanfeng
Wang, Jintao
Shi, Zheng
Yang, Guanghua
Ma, Shaodan
Information Theory
Signal Processing
In this letter, we investigate a coordinated multiple point (CoMP)-aided integrated sensing and communication (ISAC) system that supports multiple users and targets. Multiple base stations (BSs) employ a coordinated power allocation strategy to serve their associated single-antenna communication users (CUs) while utilizing the echo signals for joint radar target (RT) detection. The probability of detection (PoD) of the CoMP-ISAC system is then proposed for assessing the sensing performance. To maximize the sum rate while ensuring the PoD for each RT and adhering to the total transmit power budget across all BSs, we introduce an efficient power allocation strategy. Finally, simulation results are provided to validate the analytical findings, demonstrating that the proposed power allocation scheme effectively enhances the sum rate while satisfying the sensing requirements.
title Power Allocation for Coordinated Multi-Point Aided ISAC Systems
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2503.07139