Performance Analysis of Integrated Data and Energy Transfer Assisted by Fluid Antenna Systems

Fuente: arXiv
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Main Authors: Lin, Xiao, Yang, Halvin, Zhao, Yizhe, Hu, Jie, Wong, Kai-Kit
Format: Preprint
Published: 2023
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author Lin, Xiao
Yang, Halvin
Zhao, Yizhe
Hu, Jie
Wong, Kai-Kit
author_facet Lin, Xiao
Yang, Halvin
Zhao, Yizhe
Hu, Jie
Wong, Kai-Kit
contents Fluid antenna multiple access (FAMA) is capable of exploiting the high spatial diversity of wireless channels to mitigate multi-user interference via flexible port switching, which achieves a better performance than traditional multi-input-multi-output (MIMO) systems. Moreover, integrated data and energy transfer (IDET) is able to provide both the wireless data transfer (WDT) and wireless energy transfer (WET) services towards low-power devices. In this paper, a FAMA assisted IDET system is studied, where $N$ access points (APs) provide dedicated IDET services towards $N$ user equipments (UEs). Each UE is equipped with a single fluid antenna. The performance of WDT and WET , i.e., the WDT outage probability, the WET outage probability, the reliable throughput and the average energy harvesting amount, are analysed theoretically by using time switching (TS) between WDT and WET. Numerical results validate our theoretical analysis, which reveals that the number of UEs and TS ratio should be optimized to achieve a trade-off between the WDT and WET performance. Moreover, FAMA assisted IDET achieves a better performance in terms of both WDT and WET than traditional MIMO with the same antenna size.
format Preprint
id arxiv_https___arxiv_org_abs_2311_07134
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Performance Analysis of Integrated Data and Energy Transfer Assisted by Fluid Antenna Systems
Lin, Xiao
Yang, Halvin
Zhao, Yizhe
Hu, Jie
Wong, Kai-Kit
Information Theory
Signal Processing
Fluid antenna multiple access (FAMA) is capable of exploiting the high spatial diversity of wireless channels to mitigate multi-user interference via flexible port switching, which achieves a better performance than traditional multi-input-multi-output (MIMO) systems. Moreover, integrated data and energy transfer (IDET) is able to provide both the wireless data transfer (WDT) and wireless energy transfer (WET) services towards low-power devices. In this paper, a FAMA assisted IDET system is studied, where $N$ access points (APs) provide dedicated IDET services towards $N$ user equipments (UEs). Each UE is equipped with a single fluid antenna. The performance of WDT and WET , i.e., the WDT outage probability, the WET outage probability, the reliable throughput and the average energy harvesting amount, are analysed theoretically by using time switching (TS) between WDT and WET. Numerical results validate our theoretical analysis, which reveals that the number of UEs and TS ratio should be optimized to achieve a trade-off between the WDT and WET performance. Moreover, FAMA assisted IDET achieves a better performance in terms of both WDT and WET than traditional MIMO with the same antenna size.
title Performance Analysis of Integrated Data and Energy Transfer Assisted by Fluid Antenna Systems
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2311.07134