OAK

Optimal Operation of Active RIS-Aided Wireless Powered Communications in IoT Networks

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Abstract
Wireless-powered communications (WPCs) are increasingly crucial for extending the lifespan of low-power Internet of Things (IoT) devices. Furthermore, reconfigurable intelligent surfaces (RISs) can create favorable electromagnetic environments by providing alternative signal paths to counteract blockages. The strategic integration of WPC and RIS technologies can significantly enhance energy transfer and data transmission efficiency. However, passive RISs suffer from double-fading attenuation over RIS-aided cascaded links. In this article, we propose the application of an active RIS within WPC-enabled IoT networks. The enhanced flexibility of the active RIS in terms of energy transfer and information transmission is investigated using adjustable parameters. We derive novel closed-form expressions for the ergodic rate and outage probability by incorporating key parameters, including signal amplification, active noise, power consumption, and phase quantization errors. Additionally, we explore the optimization of WPC scenarios, focusing on the time-switching factor and power consumption of the active RIS. The results validate our analysis, demonstrating that an active RIS significantly enhances WPC performance compared to a passive RIS.
Author(s)
이준세Waqas KhalidAlexandros-Apostolos A. BoulogeorgosTrinh Van ChienHowon LeeHeejung Yu
Issued Date
2025-01-01
Type
Article
Keyword
무선통신
DOI
10.1109/JIOT.2024.3461814
URI
http://repository.sungshin.ac.kr/handle/2025.oak/8615
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
ISSN
2327-4662
Appears in Collections:
AI융합학부 > 학술논문
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