The design of an RIS-assisted FDMA wireless sensor network for sum throughput maximization

In this article, we consider a reconfigurable intelligent surface (RIS)-assisted wireless sensor network (WSN), where sensors transmit data to a fusion center (FC) via the frequency division multiple access (FDMA) protocol. This sensor network leverages the capabilities of a primary network equipped...

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Published inComputer networks (Amsterdam, Netherlands : 1999) Vol. 270; p. 111512
Main Authors Ghasemi, Omid Abachian, Azghani, Masoumeh, Amirani, Mehdi Chehel
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.10.2025
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Abstract In this article, we consider a reconfigurable intelligent surface (RIS)-assisted wireless sensor network (WSN), where sensors transmit data to a fusion center (FC) via the frequency division multiple access (FDMA) protocol. This sensor network leverages the capabilities of a primary network equipped with an RIS during periods of primary network inactivity. Power and bandwidth allocation, along with RIS phase shifts, are optimized to maximize sum-throughput (the performance metric), subject to constraints on total power and minimum sensor throughput. This optimization enables higher sum-throughput without increasing total energy consumption or bandwidth requirements. The non-convex optimization problem is tackled using a block coordinate descent (BCD) technique. This technique decomposes the problem into the three subproblems: power allocation subproblem, which is a convex subproblem solved using the Lagrange Dual Method (LDM) and the Karush-Kuhn–Tucker (KKT) conditions; the bandwidth allocation subproblem, which, due to its convexity, is solved similarly; and finally, the RIS phase shift adjustment subproblem, which is solved using gradient ascent. The BCD algorithm iteratively optimizes these subproblems until convergence is achieved. Numerical results demonstrate the superiority of the proposed scheme over its counterparts across various simulation scenarios. For instance, the proposed method with a 100-element RIS can improve the sum-throughput by approximately 50% compared to a conventional FDMA system.
AbstractList In this article, we consider a reconfigurable intelligent surface (RIS)-assisted wireless sensor network (WSN), where sensors transmit data to a fusion center (FC) via the frequency division multiple access (FDMA) protocol. This sensor network leverages the capabilities of a primary network equipped with an RIS during periods of primary network inactivity. Power and bandwidth allocation, along with RIS phase shifts, are optimized to maximize sum-throughput (the performance metric), subject to constraints on total power and minimum sensor throughput. This optimization enables higher sum-throughput without increasing total energy consumption or bandwidth requirements. The non-convex optimization problem is tackled using a block coordinate descent (BCD) technique. This technique decomposes the problem into the three subproblems: power allocation subproblem, which is a convex subproblem solved using the Lagrange Dual Method (LDM) and the Karush-Kuhn–Tucker (KKT) conditions; the bandwidth allocation subproblem, which, due to its convexity, is solved similarly; and finally, the RIS phase shift adjustment subproblem, which is solved using gradient ascent. The BCD algorithm iteratively optimizes these subproblems until convergence is achieved. Numerical results demonstrate the superiority of the proposed scheme over its counterparts across various simulation scenarios. For instance, the proposed method with a 100-element RIS can improve the sum-throughput by approximately 50% compared to a conventional FDMA system.
ArticleNumber 111512
Author Ghasemi, Omid Abachian
Azghani, Masoumeh
Amirani, Mehdi Chehel
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  givenname: Mehdi Chehel
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  email: m.amirani@urmia.ac.ir
  organization: Electrical and Computer Engineering Department, Urmia University, Urmia, Iran
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Keywords Reconfigurable intelligent surface (RIS)
Frequency-division multiple access (FDMA)
Block coordinate descent (BCD)
Power allocation
Resource allocation
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Snippet In this article, we consider a reconfigurable intelligent surface (RIS)-assisted wireless sensor network (WSN), where sensors transmit data to a fusion center...
SourceID crossref
elsevier
SourceType Index Database
Publisher
StartPage 111512
SubjectTerms Block coordinate descent (BCD)
Frequency-division multiple access (FDMA)
Power allocation
Reconfigurable intelligent surface (RIS)
Resource allocation
Title The design of an RIS-assisted FDMA wireless sensor network for sum throughput maximization
URI https://dx.doi.org/10.1016/j.comnet.2025.111512
Volume 270
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