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Rate-Energy Balanced Precoding Design for SWIPT Based Two-Way Relay Systems

delete2021-08-01
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OA
AI
N
Navneet Garg *
J
Junkai Zhang
T
Tharmalingam Ratnarajah
DOI:10.1109/JSTSP.2021.3086736delete
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Abstract

Abstract

En 中文
Simultaneous wireless information and power transfer (SWIPT) technique is a popular strategy to convey both information and RF energy for harvesting at receivers. In this regard, we consider a two-way relay system with multiple users and a multi-antenna relay employing SWIPT strategy, where splitting the received signal leads to a rate-energy trade-off. In literature, the works on transceiver design have been studied using computationally intensive and suboptimal convex relaxation based schemes. In this paper, we study the balanced precoder design using chordal distance (CD) decomposition, which incurs much lower complexity, and is flexible to dynamic energy requirements. It is analyzed that given a non-negative value of CD, the achieved harvested energy for the proposed balanced precoder is higher than that for the perfect interference alignment (IA) precoder. The corresponding loss in sum rates is also analyzed via an upper bound. Simulation results add that the IA schemes based on mean-squared error are better suited for the SWIPT maximization than the subspace alignment-based methods.
Keywords:
Relays
Interference
Precoding
Transceivers
Decoding
Covariance matrices
Signal processing algorithms
Simultaneous wireless information and power transfer (SWIPT)
two-way relay
rate-energy balanced precoding design
interference alignment
chordal distance
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Journal

IEEE Journal of Selected Topics in Signal Processing cover
IEEE Journal of Selected Topics in Signal Processing
IF:
13.7
Papers:
1.9K
Citations:
1.1W

Organization

U
University of Edinburgh
Scholars:
5.1W
Papers: 4.6W
Citations: 71