» Articles » PMID: 30297680

Beamforming Design for Full-Duplex SWIPT with Co-Channel Interference in Wireless Sensor Systems

Overview
Journal Sensors (Basel)
Publisher MDPI
Specialty Biotechnology
Date 2018 Oct 10
PMID 30297680
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

The simultaneous wireless information and power transfer (SWIPT) technique has been regarded as an appealing approach to prolong the lifetime of wireless sensor networks. However, co-channel interferences with SWIPT in wireless networks have not been investigated from a green communication perspective. In this paper, joint transmit and receive beamforming design for a full-duplex multiple-input multiple-output amplify-and-forward relay system with simultaneous wireless information and power transfer in WSNs is investigated. Multiple co-channel interferers are considered at the relay and destination sensor nodes. To minimize the mean-squared-error of the system, joint source and relay beamforming optimization is proposed while guaranteeing the transmit power constraints and destination's energy harvesting constraint. An iterative algorithm based on alternating optimization with successive convex approximation which converges to a local optimum is proposed to solve the non-convex problem. Moreover, a low-complexity scheme is derived to reduce the computational complexity. Simulations for MSE versus iterations and MSE versus signal-to-noise ratio (SNR) demonstrate the convergence and good performance of the proposed schemes.

Citing Articles

Joint Source-Relay Optimization for MIMO Full-Duplex Bidirectional Wireless Sensor Networks with SWIPT.

Liu D, Wen Z, Liu X, Li S, Zou J Sensors (Basel). 2019; 19(8).

PMID: 30999601 PMC: 6515402. DOI: 10.3390/s19081827.


Robust Distributed Collaborative Beamforming for Wireless Sensor Networks with Channel Estimation Impairments.

Smida O, Zaidi S, Affes S, Valaee S Sensors (Basel). 2019; 19(5).

PMID: 30832314 PMC: 6427758. DOI: 10.3390/s19051061.


Joint Source and Relay Beamforming Design in Wireless Multi-Hop Sensor Networks with SWIPT.

Liu X, Wen Z, Liu D, Zou J, Li S Sensors (Basel). 2019; 19(1).

PMID: 30621364 PMC: 6339223. DOI: 10.3390/s19010182.

References
1.
Li S, Zhou X, Wang C, Yuan D, Zhang W . Joint Transmit Power Allocation and Splitting for SWIPT Aided OFDM-IDMA in Wireless Sensor Networks. Sensors (Basel). 2017; 17(7). PMC: 5539895. DOI: 10.3390/s17071566. View

2.
Yu H, Zhang Y, Guo S, Yang Y, Ji L . Energy Efficiency Maximization for WSNs with Simultaneous Wireless Information and Power Transfer. Sensors (Basel). 2017; 17(8). PMC: 5579579. DOI: 10.3390/s17081906. View

3.
Lu W, Lin Y, Peng H, Nan T, Liu X . Joint Resource Optimization for Cognitive Sensor Networks with SWIPT-Enabled Relay. Sensors (Basel). 2017; 17(9). PMC: 5621059. DOI: 10.3390/s17092093. View

4.
Tang X, Cai Y, Yang W, Yang W, Chen D, Hu J . Secure Transmission of Cooperative Zero-Forcing Jamming for Two-User SWIPT Sensor Networks. Sensors (Basel). 2018; 18(2). PMC: 5856085. DOI: 10.3390/s18020331. View