Secure SWIPT Networks Based on a Non-Linear Energy Harvesting Model

Boshkovska E, Zlatanov N, Dai L, Wing Kwan Ng D, Schober R (2017)


Publication Language: English

Publication Type: Conference contribution

Publication year: 2017

Event location: San Francisco, CA US

ISBN: 978-1-5090-5908-9

DOI: 10.1109/WCNCW.2017.7919062

Abstract

We optimize resource allocation to enable com- munication security in simultaneous wireless information and power transfer (SWIPT) for internet-of-things (IoT) networks. The resource allocation algorithm design is formulated as a non-convex optimization problem. We aim at maximizing the total harvested power at energy harvesting (EH) receivers via the joint optimization of transmit beamforming vectors and the covariance matrix of the artificial noise injected to facilitate secrecy provisioning. The proposed problem formulation takes into account the non-linearity of energy harvesting circuits and the quality of service requirements for secure communication. To obtain a globally optimal solution of the resource allocation problem, we first transform the resulting non-convex sum-of- ratios objective function into an equivalent objective function in parametric subtractive form, which facilitates the design of a novel iterative resource allocation algorithm. In each iteration, the semidefinite programming (SDP) relaxation approach is adopted to solve a rank-constrained optimization problem optimally. Nu- merical results reveal that the proposed algorithm can guarantee communication security and provide a significant performance gain in terms of the harvested energy compared to existing designs which are based on the traditional linear EH model.

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How to cite

APA:

Boshkovska, E., Zlatanov, N., Dai, L., Wing Kwan Ng, D., & Schober, R. (2017). Secure SWIPT Networks Based on a Non-Linear Energy Harvesting Model. In IEEE (Eds.), Proceedings of the 2017 IEEE Wireless Communications and Networking Conference Workshops (WCNCW). San Francisco, CA, US.

MLA:

Boshkovska, Elena, et al. "Secure SWIPT Networks Based on a Non-Linear Energy Harvesting Model." Proceedings of the 2017 IEEE Wireless Communications and Networking Conference Workshops (WCNCW), San Francisco, CA Ed. IEEE, 2017.

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