Per-Antenna Constant Envelope Precoding for Secure Transmission in Large-Scale MISO Systems
Jun Zhu, Ning Wang, Vijay K. Bhargava

TL;DR
This paper introduces a novel per-antenna constant envelope precoding scheme for secure large-scale MISO systems, enabling joint signal and artificial noise transmission without extra power, enhancing security and efficiency.
Contribution
It proposes a two-stage precoding scheme for secure transmission under CE constraints, including an iterative AN generation method and a low-complexity alternative.
Findings
Achievable secrecy rate is analyzed and compared with linear precoding.
Joint signal-plus-AN scheme does not require additional transmit power.
A low-complexity AN generation method is proposed.
Abstract
Secure transmission in large-scale MISO systems employing artificial noise (AN) is studied under the per-antenna constant envelope (CE) constraint. Achievable secrecy rate of the per-antenna CE precoding scheme for large-scale MISO is analyzed and compared with that of the matched filter linear precoding. A two-stage per-antenna CE precoding scheme for joint signal-plus-AN transmission is proposed. The first stage determines the per-antenna CE precoding for the information-bearing signal. A properly generated AN using an iteration algorithm is incorporated into the transmit signal in the second stage such that the combined signal-plus-AN satisfies the per-antenna CE constraint and the AN is orthogonal to the user channel. It is shown that compared to conventional per-antenna CE transmission, this joint signal-plus-AN secure transmission scheme does not require additional transmit power.…
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