In practice, residual transceiver hardware impairments inevitably lead to distortion noise which causes the performance loss. In this paper, we study the robust transmission design for a reconfigurable intelligent surface (RIS)-aided secure communication system in the presence of transceiver hardware impairments. We aim for maximizing the secrecy rate while ensuring the transmit power constraint on the active beamforming at the base station and the unit-modulus constraint on the passive beamforming at the RIS. To address this problem, we adopt the alternate optimization method to iteratively optimize one set of variables while keeping the other set fixed. Specifically, the successive convex approximation (SCA) method is used to solve the active beamforming optimization subproblem, while the passive beamforming is obtained by using the semidefinite program (SDP) method. Numerical results illustrate that the proposed transmission design scheme is more robust to the hardware impairments than the conventional non-robust scheme that ignores the impact of the hardware impairments.
翻译:在实践中,残余收发机硬件缺陷不可避免地导致扭曲噪音,导致性能损失。在本文中,我们研究在收发机硬件缺陷的情况下,可重新配置智能表面(RIS)辅助的安全通信系统的可靠传输设计;我们的目标是最大限度地提高保密率,同时确保基站主动波束的传输力限制和对IRS被动波束的单位模量限制。为了解决这一问题,我们采用了替代优化方法,在保持另一套固定的同时,迭代优化一组变量。具体地说,连续的电流近似(SCA)方法用于解决主动成形优化次问题,而被动波形形成则通过使用半成型程序(SDP)方法获得。数字结果表明,拟议的传输设计方案比忽视硬件损伤影响的常规非紫外计划更能。