This work peruses a simultaneous transmitting and reflecting reconfigurable intelligent surface (STAR-RIS) based wireless system wherein untrusted energy harvesting nodes wiretap the legitimate signal. The achievable secrecy rate and the harvested energy for multicast communication are computed as functions of STAR-RIS transmission and reflection coefficients (TARCs). Thus, to maximize the secrecy rate while satisfying the minimum required harvested energies, the non-convex optimization problem is investigated. By using the Dinkelbach transformation and semi-definite relaxation technique, the optimization problem is transformed into a convex problem. Eventually, the numerical results are reported to specify the effects of the size of the STAR-RIS and optimizing its TARCs elements on magnifying the secrecy rate-energy harvesting region.
翻译:这项工作浏览了同步传输和反映可重新配置的智能表面(STAR-RIS)的无线系统,其中不可靠的能源采集节点对合法信号进行窃听;可实现的保密率和多频通信所获取的能量是作为STAR-RIS传输和反射系数(TARCs)的函数计算的;因此,为了最大限度地提高保密率,同时满足最低要求的吸收能量,对非碳化物优化问题进行了调查;通过使用Dinkelbach转换和半无限放松技术,优化问题变成了一个锥体问题;最终,报告的数字结果将具体说明STAR-RIS规模的影响,并优化其TARCs对扩大保密率-能源采集区域的影响。