Reconfigurable intelligent surface (RIS) assisted radio is considered as an enabling technology with great potential for the sixth-generation (6G) wireless communications standard. The achievable secrecy rate (ASR) is one of the most fundamental metrics to evaluate the capability of facilitating secure communication for RIS-assisted systems. However, the definition of ASR is based on Shannon's information theory, which generally requires long codewords and thus fails to quantify the secrecy of emerging delay-critical services. Motivated by this, in this paper we investigate the problem of maximizing the secrecy rate under a delay-limited quality-of-service (QoS) constraint, termed as the effective secrecy rate (ESR), for an RIS-assisted multiple-input single-output (MISO) wiretap channel subject to a transmit power constraint. We propose an iterative method to find a stationary solution to the formulated non-convex optimization problem using a block coordinate ascent method (BCAM), where both the beamforming vector at the transmitter as well as the phase shifts at the RIS are obtained in closed forms in each iteration. We also present a convergence proof, an efficient implementation, and the associated complexity analysis for the proposed method. Our numerical results demonstrate that the proposed optimization algorithm converges significantly faster that an existing solution. The simulation results also confirm that the secrecy rate performance of the system with stringent delay requirements reduce significantly compared to the system without any delay constraints, and that this reduction can be significantly mitigated by an appropriately placed large-size RIS.
翻译:可以重新配置的智能表面(RIS)协助的无线电被认为是一种赋能技术,对第六代(6G)无线通信标准具有巨大潜力。可实现的保密率(ASR)是评价为RIS协助的系统提供安全通信能力的最基本衡量标准之一。然而,ASR的定义是基于香农的信息理论,通常需要长的编码,因此无法量化新出现的延迟关键服务的保密性。根据这一点,我们在本文件中调查了在服务质量限制(QOS)限制(称为有效保密率(ESR)下最大限度地提高保密率的问题,这是评估为RIS协助的多输入单输出单输出(MISO)电路进行安全通信的能力的最基本衡量标准之一。我们提出了一个迭代方法,以便用块协调法(BCAM)找到一个固定的解决方案,使发送器的病媒变形变异,使RIS的阶段变异以封闭式形式获得,称为有效保密率的保密率(ESR ) 。我们还提出一个高效的升级率分析,用以大幅降低现有系统变异性要求,并大大降低现有精确性分析。我们提出的精确度分析。一个高效的升级的系统,以降低现有精确性计算结果,以大幅降低现行的精确性分析。我们提出的精确性分析。提出一个有效的升级率,以证明。