Intelligent reflecting surface (IRS) and device-to-device (D2D) communication are two promising technologies for improving transmission reliability between transceivers in communication systems. In this paper, we consider the design of reliable communication between the access point (AP) and actuators for a downlink multiuser multiple-input single-output (MISO) system in the industrial IoT (IIoT) scenario. We propose a two-stage protocol combining IRS with D2D communication so that all actuators can successfully receive the message from AP within a given delay. The superiority of the protocol is that the communication reliability between AP and actuators is doubly augmented by the IRS-aided first-stage transmission and the second-stage D2D transmission. A joint optimization problem of active and passive beamforming is formulated, which aims to maximize the number of actuators with successful decoding. We study the joint beamforming problem for cases where the channel state information (CSI) is perfect and imperfect. For each case, we develop efficient algorithms that include convergence and complexity analysis. Simulation results demonstrate the necessity and role of IRS with a well-optimized reflection matrix, and the D2D network in promoting reliable communication. Moreover, the proposed protocol can enable reliable communication even in the presence of stringent latency requirements and CSI estimation errors.
翻译:智能反射表面(IRS)和装置对装置对装置(D2D)通信是提高通信系统收发器之间传输可靠性的两种有希望的技术。在本文件中,我们考虑在工业IOT(IIoT)情景下行多用户多投入单发产出(MISO)系统下链接下链接多用户多投入单发产出(MISO)驱动器之间设计可靠的通信。我们提出将IRS与D2D通信相结合的两阶段协议,以便所有操作器都能在一定的延迟时间内成功接收AP的电文。协议的优势在于AP和操作器之间的通信可靠性通过IRS第一阶段辅助传输和第二阶段D2D传输而加倍增强。提出了主动和被动组合的联合优化问题,目的是使成功解码的操作器数量最大化。我们研究了频道状态信息(CSI)是完美和不完善的案例中的组合问题。我们为每个案例制定了高效的算法,其中包括统一和复杂程度分析。模拟系统(IRS)网络的精确化分析能够促进协议的准确的通信需求。