The problem of simultaneously optimizing the information rate and the harvested power in a reconfigurable intelligent surface (RIS)-aided multiple-input single-output downlink wireless network with simultaneous wireless information and power transfer (SWIPT) is addressed. The beamforming vectors, RIS reflection coefficients, and power split ratios are jointly optimized subject to maximum power constraints, minimum harvested power constraints, and realistic constraints on the RIS reflection coefficients. A practical algorithm is developed through an interplay of alternating optimization, sequential optimization, and pricing-based methods. Numerical results show that the deployment of RISs can significantly improve the information rate and the amount of harvested power.
翻译:在可重新配置的智能表面(RIS)辅助的多投入单输出单输出下线无线网络中,同时提供无线信息和电源传输(SWIPT),同时优化信息率和收成功率的问题得到了解决;波束成型矢量、RIS反射系数和电源分离比率得到了共同优化,但受最大功率限制、最低收成功率限制和对RIS反射系数的现实制约;通过交替优化、顺序优化和定价方法的相互作用,形成了实用算法。