In this paper, we examine the potential for a reconfigurable intelligent surface (RIS) to be powered by energy harvested from information signals. This feature might be key to reap the benefits of RIS technology's lower power consumption compared to active relays. We first identify the main RIS power-consuming components and then propose an energy harvesting and power consumption model. Furthermore, we formulate and solve the problem of the optimal RIS placement together with the amplitude and phase response adjustment of its elements in order to maximize the signal-to-noise ratio (SNR) while harvesting sufficient energy for its operation. Finally, numerical results validate the autonomous operation potential and reveal the range of power consumption values that enables it.
翻译:在本文中,我们研究了从信息信号中获取的能量为可重新配置的智能表面提供动力的可能性,这一特征可能是获得RIS技术比主动继电器低电消耗的好处的关键,我们首先确定主要的RIS耗电组件,然后提出能源采集和电力消费模式,此外,我们制定并解决了将RIS与其元素的振幅和分阶段反应调整相结合的最佳配置问题,以便最大限度地实现信号对噪音比率(SNR),同时收集足够的运行能量。最后,数字结果验证了自主运行的潜力,并揭示了能够使其运行的电力消费值的范围。