Holographic Multiple Input Multiple Output (HMIMO), which integrates massive antenna elements into a compact space to achieve a spatially continuous aperture, plays an important role in future wireless networks. With numerous antenna elements, it is hard to implement the HMIMO via phased arrays due to unacceptable power consumption. To address this issue, reconfigurable refractive surface (RRS) is an energy efficient enabler of HMIMO since the surface is free of expensive phase shifters. Unlike traditional metasurfaces working as passive relays, the RRS is used as transmit antennas, where the far-field approximation does not hold anymore, urging a new performance analysis framework. In this letter, we first derive the data rate of an RRS-based single-user downlink system, and then compare its power consumption with the phased array. Simulation results verify our analysis and show that the RRS is an energy-efficient way to HMIMO.
翻译:将大型天线元素整合到紧凑空间以实现空间连续孔径(HIMIMO),在将来无线网络中发挥重要作用。许多天线元素由于无法接受的电力消耗,很难通过分期阵列实施HIMO。为解决这一问题,可重新配置的折流表(RRS)是HIMO的一个节能推进器,因为表层没有昂贵的相位转换器。与传统的作为被动中继器的元表不同,RRS被用作传输天线,远地近似不再维持,敦促新的性能分析框架。在本信里,我们首先得出基于RRS的单一用户下行链路系统的数据率,然后将其能量消耗与分阶段阵列进行比较。模拟结果证实了我们的分析,并表明RRS是通往HIMIMO的节能方式。