This letter studies the energy-efficient design in a downlink multi-antenna multi-user system consisting of a multi-antenna base station (BS) and multiple single-antenna users, by considering the practical non-linear power amplifier (PA) efficiency and the on-off power consumption of radio frequency (RF) chain at each transmit antenna. Under this setup, we jointly optimize the transmit beamforming and antenna on/off selection at the BS to minimize its total power consumption while ensuring the individual signal-to-interference-plus-noise ratio (SINR) constraints at the users. However, due to the non-linear PA efficiency and the on-off RF chain power consumption, the formulated SINR-constrained power minimization problem is highly non-convex and difficult to solve. To tackle this issue, we propose an efficient algorithm to obtain a high-quality solution based on the technique of sequential convex approximation (SCA). We provide numerical results to validate the performance of our proposed design. It is shown that at the optimized solution, the BS tends to activate fewer antennas and use higher power transmission at each antenna to exploit the non-linear PA efficiency.
翻译:这封信研究了由多线性电力基站(BS)和多个单线性电源用户组成的低链-多网性多用户系统中的节能设计,通过考虑每个传输天线传输天线的非线性电力放大器(PA)效率和无线电频率链的实时电耗,研究每个传输天线的非线性电力放大器(PA)效率和无线电频率(RF)链的实时电耗。在这个设置下,我们共同优化了BS的传输波束和连接/关闭选择的天线,以尽量减少其总电耗,同时确保用户的单个信号-干涉-加噪音比率(SINR)受限。然而,由于非线性PA的效率以及离线式电链性电耗,已拟订的SINR受限制的电源最小化问题非常非电流,而且难以解决。为了解决这一问题,我们提出了一种高效的算法,以获得高质量的解决办法,以测算出我们拟议设计的性能。我们提供了数字结果,证明在优化的解决方案下,BS倾向于激活较少的天线上,并在每个天线上使用更高的电传输天线上利用非端效率。