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Optimal MIMO Multicast Transceiver Design for Simultaneous Information and Power Transfer

机译:同时进行信息和功率传输的最优MIMO组播收发器设计

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摘要

We consider transceiver design for a MIMO multicast channel for simultaneous wireless information and power transfer. We assume that common information is intended for a subset of users, called information decoders (IDs), and the other users, called energy harvesters (EHs), harvest energy from the received signals. Assuming linear receivers at the IDs, we jointly design the precoder at the source and the receivers at the IDs according to two criteria. In the first criterion, we minimize the worst case mean square error (MSE) under source transmit power and harvested energy constraints. In the second criterion, we maximize the total harvested energy at the EHs under source transmit power and worst case MSE constraints. We formulate both problems as semidefinite programming (SDP) problems that we optimally solve using interior point algorithms. Simulation results show the importance of designing the transceivers to achieve a desired tradeoff among the source transmit power, MSEs at the IDs, and harvested energy at the EHs.
机译:我们考虑针对同时进行无线信息和功率传输的MIMO多播信道进行收发器设计。我们假设公共信息旨在提供给用户的一个子集,称为信息解码器(ID),其他用户称为能量收集器(EH),它们从接收到的信号中收集能量。假设ID处为线性接收器,我们根据两个标准共同设计源处的预编码器和ID处的接收器。在第一个标准中,我们在源发射功率和收获的能量约束下最小化了最坏情况的均方误差(MSE)。在第二个标准中,我们在源发射功率和最坏情况下的MSE约束下最大化EH处的总收获能量。我们将这两个问题都表述为半定规划(SDP)问题,可以使用内部点算法来最佳解决。仿真结果表明,设计收发器以在源发射功率,ID处的MSE和EH处收集的能量之间实现所需折衷的重要性。

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