Power scheduling for MSE minimization with peak and average power constraints

D. Nguyen, L. Le, T. Le-Ngoc
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Abstract

This paper considers the problem of precoding design and power scheduling in a multiple-input multiple-out (MIMO) system, assuming channel state information (CSI) availability at both the receiver and the transmitter. We derive an optimal power scheduling policy in time and space to minimize the ergodic summation of the mean squared error (MSE) subject to both peak (short-term) and average (long-term) power constraints. By applying a rotation matrix to the MIMO precoder, we also propose a suboptimal power scheduling policy to improve the bit error rate (BER) performance. We then obtain a closed-form solution to the power scheduling strategy for identically and independently distributed (i.i.d.) Rayleigh fading channels. Numerical results shows that the peak power constraint does not have a great effect on the power scheduling policy at the mid-signal-to-noise region. Numerical results also show the improvement in terms of MSE and BER performance by the proposed power scheduling policy over allocation schemes in space only.
峰值和平均功率约束下MSE最小化的功率调度
本文研究了多输入多输出(MIMO)系统中,假设接收端和发送端信道状态信息(CSI)可用的预编码设计和功率调度问题。我们在时间和空间上推导了一个最优的电力调度策略,以最小化受峰值(短期)和平均(长期)功率约束的均方误差(MSE)的遍历总和。通过将旋转矩阵应用于MIMO预编码器,我们还提出了一种次优功率调度策略,以提高误码率(BER)性能。在此基础上,我们得到了相同和独立分布(i.i.d)的电力调度策略的封闭解。瑞利衰落信道。数值结果表明,峰值功率约束对中信噪区功率调度策略影响不大。数值结果还表明,与空间分配方案相比,所提出的功率调度策略在MSE和BER性能方面有所改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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