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Mode Selection and Power Optimization for Energy Efficiency in Uplink Virtual MIMO Systems

机译:上行虚拟MIMO系统中能效的模式选择和功率优化

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Driven by green communications, energy-efficient transmission is becoming an important design criterion for wireless systems, aiming to extend the life cycle of batteries in mobile devices. In this paper, we tackle the energy efficiency (EE) issue in uplink virtual multiple-input multiple-output (MIMO) systems, which requires the optimization of two interlaced parameters: the number of constituent mobile users in the virtual MIMO and their corresponding power allocation. The former parameter is a structural parameter defining the size of the virtual MIMO (usually known as the transmission mode) and its optimization relies on the method of enumeration. The difficulty is further aggravated by the fact that the EE is a non-convex function of power, even for a given transmission mode. By exploiting the fact that increasing the number of active users can increase the number of contributors to the total EE on one hand but reducing the diversity order for each single user on the other, we can show the existence of an optimal transmission mode and find a simple way for its search. Through in-depth analysis, we show the existence of a unique globally optimal power allocator for the case without power constraints under the assumption of zero-forcing receivers, and further reveal the impact of power constraints upon power allocation, as compared to its global counterpart, aiming to provide a powerful means for power-constrained EE optimization. Finally, we establish theories, for isometric networks, to narrow down the search range for possible transmission modes, leading to a significant reduction of computational complexity in optimization. Simulation results are presented to substantiate the proposed schemes and the corresponding theories.
机译:在绿色通信的推动下,节能传输已成为无线系统的重要设计标准,旨在延长移动设备中电池的使用寿命。在本文中,我们解决了上行链路虚拟多输入多输出(MIMO)系统中的能源效率(EE)问题,该问题要求优化两个交错参数:虚拟MIMO中的组成移动用户数量及其相应功率分配。前一个参数是定义虚拟MIMO大小的结构参数(通常称为传输模式),其优化依赖于枚举方法。即使对于给定的传输模式,EE也是功率的非凸函数,这进一步加剧了这一困难。通过利用增加活跃用户数量一方面可以增加总EE贡献者数量,另一方面减少每个单个用户的分集顺序这一事实,我们可以证明存在最佳传输模式并找到一个搜索的简单方法。通过深入的分析,我们显示了在零强制接收器的假设下针对无功率约束的情况存在唯一的全局最优功率分配器,并进一步揭示了功率约束对其功率分配的影响(与它的全局对应值相比) ,旨在为功率受限的EE优化提供强大的手段。最后,我们建立了等距网络的理论,以缩小可能的传输模式的搜索范围,从而显着降低了优化过程中的计算复杂性。仿真结果表明了所提出的方案和相应的理论。

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