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Energy Efficiency of Partial-Cooperative Multi-cell System Based On Interference Zero-Forcing

机译:基于干扰零强制的部分合作多电池系统能效

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Recently the escalation of energy consumption in wireless communication system leads an increasing interest to consider the energy efficiency (EE) of the system. One of the possible approaches for reducing the energy consumption is base station (BS) cooperation, which is referred as coordinated multipoint (CoMP) transmission. In this paper, an energy efficient optimization problem is considered for a partial-cooperative multi-cell MIMO system. The interference zero-forcing (I-ZF) technique is proposed to solve the optimization problem. The I-ZF technique is similar to the the zero-forcing beamforming method in a single cell system. It can fully cancel the interference, which contains the inter-cell interference and intra-cell interference. Based on the I-ZF, the optimal EE and optimal power allocation are gained. We compare the optimal EE with the conventional capacity maximizing schemes. The simulation results demonstrate that the optimal EE based on I-ZF has a better EE performance than the conventional schemes. Moreover, the EE is affected by the circuit power consumption, backhaul link dissipation, path loss factor and distance between BS and the user.
机译:最近,无线通信系统中的能耗升级导致考虑系统的能效(EE)的越来越兴趣。降低能量消耗的可能方法之一是基站(BS)协作,其被称为协调多点(COMP)传输。在本文中,考虑了局部合作多单元MIMO系统的节能优化问题。提出了干扰零强制(I-ZF)技术来解决优化问题。 I-ZF技术类似于单个单元系统中的零强制波束成形方法。它可以完全取消干扰,其中包含小区间干扰和单元内干扰。基于I-ZF,获得了最佳EE和最佳功率分配。我们将最佳EE与传统的容量最大化方案进行比较。仿真结果表明,基于I-ZF的最佳EE具有比传统方案更好的EE性能。此外,EE受电路功耗,回程链路耗散,路径损耗因子和BS和用户之间的距离的影响。

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