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Modeling the hardware power consumption of large scale antenna systems

机译:建模大型天线系统的硬件功耗

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In order to address the ever-increasing need for wireless throughput while reducing the power consumption of cellular base stations, many approaches are developed at network, base station or component level. One of the most innovative ones is known as massive MIMO or large-scale antenna systems (LSAS). By using hundreds of antennas at the base station, the system promises to offer a large throughput at reduced total radiated power. This paper presents a power model for cellular base stations and its application to LSAS. Its role is central in order to determine whether the reduced total radiated power of LSAS base stations also translates into reduced total power consumption for the base station, after taking all components supporting the many antenna chains into account. Based on the modeling outcome, LSAS turns out to be a promising approach in order to reduce the power consumption of cellular base stations by a factor 10, while offering more throughput. While the research community is working on the many interesting challenges of this technology, we can conclude that from the point of view of power consumption, it is a valid alternative to traditional designs, and it will benefit even more from technology scaling in the coming years.
机译:为了解决对无线吞吐量不断增长的需求,同时减少蜂窝基站的功耗,在网络,基站或组件级别开发了许多方法。最具创新性的系统之一是大型MIMO或大型天线系统(LSAS)。通过在基站使用数百个天线,该系统有望以降低的总辐射功率提供大吞吐量。本文介绍了蜂窝基站的功率模型及其在LSAS中的应用。在确定支持所有天线链的所有组件之后,LSAS基站降低的总辐射功率是否也转换为基站降低的总功耗,其作用至关重要。基于建模结果,LSAS成为一种有前途的方法,可以将蜂窝基站的功耗降低10倍,同时提供更高的吞吐量。尽管研究界正在研究这项技术的许多有趣挑战,但我们可以得出结论,从功耗的角度来看,它是传统设计的有效替代方案,并且它将在未来几年中受益于技术扩展。

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