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How Energy-Efficient Can a Wireless Communication System Become?

机译:无线通信系统如何节能?

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The data traffic in wireless networks is steadily growing. The long-term trend follows Cooper's law, where the traffic is doubled every two-and-a-half year, and it will likely continue for decades to come. The data transmission is tightly connected with the energy consumption in the power amplifiers, transceiver hardware, and baseband processing. The relation is captured by the energy efficiency metric, measured in bit/Joule, which describes how much energy is consumed per correctly received information bit. While the data rate is fundamentally limited by the channel capacity, there is currently no clear understanding of how energy-efficient a communication system can become. Current research papers typically present values on the order of 10 Mbit/Joule, while previous network generations seem to operate at energy efficiencies on the order of 10 kbit/Joule. Is this roughly as energy-efficient future systems (5G and beyond) can become, or are we still far from the physical limits? These questions are answered in this paper. We analyze a different cases representing potential future deployment and hardware characteristics.
机译:无线网络中的数据流量正在稳步增长。长期趋势遵循库珀定律,在该定律下,流量每两年半增加一倍,并且很可能会持续数十年。数据传输与功率放大器,收发器硬件和基带处理中的能耗紧密相关。该关系通过以位/焦耳为单位的能效度量来捕获,该度量描述了每个正确接收的信息位消耗了多少能量。尽管数据速率从根本上受到信道容量的限制,但目前尚不清楚通信系统的能效如何。当前的研究论文通常给出的值约为10 Mbit /焦耳,而前几代网络似乎以10 kbit /焦耳的能量效率运行。这是否大致可以实现节能的未来系统(5G及更高版本),还是距离物理极限还很远?本文回答了这些问题。我们分析了代表未来潜在部署和硬件特性的不同情况。

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