How Green Networking May Harm Your IoT Network: Impact of Transmit Power Reduction at Night on NB-IoT Performance

Pascal Jörke, C. Wietfeld
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Abstract

While green networking saves energy and money on base station sites, the impact on IoT devices must also be studied. Signal strength measurements show that in NB-IoT networks base stations reduce the transmit power at night or even shutoff, forcing NB-IoT devices to switch in remaining cells with worse signal strength. Therefore, this paper analyzes the impact of downlink transmission power reduction at night on the latency, energy consumption, and battery lifetime of NB-IoT devices. For this purpose, extensive latency and energy measurements of acknowledged NB-IoT uplink data transmissions have been performed for various signal strength values. The results show that devices experience increased latency by up to a factor of 3.5 when transmitting at night, depending on signal strength. In terms of energy consumption, a single data transmission uses up to 3.2 times more energy. For a 5Wh battery, a weak downlink signal at night reduces the device battery lifetime by up to 4 years on a single battery. Devices at the cell edge may even lose the cell connectivity and enter a high power cell search state, reducing the average battery lifetime of these devices to as low as 1 year. Therefore, transmit power reduction at night and cell shut-offs should be minimized or avoided for NB-IoT networks.
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绿色网络如何损害您的物联网网络:夜间传输功率降低对NB-IoT性能的影响
虽然绿色网络可以为基站节省能源和资金,但对物联网设备的影响也必须进行研究。信号强度测量表明,在NB-IoT网络中,基站在夜间降低甚至关闭发射功率,迫使NB-IoT设备在剩余的信号强度较差的小区中切换。因此,本文分析了夜间下行传输功率降低对NB-IoT设备延迟、能耗和电池寿命的影响。为此,针对各种信号强度值,对已确认的NB-IoT上行数据传输进行了广泛的延迟和能量测量。结果表明,设备在夜间传输时,根据信号强度的不同,延迟增加了3.5倍。在能耗方面,单次数据传输的能耗高达3.2倍。对于5Wh的电池,夜间微弱的下行信号会使设备的电池寿命减少4年。电池边缘的设备甚至可能失去电池连接,进入高功率电池搜索状态,使这些设备的平均电池寿命低至1年。因此,对于NB-IoT网络,应尽量减少或避免夜间传输功率降低和小区关闭。
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