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An Empirical NB-IoT Power Consumption Model for Battery Lifetime Estimation

机译:电池寿命估算的经验NB-IoT功耗模型

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The NB-IoT radio technology is a key enabler of the wireless Internet of Things. A competitive parameter is device battery lifetime, in addition to wide-area coverage and low device cost. In this paper, we present the first publicly available empirical power consumption measurements on two NB-IoT devices. The target is to provide a power consumption model for Internet of Things battery lifetime estimation. The measurement results show that the two devices consume 710-840 mW when transmitting at 23 dBm, due to a power amplifier efficiency of about 37 %. Receiving control and data channels require 210- 240 mW, while the Discontinuous Reception and Power Save Mode sleep states consume 21-23 mW and 14-35 uW, respectively. In general, the power consumption levels are higher than the 3GPP estimates, and we thus estimate the battery lifetime is 21-85 % shorter, with these first generation devices.
机译:NB-IoT无线电技术是无线物联网的关键推动力。竞争性参数是设备的电池寿命,以及广域覆盖和低设备成本。在本文中,我们介绍了在两个NB-IoT设备上首次公开可用的经验性功耗测量。目标是为物联网电池寿命估算提供功耗模型。测量结果表明,由于功率放大器的效率约为37 \%,因此这两个设备在23 dBm发射时消耗710-840 mW。接收控制和数据通道需要210-240 mW,而“不连续接收”和“省电模式”睡眠状态分别消耗21-23 mW和14-35 uW。通常,功耗水平高于3GPP的估计值,因此,我们估计这些第一代设备的电池寿命缩短了21-85%。

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