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Small-sized and noise-reducing power analyzer design for low-power IoT devices

机译:适用于低功耗IoT设备的小型降噪功率分析仪设计

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Power analysis for IoT devices is strongly required to reduce power consumption and realize secure communications, where we need a small-sized power analyzer that can reduce a wide frequency range of noises is needed. In this paper, we propose a small-sized and noise-reduced power analyzer for IoT devices. We utilize a signal averaging method to reduce a wide frequency range of noises. At that time, how to implement a synchronous process between a power analyzer and a target IoT device becomes the key problem. We solve this problem by (a) using synchronization signals generated by a general-purpose I/O interface of a microprocessor and (b) introducing a data-order correction process. We analyze power/energy consumption of the encryption process of LED block cipher on the IoT device and obtain an average power of 146.3mW and energy of 3.84mJ. The proposed power analyzer is just implemented on a 5cm × 5cm board but these results only have 5% errors compared to a high-precision oscilloscope.
机译:迫切需要对IoT设备进行功率分析,以降低功耗并实现安全的通信,在这种情况下,我们需要可减小宽范围噪声范围的小型功率分析仪。在本文中,我们提出了一种用于物联网设备的小型,降噪型功率分析仪。我们利用信号平均方法来减少宽范围的噪声。当时,如何实现功率分析仪和目标物联网设备之间的同步过程成为关键问题。我们通过(a)使用由微处理器的通用I / O接口生成的同步信号,以及(b)引入数据顺序校正过程来解决此问题。我们分析了IoT设备上LED分组密码加密过程的功耗/能耗,得出平均功率为146.3mW,能量为3.84mJ。拟议的功率分析仪仅在5cm×5cm的板上实现,但与高精度示波器相比,这些结果仅具有5%的误差。

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