Effect of Power Conversion Efficiency of the RF Energy Harvester on the Security and Data Rate of the Self-Sustainable IoT Devices

Fariborz Lohrabi Pour, D. Ha
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Abstract

This paper presents a study on the impact of the power conversion efficiency (PCE) of RF energy harvesters on the performance of wireless Internet-of-Things (IoT) devices including the sampling rate and data security. An RF energy harvester to harvest energy from the career frequency of 2.64 GHz is designed and prototyped for measurements. A microcontroller unit (MCU) adopts Tiny Encryption Algorithm (TEA) with a 128-bit key for data encryption. Measurement results indicate that as the amount of energy harvested increases, the maximum sampling rate and the security of the data can also increase. It implies the power conversion efficiency (PCE) impacts on both the data rate and data security of self-powered wireless IoT devices.
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射频能量采集器功率转换效率对自续物联网设备安全性和数据速率的影响
本文研究了射频能量采集器的功率转换效率(PCE)对无线物联网(IoT)设备性能的影响,包括采样率和数据安全性。设计并制作了用于测量的射频能量采集器,用于采集2.64 GHz工作频率的能量。单片机采用微型加密算法(TEA),采用128位密钥对数据进行加密。测量结果表明,随着能量采集量的增加,最大采样率和数据的安全性也会提高。这意味着功率转换效率(PCE)对自供电无线物联网设备的数据速率和数据安全性都有影响。
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