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Low-power methods of power sensing and frequency detection for wideband vibration energy harvesting

机译:宽带振动能量收集的低功耗功率检测和频率检测方法

摘要

Power maximisation techniques in wideband vibration energy harvesting typically require the periodic sensing of input power or excitation frequency. This paper presents low- power circuits and sensing methods to obtain this information. First, an excitation frequency measurement circuit is presented that permits a reduced timer run-time compared to reported methods. Second, a power sensing method is presented, which extends the measurement range of reported techniques by adapting to the levels of the available power. Experimental results for the frequency measurement circuit tested in the range 35-51 Hz show a power consumption of 3.7 μW. The power-sensing technique is experimentally validated over a power range of 370690 μW, and its power consumption is 7.5 μW.
机译:宽带振动能量收集中的功率最大化技术通常需要对输入功率或激励频率进行周期性检测。本文介绍了低功耗电路和传感方法来获取此信息。首先,提出了一种励磁频率测量电路,与报告的方法相比,该电路可减少计时器的运行时间。其次,提出了一种功率感测方法,该方法通过适应可用功率的水平来扩展报告技术的测量范围。在35-51 Hz范围内测试的频率测量电路的实验结果表明,功耗为3.7μW。功率检测技术在370690μW的功率范围内经过实验验证,其功耗为7.5μW。

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