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Implementation of Reactive and Resistive Load Matching for Optimal Energy Harvesting from Piezoelectric Generators

机译:压电发电机最佳能量收集反应性和电阻载荷的实现

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This paper discusses the implementation of an equivalent resistive-reactive load for the optimum energy harvesting from vibration sources. In photovoltaic applications, the converter impedance that ensures the maximum power is real and the Maximum Power Point Tracker (MPPT) uses a single variable optimization algorithm (resistive load matching). The piezoelectric generator, instead, is characterized by a high capacitive impedance. Thus, the optimal power generation is obtained by a resistive and reactive load impedance (resistive and reactive load matching). Taking into account that the load matching inductor should be changed depending on the excitation frequency, and it is usually impractically large if implemented by a passive element, the adaptive resistiveinductive (RL) impedance is here implemented using a bidirectional dc-dc converters and their parameters are tuned using a twodimentional MPPT using the downhill simplex method. Simulation and experimental results obtained on a prototype, where the digital control has been implemented on a microcontroller platform, confirm the proposed analysis and the performance achievable by the, proposed method. The resistive and reactive load matching strongly increases the power generation especially for excitation frequencies different from the resonant and antiresonant frequencies of the piezoelectric generator.
机译:本文讨论用于从振动源的最佳能量收集的等效阻抗性负载的执行情况。在光生伏打应用中,以确保最大功率变换器阻抗是真实和最大功率点跟踪(MPPT)使用单变量优化算法(电阻负载匹配)。压电发生器,取而代之的是,其特征是高电容性阻抗。因此,最佳发电由电阻和电抗负载阻抗(电阻和电抗负载匹配)获得。考虑到所述负载匹配电感应当根据激励频率而改变,但通常为如果由无源元件来实现不切实际的大,自适应resistiveinductive(RL)阻抗是使用双向DC-DC转换器和它们的参数在这里实现使用利用下降单纯形法一twodimentional MPPT被调谐。模拟与一个原型,其中数字控制已经在微控制器平台上实现获得的实验结果,确认由,提出的方法所提出的分析和性能实现的。的电阻和电抗负载匹配强烈地增加发电尤其是对于从谐振和压电发电机的反共振频率不同的激发频率。

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