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Energy management based on fractional open circuit and P-SSHI techniques for piezoelectric energy harvesting

机译:基于分数开路和P-SSHI技术的压电能收割技术的能量管理

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摘要

Self-powered energy management circuits make energy harvesting converters more efficient and more reliable. This paper presents an improvement of a Maximum Power Point Tracking (MPPT) technique applied on a Parallel Synchronized Switch Harvesting on Inductor (P-SSHI) technique for piezoelectric vibration converters. The aims are to detect the unstable vibrational state, optimize the output voltage and maximize the output power of the piezoelectric transducer.First, the P-SSHI technique is implemented without an MPPT technique. Then, an MPPT technique based on Fractional Open Circuit (FOC) voltage method is implemented. An improvement of the FOC method is proposed to enhance the capability of the Piezoelectric Energy Harvesting (PEH) system. The comparison between different simulation results shows that by using the same input parameters, the maximum efficiency for the PEH system based on the P-SSHI technique implemented without MPPT is 8.82?% whereas the maximum efficiency of the system based on the (FOC) voltage MPPT method is 13.77?%. A significant improvement of the PEH system is obtained by using the modified (FOC) method, where the efficiency reached 24.59?%.
机译:自动能源管理电路使能量收集转换器更高效,更可靠。本文提高了对压电振动转换器的电感器(P-SSHI)技术的平行同步开关采集的最大功率点跟踪(MPPT)技术的提高。目的是检测不稳定的振动状态,优化输出电压并最大化压电换能器的输出功率。首先,在没有MPPT技术的情况下实现P-SSHI技术。然后,实现了基于分数开路(FOC)电压方法的MPPT技术。提出了FOC方法的改进,提高了压电能量收集(PEH)系统的能力。不同仿真结果之间的比较表明,通过使用相同的输入参数,基于没有MPPT实现的P-SSHI技术的PEH系统的最大效率为8.82?%,而基于(FOC)电压的系统的最大效率MPPT方法是13.77?%。通过使用改性(FOC)方法获得PEH系统的显着改进,其中效率达到24.59倍。

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