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Modelling and simulation an AC-DC rectifier circuit based on piezoelectric vibration sensor for energy harvesting system

机译:基于压电振动传感器的电气振动传感器建模与仿真

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This paper presents the modeling of a full-wave rectifier circuit based on piezoelectric vibration transducer for energy-harvester system. Piezoelectric vibration crystals are a viable means of harvesting energy for low-power embedded systems e.g. wireless sensor network. Distinct power handling circuits are assessed with the presence of piezoelectric vibration based energy harvesting transducer. Inside the interface circuit, the voltage should be started up when the AC input voltage is very low to supply a regulated DC voltage up to 2V. An active technique is chosen to design an ultra-low power circuit from a piezoelectric vibration transducer. MOSFET bride ac–dc rectifier, energy storage device e.g. capacitor and boost converter with regulator are the common components of the energy harvesting circuits. An integrated promoter ac-dc rectifier circuit and boost converter that accept a maximum input voltage of 0.3V and provide a regulated output voltage of 2V serve as the supply. The MOSFET and thyristor are considered to develop the proposed circuit replacing conventional ac-dc rectifier due to low input voltage at which diode does not work.
机译:本文介绍了基于压电振动换能器的全波整流电路的建模。压电振动晶体是用于低功耗嵌入式系统的能量的可行性手段,例如,无线传感器网络。不同功率处理电路评估与压电振动基于能量收集换能器的存在。在接口电路内,当AC输入电压非常低时,应启动电压以提供高达2V的调节直流电压。选择有源技术以设计来自压电振动换能器的超低电源电路。 MOSFET新娘AC-DC整流器,储能设备e.g.具有稳压器的电容器和升压转换器是能量收集电路的共同组件。一种集成的启动子AC-DC整流电路和升压转换器,可接受0.3V的最大输入电压,并提供2V的调节输出电压作为电源。由于低输入电压,MOSFET和晶闸管被认为是开发替换传统AC-DC整流器的所提出的电路,其中二极管不起作用。

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