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Utilization of Active Diodes in Self-powered Sensorless Three-phase Boost-rectifiers for Energy Harvesting Applications

机译:有源二极管在自供电无传感器三相升压整流器中的应用

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摘要

The main contribution of this paper is the use of sensorless active diodes to generate the gate signals for a three-phase boost-rectifier with a self-powered control scheme. The sensorless operation is achieved making use of the gate control signals generated by the active diode schemes on each of the switching devices using a pulse width half-controlled boost rectifier modulation technique (PWM-HCBR). The proposed scheme synchronizes the gate control signals with a three phase voltage supply. Autonomous operation is obtained making use of the output DC bus to feed the control circuitry, the active diodes and the driver circuitry. The three-phase boost-rectifier is supplied by a three-phase permanent magnet electric generator powered by a solar concentrator dish with variable voltage and variable frequency conditions. Experimental results report an efficiency of up to 94.6% for 25 W and an input of 3.6 V peak per phase with 450.
机译:本文的主要贡献是使用无传感器有源二极管为具有自供电控制方案的三相升压整流器生成栅极信号。通过使用由每个开关器件上的有源二极管方案产生的栅极控制信号(通过脉宽半控升压整流器调制技术(PWM-HCBR))来实现无传感器操作。所提出的方案使栅极控制信号与三相电压源同步。利用输出直流总线为控制电路,有源二极管和驱动器电路供电,可以实现自主运行。三相升压整流器由三相永磁发电机供电,该三相永磁发电机由太阳能聚能器碟供电,并具有可变电压和可变频率条件。实验结果表明,对于25 W功率,效率高达94.6%,每相输入450 V峰值电压为3.6V。

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