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Third Harmonic Compensation in Bridgeless Current Sensorless PFC

机译:无丝杠电流无传感器PFC中的三次谐波补偿

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Single-phase Bridgeless power factor correction converters (PFCs) improve the conversion efficiency in comparison with the conventional PFCs, where a diode bridge plus a DC/DC boost converter are used, due to the absence of the input rectifier, but current sensing complexity increases. Its efficiency can be further increased, and its cost reduced by avoiding the input current sensor. This paper proposes a control strategy applicable to Bridgeless PFCs, implemented in a digital device (Field Programmable Gate Array, FPGA), where the grid current is not sensed. To compensate for the effect of the non-ideal operation of the converter, which result in current control errors, a third harmonic dependent function is introduced. The converter model is presented. Simulation and experimental results are used to assess the performance of the proposed method.
机译:单相无形电源因数校正转换器(PFCS)与传统PFC相比,改善转换效率,其中使用二极管桥加上DC / DC升压转换器,因为没有输入整流器,但电流感测复杂性增加。它的效率可以进一步增加,通过避免输入电流传感器来降低其成本。本文提出了一种适用于无丝杠PFC的控制策略,在数字设备(现场可编程门阵列,FPGA)中实现,其中不感测电流电流。为了补偿转换器的非理想操作的影响,这导致电流控制误差,介绍了第三次谐波依赖功能。呈现转换器模型。模拟和实验结果用于评估所提出的方法的性能。

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