SEMICONDUCTOR INTEGRATED CIRCUITS

A digital prediction algorithm for a single-phase boost PFC

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2012 Chinese Institute of Electronics
, , Citation Wang Qing et al 2012 J. Semicond. 33 125007 DOI 10.1088/1674-4926/33/12/125007

1674-4926/33/12/125007

Abstract

A novel digital control algorithm for digital control power factor correction is presented, which is called the prediction algorithm and has a feature of a higher PF (power factor) with lower total harmonic distortion, and a faster dynamic response with the change of the input voltage or load current. For a certain system, based on the current system state parameters, the prediction algorithm can estimate the track of the output voltage and the inductor current at the next switching cycle and get a set of optimized control sequences to perfectly track the trajectory of input voltage. The proposed prediction algorithm is verified at different conditions, and computer simulation and experimental results under multi-situations confirm the effectiveness of the prediction algorithm. Under the circumstances that the input voltage is in the range of 90–265 V and the load current in the range of 20%–100%, the PF value is larger than 0.998. The startup and the recovery times respectively are about 0.1 s and 0.02 s without overshoot. The experimental results also verify the validity of the proposed method.

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10.1088/1674-4926/33/12/125007