A power factor correction (PFC) scheme for the Inverse Watkins Johnson Converter (IWJC) drawing power from a single-phase AC source, delivering polarity reversible DC voltage output is presented in this paper. The IWJC is basically a DC-to-DC converter which can deliver a boosted positive output voltage or a negative output voltage with buck or boost feature. It is suitable for driving DC loads, typically, DC motors in forward or reverse direction. Unlike the conventional four quadrant DC chopper, the IWJC can boost the input voltage and deliver a voltage higher than the source voltage with duty cycle controlled polarity reversible feature. This paper presents the methodology of including a PFC strategy for the IWJC, when fed from a single-phase AC supply. The proposed methodology has established that the AC source side power factor is unity and that the source current is maintained sinusoidal. Simulations and experimental verifications validate the proposed idea.
In this work, a novel, high boost, DC-to-DC converter topology is proposed and validated. The proposed topology is an extension of the existing two leg bridge type Watkins Johnson DC to DC converter. In the proposed system, an additional leg is included along with an additional inductor and an additional capacitor. The inclusion of the third leg to the existing, two-leg version of Watkins Johnson DC-to-DC bridge type converter helps to boost further the voltage gain. This paper presents the proposed topology and a detailed analysis of the topology using the circuit model in the MATLAB SIMULINK simulation environment. An experimental prototype was also developed to validate the proposed idea. The results obtained from the simulations and the experimental prototype are also presented herein. The studies were carried out with open loop configuration.
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