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Performance evaluation of Bridgeless and Phase Shifted Semi Bridgeless Interleaved Boost Converters (IBCS) for power factor correction

机译:用于功率因数校正的无桥和相移半无桥交错式升压转换器(IBCS)的性能评估

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Hybrid Electric Vehicles (HEVs) require a constant DC supply which usually needs power conditioning involving non-linear devices. The use of non-linear devices induces harmonics and distortion in the supply current. Therefore there arises a need for power factor correction in the AC-DC converter of the charging system of HEVs. There are several topologies for power factor correction, among them the Bridgeless Interleaved and Phase Shifted Semi Bridgeless Interleaved topologies are highly efficient and yield a power factor closer to unity. This paper focuses on Bridgeless and Phase Shifted Semi-Bridgeless Interleaved Boost Converter topologies as solutions to the problem. The topologies are simulated using MATLAB and performance parameters like Total Harmonic Distortion (THD) in the line current, input power factor, purity factor, displacement factor, device losses, total loss and efficiency for both the topologies are evaluated and compared. On comparison this paper insists that the Phase Shifted Semi-Bridgeless Interleaved Boost topology is the best suited topology for use in HEVs under varying loads.
机译:混合动力电动汽车(HEV)需要恒定的直流电源,这通常需要涉及非线性设备的功率调节。使用非线性器件会在电源电流中引起谐波和失真。因此,需要在混合动力汽车的充电系统的AC-DC转换器中进行功率因数校正。功率因数校正有几种拓扑,其中无桥交错和相移半无桥交错拓扑非常高效,并且产生的功率因数更接近于单位。本文将重点放在无桥和相移半无桥交错式Boost转换器拓扑上,以解决该问题。使用MATLAB对拓扑进行仿真,并比较两种拓扑的性能参数,例如线路电流中的总谐波失真(THD),输入功率因数,纯度因子,位移因数,器件损耗,总损耗和效率。相比之下,本文坚持认为,相移半无桥交错式Boost拓扑是在负载变化的HEV中最合适的拓扑。

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