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Design and implementation of isolated 30 V, 30 A DC power supply using synchronous rectifier

机译:使用同步整流器的隔离式30 V,30 A DC电源的设计与实现

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With advancement in modern power electronics, low voltage, high current DC power supply is used extensively in industrial applications like arc furnace, fusion technology, arc welding etc. Conventional isolated full bridge DC-DC converter has many limitations like lower efficiency, higher weight and size. The main aim of this paper is to meet design requirements for many industrial applications like isolation between source and load, minimization of switching loss, high conversion efficiency, lower output voltage and current ripple and compactness. Phase shifted full bridge topology along with ZVS (Zero Voltage Switching) is selected to reduce switching losses and to improve the performance of the power supply. In low voltage applications, conduction loss of the diode bridge rectifier at secondary side contributes significant power losses. To improve the efficiency of converter synchronous rectifier technique is adopted. Simulation is done in PSIM software to validate the performance of power supply with isolated phase shifted full bridge topology along ZVS and center tap synchronous rectifier.
机译:随着现代电力电子技术的进步,低压,大电流直流电源已广泛用于电弧炉,熔合技术,电弧焊等工业应用中。传统的隔离式全桥DC-DC转换器具有许多局限性,例如效率较低,重量较大,尺寸。本文的主要目的是满足许多工业应用的设计要求,例如源与负载之间的隔离,最小化开关损耗,高转换效率,较低的输出电压和电流纹波以及紧凑性。选择相移全桥拓扑以及ZVS(零电压开关)以减少开关损耗并改善电源性能。在低压应用中,次级侧的二极管桥式整流器的传导损耗会造成很大的功率损耗。为了提高转换器的效率,采用了同步整流技术。在PSIM软件中进行了仿真,以验证具有沿ZVS和中心抽头同步整流器的隔离相移全桥拓扑的电源性能。

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