Design and Analysis of Solid State DC-AC Transformer

K. Suresh, I. Kumaraswamy, R. Arulmozhiyal
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Abstract

Multimodal single/dual stage conversion (BSDC) based on a new solid-state DC-AC transformer (SDAT) is proposed. The suggested conversion can perform variable or constant DC voltage operation. A variable DC voltage is controlled dynamically in response to changes in DC input side voltage, allowing the DC-DC conversion stage to always operate at its best. New DC-AC power conversion of 2 port two-way choppers (TBDC) and two-way rectifier/inverter conversion (BRIC) was planned for the implementation of the proposed SDAT. SDAT, consisting of a bi-directional step-down-step-up converter and a bi-directional step-up-step-down converter, has been used as a prototype model to check the suggestion system. Functional concepts of this BSDC converter with TBDC are designed and simulated on the MATLAB/simulink environment network. PWM and control methods have been applied for SDAT to accomplish a wide variety of voltage and power loss reduction in the proposed device. Test bench model hardware is designed and tested to validate the effectiveness and benefits of the proposed approach.
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固态直流-交流变压器的设计与分析
提出了一种基于固态直流-交流变压器的多模态单/双级转换(BSDC)。建议的转换可以执行可变或恒定直流电压操作。可变直流电压随直流输入侧电压的变化而动态控制,使DC-DC转换阶段始终以最佳状态运行。为实施拟议的SDAT,计划采用2端口双向剪切器(TBDC)和双向整流/逆变器转换(BRIC)的新型直流-交流电源转换。SDAT由双向降压升压转换器和双向升压升压转换器组成,并作为原型模型对建议系统进行了验证。设计了带TBDC的BSDC变换器的功能概念,并在MATLAB/simulink环境下进行了仿真。PWM和控制方法已被应用于SDAT,以实现各种各样的电压和功率损耗的降低。设计并测试了试验台模型硬件,验证了该方法的有效性和优越性。
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