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PWM Switching Technique for Three-Phase Bidirectional Grid-Tie DC–AC–AC Converter With High-Frequency Isolation

机译:具有高频隔离的三相双向并网DC-AC-AC转换器的PWM开关技术

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摘要

Galvanic isolation based high-frequency transformers have become very attractive in bidirectional dc/ac converters. This paper presents a new pulse width modulation (PWM) switching technique for controlling a bidirectional isolated dc–ac–ac converter employing a high-frequency link transformer. The proposed PWM technique has the ability to control the input dc current and to inject a sinusoidal three-phase current to the grid at unity power factor. The primary-side is an H-bridge converter used to convert the dc voltage to a high-frequency square-wave single-phase voltage. The secondary side is a matrix converter used to convert the grid three-phase voltage to a high-frequency single-phase waveform. The dc–ac–ac converter utilizes a high-frequency link transformer for the galvanic isolation between the H-bridge and matrix converters as alternative for the bulky line-frequency transformers (50/60 Hz). The bidirectional power flow is controlled by the phase shift angle between the primary and secondary voltages of the high-frequency transformer. The mathematical model and the circuit operational modes are presented along with the voltage controllable limit. The feasibility of the proposed PWM switching technique and the accuracy of the mathematical model are demonstrated experimentally by using a 200 V/1 kW laboratory prototype system.
机译:基于电流隔离的高频变压器在双向dc / ac转换器中变得非常有吸引力。本文提出了一种新的脉冲宽度调制(PWM)开关技术,用于控制采用高频链路变压器的双向隔离式DC-AC-AC转换器。提出的PWM技术具有控制输入直流电流并以单位功率因数向电网注入正弦三相电流的能力。初级侧是一个H桥转换器,用于将直流电压转换为高频方波单相电压。次级侧是矩阵转换器,用于将电网三相电压转换为高频单相波形。 dc-ac-ac转换器使用高频链路变压器实现H桥和矩阵转换器之间的电流隔离,以替代体积较大的线频变压器(50/60 Hz)。双向功率流由高频变压器的一次和二次电压之间的相移角控制。给出了数学模型和电路工作模式以及电压可控极限。通过使用200V / 1kW实验室原型系统,实验证明了所提出的PWM开关技术的可行性和数学模型的准确性。

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