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Design and prototyping of control grid power supply based on resonant converter for RF amplifier

机译:基于谐振放大器的射频放大器控制电网电源的设计与原型设计

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This paper includes a detailed study of Zero Voltage Switching resonant converter based buck converter, understanding with the help of mathematical equations for various modes and simulation of DC Power source at different voltages and current level. As in conventional pulse width modulated (PWM) power converters, power switches have to cut off the load current within the turn-on and turn-off times under the hard switching conditions. The concept of resonant converter is to incorporate resonant tanks in the converters to create oscillatory (usually sinusoidal) voltage and/or current waveforms so that zero-voltage switching (ZVS) or zero-current switching (ZCS) conditions can be created for the power switches. The reduction of switching loss and the continual improvement of power switches allow the switching frequency of the resonant converters to reach hundreds of kilo-Hertz. Consequently, the size of magnetic components can be reduced and the power density of the converters increased. The underlying principle is to replace the power switch in PWM converters with the resonant switch. A simulation study in PSim software was carried out for 500V DC, 4A model. The design of resonant tank circuit is an important aspect of the converter as it forms the backbone of the complete system and basis of selection of other important parameters as well hence mathematical model analysis with the help of circuit equations for various modes have been shown as a part of selection criteria.
机译:本文包括基于降压转换器的零电压开关谐振转换器的详细研究,借助数学方程式了解各种模式以及在不同电压和电流水平下直流电源的仿真。与传统的脉冲宽度调制(PWM)功率转换器一样,在硬开关条件下,功率开关必须在导通和关断时间内切断负载电流。谐振转换器的概念是在转换器中合并谐振储能电路,以产生振荡(通常为正弦波)的电压和/或电流波形,从而可以为电源创建零电压开关(ZVS)或零电流开关(ZCS)条件开关。开关损耗的减少和电源开关的不断改进,使谐振转换器的开关频率达到了数百千赫兹。因此,可以减小磁性部件的尺寸并且增加转换器的功率密度。基本原理是用谐振开关代替PWM转换器中的电源开关。在PSim软件中对500V DC,4A模型进行了仿真研究。谐振储能电路的设计是转换器的一个重要方面,因为它构成了整个系统的骨干,并且是选择其他重要参数的基础,因此,借助于各种模式的电路方程的数学模型分析已显示为选择标准的一部分。

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