Computer Aided Design, Simulation and Implementation of Multi Switched Mode Power Supplies (SMPS) Controlled by One Microprocessor

Kader H.A, Al-Shara, Ahmed Q. A. Al-Oraibi
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Abstract

In this paper an approach of computer design, simulation and implementation of multi switched mode power supplies (SMPS) controlled by one microprocessor is investigated. The design of three switch mode power supplies based on flyback DC-DC converters with different power 20,24 and 6 Watt and output voltages rated +5V,+12V/ and -12V are achieved. The design power stage is based on the bipolar as the main switching device with protection network used to ensure safe operation. The microprocessor and its supervisory board are used with slight software program to control the output of the multi switched mode power supplies (SMPS ) even though they have different switching frequency, output voltage, output power. The system performance is simulated and examined under many desired conditions. From the obtained result it was found that, it is efficiently and easily to use one microprocessor to control of multi switched mode power supplies reducing the complexity of the system
一个微处理器控制的多开关电源的计算机辅助设计、仿真与实现
本文研究了单微处理器控制的多开关电源的计算机设计、仿真和实现方法。设计了三种基于反激式DC-DC变换器的开关电源,功率分别为20w、24w和6w,输出电压分别为+5V、+12V和-12V。功率级的设计以双极为主要开关器件,采用保护网络保证安全运行。多开关电源(SMPS)具有不同的开关频率、输出电压、输出功率,但采用微处理器及其监控板,通过简单的软件程序控制其输出。在多种条件下对系统性能进行了模拟和测试。实验结果表明,用一个微处理器控制多开关电源既方便又高效,降低了系统的复杂度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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