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Digital Control Technologies for Modular DC-DC Converters
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机译:模块化DC-DC转换器的数字控制技术
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摘要
Recent trends in aerospace Power Management and Distribution (PMAD) systems focus on using commercial off-the-shelf (COTS) components as standard building blocks. This move to more modular designs has been driven by a desire to reduce costs and development times, but is also due to the impressive power density and efficiency numbers achieved by today's commercial DC-DC converters. However, the PMAD designer quickly learns of the hidden "costs" of using COTS converters. The most significant cost is the required addition of external input filters to meet strict electromagnetic interference (MIAMI) requirements for space systems. In fact, the high power density numbers achieved by the commercial manufacturers are greatly due to the lack of necessary input filters included in the COTS module. The NASA Glenn Research Center is currently pursuing a digital control technology that addresses this problem with modular DC-DC converters. This paper presents the digital control technologies that have been developed to greatly reduce the input filter requirements for paralleled, modular DC-DC converters. Initial test result show that the input filter's inductor size was reduced by 75 percent, and the capacitor size was reduced by 94 percent while maintaining the same power quality specifications.
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机译:航空电源管理和分配(PMAD)系统的最新趋势集中在使用商用现货(COTS)组件作为标准构件。降低成本和缩短开发时间的愿望推动了向更模块化设计的转变,但这也归因于当今的商用DC-DC转换器实现了令人印象深刻的功率密度和效率数值。但是,PMAD设计人员很快了解到使用COTS转换器的隐性“成本”。最显着的成本是需要增加外部输入滤波器,以满足对空间系统的严格电磁干扰(MIAMI)要求。实际上,由于缺少COTS模块中包含的必要输入滤波器,因此,商业制造商获得的高功率密度数值很大。 NASA Glenn研究中心目前正在寻求一种数字控制技术,该技术可通过模块化DC-DC转换器解决此问题。本文介绍了已开发出的数字控制技术,可以极大地降低并行模块化DC-DC转换器的输入滤波器要求。初步测试结果表明,在保持相同电源质量规格的情况下,输入滤波器的电感器尺寸减小了75%,电容器尺寸减小了94%。
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