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A Building-Block Approach to Efficiency and Cost Models of Power Electronic Systems

机译:电力电子系统效率和成本模型的构建块方法

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This paper presents efficiency and cost models of power electronic converters based on converter ratings and datasheet information. These models aid in creating rapid prototypes which facilitate the component selection process. Through this rapid prototyping, users can estimate efficiency and cost which are essential in design decisions. The proposed approach treats main power electronic components as building blocks that can be re-arranged for different topologies. In order to get efficiency models, power losses of each building block are estimated. Cost models for each building block are derived based on an extensive market survey. Three examples are used to illustrate the proposed approach- boost and buck converters in continuous conduction mode (CCM) and flyback converter in discontinuous conduction mode (DCM). Achieved cost and loss estimates are over 92% accurate when compared to measured losses and real cost data. This paper presents derivations of the proposed models, detailed experimental measurements and demonstration of a GUI that integrates all models.
机译:本文介绍了基于转换器评级和数据表信息的电力电子转换器的效率和成本模型。这些模型有助于创建快速原型,促进组件选择过程。通过这种快速的原型设计,用户可以估计在设计决策中至关重要的效率和成本。所提出的方法将主要电力电子元件视为可以重新安排不同拓扑的构建块。为了获得效率模型,估计每个构件块的功率损耗。每个构建块的成本模型都是基于广泛的市场调查来源的。三个例子用于说明在不连续传导模式(DCM)中连续导通模式(CCM)和反激转换器中提出的方法 - 升压和降压转换器。与测量损失和实际成本数据相比,达到成本和损失估计数超过92%。本文介绍了所提出的模型,详细的实验测量和整合所有型号的GUI的示范。

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