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Component cost models for multi-objective optimizations of switched-mode power converters

机译:用于开关模式功率转换器的多目标优化的组件成本模型

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摘要

Besides product differentiation, cost is a key parameter for market success and sustainable competitive advantage of industrial companies. Academic research in the field of power electronics, however, is often confined to the search for technical innovations or optimizations with focus on pure physical performance indices while the cost dimension is neglected. An explanation for the lack of such cost considerations is the generally poor availability of cost data in academia. This paper discusses the necessity of an increased awareness and sensitivity towards costs and the related opportunities for academic research. Furthermore, cost models for the power semiconductors, the passive components, the cooling systems and the printed circuit boards of switched-mode power converters with an approximate rated power between 5 and 50kW are derived. Based on manufacturer prices for large ordering quantities, numerical values for the cost model parameters are proposed. An example of a multi-objective comparison of different power converter topologies for photovoltaic applications regarding efficiency, volume and total semiconductor chip area is extended by the cost dimension to demonstrate the benefits of employing the developed cost models.
机译:除了产品差异化,成本也是工业公司获得市场成功和可持续竞争优势的关键参数。但是,电力电子领域的学术研究通常仅限于寻求技术创新或优化,而侧重于纯物理性能指标,而成本方面却被忽略。缺乏这种成本考虑因素的一种解释是,学术界普遍缺乏成本数据。本文讨论了提高对成本以及相关学术研究机会的认识和敏感性的必要性。此外,得出了功率半导体,无源组件,冷却系统和开关功率转换器的印刷电路板的成本模型,其额定功率在5至50kW之间。基于大批量订购的制造商价格,提出了成本模型参数的数值。成本维度扩展了光伏应用中不同功率转换器拓扑关于效率,体积和总半导体芯片面积的多目标比较示例,以证明采用已开发成本模型的好处。

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