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Implementation of Rapid Prototyping Tools for Power Loss and Cost Minimization of DC-DC Converters

机译:快速原型工具的实现,以实现DC-DC转换器的功耗降低和成本最小化

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In this paper, power loss and cost models of power electronic converters based on converter ratings and datasheet information are presented. These models aid in creating rapid prototypes which facilitate the component selection process. Through rapid prototyping, users can estimate power loss and cost which are essential in design decisions. The proposed approach treats main power electronic components of a converter as building blocks that can be arranged to obtain multiple topologies to facilitate rapid prototyping. In order to get system-level power loss and cost models, two processes are implemented. The first process automatically provides minimum power loss or cost estimates and identifies components for specific applications and ratings; the second process estimates power losses and costs of each component of interest as well as the whole system. Two examples are used to illustrate the proposed approaches—boost and buck converters in continuous conduction mode. Achieved cost and loss estimates are over 93% accurate when compared to measured losses and real cost data. This research presents derivations of the proposed models, experimental validation of the models and demonstration of a user friendly interface that integrates all the models. Tools presented in this paper are expected to be very useful for practicing engineers, designers, and researchers, and are flexible and adaptable with changing or new technologies and varying component prices.
机译:本文介绍了基于转换器额定值和数据表信息的电力电子转换器的功率损耗和成本模型。这些模型有助于创建快速的原型,从而简化了组件选择过程。通过快速原型制作,用户可以估算功率损耗和成本,这对于设计决策至关重要。所提出的方法将转换器的主要电力电子组件视为构建块,可以将其布置为获取多种拓扑,以便于快速进行原型制作。为了获得系统级的功耗和成本模型,实施了两个过程。第一个过程自动提供最小的功率损耗或成本估算,并识别特定应用和额定值的组件;第二个过程估计功率损耗以及每个相关组件以及整个系统的成本。使用两个示例来说明所提出的方法-连续传导模式下的升压和降压转换器。与测得的损失和实际成本数据相比,所实现的成本和损失估计的准确性超过93%。这项研究提出了建议的模型,模型的实验验证以及集成了所有模型的用户友好界面的演示。期望本文中介绍的工具对于实践工程师,设计师和研究人员非常有用,并且可以随着不断变化的新技术或变化的组件价格而灵活地适应。

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