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Design and Optimization of Power Delivery and Distribution Systems Using Evolutionary Computation Techniques

机译:基于进化计算技术的输配电系统设计与优化

摘要

Nowadays computing platforms consist of a very large number of components that require to be supplied with diferent voltage levels and power requirements. Even a very small platform, like a handheld computer, may contain more than twenty diferent loads and voltage regulators. The power delivery designers of these systems are required to provide, in a very short time, the right power architecture that optimizes the performance, meets electrical specifications plus cost and size targets. The appropriate selection of the architecture and converters directly defines the performance of a given solution. Therefore, the designer needs to be able to evaluate a significant number of options in order to know with good certainty whether the selected solutions meet the size, energy eficiency and cost targets. The design dificulties of selecting the right solution arise due to the wide range of power conversion products provided by diferent manufacturers. These products range from discrete components (to build converters) to complete power conversion modules that employ diferent manufacturing technologies. Consequently, in most cases it is not possible to analyze all the alternatives (combinations of power architectures and converters) that can be built. The designer has to select a limited number of converters in order to simplify the analysis. In this thesis, in order to overcome the mentioned dificulties, a new design methodology for power supply systems is proposed. This methodology integrates evolutionary computation techniques in order to make possible analyzing a large number of possibilities. This exhaustive analysis helps the designer to quickly define a set of feasible solutions and select the best trade-off in performance according to each application. The proposed approach consists of two key steps, one for the automatic generation of architectures and other for the optimized selection of components. In this thesis are detailed the implementation of these two steps. The usefulness of the methodology is corroborated by contrasting the results using real problems and experiments designed to test the limits of the algorithms.
机译:如今,计算平台由大量组件组成,这些组件需要提供不同的电压水平和功率要求。即使是非常小的平台(如手持计算机),也可能包含二十多个不同的负载和稳压器。这些系统的电源设计人员需要在很短的时间内提供合适的电源架构,以优化性能,满足电气规格以及成本和尺寸目标。架构和转换器的适当选择直接定义了给定解决方案的性能。因此,设计人员需要能够评估大量选项,以便能够确定性地确定所选解决方案是否满足尺寸,能效和成本目标。由于不同制造商提供的电源转换产品种类繁多,因此选择正确解决方案的设计难度很大。这些产品的范围从分立组件(用于构建转换器)到采用不同制造技术的完整功率转换模块。因此,在大多数情况下,不可能分析所有可以构建的替代方案(电源架构和转换器的组合)。设计人员必须选择数量有限的转换器,以简化分析。为了克服上述困难,本文提出了一种新的电源系统设计方法。这种方法集成了进化计算技术,以便能够分析大量可能性。这种详尽的分析可帮助设计人员快速定义一套可行的解决方案,并根据每种应用选择最佳的性能折衷方案。所提出的方法包括两个关键步骤,一个用于自动生成体系结构,另一个用于优化组件选择。本文详细介绍了这两个步骤的实现。通过使用实际问题和旨在测试算法极限的实验进行对比,证实了该方法的实用性。

著录项

  • 作者

    Laguna Ruiz Leonardo;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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