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Military vehicle optimization and control.

机译:军车优化与控制。

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摘要

It is remarkable that there are no deployed military hybrid vehicles since battlefield fuel is approximately 100 times the cost of civilian fuel. In the commercial marketplace, where fuel prices are much lower, electric hybrid vehicles have become increasingly common due to their increased fuel efficiency and the associated operating cost benefit. An absence of military hybrid vehicles is not due to a lack of investment in research and development, but rather because applying hybrid vehicle architectures to a military application has unique challenges. These challenges include inconsistent duty cycles for propulsion requirements and the absence of methods to look at vehicle energy in a holistic sense. This dissertation provides a remedy to these challenges by presenting a method to quantify the benefits of a military hybrid vehicle by regarding that vehicle as a microgrid. This innovative concept allowed for the creation of an expandable multiple input numerical optimization method that was implemented for both real-time control and system design optimization. An example of each of these implementations was presented. Optimization in the loop using this new method was compared to a traditional closed loop control system and proved to be more fuel efficient. System design optimization using this method successfully illustrated battery size optimization by iterating through various electric duty cycles. By utilizing this new multiple input numerical optimization method, a holistic view of duty cycle synthesis, vehicle energy use, and vehicle design optimization can be achieved.
机译:值得注意的是,由于战场上的燃料大约是民用燃料的100倍,因此没有部署的军用混合动力车辆。在燃料价格低得多的商业市场中,电动混合动力汽车由于其提高的燃料效率和相关的运营成本收益而变得越来越普遍。缺少军用混合动力车辆并不是由于缺乏对研发的投资,而是因为将混合动力汽车架构应用于军事应用面临着独特的挑战。这些挑战包括对推进要求的占空比不一致,以及缺乏从整体角度看待车辆能量的方法。本文通过提出一种通过将军用混合动力汽车视为微电网来量化其收益的方法,为这些挑战提供了一种补救措施。这种创新的概念允许创建可扩展的多输入数值优化方法,该方法可用于实时控制和系统设计优化。给出了每个实现的示例。使用这种新方法对回路进行的优化与传统的闭环控制系统进行了比较,并被证明具有更高的燃油效率。使用这种方法的系统设计优化通过迭代各种电占空比成功地说明了电池尺寸的优化。通过利用这种新的多输入数值优化方法,可以实现占空比综合,车辆能耗和车辆设计优化的整体视图。

著录项

  • 作者

    Rizzo, Denise M.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Mechanical engineering.;Military studies.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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