基于仿真的串联液压混合动力汽车系统同步优化框架

IF 0.7 Q4 ENGINEERING, MECHANICAL International Journal of Fluid Power Pub Date : 2018-10-29 DOI:10.1080/14399776.2018.1527122
K. Baer, Liselott Ericson, P. Krus
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引用次数: 5

摘要

液压传动系统的混合动力为公路和越野应用提供了提高效率的潜力。为了实现这些优势,需要精心设计的系统和相应的控制策略,这些通常是通过顺序设计过程获得的。通过基于仿真的优化同时解决部件选择和控制参数化问题,可以探索大的设计空间以及设计关系和权衡,并在真实驾驶场景中存在的动态条件下对其进行评估。本文介绍了液压混合动力汽车的优化框架,包括一系列混合动力结构的仿真模型和影响系统性能的部件缩放考虑。针对一辆公路轻型汽车的大量优化实验,重点是标准的驱动循环性能,说明了问题公式对最终设计的影响,从而说明了设计问题的复杂性。所发现的设计通过能量平衡图展示了串联混合动力车储能的潜力以及一些挑战。本文提出的框架为设计备选方案和问题制定方面的系统评估提供了基础。
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Framework for Simulation-Based Simultaneous System Optimization for a Series Hydraulic Hybrid Vehicle
Hybridization of hydraulic drivetrains offers the potential of efficiency improvement for on- and off-road applications. To realize the advantages, a carefully designed system and corresponding control strategy are required, which are commonly obtained through a sequential design process.Addressing component selection and control parameterization simultaneously through simulation-based optimization allows for exploration of a large design space as well as design relations and trade-offs, and their evaluation in dynamic conditions which exist in real driving scenarios. In this paper, the optimization framework for a hydraulic hybrid vehicle is introduced, including the simulation model for a series hybrid architecture and component scaling considerations impacting the system’s performance.Anumber of optimization experiments for an on-road light-duty vehicle, focused on standard-drivecycle- performance, illustrate the impact of the problem formulation on the final design and thus the complexity of the design problem. The designs found demonstrate both the potential of energy storage in series hybrids, via an energy balance diagram, as well as some challenges. The framework presented here provides a base for systematic evaluation of design alternatives and problem formulation aspects.
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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