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Distributed Energy and Thermal Management of a 48-V Diesel Mild Hybrid Electric Vehicle With Electrically Heated Catalyst

机译:具有电加热催化剂的48V柴油温和混合动力汽车的分布式能量和热管理

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The 48-V diesel mild-hybrid electric vehicle equipped with an electrically heated catalyst is a cost-effective solution to reduce tailpipe emissions, while its supervisory control design is more challenging, due to cross-coupled energy and thermal subsystems. This article presents a distributed control design for the energy and thermal management system, aiming to optimize fuel economy and reduce catalyst warm-up time, by cooperation between electrical heating and engine load upshift. A control-oriented model of HEV and catalyst is developed, which captures the dynamics of the battery state of charge and catalyst temperature. The energy and thermal management problem is cast as a hybrid optimal control problem, to minimize entire trip fuel consumption under different switching (warm-up) times. An off-line solution method is designed to exploit the tradeoff between fuel and warm-up time based upon hybrid minimum principle and a nested shooting algorithm. For online implementation, a distributed supervisory control is proposed, which covers both cold-start and normal operations, and is compatible with the equivalent consumption minimization strategy. Both off-line and online methods are validated in simulation, using two driving cycles and five warm-up speeds.
机译:配备有电加热催化剂的48V柴油轻度混合动力汽车是一种成本有效的解决方案,以减少尾管排放,而其监管控制设计更具挑战性,因为交叉耦合的能量和热子系统。本文介绍了能源和热管理系统的分布式控制设计,旨在通过电加热和发动机负荷升档之间的合作优化燃油经济性并降低催化剂预热时间。开发了一种控制的HEV和催化剂的型号,其捕获电池充电状态和催化剂温度的动态。能量和热管理问题作为混合的最佳控制问题,以最大限度地减少不同切换(预热)次的整个行程燃料消耗。离线解决方案方法旨在利用基于混合最小原理和嵌套射击算法的燃料和预热时间之间的权衡。为了在线实现,提出了一种分布式监控控制,涵盖了冷启动和正常操作,并且与等效的消耗最小化策略兼容。在仿真中验证了离线和在线方法,使用两个驱动周期和五个预热速度。

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