Feasibility Assessment and Operating Policy Optimization of Automotive Powertrains With Uncertainties Using Game Theory

I. Kolmanovsky, I. Siverguina
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引用次数: 9

Abstract

The paper describes a game-theoretic framework and a computational algorithm for feasibility evaluation of automotive powertrains with storage elements in terms of fuel economy and emissions performance. The game-theoretic framework allows to handle various time-dependent uncertainties, including uncertainties in the drive cycle. In particular, an important issue in the prior approaches to this problem, the drive cycle dependence of the optimal policies, is alleviated. Within the basic framework, it is also possible to generate implementable operating policies that specify powertrain actuator settings as functions of engine operating conditions and states of the storage elements. We illustrate the procedure using an example powertrain with a Direct Injection Stratified Charge engine and an aftertreatment system consisting of a Three Way Catalyst and a Lean NOx Trap.
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基于博弈论的不确定性汽车动力系统可行性评估与运行策略优化
本文从燃油经济性和排放性能两方面描述了汽车动力系统储能系统可行性评估的博弈论框架和计算算法。博弈论框架允许处理各种时间相关的不确定性,包括驱动周期中的不确定性。特别地,在此问题的先前方法中的一个重要问题,即最优策略的驱动周期依赖性,得到了缓解。在基本框架内,还可以生成可执行的操作策略,将动力总成执行器设置指定为发动机运行条件和存储元件状态的函数。我们用一个带有直接喷射分层充电发动机和后处理系统的示例动力总成来说明这一过程,后处理系统由三元催化剂和贫氮氧化物捕集器组成。
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