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Fuel-Optimal Energy Management Strategy for a Power-Split Powertrain via Convex Optimization

机译:通过凸优化的电力分配动力总成的燃料最佳能量管理策略

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摘要

Hybrid power-split powertrains are getting more attention as they present great efficiency and performance. These powertrains connect components by planetary gear sets. Energy management strategy of the powertrain determines the power flow through each component. This paper presents a framework to address the problem of the fuel-optimal control strategy for an energy management strategy of power-split powertrains using convex optimization. To do this, we present a novel model for the power unit and other components using convex equations and constraints. We then use numerical solvers for the convex problems to efficiently solve the optimal control problem. Convex solver shows better performance in considerably less amount of time for the tested driving cycles, compared to the dynamic programming. This makes it suitable for design cases which need to iteratively solve the optimal control problem for different initiations in the design space. Another application is using the presented optimization-based approach to obtain the control input of the powertrain in the real-time applications.
机译:混合动力分配动力驱动器在呈现良好的效率和性能时得到更多关注。这些动力驱动器通过行星齿轮组连接组件。动力系的能量管理策略通过每个组件确定功率流。本文介绍了一种框架,用于解决使用凸优化的电力分配动力传递动力系统的能量管理策略的燃料最优控制策略问题。为此,我们向电源单元和其他组件提供了一种新颖的模型,使用凸方程和约束。然后,我们使用数值求解器来凸起问题,以有效地解决最佳控制问题。与动态规划相比,凸求解器在测试的驾驶循环的时间内显示出更好的时间性能。这使得适用于设计案例,该设计案例需要迭代地解决设计空间中不同启动的最佳控制问题。另一个应用正在使用所呈现的基于优化的方法来获得实时应用程序中电动局的控制输入。

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