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Optimal control of hybrid electric vehicles with power split and torque split strategies: A comparative case study

机译:具有功率分配和扭矩分配策略的混合动力电动汽车的最优控制:一个比较案例研究

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In designing control strategies to optimize fuel consumption, driveability and other objectives for hybrid electric vehicles (HEVs), one can choose to use either power split or torque split as one of the control variables. While both approaches have been employed and documented, no systematic study has been reported that illuminates what implications this choice might have in terms of HEV performance, system robustness, and control strategy design and implementation complexity. This work aims to develop a case study that explores this degree of design freedom and to quantify any differences that this control design selection might impart on a given HEV architecture. Using a validated HEV model, we will derive optimal operating strategies using dynamic programming for two cases: one uses power split and other torque split. Performance metrics of fuel consumption as well as the computational complexity associated with the two different strategies will be assessed.
机译:在设计控制策略以优化混合动力汽车(HEV)的燃料消耗,驾驶性能和其他目标时,可以选择使用功率分配或扭矩分配作为控制变量之一。尽管两种方法都已被采用并记录在案,但尚未有系统的研究报告可以阐明这种选择在混合动力汽车性能,系统鲁棒性以及控制策略设计和实施复杂性方面可能产生的影响。这项工作旨在发展一个案例研究,探索这种设计自由度,并量化这种控制设计选择可能给定的HEV架构带来的差异。使用经过验证的HEV模型,我们将通过动态编程得出两种情况的最佳操作策略:一种使用功率分配,另一种使用转矩分配。将评估燃料消耗的性能指标以及与两种不同策略相关的计算复杂性。

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