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Control Strategy for Hybrid Electric Vehicle Based on Online Driving Pattern Classification

机译:基于在线驾驶模式分类的混合电动车辆控制策略

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摘要

Hybrid Electric Vehicles (HEVs) are gaining popularity these days mainly due to their high fuel economy. While conventional HEV controllers can be classified into rule-based control and optimization-based control, most of the production vehicles employ rule-based control due to their reliability. However, once the rule is optimized for a given driving pattern, it is not necessarily optimal for other driving patterns. In order to further improve fuel economy for HEVs, this article investigates the feasibility of optimizing control algorithm for different driving patterns so that the vehicle maintains a high level of optimality regardless of the driving patterns. For this purpose, a two-level supervisory control algorithm is developed where the top-level algorithm classifies the current driving pattern to select optimal control parameters, and the lower level algorithm controls the vehicle power flow using the selected control parameters in a similar way to conventional supervisory controllers. To study the effectiveness of the proposed algorithm, a HEV model with a rule-based control algorithm is modified such that the control parameters are optimized for different driving patterns, and the simulation results obtained by the driving pattern-optimized control algorithm is compared with those with the original control algorithm with fixed control parameters.
机译:这些天燃料经济性主要是由于它们的高燃料经济性的主要原因,混合动力电动汽车(HEV)主要是由于其高燃料经济性。虽然传统的HEV控制器可以被分类为基于规则的控制和基于优化的控制,但大多数生产车辆由于其可靠性而采用基于规则的控制。然而,一旦规则针对给定的驱动模式进行了优化,它对于其他驾驶模式不一定是最佳的。为了进一步提高HEV的燃料经济性,本文研究了不同驱动模式的优化控制算法的可行性,使得无论驱动模式如何,车辆保持高水平的最优性。为此目的,开发了一种双层监控控制算法,其中顶级算法将电流驱动模式分类为选择最优控制参数,并且较低级别算法以类似的方式使用所选控制参数控制车辆电力流量传统监督控制器。为了研究所提出的算法的有效性,修改了具有规则的规则控制算法的HEV模型,使得控制参数针对不同的驱动模式进行了优化,并将通过驱动模式优化的控制算法获得的模拟结果与那些相比利用固定控制参数的原始控制算法。

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