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A Study of Fuel Economy Improvement in a Plug-in Hybrid Electric Vehicle using Engine on/off and Battery Charging Power Control Based on Driver Characteristics

机译:基于驾驶员特性的发动机开/关和电池充电功率控制的插电式混合动力汽车燃油经济性研究

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In this study, driving data for various types of drivers are collected using a VIDE (virtual integrated driving environment), and a driver model is developed. To represent the driver tendencies quantitatively, the DDA (degree of driver aggression) is proposed based on fuzzy logic. DDA has a 0-1 value; the closer the DDA is to one, the more aggressive the driver. Using the DDA, an engine on/off and battery charging power control algorithm are developed to improve the fuel economy of a power-split-type plug-in hybrid electric vehicle. The engine on/off control reduces the frequent engine on/off caused by aggressive driving, whereas the battery charging power control maintains the battery state of charge (SOC) by operating the engine according to the DDA. It is found that the proposed control algorithm improves fuel economy by 17.3% compared to the existing control for an aggressive driver.
机译:在这项研究中,使用VIDE(虚拟集成驾驶环境)收集了各种类型驾驶员的驾驶数据,并开发了驾驶员模型。为了定量表示驾驶员倾向,提出了基于模糊逻辑的DDA(驾驶员攻击程度)。 DDA值为0-1; DDA与DDA越近,驾驶员越积极。使用DDA,开发了发动机开/关和电池充电功率控制算法,以提高动力分配式插电式混合动力汽车的燃油经济性。发动机开/关控制减少了由激进驾驶导致的频繁发动机开/关,而电池充电功率控制通过根据DDA操作发动机来维持电池的充电状态(SOC)。发现与主动型驾驶员的现有控制相比,所提出的控制算法将燃油经济性提高了17.3%。

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