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Fuzzy control to improve high-voltage battery power and engine speed control in a hybrid electric vehicle

机译:模糊控制可提高混合动力电动汽车的高压电池功率和发动机转速

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With the recent emphasis on developing more environmentally friendly and fuel-efficient vehicles, Ford Motor Company developed a full hybrid electric vehicle (HEV) with a power-split hybrid powertrain consisting of an integrated motor and a generator. The power-split hybrid consists of two powertrains; an engine and an electric drive system. This powertrain provides a great potential to improve fuel economy in part due to its ability to operate engine at efficient regions independent of the vehicle speed. The engine speed determination in such a system depends on the desired high voltage (HV) battery power and the driver demand (driver torque/power request). Clearly, in order to control HV battery power to a desired power, a sophisticated controls system is essential which controls engine power to achieve the desired HV battery power. The desired engine power in turn determines the desired engine speed. It is essential that engine speed operation is smooth and stable with an acceptable response. Use of a classical proportional-integral (PI) based control system to control HV battery power is limited due to the nonlinear behavior of the powertrain, and results either in an undesired engine speed stability behavior under certain driving conditions or degraded response time. This paper presents a new nonlinear controls scheme based on a fuzzy controller to resolve the undesired engine speed behavior while achieving desired engine speed response and improved high-voltage battery power controls. Simulations are conducted with this controller and results show that the proposed fuzzy controller improves HV battery power controls and thereby the engine speed behavior and response time (e.g., no overshoots, improved settling time, and uncompromised rise time).
机译:由于最近着重于开发更环保,更省油的汽车,福特汽车公司开发了一种全混合动力电动汽车(HEV),其动力分配混合动力总成由一个集成的电动机和一个发电机组成。动力分配混合动力系统由两个动力总成组成。发动机和电驱动系统。该动力总成具有改善燃油经济性的巨大潜力,部分原因是它具有在与车速无关的有效区域操作发动机的能力。在这种系统中,发动机转速的确定取决于所需的高压(HV)电池功率和驾驶员的要求(驾驶员扭矩/功率要求)。显然,为了将HV电池的功率控制到所需的功率,先进的控制系统必不可少,该系统控制发动机功率以实现所​​需的HV电池的功率。期望的发动机功率又确定了期望的发动机转速。至关重要的是,发动机转速操作必须平稳,稳定并具有可接受的响应。由于动力总成的非线性行为,使用基于经典比例积分(PI)的控制系统来控制HV电池功率受到限制,并且在某些驾驶条件下会导致不良的发动机转速稳定性或响应时间缩短。本文提出了一种基于模糊控制器的新型非线性控制方案,以解决不良的发动机转速行为,同时实现所需的发动机转速响应和改进的高压电池功率控制。用该控制器进行了仿真,结果表明,所提出的模糊控制器改善了HV电池的功率控制,从而改善了发动机的转速性能和响应时间(例如,无超调,改进的建立时间和不妥协的上升时间)。

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