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Generator voltage stabilisation for the series-hybrid vehicle

机译:混合动力汽车的发电机电压稳定

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摘要

This paper presents a simple, robust controller for use in speed control of an internal combustion engine for series- hybrid electric vehicle applications. Particular reference is made to the stability of the rectified DC link voltage under load disturbance and potentially inaccurate system models. In the system under consideration, the primary power source is a 4-cylinder normally aspirated gasoline internal combustion engine, which is mechanically coupled to a three-phase permanent magnet AC generator. The generated AC voltage is subsequently rectified to supply a lead-acid battery, and permanent magnet traction motors via three-phase full bridge power electronic inverters. Two complementary performance objectives exist. Firstly to maintain the internal combustion engine at its optimal operating point, and secondly to supply a stable 42 V supply to the traction drive inverters. Achievement of these goals minimises the transient energy storage requirements at the DC link, with a consequent reduction in both weight and cost. These objectives imply constant velocity operation of the internal combustion engine under external load disturbances and changes in both operating conditions and vehicle speed set-points. An electronically operated throttle allows closed loop engine velocity control. System time-delays and non-linearities render closed loop control design extremely problematic. A model based controller is designed and shown to be robust in controlling the DC link voltage, resulting in well-conditioned operation of the hybrid vehicle.
机译:本文提出了一种简单,鲁棒的控制器,用于串联混合电动汽车应用中的内燃机的速度控制。特别参考在负载干扰和可能不准确的系统模型下整流的直流母线电压的稳定性。在所考虑的系统中,主要动力源为4缸常吸汽油内燃发动机,该发动机机械耦合至三相永磁交流发电机。产生的交流电压随后经过整流,以通过三相全桥功率电子逆变器为铅酸电池和永磁牵引电机供电。存在两个互补的绩效目标。首先,将内燃机保持在最佳运行点;其次,为牵引驱动逆变器提供稳定的42 V电源。这些目标的实现将直流链路上的暂态能量存储需求降到最低,从而减轻了重量和成本。这些目的意味着在外部负载干扰下以及运行条件和车速设定值的变化下内燃机的恒速运行。电子节气门允许闭环发动机速度控制。系统的时延和非线性使闭环控制设计极具问题。设计并显示了基于模型的控制器,该控制器在控制DC链路电压方面具有鲁棒性,从而可以使混合动力汽车的运行状况良好。

著录项

  • 作者

    Stewart Paul; Cowley R.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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