Rule-based supervisory control of split-parallel hybrid electric vehicle

S. Anbaran, N. Idris, M. Jannati, M. J. Aziz, I. Alsofyani
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引用次数: 18

Abstract

Hybrid electric vehicles (HEVs) have been a hot topic of research over recent years due to their features whereby make them a feasible solution to tackle concerns regarding to global warming. HEVs powertrain control plays an important role to accomplish control objectives such as low emission and good vehicle performance. This paper presents a system-level simulation and rule-based supervisory control strategy of a Split-Parallel Hybrid electric vehicle (SPHEV) which can be regarded as Parallel-HEV powertrain family. Advance vehicle Simulator (ADVISOR) is used to determine the sizing and ratings of key components of SPHEV driveline to satisfy specific performance constraints. Then physical model of the vehicle of interest is developed and simulated in Matlab/Simscape environment. Subsequently, simulation results are presented and discussed in terms of their effectiveness and accuracy.
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分并联混合动力汽车基于规则的监督控制
近年来,混合动力电动汽车(hev)因其独特的特性成为解决全球变暖问题的可行方案,成为研究的热点。混合动力汽车动力系统控制对实现低排放、高性能等控制目标起着重要作用。本文提出了一种分并联混合动力汽车(SPHEV)的系统级仿真和基于规则的监督控制策略。先进车辆模拟器(ADVISOR)用于确定SPHEV传动系统关键部件的尺寸和额定值,以满足特定的性能约束。然后在Matlab/Simscape环境下对目标车辆的物理模型进行了开发和仿真。最后给出了仿真结果,并对其有效性和准确性进行了讨论。
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