首页> 外文会议>IEA/AIE 2010;International conference on industrial engineering and other applications of applied intelligent systems >An Intelligent Interface with Composite Dominant Directed Graph Based Petri Nets Controller for Rotatable Solar Panel in Integrated PHEV System
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An Intelligent Interface with Composite Dominant Directed Graph Based Petri Nets Controller for Rotatable Solar Panel in Integrated PHEV System

机译:集成PHEV系统中基于混合有向有向图的Petri网控制器的智能接口。

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摘要

This paper proposes an intelligent dominant directed graph (DDG) based Petri nets (PN) controller to increase the efficiency of the plug-in hybrid electric vehicle (PHEV) by using rotatable solar panel. Conventionally, the PHEV with solar panel has a critical problem of putting on the roof of a PHEV. Since the limited space on the roof of the vehicle is not large enough. Rotatable structure is considered to track the sunlight by intelligent dominant directed graph based Petri nets controller. The mechanical maximum power point tracking (MPPT) function can be achieved. A stepping motor is used to control the rotating angle of the rotating solar panel. With the composite mechanical MPPT with DDG+PN control algorithms, the maximum power in a limited roof space of the vehicle is possible. The solar panel has not to be very large. This increases the efficiency of the PHEV. It is convinced that the proposed DDG+PN MPPT algorithms are applicable to the PHEV system.
机译:本文提出了一种基于智能显性有向图(DDG)的Petri网(PN)控制器,以通过使用可旋转太阳能电池板提高插电式混合动力汽车(PHEV)的效率。常规地,带有太阳能电池板的插电式混合电动汽车具有放置在插电式混合动力汽车的屋顶上的关键问题。由于车辆车顶上的有限空间不够大。通过基于Petri网的智能显性有向图控制器,可旋转结构被认为可以追踪太阳光。可以实现机械最大功率点跟踪(MPPT)功能。步进电动机用于控制旋转的太阳能电池板的旋转角度。借助具有DDG + PN控制算法的复合机械MPPT,可以在车辆有限的车顶空间内获得最大功率。太阳能电池板不必太大。这提高了PHEV的效率。确信所提出的DDG + PN MPPT算法适用于PHEV系统。

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