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Mechanical Continuously Variable Transmission (CVT) for Parallel Hybrid vehicle

机译:用于平行混合动力车辆的机械连续可变变速器(CVT)

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Transmission system is the heart of any automobile. An efficient transmission system always leads to better fuel economy. As we know, parallel hybrid vehicles use electric as well as fuel power simultaneously to drive the vehicle. For specific power developed, since (Power) = (Torque).(Speed), for a specific speed, optimum torque will be well defined. If we use conventional gearbox in the transmission train, we get stepped speeds. It is not possible to tap any intermediate speed from conventional drive. Concept of 'Proportional Loss of Speed' says that if we want a specific speed, which is not available in the conventional gear train for a particular instant, the higher or lower speed chosen, causes loss of power. Since electrical as well as mechanical efficiencies both are defining the total efficiency of the drive, it is not desirable to allow loss of power at any instant. That means we must use such a drive in which any particular speed in the given range can be tapped. This is possible using Continuously Variable Transmission (CVT). This paper will discuss Mechanical Transmission System Design and CVT control philosophy to optimize energy efficiency of the system.
机译:传输系统是任何汽车的心脏。高效的传输系统总能导致更好的燃油经济性。如我们所知,并行混合动力车辆使用电动和燃料功率同时驾驶车辆。对于特定的功率,由于(电源)=(扭矩)。(速度),对于特定速度,将定义最佳扭矩。如果我们在传输列车中使用传统变速箱,我们会得到阶梯式速度。不可能从传统的驱动器中挖掘任何中间速度。 '比例速度速度的概念'表示,如果我们想要特定速度,在特定瞬间的传统齿轮系中没有可用的,所选择的较高或更低的速度,导致功率损失。由于电气以及机械效率都定义了驱动器的总效率,因此不希望允许在任何瞬间丢失电力。这意味着我们必须使用这种驱动器,其中可以挖掘给定范围内的任何特定速度。这是使用连续可变变速器(CVT)可以的。本文将讨论机械传输系统设计和CVT控制理念,以优化系统的能效。

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