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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Switch-Mode Continuously Variable Transmission: Modeling and Optimization
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Switch-Mode Continuously Variable Transmission: Modeling and Optimization

机译:开关模式无级变速器:建模和优化

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摘要

Hybrid vehicles are an important step toward reducing global petroleum consumption and greenhouse gas emissions. Flywheel energy storage in a hybrid vehicle combines high energy density and high power density, yet requires a highly efficient continuously variable transmission with a wide operating range. This paper presents a novel solution to coupling a high-speed flywheel to the drive train of a vehicle, the switch-mode continuously variable transmission (CVT). The switch-mode CVT, the mechanical analog of a boost converter from power electronics, utilizes a rapidly switching clutch to transmit energy from a flywheel to a spring, which applies a torque to the drive train. By varying the duty ratio of the clutch, the average output torque is controlled. This paper examines the feasibility of this concept by formulating a mathematical model of the switch-mode CVT, which is then placed in state-space form. The state-space formulation is leveraged to analyze the system stability and perform simple optimization of the switch time and damping rate of the spring over the first switching period. The results of this work are that a stable equilibrium does exist when the speed of the output shaft is zero, but the system will not reach and stay at a desired torque if this condition is not met, but requires continuous switching between the two states. An optimal switching time and damping ratio were found for the given parameters, where the lowest error occurred with low values of damping ratio. This work builds a foundation for future work in increasing the complexity of the model and the optimization method.
机译:混合动力汽车是减少全球石油消耗和温室气体排放的重要一步。混合动力汽车中的飞轮储能结合了高能量密度和高功率密度,但仍需要具有宽工作范围的高效无级变速器。本文提出了一种新颖的解决方案,将高速飞轮连接至车辆的传动系统,即开关模式无级变速器(CVT)。开关模式CVT是动力电子技术中升压转换器的机械模拟,它利用快速切换的离合器将能量从飞轮传递到弹簧,该弹簧将扭矩施加到传动系统上。通过改变离合器的占空比,可以控制平均输出扭矩。本文通过建立开关模式CVT的数学模型,然后将其放置在状态空间形式中,研究了此概念的可行性。利用状态空间公式分析系统稳定性,并在第一切换周期内对切换时间和弹簧的阻尼率进行简单的优化。这项工作的结果是,当输出轴的速度为零时,确实存在稳定的平衡,但是如果不满足此条件,系统将不会达到并保持在所需的转矩,而是需要在两种状态之间进行连续切换。对于给定的参数,找到了最佳的切换时间和阻尼比,其中最小的误差发生在阻尼比值较低的情况下。这项工作为将来增加模型和优化方法的复杂性奠定了基础。

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