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Analysis of Dual Mode Continuously Variable Transmission for Flywheel Energy Storage Systems

机译:飞轮储能系统双模无级变速器分析

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摘要

There are different types of energy storage devices which are used in today’s hybrid and electric vehicles. Batteries, ultra capacitors and high speed flywheels are the most commonly used ones. While batteries and supercapacitors store energy in the form of electric energy, the flywheel (FW) is the only device that keeps the energy stored in the original form of mechanical energy the same as the moving vehicle. The flywheel needs to be coupled to the driveshaft of the vehicle in a manner which allows it to vary its speed independently of the moving vehicle in order to vary its energy content. In other words a continuously variable transmission (CVT) is needed. The common mechanical variators used in automotive applications, namely the rolling traction drives and the belt drives, have the disadvantage that their speed ratio range defined as the maximum to minimum speed ratio is generally not sufficient for flywheel energy storage system (FESS). One of the ways to improve the ratio range is by using a dual mode transmission, where the ratio coverage of the variator is exploited twice. This paper presents the fundamental kinematics of such a transmission including its variants. The equations of speed ratio, power flow and efficiency are derived for a variator only transmission and a power split CVT (PSCVT) used in dual mode and the results compared.
机译:当今的混合动力和电动汽车使用不同类型的能量存储设备。电池,超级电容器和高速飞轮是最常用的电池。电池和超级电容器以电能形式存储能量时,飞轮(FW)是唯一使以机械能原始形式存储的能量与行驶中的车辆相同的设备。飞轮需要以允许其独立于行驶中的车辆改变其速度的方式耦合到车辆的驱动轴,以便改变其能量含量。换句话说,需要无级变速器(CVT)。在汽车应用中使用的常见机械变速器,即滚动牵引驱动器和皮带驱动器,具有以下缺点:它们定义为最大到最小速度比的速度比范围通常不足以供飞轮储能系统(FESS)使用。改善传动比范围的方法之一是使用双模式变速器,其中变速器的传动比范围被利用了两次。本文介绍了这种变速箱的基本运动学,包括其变型。推导了在双模式下使用的仅变速箱变速器和功率分配CVT(PSCVT)的速度比,功率流和效率方程,并对结果进行了比较。

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    Dhand A.; Pullen K. R.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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