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Continuously variable transmission control system for Toyota intelligent idling stop system

机译:用于丰田智能怠速停止系统的连续变速器控制系统

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As requirements for protecting the global environment are being heightened on a worldwide scale in recent years, the development of low fuel consumption technologies in order to inhibit the discharge of CO{sub}2 is an important issue for the automotive industry. Recently, Toyota has developed a Super CVT for the 1.3- to 1.5-liter class vehicles to further improve their fuel economy. This CVT has been adopted on vehicles equipped with the "idling stop system". The "idling stop system" automatically stops the engine when the vehicle is stopped and the transmission shift lever is in the "D" position (e.g., when the vehicle is at a stoplight). This improves the fuel economy of the vehicle by eliminating fuel consumption while the vehicle is stopped. The conventional CVT poses unique conditions such as startoff time lag or shock after the engine is restarted. These conditions occur because the CVT oil pump cannot generate hydraulic pressure while the engine is stopped. To solve these problems, the Super CVT system has been developed in order to optimally control the hydraulic pressure while the engine is being stopped automatically. This is accomplished through the use of an electric oil pump in addition to the conventional CVT oil pump. As a result, this system ensures convenient and reliable operation when the engine is restarted.
机译:由于近年来在全球范围内提高了保护全球环境的要求,以抑制CO {SUB} 2排放的低燃料消耗技术的发展是汽车行业的重要问题。最近,丰田已经为1.3至1.5升班级车辆开发了超级CVT,以进一步提高燃料经济性。该CVT已采用配备“怠速停止系统”的车辆。当车辆停止时,“空转停止系统”自动停止发动机,并且传输换档杆处于“D”位置(例如,当车辆处于氧化灯时)。通过在车辆停止时消除燃料消耗,这通过消除燃料消耗来改善车辆的燃料经济性。传统的CVT在发动机重新启动后造成独特的条件,例如起始时间滞后或冲击。发生这些条件,因为在发动机停止时,CVT油泵不能产生液压。为了解决这些问题,已经开发了超级CVT系统,以便在发动机自动停止时最佳地控制液压。除了传统的CVT油泵之外,这是通过使用电动油泵来实现的。因此,该系统确保在重新启动发动机时的方便可靠操作。

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