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Development of electrical Kinetic Energy Recovery System (KERS) on motorcyle

机译:摩托车电气动能回收系统(KERS)的开发

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Motor vehicles in general are still much the rest of the energy is wasted when operated. One of wasted energy is the kinetic energy existing at the time of braking the vehicle. The more the vehicle is braking during running, the greater the potential kinetic energy that can be generated, so that the energy conservation system can be applied to these conditions. Currently there has been some hybrid vehicle system that can realize the energy conservation systems, one of which is the Kinetic Energy Recovery System (KERS). KERS method widely used in car, while applications on two-wheel motor vehicles are still limited to the mechanical KERS that efficiency is still relatively low. So in this study will be discussed about the design and simulation of electrically KERS implemented on two-wheeled vehicles. The design of this KERS used in the form of an electric motor drive system to rotate the wheels with the transmission pulley and belt. The electric motor will automatically be changed into a generator when braking the vehicle. While the source of electrical energy is used to rotate the electric motor is derived from the engine speed is connected to the generator and the electrical energy stored in the battery. In this study generated out of the current value of 26.12 Ampere generators and voltage of 67.96 volts when the engine in the optimum state. The maximum electric current generated from braking is four times as big as 573 watts, 582 watts, 2300 watts and 593 watts. Voltage generated from the braking vehicle is worth fluctuate and be different according to the input given, so that the design of KERS this added voltage stabilizer that can help become more stable before it is stored in the battery.
机译:机动车辆通常仍然大大,其余的能量在操作时浪费。浪费的能量之一是在制动车辆时存在的动能。车辆在跑步期间制动越多,可以产生的潜在动能越大,从而可以将节能系统应用于这些条件。目前已经存在一些混合动力车辆系统,可以实现节能系统,其中一个是动能回收系统(KERS)。 KERS方法广泛用于汽车,而两轮机动车辆上的应用仍然仅限于机械KERS,效率仍然相对较低。因此,在这项研究中将讨论关于在两轮车辆上实现的电气kers的设计和仿真。这种KERS的设计用于电动机驱动系统的形式,以将轮子与传动皮带轮和皮带旋转。在制动车辆时,电动机将自动改变为发电机。虽然电能源用于旋转电动机,从发动机速度导出连接到发电机和存储在电池中的电能。在该研究中,当发动机处于最佳状态时,在当前值为26.12安培的发电机和电压的电压时产生67.96伏。制动产生的最大电流是573瓦,582瓦,2300瓦和593瓦的四倍。从制动车辆产生的电压是值得波动的,并且根据所提供的输入不同,因此在存储在电池中之前可以有助于更稳定的kers的设计该增加的电压稳定器。

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