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Experimental Study on Performance of a Parallel Diesel Hybrid Vehicle Retrofitted with a Single Planetary Gear Train as an Add-On Transmission

机译:平行柴油混合动力车辆及单行星齿轮系改装性能的实验研究作为附加传动

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The paper describes major design choices and development process used to produce a prototype of a rear-wheel drive parallel hybrid electric vehicle. This diesel electric hybrid vehicle is different from other hybrid with regard to the powertrain. The paper focuses on the design, development and performance evaluation of this unique parallel diesel electric vehicle which is based on multimode hybrid powertrain comprised of a single planetary gear train as an additional transmission along with the manual gearbox of the conventional diesel vehicle and AC induction motor. The implementation of the new design enables to overcome many problems encountered in the traditional vehicles. Constant mesh spur type simple planetary gear set transmission is designed for the intended application. To demonstrate the practical applicability of the transmission and this hybrid configuration, one prototype vehicle is built integrating the transmission. The hybrid system makes it easy to retrofit existing vehicles because the changes required in the vehicle drivetrain are minimum. Unlike the conventional diesel engine, the hybrid vehicle provides significant additional functionality to the driver. Five modes of operation, namely, engine-only, electric-only, hybrid power mode, engine/charge and regenerative braking modes are possible in the developed hybrid vehicle. Even if one system (the electrical system or the IC engine) fails, still the vehicle would remain functional on the other system. Its driving performance, fuel economy and emissions are measured and results are analyzed over a given drive cycle. The results showed that the hybrid vehicle is about 30% faster than the equivalent conventional vehicle. The fuel economy is increased by 26% approximately compared to the conventional powertrain.
机译:本文介绍了用于生产后轮驱动平行混合动力电动车的原型的主要设计选择和开发过程。该柴油电动混合动力车辆与关于动力系的其他混合动力车不同。本文侧重于这种独特的平行柴油电动车辆的设计,开发和性能评估,该车辆基于多模混合动力系包括单个行星齿轮系,作为额外的传输以及传统的柴油车辆和交流感应电动机的手动齿轮箱。新设计的实施使得能够克服传统车辆中遇到的许多问题。恒定网格型简单行星齿轮组设计专为预期应用而设计。为了证明传输的实际适用性和这种混合配置,建立了一个原型车辆,整合了变速器。混合动力车系统使现有车辆易于改造,因为车辆动力传动系统所需的变化最小。与传统的柴油发动机不同,混合动力车辆为驾驶员提供了重要的附加功能。在开发的混合动力车辆中,可以使用五种操作模式,即仅发动机,电动,混合动力电力模式,发动机/充电和再生制动模式。即使一个系统(电气系统或IC发动机)发生故障,车辆仍将在其他系统上保持功能。测量其驾驶性能,燃料经济性和排放,并在给定的驱动周期内分析结果。结果表明,混合动力车辆比等同的常规车辆快约30%。与传统动力总统相比,燃油经济性近似增加了26%。

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