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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Efficient Exhaustive Search of Power-Split Hybrid Powertrains With Multiple Planetary Gears and Clutches
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Efficient Exhaustive Search of Power-Split Hybrid Powertrains With Multiple Planetary Gears and Clutches

机译:带有多个行星齿轮和离合器的功率分配混合动力总成的高效穷举搜索

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Planetary gear (PG) power-split hybrid powertrains have been used in producing hybrid and plug-in hybrid vehicles from the Toyota, General Motor, and Ford for years. Some of the most recent designs use clutches to enable multiple operating modes to improve launching performance and/or fuel economy. Adding clutches and multiple operating modes, however, also increases production cost and design complexity. To enable an exhaustive but fast search for optimal designs among a large number of hardware configurations, clutch locations, and mode selections, an automated modeling and screening process is developed in this paper. Combining this process with the power-weighted efficiency analysis for rapid sizing method (PEARS), an optimal and computationally efficient energy management strategy, the extremely large design space of configuration, component sizing, and control becomes feasible to search through. This methodology to identify optimal designs has yet to be reported in the literature. A case study to evaluate the proposed methodology uses the configuration adopted in the Toyota Hybrid Synergy (THS-II) system used in the Prius model year 2010 and the Hybrid Camry. Two designs are investigated to compare with the simulated Prius design: one uses all possible operating modes; and the other uses a suboptimal design that limits the number of clutches to three.
机译:多年来,行星齿轮(PG)动力分离式混合动力总成已用于生产丰田,通用汽车和福特的混合动力和插电式混合动力汽车。最近的一些设计使用离合器来实现多种操作模式,以改善启动性能和/或燃油经济性。但是,增加离合器和多种操作模式也会增加生产成本和设计复杂性。为了能够在大量硬件配置,离合器位置和模式选择中详尽,快速地搜索最佳设计,本文开发了一种自动建模和筛选过程。将此过程与功率加权效率分析(用于快速调整大小方法(PEARS)),优化和计算效率高的能源管理策略相结合,可以搜索到极大的配置,组件调整大小和控制设计空间。这种确定最佳设计的方法尚未在文献中报道。案例研究评估了拟议的方法,该方法使用了2010年普锐斯(Prius)车型和混合动力凯美瑞(Toyota Camry)中使用的丰田混合动力(THS-II)系统中的配置。研究了两种设计以与模拟Prius设计进行比较:一种使用所有可能的操作模式;另一种使用所有可能的运行模式。另一种则采用次优设计,将离合器的数量限制为三个。

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