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Topological analysis of powertrains for refusecollecting vehicles based on real routes – Part I: Hybrid hydraulic powertrain

机译:基于实际路线的垃圾收集车动力系统拓扑分析第一部分:混合动力液压动力总成

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摘要

In this two-part paper, a topological analysis of powertrains for refuse-collecting vehicles (RCVs) based on the simulation of different architectures (internal combustion engine, hybrid electric, and hybrid hydraulic) on real routes is proposed. In this first part, a characterization of a standard route is performed, analyzing the average power consumption and the most frequent working points of an internal combustion engine (ICE) in real routes. This information is used to define alternative powertrain architectures. A hybrid hydraulic powertrain architecture is proposed and modelled. The proposed powertrain model is executed using two different control algorithms, with and without predictive strategies, with data obtained from real routes. A calculation engine (an algorithm which runs the vehicle models on real routes), is presented and used for simulations. This calculation engine has been specifically designed to analyze if the different alternative powertrain delivers the same performance of the original ICE. Finally, the overall performance of the different architectures and control strategies are summarized into a fuel and energy consumption table, which will be used in the second part of this paper to compare with the different architectures based on hybrid electric powertrain. The overall performance of the different architectures indicates that the use of a hybrid hydraulic powertrain with simple control laws can reduce the fuel consumption up to a 14 %.
机译:在这个由两部分组成的论文中,基于实际路线上不同架构(内燃机,混合动力和混合液压)的仿真,提出了垃圾收集车(RCV)动力总成的拓扑分析。在第一部分中,对标准路线进行了表征,分析了实际路线中内燃机(ICE)的平均功耗和最频繁的工作点。此信息用于定义替代的动力总成体系结构。提出并建模了混合液压动力总成体系结构。所提出的动力总成模型是使用两种不同的控制算法执行的,有无预测策略,以及从真实路线获得的数据。提出了一种计算引擎(在真实路线上运行车辆模型的算法)并将其用于仿真。该计算引擎经过专门设计,可以分析不同的替代动力总成是否提供与原始ICE相同的性能。最后,将不同架构和控制策略的总体性能汇总到一个燃料和能耗表中,该表将在本文的第二部分中用于与基于混合动力总成的不同架构进行比较。不同架构的总体性能表明,采用具有简单控制律的混合液压动力总成可以将燃油消耗降低多达14%。

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