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A HYBRID HYDRAULIC PROPULSION SYSTEM FOR RAILWAY MACHINERY

机译:铁路机械混合液压推进系统

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摘要

The vast majority of railway construction and maintenance machines is powered by compression-ignition combustion engines. The tendency of introducing stringent standard emission regulations for these prime movers, e.g. TIER 4, forces the migration toward downsized units. Additionally, the high price reached by diesel fuel in the last decades demands reductions of the machines' energy consumption in order to maintain the customers' operating costs competitive. Both targets can be achieved by implementing efficient hybrid hydraulic displacement-controlled architectures that reduce pollutants emissions and benefit fuel saving without affecting the system's productivity. For these reasons, this research paper aims at investigating the potentials of a series-parallel hybrid architecture grounded on secondary controlled hydraulic motors and potentially suitable for any railway construction and maintenance machinery. The results demonstrate that the rated engine power can be reduced by at least 35% in the reference application by applying such a propulsion system. Specifically, the high-fidelity multi-domain dynamic model created for sizing, analyzing, and controlling this displacement-controlled layout is addressed. Special focus is dedicated to the rail/wheel interface confirming that the proposed control strategy maintain the slip/spin of the wheels within the desired limits.
机译:绝大多数铁路建筑和维护机由压缩点火燃烧发动机供电。为这些主要搬运工引入严格的标准排放法规的趋势,例如,第4段,迫使迁移到缩小单位。此外,柴油燃料达到的高价格在过去几十年中要求减少机器能耗,以保持客户的运营成本竞争力。两种目标都可以通过实施有效的混合液压位移控制架构来实现减少污染物排放和益处节省而不会影响系统的生产力。出于这些原因,本研究文件旨在调查在二次控制液压马达接地的系列平行混合架构的潜力,并可能适用于任何铁路建筑和维护机械。结果表明,通过施加这种推进系统,额定发动机功率可以在参考应用中减少至少35%。具体地,解决了用于大小,分析和控制该位移控制的布局的高保真多域动态模型。特殊焦点专用于轨道/轮界面,确认所提出的控制策略在所需限度内保持车轮的滑动/旋转。

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