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Optimum Control of a Hydrostatic Powertrain in the presence of Accessory Loads

机译:在附件负荷存在下的静水压动力系的最佳控制

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In off-highway applications the engine torque is distributed between the transmission (propulsion) and other accessories such as power steering, air conditioning and implements. Electronic controls offer the opportunity to more efficiently manage the control of the engine and transmission as an integrated system. This paper deals with development of a steepest descent algorithm for maximizing the efficiency of hydrostatic transmission along with the engine in the presence of accessory load. The methodology is illustrated with an example. The strategy can be extended to the full hydro-mechanical configuration as required. Applications of this approach include adjusting for component wear and intelligent energy management between different accessories for possible size reduction of powertrain components. The potential benefits of this strategy are improved fuel efficiency and operator productivity. The simplicity of the control algorithm lends itself to easy real time implementation with minimum memory and processing requirements.
机译:在非公路应用中,发动机扭矩分布在变速器(推进)和其他配件之间分布,例如动力转向,空调和实施。电子控件提供了更有效地管理发动机控制和作为集成系统的传输的机会。本文涉及开发最陡的血液算法,用于最大限度地提高静水压传递效率以及发动机在附件负载的情况下。该方法用一个例子说明。根据需要,该策略可以扩展到完全水力机械配置。这种方法的应用包括调整不同附件之间的组件磨损和智能能量管理,以实现动力总成部件的可能尺寸减小。该策略的潜在好处是提高燃油效率和操作员的生产率。控制算法的简单性地利用了具有最小内存和处理要求的实时实现。

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