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Energy Management - A Key Approach to Design The System Structure of Powertrain Control: Technology Leadership Brief

机译:能源管理 - 一种设计动力总成控制系统结构的关键方法:技术领导综述

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摘要

The electrification of the powertrain, the diversity and the complexity of the more or less individual technical solutions which are preferred by different car manufacturers, create a steadily increasing challenge for the whole automotive industry. Missing standards and sales volumes still below the market expectations on the one hand, and the increasing interaction of the main powertrain domains (engine, transmission, e-drive) caused by upcoming cross domain functions on the other hand, lead to increasing development costs and non-optimal solutions concerning fuel economy improvement. Within the domain of engine management systems Bosch established in the mid-nineties the so called torque structure as the solution to a similar situation addressing the coordination of air management, fuel injection and ignition. Energy Based Powertrain Control is expected to deliver similar benefits based on the system level of powertrain control coordinating the interrelated control of engine, gearbox and e-machine.
机译:传动系中,多样性和由不同的汽车制造商首选的或多或少的个人技术解决方案的复杂的电气化,创造整个汽车行业稳步增长的挑战。缺少仍低于一方面是市场预期的标准和销量,而增加,另一方面造成即将到来的跨域功能的主要动力总成领域(发动机,变速箱,电子驱动器)的相互作用,导致增加了开发成本,关于燃料利用率提高非最优的解决方案。在发动机管理系统领域博世成立于九十年代中期,所谓的扭矩结构,解决了类似的情况解决空气管理,燃油喷射和点火的协调。能源动力系控制预计将提供基于动力总成控制的协调发动机,变速箱和电子设备的相互关联的控制系统级类似的好处。

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