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A novel anti-idling system for service vehicles

机译:一种用于服务车辆的新型防怠速系统

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This paper presents a novel anti-idling system, namely, a regenerative auxiliary power system (RAPS) for service vehicles. Auxiliary devices, such as a refrigeration system in a food delivery truck, require the engine to idle for providing auxiliary power while the truck stops for loading or unloading. By electrifying auxiliary systems, a battery pack can supply the auxiliary load, thereby reducing engine idling. The main advantages of the proposed anti-idling system over existing technologies are the optimal design and optimal performance (smart charging strategy) which lead to lower overall cost and less fuel consumption. The size of the components in the proposed system is optimized by a multidisciplinary design optimization approach to meet the conditions of compactness, modularity, and ease of installation. By introducing the anti-idling system to a service vehicle, its powertrain becomes hybrid due to the addition of a battery pack. Therefore, to optimize the efficiency, a power management system is developed to decide when and how to charge the battery. This controller operates based on the duty cycle that can be obtained by the proposed prediction method. (c) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型的防空转系统,即用于服务车辆的再生辅助动力系统(RAPS)。辅助设备,例如送餐卡车中的制冷系统,需要发动机空转以提供辅助动力,而卡车则停止进行装载或卸载。通过给辅助系统通电,电池组可以提供辅助负载,从而减少发动机空转。与现有技术相比,所提出的防空转系统的主要优势在于优化的设计和最佳的性能(智能充电策略),从而降低了总体成本并降低了油耗。拟议系统中组件的大小通过多学科设计优化方法进行了优化,以满足紧凑性,模块化和易于安装的条件。通过将防怠速系统引入服务车辆,由于增加了电池组,其动力总成成为混合动力。因此,为了优化效率,开发了电源管理系统来决定何时以及如何给电池充电。该控制器基于可以通过建议的预测方法获得的占空比进行操作。 (c)2017 Elsevier Ltd.保留所有权利。

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