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A novel method for idle-stop-start control of micro hybrid construction equipment—Part A : fundamental concepts and design

机译:微型混合动力建筑设备怠速起步控制的新方法——A部分:基本概念和设计

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摘要

Although micro hybrid propulsion (MHP) systems are recognized as a feasible solution for off-highway construction machines (OHCMs), there is still a lack of understanding how existing MHP technologies can be transferred effectively from the automotive sector to the construction sector. To fill this gap, this paper is the first of a two-part study which focuses on micro hybrid construction machines paying attention to a novel idle-stop-start control (ISSC) strategy. Part A presents the system concepts and design procedure while Part B studies on a hardware-in-the-loop test platform for a comprehensive analysis on the potential fuel/emission saving of the proposed system in real-time. In this study—Part A—different types of OHCMs are briefly discussed to identify the target machine. The procedure to model the machine powertrain is also concisely introduced. Next, to minimize the fuel consumption and emissions without degrading the machine performance, a prediction-based idle-stop-start control (PISSC) approach is properly designed. The core of the PISSC is to estimate online the future engine working state changes in order to directly shut down the engine or shift it to low power regions during idle periods. Numerical simulations have been carried out to validate the potential of the proposed PISSC method.ud
机译:尽管微型混合动力(MHP)系统被公认为是非公路工程机械(OHCM)的可行解决方案,但是仍然缺乏对如何将现有MHP技术有效地从汽车领域转移到建筑领域的理解。为了填补这一空白,本文是一项由两部分组成的研究的第一篇,该研究集中在微型混合动力建筑机械上,该研究关注新型的怠速停止启动控制(ISSC)策略。 A部分介绍了系统的概念和设计过程,而B部分则在硬件在环测试平台上进行了研究,以实时全面分析所提议系统的潜在燃料/排放节省量。在本研究(A部分)中,简要讨论了不同类型的OHCM,以识别目标机器。还简要介绍了对机器动力系进行建模的过程。接下来,为了在不降低机器性能的情况下最小化燃料消耗和排放,适当设计了基于预测的怠速停止启动控制(PISSC)方法。 PISSC的核心是在线估计未来发动机工作状态的变化,以便在怠速期间直接关闭发动机或将其移至低功率区域。已经进行了数值模拟,以验证所提出的PISSC方法的潜力。 ud

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