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Optimized de-inertia control method for kinetic hybrids

机译:动态混合动力的优化惯性控制方法

摘要

Method for CVT and powertrain control in a kinetic hybrid that integrates two constituent control strategies at the same time, one for the kinetic energy exchange between a vehicle and a flywheel to recover the vehicle's kinetic energy and to cancel the effect of the vehicle's inertia on changes in speed, and one for operating the kinetic hybrid's prime mover on its ideal operation line to optimize efficiency. Two different rates of change in the CVT ratio are computed in real time and are superimposed to realize both strategies. Using the combined rate of change in the CVT ratio derived by the present invention to control the powertrain, the primary power source need not expend a significant portion of its power to overcome the vehicle's inertia, and performance is not compromised.
机译:混合动力系统中用于无级变速和动力总成控制的方法,该方法同时集成了两种组成控制策略,一种用于车辆和飞轮之间的动能交换,以恢复车辆的动能并消除车辆惯性对变化的影响速度方面的优势,一种用于在其理想的操作路线上操作动力混合动力原动机以优化效率的方法。实时计算CVT比率的两个不同变化率,并将其叠加以实现这两种策略。使用本发明得出的CVT比率的组合变化率来控制动力总成,主动力源不需要花费其动力的很大一部分来克服车辆的惯性,并且性能不会受到损害。

著录项

  • 公开/公告号US9266521B2

    专利类型

  • 公开/公告日2016-02-23

    原文格式PDF

  • 申请/专利权人 HONGPING HE;JING HE;

    申请/专利号US201414325304

  • 发明设计人 HONGPING HE;JING HE;

    申请日2014-07-07

  • 分类号B60L9;B60L11;B60W10/101;B60W10/06;B60W10/08;G06F7;G06F17;G06F19;G01G9;B60K6/10;

  • 国家 US

  • 入库时间 2022-08-21 14:30:11

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