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A Cogging Torque Assisted Motor Driven Valve Actuation System For Internal Combustion Engines

机译:用于内燃机的齿槽扭矩辅助电动机驱动阀驱动系统

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Electromechanical valve actuation (EVA) for internal combustion engines promises to significantly improve engine efficiency and lower emissions by reducing pumping losses and allowing for novel combustion strategies. However, current designs have not been able to meet the stringent performance criteria for reliability, efficiency, acoustic emissions, weight, and cost that are required by the automotive industry. This paper describes a novel cogging torque assisted motor driven (CTAMD) valve actuation system that promises to meet both the performance and robustness requirements. In contrary to existing EVA systems that recover the kinetic valve energy using a mechanical spring system, the CTAMD system recovers kinetic energy in a magnetic field. This allows for high efficiency while maintaining a simple and elegant electromechanical design. This paper describes the characteristics of CTAMD systems and outlines an electromechanical design for such a system. Then computer simulations of the proposed design are used to demonstrate the expected performance of the system. Finally, the simulated results are compared to other EVA systems to highlight the anticipated improvements.
机译:用于内燃机的机电阀驱动(EVA)通过减少泵浦损耗并允许新的燃烧策略来显着提高发动机效率和降低排放。然而,目前的设计尚未能够满足汽车行业所需的可靠性,效率,声排放,重量和成本的严格性能标准。本文介绍了一种新型齿槽扭矩辅助电动机驱动(CTAMD)阀致动系统,其承诺满足性能和鲁棒性要求。与使用机械弹簧系统恢复动力阀能量的现有EVA系统相反,CTAMD系统在磁场中恢复动能。这允许高效率,同时保持简单而优雅的机电设计。本文介绍了CTAMD系统的特性,并概述了这种系统的机电设计。然后,所提出的设计的计算机模拟用于展示系统的预期性能。最后,将模拟结果与其他EVA系统进行比较,以突出预期的改进。

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