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SELF-STARTING COGGING-TORQUE-ASSISTED MOTOR DRIVE FOR USE IN A HEAVY-DUTY DIESEL ENGINE

机译:用于重型柴油发动机的自启动嵌齿转矩辅助电动机驱动器

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This paper describes the design process and simulation results of a variable valve actuation system modeled after the cogging-torque-assisted motor drive (CTAMD) found in literature. Unlike the CTAMD, the new design is capable of handling large exhaust pressures. Furthermore, the new design incorporates damper windings to improve upon the CTAMD by enabling self-starting. The new variable valve actuator is designed for the 6-cylinder Westport 15L diesel engine. The simulated results suggest that the new variation of the CTAMD can be effectively applied to a turbocharged heavy-duty diesel engine. Simulation results show that the designed motor is capable of self-starting, and infinitely variable lifts. The damper windings are shown to be more beneficial at enabling self-starting and infinitely variable lifts than a spring, since they do not impose additional energy requirements during a valve transition. Furthermore, the new design is also shown to be capable of actuating exhaust valves in the presence of cylinder pressures up to 16 bar with similar efficiency to that of a standard camshaft valve train.
机译:本文描述了以文献中发现的齿槽转矩辅助电动机驱动器(CTAMD)为模型的可变气门致动系统的设计过程和仿真结果。与CTAMD不同,新设计能够处理较大的排气压力。此外,新设计还结合了阻尼绕组,通过实现自启动来改善CTAMD。新型可变气门执行器是为6缸Westport 15L柴油发动机设计的。仿真结果表明,CTAMD的新版本可以有效地应用于涡轮增压重型柴油机。仿真结果表明,所设计的电动机具有自动启动和无限可变升程的能力。阻尼器绕组显示出比弹簧更有利于实现自启动和无限可变的升程,因为阻尼器绕组在气门转换过程中不会增加额外的能量需求。此外,新设计还显示出能够在气缸压力高达16 bar的情况下以与标准凸轮轴气门机构相似的效率来致动排气门。

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