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DESIGN OF AN ACTIVE CONTROL ENGINE MOUNT USING A DIRECT DRIVE ELECTRODYNAMIC ACTUATOR

机译:使用直接驱动电动电动执行器设计有源控制发动机支架

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This paper is focused on design of a new active control engine mount (ACM), which is both compact in size and cost effective. The ACM, consisting of an electrodynamic actuator as the active element, flat springs and a sliding ball joint, is different in structure from the previous ACM designs based on the conventional hydraulic engine mount. Dynamic characteristics of the proposed ACM are extensively investigated before a prototype ACM, which meets the design specifications, is built in the laboratory. For cost effectiveness, a feed-forward control algorithm without a feedback sensor is used for reduction of the transmitted force through the ACM by the engine. The prototype ACM is then harmonic-tested with a rubber testing machine for verification of its control performance as well as adequacy of modeling. Experimental results show that the proposed ACM is capable of reducing the transmitted force by 20 dB up to the frequency range of 60 Hz.
机译:本文专注于设计新的主动控制发动机支架(ACM),既尺寸紧凑,成本效益。由电动致动器作为有源元件,平坦弹簧和滑动球接头组成的ACM在基于传统的液压发动机支架的先前ACM设计的结构中不同。在符合设计规格的原型ACM之前,建议ACM的动态特性是在实验室内建造的。为了成本效益,没有反馈传感器的前馈控制算法用于通过发动机通过ACM减少透射力。然后,原型ACM用橡胶试验机进行谐波测试,以验证其控制性能以及建模的充分性。实验结果表明,所提出的ACM能够将透射力降低20 dB,直至60Hz的频率范围。

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