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Active Control of Rear Sub-frame Vibration in Rear and All-Wheel Drive Vehicles

机译:后部和全轮驱动车辆后亚框架振动的主动控制

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Feedback control of the rear sub-frame structure is used to abate its gear mesh induced vibration. The goal of the active control is to absorb vibration at a location close to the perturbation source, i.e., the rear differential. Proof mass actuators (PMAs) are used in this active vibration control application. A tuned absorption-based as well as a linear quadratic active vibration control schemes, each with its own advantages and disadvantages, were developed for this application. Following to the synthesis and numerical simulation of the two active vibration control strategies, they were first evaluated on a test structure in the laboratory. Following the laboratory evaluation, one of the active vibration control strategies was implemented on an all-wheel drive vehicle. Two small PMAs, mounted on the rear sub-frame of the vehicle, were used as the active elements in this vibration control application. An accelerometer placed next to each actuator was used as the feedback sensor. The effectiveness of active vibration control in absorbing the shaker induced vibration of the sub-frame was successfully demonstrated. In addition, rolling dynamometer tests showed effective vibration reduction of rear differential induced vibration of the sub-frame. As expected, lowering the sub-frame vibration resulted in lower vibration and noise in the cabin.
机译:后亚框架结构的反馈控制用于减轻其齿轮网格诱导的振动。主动控制的目标是在靠近扰动源的位置吸收振动,即后差分。在该主动振动控制应用中使用证明质量致动器(PMA)。为此应用开发了一种调谐的吸收基础,以及线性二次活动振动控制方案,每个优点和缺点都为此开发。在合成和数值模拟的两个主动振动控制策略之后,首先在实验室的测试结构上进行评估。在实验室评估之后,其中一个主动振动控制策略在全轮驱动车辆上实施。安装在车辆后部框架上的两个小PMA,用作该振动控制应用中的有源元素。放置在每个致动器旁边的加速度计用作反馈传感器。成功地证明了吸收振动筛诱导子框架振动的主动振动控制的有效性。此外,滚动测力计测试显示了子框架的后差分诱导振动的有效减振。如预期的那样,降低子框架振动导致机舱内的振动和噪声较低。

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