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首页> 外文期刊>The Archive of Mechanical Engineering >IMPLEMENTATION OF AN ELECTRONIC CIRCUIT FOR SSSA CONTROL APPROACH OF A PLATE TYPE ELEMENT AND EXPERIMENTAL MATCH WITH A FEED-FORWARD APPROACH
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IMPLEMENTATION OF AN ELECTRONIC CIRCUIT FOR SSSA CONTROL APPROACH OF A PLATE TYPE ELEMENT AND EXPERIMENTAL MATCH WITH A FEED-FORWARD APPROACH

机译:板式元素的SSSA控制方法的电子电路的实现与前馈方法的实验匹配

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Successful implementation of an active vibration control system is strictly correlated to the exact knowledge of the dynamic behavior of the system, of the excitation level and spectra and of the sensor and actuator's specification. Only the correct management of these aspects may guarantee the correct choice of the control strategy and the relative performance. Within this paper, some preliminary activities aimed at the creation of a structurally simple, cheap and easily replaceable active control systems for metal panels are discussed. The final future aim is to control and to reduce noise, produced by vibrations of metal panels of the body of a car. The paper is focused on two points. The first one is the realization of an electronic circuit for Synchronized Shunted Switch Architecture (SSSA) with the right dimensioning of the components to control the proposed test article, represented by a rectangular aluminum plate. The second one is a preliminary experimental study on the test article, in controlled laboratory conditions, to compare performances of two possible control approach: SSSA and a feed-forward control approach. This comparison would contribute to the future choice of the most suitable control architecture for the specific attenuation of structure-born noise related to an automotive floor structure under deterministic (engine and road-tyre interaction) and stochastic (road-tyre interaction and aerodynamic) forcing actions.
机译:有源振动控制系统的成功实现与系统动态行为的确切知识,激励水平和光谱和传感器和致动器的规范的确切知识。只有对这些方面的正确管理可以保证正确选择控制策略和相对性能。在本文中,讨论了一些初步活动,旨在为金属面板创建结构简单,便宜且可更换的有源控制系统。最后的未来目的是控制和减少噪音,由汽车身体的金属面板振动产生。本文专注于两点。第一个是实现用于同步分流交换机架构(SSSA)的电子电路,其具有组件的正确尺寸,以控制所提出的测试制品,由矩形铝板表示。第二个是对测试制品,在受控实验室条件下进行初步实验研究,以比较两种可能的控制方法的性能:SSSA和前馈控制方法。这种比较将有助于未来选择最合适的控制架构,以便在确定性(发动机和道路交互相互作用)和随机(道路轮胎相互作用和空气动力学)强制上强制使用与汽车楼层结构相关的结构出生噪声的特定衰减行动。

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