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首页> 外文期刊>Journal of aerospace engineering >Active Vibration Control of Time-Varying Structural Systems with a Logic FxLMS Algorithm
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Active Vibration Control of Time-Varying Structural Systems with a Logic FxLMS Algorithm

机译:具有逻辑FXLMS算法的时变结构系统的主动振动控制

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摘要

The filtered-x least mean square (FxLMS) algorithm has been widely used in active noise and vibration control of time-varying structural systems, where the secondary path is estimated online by injecting an auxiliary signal. However, the continuous injection of an auxiliary signal will increase the residual error. In this paper, a logic unit is proposed to remove such a drawback from the LMS-based control algorithm. The logic unit decides whether to start/stop injecting an auxiliary signal. The start procedure (SAP) and stop procedure (SOP) send out trigger signals of the logic unit. A flexible structure, which has a time-varying concentrated mass, was established to investigate the adaptive control method. Simulation and experiments were conducted to verify the feasibility and effectiveness of the logic unit. The results have proved that the adaptive control method with the logic unit can suppress vibration effectively in the presence of time-varying dynamics.
机译:过滤器X最小均线(FXLMS)算法已广泛用于有源噪声和时变结构系统的振动控制,其中辅助路径通过注入辅助信号在线估计。但是,连续注入辅助信号将增加残余误差。在本文中,提出了一种逻辑单元以从基于LMS的控制算法去除这种缺点。逻辑单元决定是否开始/停止注入辅助信号。启动过程(SAP)和停止过程(SOP)发送逻辑单元的触发信号。建立了具有时变浓缩质量的柔性结构,以研究自适应控制方法。进行了仿真和实验以验证逻辑单元的可行性和有效性。结果证明,在存在时变动态的情况下,具有逻辑单元的自适应控制方法可以有效地抑制振动。

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