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Evaluation of the performance of a passive-active vibration isolation system

机译:被动-主动隔振系统性能评估

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The behavior of a feedforward active isolation system subjected to actuator output constraints is investigated. Distributed parameter models are developed to analyze the system response, and to produce a transfer matrix for the design of an integrated passive-active isolation system. Cost functions considered here comprise a combination of the vibration transmission energy and the sum of the squared control forces. The example system considered is a rigid body connected to a simply supported plate via two isolation mounts. The overall isolation performance is evaluated by numerical simulation. The results show that the control strategies which rely on unconstrained actuator outputs may give substantial power transmission reductions over a wide frequency range, but also require large control force amplitudes to control excited vibration modes of the system. Expected power transmission reductions for modified control strategies that incorporate constrained actuator outputs are considerably less than typical reductions with unconstrained actuator outputs. The active system with constrained control force outputs is shown to be more effective at the resonance frequencies of the supporting plate. However, in the frequency range in which rigid body modes are present, the control strategies employed using constrained actuator outputs can only achieve 5-10 dB power transmission reduction, while at off-resonance frequencies, little or no power transmission reduction can be obtained with realistic control forces. Analysis of the wave effects in the passive mounts is also presented.
机译:研究了受到执行器输出约束的前馈有源隔离系统的行为。开发了分布式参数模型以分析系统响应,并生成用于设计集成式无源-有源隔离系统的传递矩阵。这里考虑的成本函数包括振动传递能量和控制力平方的总和。所考虑的示例系统是一个刚体,它通过两个隔离支架连接到一个简单支撑的板上。通过数值模拟评估整体隔离性能。结果表明,依赖于无限制执行器输出的控制策略可能会在较宽的频率范围内大幅降低功率传输,但还需要较大的控制力幅度来控制系统的激发振动模式。包含受约束的执行器输出的修改后的控制策略的预期功率传输减少幅度远小于无约束的执行器输出的典型减少幅度。具有约束控制力输出的主动系统显示出在支撑板的共振频率下更有效。但是,在存在刚体模式的频率范围内,使用受约束的执行器输出所采用的控制策略只能实现5-10 dB的功率传输降低,而在非共振频率下,使用现实的控制力量。还介绍了无源安装架中的波效应分析。

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