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首页> 外文期刊>Journal of Sound and Vibration >A NEAR-FIELD APPROACH TO ACTIVE CONTROL OF SOUND RADIATION FROM A FLUID-LOADED RECTANGULAR PLATE
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A NEAR-FIELD APPROACH TO ACTIVE CONTROL OF SOUND RADIATION FROM A FLUID-LOADED RECTANGULAR PLATE

机译:流体控制矩形板声辐射主动控制的近场方法

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This paper deals with the problem of active vibration and sound radiation suppression from a fluid-loaded rectangular plate using a near-held technique. This approach is intended to control not only the radiated acoustic power but also the non-radiated power by relating the near-field surface pressure to the plate motion. It is assumed that a plate is excited by a harmonic point force and controlled by several point forces. Quadratic expressions are derived for both the radiated acoustic power and the non-radiated power with the given disturbance and control forces. Using quadratic optimization of the cost functions, control force vectors that minimize both the radiated acoustic power (weak radiator) and the non-radiated power (weak vibrator) are found. The amplitudes of control forces obtained using near-field pressure are almost the same as those obtained from the optimization of the cost function integrating the far-field radiated intensity over a hemisphere. The same results were obtained for the cases of non-radiated power and vibration power. However the optimal control solution for the radiated acoustic power is quite different from that for the non-radiated power. The results show that for a fluid-loaded plate, high global reductions in radiated pressure and plate response are possible in the presence of edge and corner mode coupling. The influence on the control effectiveness of on- and off-resonant excitation and the number and location of the control forces is investigated in terms of the far-field directivity pattern, the plate surface sound intensity, and the plate wavenumber spectrum. (C) 1996 Academic Press Limited [References: 12]
机译:本文使用近场保持技术来解决流体矩形板的主动振动和声辐射抑制问题。该方法旨在通过将近场表面压力与板运动相关联来不仅控制辐射声功率,而且还控制非辐射功率。假定板是由谐波点力激励并由多个点力控制的。在给定干扰和控制力的情况下,辐射声功率和非辐射功率都可以得到二次表达式。通过使用成本函数的二次优化,可以找到使辐射声功率(弱辐射器)和非辐射功率(弱振子)最小化的控制力矢量。使用近场压力获得的控制力的幅度几乎与通过优化对半球上的远场辐射强度进行积分的成本函数获得的幅度相同。对于非辐射功率和振动功率,获得了相同的结果。但是,针对辐射声功率的最佳控制解决方案与针对非辐射功率的最优控制解决方案完全不同。结果表明,对于有流体加载的板,在存在边角模式耦合的情况下,辐射压力和板响应可能会大幅降低。根据远场方向性图,板表面声强和板波数谱,研究了对共振激励和非共振激励的控制效果以及控制力的数量和位置的影响。 (C)1996 Academic Press Limited [参考文献:12]

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