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The Design of Beam-forming for Broadband Beam-Steerable Parametric Array

机译:宽带光束可转向参数阵列的光束形成设计

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This paper has discussed the simulation and analysis to beam-forming of broadband parametric array in both rectangle and loop transducer array conditions. The simulation result shows that with a condition of same elements N=9 and similar array size r_m=49mm, the main-lobe -3db beam width for difference frequency beam in rectangle array is about 6.3° (7.4° for the loop array) and the side-lobe amplitude is one percent less than the value of main-lobe peak (10% for the loop array). The rectangle transducer array is more effective in improving main-lobe directivity and inhibiting side-lobe amplitude. The method of element signal time-delay adopted to achieve parametric array beam-steering in rectangle transducer array in this paper, and the simulation and analysis about it are completed too. As a result of Beam-steering, the beam main-lobe turned to width more, its peak value of amplitude reduce obviously, and it doesn't point to the direction which is planned to. The causations about these problems are discussed in this paper, and it is verified that these problems can be modified by adding more elements and increasing array sizes.
机译:本文讨论了矩形和环路换能器阵列条件中宽带参数阵列的仿真和分析。仿真结果表明,通过相同的元件n = 9和类似的阵列尺寸R_m = 49mm,矩形阵列中的差分频率波束的主瓣-3dB波束宽度约为6.3°(对于环路阵列为7.4°)和侧凸幅度小于主凸峰峰值的值(环阵列的10%)。矩形换能器阵列在提高主叶方向性和抑制侧瓣振幅方面更有效。在本文中采用元件信号时间延迟的方法,用于在本文中实现矩形换能器阵列中的参数阵列光束转向,并且还完成了关于它的仿真和分析。由于光束转向,光束主叶片变得越来越多,其幅度的峰值显着减少,并且它没有指向计划的方向。本文讨论了关于这些问题的原因,并且验证了可以通过添加更多元素和增加阵列大小来修改这些问题。

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