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Method of the side-lobe suppression without the main-lobe widening for linear array beam-forming

机译:线性阵列波束形成中不扩宽主瓣的旁瓣抑制方法

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The objective of beam-forming for sensor array is to estimate the signal arriving from a desired direction in the presence of noise and interfering signals. Although adaptive beam-forming, which is data dependent, has advantages in spacial resolution and interference suppression in many circumstances, it also has some disadvantage such as lack of robustness, time-consuming, and many of the adaptive beam-former may lose their suitability when signals from different directions are coherent. Thus, data independent beam-forming is still important for array signal processing. The simplest and the most used data independent beam-forming method is delay-and-sum method, which has the disadvantage of high side-lobe level. Array shading is widely used to suppress the side-lobe level for delay-and-sum beam-forming method, but usually will widen the main-lobe. This paper introduced a side-lobe suppression method without main-lobe widening through combining the non-weighting delay-and-sum method and array shading for linear array. Simulation showed the effectiveness of this method when there were strong interference to cause the non-weighting delay-and-sum method and array shading fail.
机译:用于传感器阵列的波束形成的目的是在存在噪声和干扰信号的情况下估计从所需方向到达的信号。尽管依赖于数据的自适应波束形成在许多情况下在空间分辨率和干扰抑制方面都有优势,但它也具有一些缺点,例如缺乏鲁棒性,费时,并且许多自适应波束形成器可能会失去其适用性。当来自不同方向的信号相干时。因此,与数据无关的波束形成对于阵列信号处理仍然很重要。与数据无关的最简单,最常用的波束形成方法是延迟求和法,它具有旁瓣电平高的缺点。阵列阴影被广泛用于抑制延迟和求和波束形成方法的旁瓣电平,但通常会加宽主瓣。通过结合非加权时和求和法和线性阵列的阵列阴影,提出了一种不增加主瓣展宽的旁瓣抑制方法。仿真结果表明,在存在强烈干扰导致非加权时和求和方法和阵列遮蔽失败的情况下,该方法是有效的。

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