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Research on the post/starboard discrimination algorithm for twin-line array and the influence of array shape distortion

机译:双线阵列的后/右舷识别算法及其阵列形状畸变的影响

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For surface ships, the towed hydrophones array is usually used to detect azimuth and to track moving targets because of its large aperture. The effective scope of a common sound pressure single array is only 180°, so that the common array cannot determine whether a target is to the left or to the right. While a twin-line array has similarity with a planar array in theory, a twin-line array does have the ability to discriminate between port/starboard. In order for the twin-line array to make post/starboard discrimination, a time delayed addition method and time delayed subtraction method are widely applied in direction finding field. Time-delay addition method obtains bearing time results by adding beam forming outputs, while its post/starboard suppression ratio is small. Time-delay subtraction method, obtains bearing time results by subtracting beam forming outputs. Its post/starboard discrimination ability will decline sharply under the condition of low SNR or where shape distortion of the array existing. Based on the above two algorithms, further research which subtracts bearing time results could obtain new bearing time results and improve post/starboard discrimination ability in low SNR conditions. Furthermore, the shape distortion effect on the performance of this algorithm is also studied in this paper. This paper mainly studied three kinds of influences of shape distortion on post/starboard discrimination ability of the algorithm: twin-line parallel displacement distortion, nonparallel displacement distortion; and, circular arc shape distortion. The experimental simulation results show that shape distortion does influence post/starboard discrimination ability seriously, while the discrimination ability can be recovered well after modification. Therefore, it is necessary to study shape distortion measurement methods and adaptive shape distortion modification algorithms.
机译:对于水面舰艇,拖曳水听器阵列通常由于其大孔径而用于检测方位角并跟踪运动目标。普通声压单个阵列的有效范围只有180°,因此普通阵列无法确定目标是在左侧还是在右侧。虽然双线阵列在理论上与平面阵列相似,但双线阵列确实能够区分左舷/右舷。为了使双线阵列进行后/右舷辨别,在测向领域中广泛采用了时延加法和时差减法。时延相加方法通过添加波束成形输出来获得方位时间结果,而其后/右舷抑制比很小。时延减法,通过减去波束成形输出获得方位时间结果。在低信噪比或阵列存在形状失真的情况下,其后/右舷辨别能力将急剧下降。在上述两种算法的基础上,进一步进行减去方位时间结果的研究可以获得新的方位时间结果,并提高了低信噪比条件下的后/右舷辨别能力。此外,本文还研究了形状失真对算法性能的影响。本文主要研究了形状畸变对算法后/右舷辨别能力的三种影响:双线平行位移畸变,非平行位移畸变,双线平行位移畸变,非平行位移畸变。并且,圆弧形状失真。实验仿真结果表明,形状畸变确实严重影响了后/右舷的识别能力,而修改后可以很好地恢复识别能力。因此,有必要研究形状畸变的测量方法和自适应形状畸变修正算法。

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