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Comparing Radar Receiver Pulse Deinterleaving Performance of Differing Window Functions for Bandpass FIR Filter Design

机译:比较雷达接收器脉冲解交织性能对带通冷滤波器设计的不同窗口功能

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A radar receiver is designed to identify and process the desired echo from the radar transmission. Therefore, filter implementation is a key part of designing a receiver. This paper focuses on the performance of the Bartlett, Blackman-Harris, Chebyshev, Hamming, and Kaiser windows, which were analyzed by implementing each into a deinterleaving algorithm. Deinterleaving pulses are important because receivers often have signals interleaved with an abundance of noise. By using windows, it can reduce the abundance of noise and increase the performance of deinterleaving algorithms. The separation of the radar pulse trains from the pulse stream provides sufficient information to categorize and describe different signals with pulse descriptor words (PDW), such as Time Of Arrival (TOA), Time Of Departure (TOD), Pulse Width (PW), Pulse Repetition Interval (PRI), etc. This study presents the comparison of the five windowing techniques, the application of Hilbert transforms and envelope detection to analyze how each affects the deinterleaving algorithm. Each technique was analyzed by calculating their Signal-to-Noise Ratio (SNR), and the amount of information lost by measuring the error margin. From the data observed, the Blackman-Harris had the highest SNR, and the Kaiser window had the lowest percent error. The following sections will demonstrate the performance of each windowing technique.
机译:雷达接收机被设计来识别和处理来自雷达发送所需的回波。因此,滤波器的实现是设计一个接收器的一个关键部分。本文重点介绍的巴特利特,布莱克曼 - 哈里斯,切比雪夫,海明,和凯泽窗,这是由实现每个到解交错算法分析的性能。解交织脉冲是重要的,因为接收器通常具有丰富的噪声交织的信号。使用Windows,它可以减少噪音的丰度和增加的交织算法的性能。雷达脉冲串的从脉冲流中分离提供足够的信息来分类和描述与脉冲描述符字的不同信号(PDW),诸如到达时间(TOA),时间出发(TOD),脉冲宽度(PW),脉冲重复间隔(PRI)等。这项研究提出的五个窗技术的比较,希尔伯特变换和包络检测中的应用分析如何影响每个解交错算法。通过计算它们的信噪比(SNR),并且信息通过测量误差的损失量分析的每个技术。从观察到的数据,布莱克曼 - 哈里斯得到最高的SNR和Kaiser窗的最低百分比误差。以下各节将展示各窗口技术的性能。

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