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Complementary sequences with high sidelobe suppression factors for ST/MST radar applications

机译:ST / MST雷达应用中具有高旁瓣抑制因子的互补序列

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Under ideal conditions, complementary code pairs produce no sidelobes. In practice, sidelobes are produced, among other things, when the period of the Doppler frequency shift as well as the time of coherence of clear air turbulence are comparable (or smaller) than the interpulse period. The intensity of sidelobes increases with the radar operating frequency and becomes a real problem in the upper VHF and UHF bands. In this paper, a new technique for reducing sidelobes originating from atmospheric characteristics for clear air radar systems using pulse coding is presented. For this, a generalized analytic expression for a sidelobe suppression factor applicable to any number of binary code sequences is first derived. This is then used to develop the technique, which in the case of complementary codes consists of manipulating the order of transmission of the code sequences. For such codes, improvements in sidelobe suppression of the order of 80 dB on the VHF frequency band are obtained. The modifications required to implement the technique into existing systems are very few and simple.
机译:在理想条件下,互补码对不会产生旁瓣。实际上,除其他事项外,当多普勒频移的周期以及晴空湍流的相干时间可比(或小于)脉冲间周期时,会产生旁瓣。旁瓣的强度随雷达工作频率的增加而增加,并在较高的VHF和UHF频带中成为一个实际问题。在本文中,提出了一种使用脉冲编码来减少晴空雷达系统中源自大气特征的旁瓣的新技术。为此,首先导出适用于任意数量的二进制代码序列的旁瓣抑制因子的通用解析表达式。然后,将其用于开发该技术,在互补代码的情况下,该技术包括操纵代码序列的传输顺序。对于这样的代码,在VHF频带上获得了大约80dB量级的旁瓣抑制的改进。在现有系统中实施该技术所需的修改非常简单。

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