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Sequences of complementary codes for the optimum decoding of truncated ranges and high sidelobe suppression factors for ST/MST radar systems

机译:互补码序列,用于ST / MST雷达系统的截短范围和高旁瓣抑制因子的最佳解码

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摘要

A new technique of full decoding of truncated ranges applicable to complementary codes is presented. For code length of N, the technique uses a set of N/2 complementary code pairs to obtain a diagonal decoding matrix M that enables the full decoding of truncated ranges without the need of matrix inversion, and resulting in optimum performance with regards to the signal-to-noise ratio degradation (SNRD) in the truncated ranges. Techniques of constructing the required code sequences for code length of 4, 8, 16, 32, etc., are given. By arranging the order of transmission of the code sequences systematically to increase the suppression of sidelobes resulting from atmospheric characteristics, and by performing appropriate steps to reduce the effects of interferences, it is shown that a coding system that simultaneously optimizes the performances with regards to SNRD, sidelobe suppression, and interference rejection can be obtained. Examples are given to illustrate this.
机译:提出了一种适用于互补码的完整截断范围解码的新技术。对于N的代码长度,该技术使用一组N / 2个互补代码对来获得对角解码矩阵M,该矩阵能够对截短的范围进行完全解码,而无需矩阵求逆,从而在信号方面获得最佳性能截短范围内的信噪比降低(SNRD)。给出了构造码长为4、8、16、32等的所需码序列的技术。通过系统地安排代码序列的传输顺序以增加对大气特征引起的旁瓣的抑制,并通过执行适当的步骤来减少干扰的影响,可以证明编码系统可以同时优化SNRD的性能。 ,旁瓣抑制和干扰抑制。举例说明了这一点。

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