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Structure Optimization of Phase-Coded Sounding Signals

机译:相位编码探测信号的结构优化

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Pulse compression with a small sidelobe level is one of challenges in designing of modern radar, sonar or ultrasound imaging systems. It may be performed by means of matched filter, that is by correlating the received sounding signal with a stored replica of the transmitted signal. The advantage of the pulse compression method is the increase of the average transmission power while retaining the range resolution corresponding to a short pulse. Phase coding is one of the early techniques for pulse compression of radar signals. Polyphase sequences, which have low sidelobe levels, ensure an easily detectable peak in the output of a matched filter, in other words an easy detection of a received sounding signal. In this paper, an evolutionary algorithm combined with a local optimizer is used to search for polyphase codes with a small sidelobe level of an aperiodic autocorrelation function. The evolutionary algorithm is based on a floating-point representation and the Gaussian mutation is used to produce offspring for the next generation. The self-adaptation mechanism is used to control the mutation operator during the evolutionary process. This research demonstrates that optimization methods can effectively find polyphase sequences with low autocorrelation and seems to be very promising for the future research in area of computer optimization for polyphase codes synthesis.
机译:小旁瓣电平的脉冲压缩是设计现代雷达,声纳或超声成像系统的挑战之一。这可以借助于匹配滤波器来执行,即通过将接收到的探测信号与所存储的发射信号的副本相关联来执行。脉冲压缩方法的优点是在保持对应于短脉冲的距离分辨率的同时增加了平均发射功率。相位编码是雷达信号脉冲压缩的早期技术之一。具有低旁瓣电平的多相序列可确保在匹配滤波器的输出中容易检测到峰值,换句话说,可以轻松检测到接收到的探测信号。在本文中,结合局部优化器的进化算法用于搜索非周期性自相关函数旁瓣水平小的多相代码。进化算法基于浮点表示,高斯变异用于产生下一代的后代。自适应机制用于控制进化过程中的变异算子。这项研究表明,优化方法可以有效地找到具有低自相关性的多相序列,对于在多相代码合成的计算机优化领域中的未来研究而言,这似乎是非常有前途的。

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