雷达信号处理中多相码设计的分数阶和谐搜索算法

Sirasani Srinivasa Rao, V. SubbaRamaiah
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引用次数: 0

摘要

目的设计和开发一种雷达系统多相码设计技术。设计/方法/方法提出的分数阶和谐搜索算法(FHSA)进行多相代码设计。FHSA结合了和谐搜索算法和分数理论的特性。通过所提出的FHSA,导出了基于相干性和自相关性的最优适应度函数。功率、自相关和互相关等性能指标衡量了算法的效率。结果采用功率、自相关和互相关等性能指标来衡量算法的效率。仿真结果表明,基于FHSA的最优相位码设计在适应度、自相关、互相关和功率方面均优于现有模型,分别为1.420859 W、4.09E−07 W、3.69E−18 W和0.000581 W。原创性/价值本文提出的多相码设计和开发的FHSA是为了减少多普勒频移的影响而开发的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FHSA: fractional harmony search algorithm for polyphase code design in radar signal processing
Purpose The purpose of this research is to design and develop a technique for polyphase code design for the radar system. Design/methodology/approach The proposed fractional harmony search algorithm (FHSA) performs the polyphase code design. The FHSA binds the properties of the harmony search algorithm and the fractional theory. An optimal fitness function based on the coherence and the autocorrelation is derived through the proposed FHSA. The performance metrics such as power, autocorrelation and cross-correlation measure the efficiency of the algorithm. Findings The performance metrics such as power, autocorrelation and cross-correlation is used to measure the efficiency of the algorithm. The simulation results show that the proposed optimal phase code design with FHSA outperforms the existing models with 1.420859, 4.09E−07, 3.69E−18 and 0.000581 W for the fitness, autocorrelation, cross-correlation and power, respectively. Originality/value The proposed FHSA for the design and development of the polyphase code design is developed for the RADAR is done to reduce the effect of the Doppler shift.
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