Title :
Enhanced maneuvering targets detection via polynomial phase modeling in over-the-horizon radars
Author :
Lu, Kun ; Liu, Xingzhao
Author_Institution :
Dept. of Electron. Eng., Shanghai Jiao Tong Univ., China
Abstract :
This paper describes a processing algorithm based on polynomial phase modeling scheme that increases visibility of maneuvering targets in HF over-the-horizon radar (OTHR). For the presence of the echo backscattered by the target that has significantly varying radial velocity within a coherent integration time (CIT), it is difficult for traditional coherent processing to centralize energy and peak in Doppler spectrum. Due to the polynomial property of the phase of maneuvering target radar echo, a polynomial phase signal (PPS) is introduced to model the complex Doppler variation of maneuvering targets. As an effective method to estimate the parameters of PPS, a high-order ambiguity function (HAF) based algorithm is applied. And a compensation process follows to eliminate the coherent processing loss (CIL) caused by irregular motion of targets. The experimental results are given to illustrate the validity and efficiency of the proposed method.
Keywords :
Doppler radar; backscatter; parameter estimation; radar detection; radar signal processing; radar theory; Doppler spectrum; OTHR; coherent integration time; coherent processing loss; complex Doppler variation; echo backscattering; enhanced maneuvering target detection; high-order ambiguity function; irregular motion; over-the-horizon radars; parameter estimation; polynomial phase modeling; polynomial phase signal; radar processing algorithm; varying radial velocity; visibility; Acceleration; Doppler radar; Doppler shift; Frequency; Hafnium; Object detection; Parameter estimation; Phase noise; Polynomials; Signal resolution;
Conference_Titel :
Radar Conference, 2004. Proceedings of the IEEE
Print_ISBN :
0-7803-8234-X
DOI :
10.1109/NRC.2004.1316466