DocumentCode :
744426
Title :
An Adaptive ISAR-Imaging-Considered Task Scheduling Algorithm for Multi-Function Phased Array Radars
Author :
Yijun Chen ; Qun Zhang ; Ning Yuan ; Ying Luo ; Hao Lou
Author_Institution :
Inst. of Inf. & Navig., Air Force Eng. Univ., Xi´an, China
Volume :
63
Issue :
19
fYear :
2015
Firstpage :
5096
Lastpage :
5110
Abstract :
In multi-function phased array radar (MFPAR) systems, time and energy resources are allocated for different tasks so that the radar can perform various missions simultaneously. An effective scheduling algorithm is crucial to optimizing the overall performance of the MFPAR. There are various existing adaptive resource scheduling methods for the allocation of radar resources, but none of them consider the mission of imaging, a very important task. In this paper, an adaptive ISAR-imaging-considered task scheduling algorithm is proposed. Based on the sparse-aperture ISAR Compressive Sensing (CS) cognitive imaging techniques, the required resources for target imaging can be calculated from the online cognition of the target characteristics. Then the imaging mission is considered in the resource scheduling optimization model to realize adaptive allocation of radar resources and high-resolution imaging of multi targets. With the proposed algorithm, different tasks, such as tracking, searching and imaging, etc. can be implemented simultaneously, thus the radar efficiency is significantly improved. The effectiveness of the proposed method will be demonstrated by simulation experiments.
Keywords :
compressed sensing; optimisation; phased array radar; radar imaging; resource allocation; scheduling; synthetic aperture radar; MFPAR systems; adaptive ISAR imaging; energy resource allocation; multifunction phased array radar systems; online target characteristics cognition; radar efficiency improvement; radar resource allocation; resource scheduling optimization model; sparse-aperture ISAR compressive sensing cognitive imaging techniques; target imaging; task scheduling algorithm; time resource allocation; Imaging; Radar imaging; Radar tracking; Resource management; Scheduling algorithms; Signal processing algorithms; Adaptive task scheduling algorithm; compressed sensing; inverse synthetic aperture radar imaging; phased array radar;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2015.2449251
Filename :
7131589
Link To Document :
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