Title :
Persymmetric Adaptive Detectors in Homogeneous and Partially Homogeneous Environments
Author :
Yongchan Gao ; Guisheng Liao ; Shengqi Zhu ; Xuepan Zhang ; Dong Yang
Author_Institution :
Nat. Lab. of Radar Signal Process., Xidian Univ., Xi´an, China
Abstract :
This paper addresses the problem of detecting a signal in partially homogeneous and homogeneous environments. In partially homogeneous environments, i.e., both the test data and training data share the same noise covariance matrix structure up to an unknown scaling factor, a persymmetric adaptive coherence estimator (Per-ACE) detector is proposed. By exploiting the persymmetric structure of the covariance matrix, the Per-ACE can reduce training data requirements. Furthermore, the expressions for the probabilities of false alarm and detection are derived along with the distribution of the loss factor β. In homogeneous environments, a persymmetric adaptive matched filter (Per-AMF) detector has been presented. However, its probability of detection has not been obtained yet. Thus, we derive the expression for the probability of detection. For both the Per-ACE and Per-AMF, numerical results of these proposed expressions are confirmed with those of Monte Carlo trials. In addition, simulation results show that the proposed Per-ACE outperforms the conventional ACE in training-limited scenarios.
Keywords :
Monte Carlo methods; adaptive filters; adaptive signal detection; covariance matrices; matched filters; Monte Carlo method; Per-ACE detector; noise covariance matrix structure; partially homogeneous environment; persymmetric adaptive coherence estimator; persymmetric adaptive detector; persymmetric adaptive matched filter detector; signal detection; unknown scaling factor; Coherence; Covariance matrices; Detectors; Noise; Radar; Training data; Vectors; Adaptive coherence estimator; adaptive matched filter; adaptive signal detection; persymmetry; probabilities of false alarm and detection;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2013.2288087