Ltg5UIQHyI5lypLl8MsUPezgBCBhOyUPerrkA5PbD0oF6k8b5XNyQiUNA6jX
Current position: Home >> Scientific Research >> Paper Publications

A Modified Matrix CFAR Detector based on Maximum Eigenvalue for Target Detection in the Sea Clutter

Release Time:2019-03-12  Hits:

Indexed by:Conference Paper

Date of Publication:2018-01-01

Included Journals:CPCI-S

Page Number:896-901

Summary:Riemannian distance based matrix constant false alarm rate (CFAR) detector under small number of pulses provides a novel mechanism for detecting radar targets against the background of sea clutter. However, the computational complexity of this detector is heavy. In this paper, using the maximum eigenvalue, we propose two blind algorithms for rank one signal. The proposed methods achieve high detection rates with low computational complexity in which the maximum eigenvalue is employed as the test statistic to modify the Riemannian method. Furthermore, the CFAR property is derived by the group invariant theory. The computational complexity is also analyzed and simulation results verify the effectiveness of the proposed detection methods.

Prev One:Necessary Condition-Based Detector for Generalized Space Shift Keying MIMO Systems

Next One:Lagrangian Detection for Generalized Space-Shift Keying MIMO Systems