Abstract

An efficient technique of designing spatial matrix filter for array signal preprocessing based on convex programming was proposed. Five methods were considered for designing the filter. In design method 1, we minimized the passband fidelity subject to the controlled overall stopband attenuation level. In design method 2, the objective function and the constraint in the design method 1 were reversed. In design method 3, the optimal matrix filter which has the general mean square error was considered. In design method 4, the left stopband and the right stopband were constrained with specific attenuation level each, and the minimized passband fidelity was received. In design method 5, the optimization objective function was the sum of the left stopband and the right stopband attenuation levels with the weighting factors 1 andγ, respectively, and the passband fidelity was the constraints. The optimal solution of the optimizations above was derived by the Lagrange multiplier theory. The relations between the optimal solutions were analyzed. The generalized singular value decomposition was introduced to simplify the optimal solution of design methods 1 and 2 and enhanced the efficiency of solving the Lagrange multipliers. By simulations, it could be found that the proposed method was effective for designing the spatial matrix filter.

Highlights

  • Spatial matrix filter can be used for array signal preprocessing in direction of arrival (DOA) estimation and matched field processing (MFP)

  • The spatial matrix filter was used in DOA estimation [12] and MFP [2, 3]

  • An efficient technique of designing spatial matrix filter based on convex programming for array signal preprocessing was proposed

Read more

Summary

Introduction

Spatial matrix filter can be used for array signal preprocessing in direction of arrival (DOA) estimation and matched field processing (MFP). The matrix filter was used directly in DOA estimation of a linear array for improving the estimation accuracy It is an approximation of the real spatial matrix filter in which the stopband attenuation over continuous directions satisfied the given specification. In a recent paper [10, 11], the optimal matrix filters were obtained over continuous frequency point by using convex programming, and the optimal matrix filter for short data records processing was given. An effective technique of designing the spatial matrix filter based on convex programming for array signal preprocessing in DOA estimation was proposed. Numerical results were presented to illustrate the effectiveness of the methods

Optimal Spatial Matrix Filter Design
Problem Solution
Improving the Design Efficiency of Design Methods 1 and 2
Computer Simulation
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call