English

Estimation of Radio Interferometer Beam Shapes Using Riemannian Optimization

Instrumentation and Methods for Astrophysics 2013-07-19 v1 Computational Engineering, Finance, and Science

Abstract

The knowledge of receiver beam shapes is essential for accurate radio interferometric imaging. Traditionally, this information is obtained by holographic techniques or by numerical simulation. However, such methods are not feasible for an observation with time varying beams, such as the beams produced by a phased array radio interferometer. We propose the use of the observed data itself for the estimation of the beam shapes. We use the directional gains obtained along multiple sources across the sky for the construction of a time varying beam model. The construction of this model is an ill posed non linear optimization problem. Therefore, we propose to use Riemannian optimization, where we consider the constraints imposed as a manifold. We compare the performance of the proposed approach with traditional unconstrained optimization and give results to show the superiority of the proposed approach.

Keywords

Cite

@article{arxiv.1209.4236,
  title  = {Estimation of Radio Interferometer Beam Shapes Using Riemannian Optimization},
  author = {Sarod Yatawatta},
  journal= {arXiv preprint arXiv:1209.4236},
  year   = {2013}
}

Comments

Accepted on 18-09-2012. Draft version. The final publication is available at springerlink.com ; Experimental Astronomy, 2012

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