Mitigation of self-generated RFI using ASKAP's phased array feeds
Abstract
This paper presents the effects of radio frequency interference (RFI) mitigation on a radio telescope's sensitivity and beam pattern. It specifically explores the impact of subspace-projection mitigation on the phased array feed (PAF) beams of the Australian SKA Pathfinder (ASKAP) telescope. The goal is to demonstrate ASKAP's ability to make science observations during active RFI mitigation. The target interfering signal is a self-generated clock signal from the digital receivers of ASKAP's PAF. This signal is stationary, so we apply the mitigation projection to the beamformer weights at the beginning of the observation and hold them fixed. We suppressed the unwanted narrowband signal by 31 dB, to the noise floor of an 880 s integration on one antenna, with a typical degradation in sensitivity of just 1.5%. Sensitivity degradation over the whole 36 antenna array of 3.1% was then measured via interferometric assessment of system equivalent flux density (SEFD). These measurements are in line with theoretical calculation of noise increase using the correlation of the beam weights and RFI spatial signature. Further, degradation to the main beam's gain is
- Publication:
-
Publications of the Astronomical Society of Australia
- Pub Date:
- November 2024
- DOI:
- 10.1017/pasa.2024.51
- arXiv:
- arXiv:2405.16309
- Bibcode:
- 2024PASA...41...93L
- Keywords:
-
- ASKAP;
- RFI mitigation;
- adaptive beamforming;
- phased array feeds;
- radio astronomy;
- spatial filtering;
- Astrophysics - Instrumentation and Methods for Astrophysics
- E-Print:
- 12 pages, 13 figures, accepted for publication in Publications of the Astronomical Society of Australia (PASA)