English

Chandrayaan-2 Dual-Frequency SAR (DFSAR): Performance Characterization and Initial Results

Instrumentation and Methods for Astrophysics 2021-09-28 v1 Earth and Planetary Astrophysics

Abstract

The Dual-Frequency synthetic aperture radar (DFSAR) system manifested on the Chandrayaan-2 spacecraft represents a significant step forward in radar exploration of solid solar system objects. It combines SAR at two wavelengths (L- and S-bands) and multiple resolutions with several polarimetric modes in one lightweight (\sim 20 kg) package. The resulting data from DFSAR support calculation of the 2×\times2 complex scattering matrix for each resolution cell, which enables lunar near surface characterization in terms of radar polarization properties at different wavelengths and incidence angles. In this paper, we report on the calibration and preliminary performance characterization of DFSAR data based on the analysis of a sample set of crater regions on the Moon. Our calibration analysis provided a means to compare on-orbit performance with pre-launch measurements and the results matched with the pre-launch expected values. Our initial results show that craters in both permanently shadowed regions (PSRs) and non-PSRs that are classified as Circular Polarization Ratio (CPR)-anomalous in previous S-band radar analyses appear anomalous at L-band also. We also observe that material evolution and physical properties at their interior and proximal ejecta are decoupled. For Byrgius C crater region, we compare our analysis of dual-frequency radar data with the predicted behaviours of theoretical scattering models. If crater age estimates are available, comparison of their radar polarization properties at multiple wavelengths similar to that of the three unnamed south polar crater regions shown in this study may provide new insights into how the rockiness of craters evolves with time.

Keywords

Cite

@article{arxiv.2104.14259,
  title  = {Chandrayaan-2 Dual-Frequency SAR (DFSAR): Performance Characterization and Initial Results},
  author = {Sriram S. Bhiravarasu and Tathagata Chakraborty and Deepak Putrevu and Dharmendra K. Pandey and Anup K. Das and V. M. Ramanujam and Raghav Mehra and Parikshit Parasher and Krishna M. Agrawal and Shubham Gupta and Gaurav S. Seth and Amit Shukla and Nikhil Y. Pandya and Sanjay Trivedi and Arundhati Misra and Rajeev Jyoti and Raj Kumar},
  journal= {arXiv preprint arXiv:2104.14259},
  year   = {2021}
}

Comments

30 pages, 16 figures; accepted by The Planetary Science Journal

R2 v1 2026-06-24T01:37:42.614Z