Content area

Abstract

The performance of distributed small satellite synthetic aperture radar systems degrades significantly due to the unavoidable array errors, including gain, phase, and position errors, in real operating scenarios. In the conventional method proposed in (IEEE T Aero. Elec. Sys. 42:436-451, 2006), the spectrum components within one Doppler bin are considered as calibration sources. However, it is found in this article that the gain error estimation and the position error estimation in the conventional method can interact with each other. The conventional method may converge to suboptimal solutions in large position errors since it requires the joint iteration between gain-phase error estimation and position error estimation. In addition, it is also found that phase errors can be estimated well regardless of position errors when the zero Doppler bin is chosen. In this article, we propose a method obtained by modifying the conventional one, based on these two observations. In this modified method, gain errors are firstly estimated and compensated, which eliminates the interaction between gain error estimation and position error estimation. Then, by using the zero Doppler bin data, the phase error estimation can be performed well independent of position errors. Finally, position errors are estimated based on the Taylor-series expansion. Meanwhile, the joint iteration between gain-phase error estimation and position error estimation is not required. Therefore, the problem of suboptimal convergence, which occurs in the conventional method, can be avoided with low computational method. The modified method has merits of faster convergence and lower estimation error compared to the conventional one. Theoretical analysis and computer simulation results verified the effectiveness of the modified method.[PUBLICATION ABSTRACT]

Details

1009240
Title
Self-calibration method without joint iteration for distributed small satellite SAR systems: [Doc 409]
Volume
2013
Pages
1-10
Publication year
2013
Publication date
Feb 2013
Section
Emerging radar techniques
Publisher
Springer Nature B.V.
Place of publication
New York
Country of publication
Netherlands
ISSN
16876172
e-ISSN
16876180
Source type
Scholarly Journal
Language of publication
English
Document type
Feature
ProQuest document ID
1323841080
Document URL
https://www.proquest.com/scholarly-journals/self-calibration-method-without-joint-iteration/docview/1323841080/se-2?accountid=208611
Copyright
The Author(s) 2013
Last updated
2023-11-23
Database
ProQuest One Academic