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2D Image Processing For Dso Astrophotography

Authors: R. Suszynski; K. Wawryn; R. Wirski;

2D Image Processing For Dso Astrophotography

Abstract

{"references": ["H. Lee, G. E. Sobelman, \"Performance evaluation and optimal design\nfor FPGA-based digit-serial DSP functions\", Computers and Electrical\nEngineering, vol. 29, no. 2, pp. 357-377, March 2003.", "K. Bondalapati, V. K. Prasanna, \"Reconfigurable computing systems\",\nProceedings of the IEEE, vol. 90, no. 7, pp. 1201- 1217, July 2002.", "Suszy\u0144ski R., \u00d4\u00c7\u00d7Convolution Method for CCD Images Processing for\nDSO Astrophotography\", in proc. in proc. 52nd International Midwest\nSymposium on Circuits and Systems (MWSCAS-09), Cancun, Mexico,\n2009.", "L.P. Wang, S.H. Hu, X.Y. Zhang, \"Detecting and Tracking of Small\nTarget Under the Background of Sea Level\" Proceedings of the 9th\nInternational Conference on Signal Processing, vol. 2, pp. 989-992,\nBeijing, China, 2008.", "R. Wirski, K. Wawryn, \u00d4\u00c7\u00d7Roesser-s Model Realization of 2-D FIR\nLossless Transfer Matrices\", Proceedings of the International\nSymposium on Information Theory and its Applications, ISITA-08,\nAuckland, New Zealand, 2008.", "K. Wawryn, R. Wirski, \u00d4\u00c7\u00d7Synthesis of 2-D Lossless FIR Transfer\nFunction Matrix\", Proceedings of the 7th International Conference on\nInformation Communications and Signal Processing, (ICICS-09),\nMacau, China, 2009."]}

The new concept of two–dimensional (2D) image processing implementation for auto-guiding system is shown in this paper. It is dedicated to astrophotography and operates with astronomy CCD guide cameras or with self-guided dual-detector CCD cameras and ST4 compatible equatorial mounts. This idea was verified by MATLAB model, which was used to test all procedures and data conversions. Next the circuit prototype was implemented at Altera MAX II CPLD device and tested for real astronomical object images. The digital processing speed of CPLD prototype board was sufficient for correct equatorial mount guiding in real-time system.

Keywords

twodimensionalconvolution method, DSO astrophotography, two-dimensional filtering., image processing

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