IN-ORBIT IMPLEMENTATION OF ERROR PATCHING METHODS FOR LAPAN-A3/IPB OBDH FIRMWARE SYSTEM

Muhammad Taufik, Wahyudi Hasbi, Abdul Karim

Abstract

ABSTRACT

OBDH (On-board data handling) is a satellite subsystem that receives, processes, decides and executes commands from and to satellites. OBDH is built on two systems namely hardware and software integrated system (firmware system). In terms of hardware, OBDH uses a processor with 32bit RISC architecture, 128/256 Kbyte internal memory and a firmware system that is built using primitive programming. This programming uses the super loop architecture program and interrupt to manage the system to function properly. Problems occur when an error occurs in one of the functions in the interrupt routine resulting in failure of interpretation of commands or data from satellite sensors. This paper describes the implementation of the error patching methods on the LAPAN-A3/IPB Satellite OBDH firmware system in order to keep the system working well. Initial verification through testing on the ground have been successfully performed using engineering model of OBDH and hardware in the loop simulators (HWIL) module. Based on the test results, implementation on satellite has also been successfully done.

ABSTRAK

OBDH (On-board data handling) merupakan salah satu subsistem satelit yang berfungsi menerima, mengolah, mengambil keputusan dan mengeksekusi perintah dari dan ke satelit. OBDH dibangun berdasarkan dua buah sistem yaitu sistem perangkat keras dan perangkat lunak yang terintegrasi (sistem firmware). Dari sisi perangkat keras, OBDH menggunakan prosesor dengan arsitektur 32bit RISC, 128/256 Kbyte memori internal, dan sistem firmware yang dibangun menggunakan pemrograman primitif. Pemrograman ini menggunakan arsitektur program super loop dan interrupt untuk mengelola sistem agar dapat berfungsi dengan baik. Permasalahan terjadi ketika terjadi kesalahan pada salah satu fungsi pada rutin interrupt sehingga mengakibatkan kegagalan interpretasi perintah atau data dari sensor satelit. Paper ini menjelaskan mengenai implementasi metode penambalan kesalahan pada sistem firmware OBDH satelit LAPAN-A3/IPB yang bertujuan untuk menjaga agar sistem tetap bekerja dengan baik. Verifikasi awal melalui pengujian telah berhasil dilakukan mengunakan engineering model OBDH dan modul hardware in the loop simulators (HWIL). Berdasarkan hasil pengujian, implementasi pada satelit juga telah sukses dilakukan.

Keywords

error patching methods, OBDH, LAPAN-A3/IPB Satellites;metode penambalan kesalahan, OBDH, Satelit LAPAN-A3/IPB

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References

Hasbi W., & Suhermanto., 2013. Development of LAPAN-A3/IPB Satellite an Experimental Remote Sensing Microsatellite 34th Asian Conf. Remote Sens. 2013, ACRS 2013, p. 1508-1515.

Hardhienata S., & Triharjanto RH., 2007. LAPAN-TUBSAT: From Concept to Early Operation. Lembaga Penerbangan dan Antariksa Nasional, 2007.

Hasbi W., & Karim A., 2013. Lapan-A2 System Design for Equatorial Survaillance Missions. In 9th International Symposium of The International Academy of Astronautics (IAA) Berlin, (pp. 8-12).

Hasbi W., et al., 2016. LAPAN-A3/IPB Microsatellite for Remote Sensing Experiment Detail Design. Laporan Teknis Kegitan Penelitian. Pusat Teknologi Satelit. Bogor

Ekman M., & Thane H., 2007. Dynamic patching of embedded software. In Real Time and Embedded Technology and Applications Symposium, IEEE. pp. 337-346

Calder A., & Kutt P., 2009. Flight Software Design Guidelines for Enhancing On-Orbit Maintenance. InAIAA Infotech@ Aerospace Conference and AIAA Unmanned... Unlimited Conference. p. 1818

Hayden CM., Smith EK., Denchev M., Hicks M., Foster JS., 2012. Kitsune: Efficient, general-purpose dynamic software updating for C. InACM SIGPLAN., Vol. 47, No. 10, pp. 249-264.

Kraft J., Kienle HM., Nolte T., Crnkovic I., Hansson H., 2011. Software maintenance research in the PROGRESS project for predictable embedded software systems. InSoftware Maintenance and Reengineering (CSMR), 2011 15th European Conference on 2011 Mar 1 (pp. 335-338). IEEE.

Savitha A., Chetwani RR., Bhanumathy YR., Ravindra M., 2017. Model based system for software change analysis for embedded systems on spacecraft. InAdvance Computing Conference (IACC) (pp. 418-422). IEEE.

Trümper J., Voigt S., Döllner J., 2012. Maintenance of embedded systems: Supporting program comprehension using dynamic analysis. InSoftware Engineering for Embedded Systems (SEES), 2012 2nd International Workshop (pp. 58-64). IEEE.

Pingale P., Amrutkar K., Kulkarni S., 2016. Design aspects for upgrading firmware of a resource constrained device in the field. InRecent Trends in Electronics, Information & Communication Technology (RTEICT), IEEE International Conference (pp. 903-907). IEEE.

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