TY - GEN
T1 - A hybrid framework of worst-case execution time analysis for real-time embedded system software
AU - Lee, Jong In
AU - Park, Su Hyun
AU - Bang, Ho Jung
AU - Kim, Tai Hyo
AU - Cha, Sung Deok
PY - 2005
Y1 - 2005
N2 - Timing analysis1,2 is an essential process for development of real-time embedded system and knowledge about the worst-case execution time (WCET) of real-time programs is critical to validation of temporal correctness of implemented system. Recently, automated static timing analysis methods are introduced to facilitate timing analysis process for real-time software, and to provide safe and tight WCET. But static WCET analysis methods have drawback as they do not provide accurate WCET for hardware-dependent software or application software where input data rate from external environment needs to be considered. Also, the WCET obtained from static WCET analysis needs to be verified at target system before system deployment. In this paper, we propose a framework of WCET analysis for real-time embedded software which complements static WCET approach and provides tight and safe WCET by combining static timing analysis approach with dynamic measurement. The application of proposed framework to the WCET analysis of command processing and data acquisition part of KOMPSAT-2 satellite flight software is presented to show effectiveness of the proposed approach.
AB - Timing analysis1,2 is an essential process for development of real-time embedded system and knowledge about the worst-case execution time (WCET) of real-time programs is critical to validation of temporal correctness of implemented system. Recently, automated static timing analysis methods are introduced to facilitate timing analysis process for real-time software, and to provide safe and tight WCET. But static WCET analysis methods have drawback as they do not provide accurate WCET for hardware-dependent software or application software where input data rate from external environment needs to be considered. Also, the WCET obtained from static WCET analysis needs to be verified at target system before system deployment. In this paper, we propose a framework of WCET analysis for real-time embedded software which complements static WCET approach and provides tight and safe WCET by combining static timing analysis approach with dynamic measurement. The application of proposed framework to the WCET analysis of command processing and data acquisition part of KOMPSAT-2 satellite flight software is presented to show effectiveness of the proposed approach.
UR - http://www.scopus.com/inward/record.url?scp=33751524865&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=33751524865&partnerID=8YFLogxK
U2 - 10.1109/AERO.2005.1559632
DO - 10.1109/AERO.2005.1559632
M3 - Conference contribution
AN - SCOPUS:33751524865
SN - 0780388704
SN - 9780780388703
T3 - IEEE Aerospace Conference Proceedings
BT - Proceedings - 2005 IEEE Aerospace Conference
T2 - 2005 IEEE Aerospace Conference
Y2 - 5 March 2005 through 12 March 2005
ER -