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FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

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FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments. / Ayari, B.; Khelil, A.; Suri, Neeraj.
2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06). IEEE, 2006. p. 96-105.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Ayari, B, Khelil, A & Suri, N 2006, FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments. in 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06). IEEE, pp. 96-105. https://doi.org/10.1109/SRDS.2006.22

APA

Ayari, B., Khelil, A., & Suri, N. (2006). FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments. In 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06) (pp. 96-105). IEEE. https://doi.org/10.1109/SRDS.2006.22

Vancouver

Ayari B, Khelil A, Suri N. FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments. In 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06). IEEE. 2006. p. 96-105 doi: 10.1109/SRDS.2006.22

Author

Ayari, B. ; Khelil, A. ; Suri, Neeraj. / FT-PPTC : An efficient and fault-tolerant commit protocol for mobile environments. 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06). IEEE, 2006. pp. 96-105

Bibtex

@inproceedings{9cda48a5d9ce43b79913c009338182ac,
title = "FT-PPTC: An efficient and fault-tolerant commit protocol for mobile environments",
abstract = "Transactions are required not only for wired networks but also for the emerging wireless environments where mobile and fixed hosts participate side by side in the execution of the transaction. This heterogenous environment is characterized by constraints in mobile host capabilities, network connectivity and also an increasing number of possible failure modes. Classical atomic commit protocols used in wired networks are therefore not directly suitable for this heterogenous environment. Furthermore, the few commit protocols designed for mobile transactions either consider mobile hosts only as initiators though not as active participants, or show a high resource blocking time. We present the Fault-Tolerant Pre-Phase Transaction Commit (FT-PPTC) protocol for mobile environments. FTPPTC decouples the commit of mobile participants from that of fixed participants. Consequently, the commit set can be reduced to a set of entities in the fixed network. Thus, the commit can easily be supported by any traditional atomic commit protocol, such as the established 2PC protocol. We integrate fault-tolerance as a key feature of FT-PPTC. Performance evaluations confirm the efficiency, scalability and low resource blocking time of our approach. {\textcopyright} 2006 IEEE.",
keywords = "Blocking probability, Fault tolerance, Feature extraction, Mobile agents, Wireless networks, Fault-Tolerant Pre-Phase Transaction Commit (FT-PPTC) protocols, Heterogenous environment, Resource blocking time, Network protocols",
author = "B. Ayari and A. Khelil and Neeraj Suri",
year = "2006",
month = oct,
day = "2",
doi = "10.1109/SRDS.2006.22",
language = "English",
isbn = "0769526772",
pages = "96--105",
booktitle = "2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06)",
publisher = "IEEE",

}

RIS

TY - GEN

T1 - FT-PPTC

T2 - An efficient and fault-tolerant commit protocol for mobile environments

AU - Ayari, B.

AU - Khelil, A.

AU - Suri, Neeraj

PY - 2006/10/2

Y1 - 2006/10/2

N2 - Transactions are required not only for wired networks but also for the emerging wireless environments where mobile and fixed hosts participate side by side in the execution of the transaction. This heterogenous environment is characterized by constraints in mobile host capabilities, network connectivity and also an increasing number of possible failure modes. Classical atomic commit protocols used in wired networks are therefore not directly suitable for this heterogenous environment. Furthermore, the few commit protocols designed for mobile transactions either consider mobile hosts only as initiators though not as active participants, or show a high resource blocking time. We present the Fault-Tolerant Pre-Phase Transaction Commit (FT-PPTC) protocol for mobile environments. FTPPTC decouples the commit of mobile participants from that of fixed participants. Consequently, the commit set can be reduced to a set of entities in the fixed network. Thus, the commit can easily be supported by any traditional atomic commit protocol, such as the established 2PC protocol. We integrate fault-tolerance as a key feature of FT-PPTC. Performance evaluations confirm the efficiency, scalability and low resource blocking time of our approach. © 2006 IEEE.

AB - Transactions are required not only for wired networks but also for the emerging wireless environments where mobile and fixed hosts participate side by side in the execution of the transaction. This heterogenous environment is characterized by constraints in mobile host capabilities, network connectivity and also an increasing number of possible failure modes. Classical atomic commit protocols used in wired networks are therefore not directly suitable for this heterogenous environment. Furthermore, the few commit protocols designed for mobile transactions either consider mobile hosts only as initiators though not as active participants, or show a high resource blocking time. We present the Fault-Tolerant Pre-Phase Transaction Commit (FT-PPTC) protocol for mobile environments. FTPPTC decouples the commit of mobile participants from that of fixed participants. Consequently, the commit set can be reduced to a set of entities in the fixed network. Thus, the commit can easily be supported by any traditional atomic commit protocol, such as the established 2PC protocol. We integrate fault-tolerance as a key feature of FT-PPTC. Performance evaluations confirm the efficiency, scalability and low resource blocking time of our approach. © 2006 IEEE.

KW - Blocking probability

KW - Fault tolerance

KW - Feature extraction

KW - Mobile agents

KW - Wireless networks

KW - Fault-Tolerant Pre-Phase Transaction Commit (FT-PPTC) protocols

KW - Heterogenous environment

KW - Resource blocking time

KW - Network protocols

U2 - 10.1109/SRDS.2006.22

DO - 10.1109/SRDS.2006.22

M3 - Conference contribution/Paper

SN - 0769526772

SP - 96

EP - 105

BT - 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06)

PB - IEEE

ER -