Fork–join queue (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Fork–join queue" in English language version.

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arxiv.org

  • Joshi, Gauri; Liu, Yanpei; Soljanin, Emina (October 2012). Coding for Fast Content Download. Allerton Conference on Communication, Control and Computing. arXiv:1210.3012. Bibcode:2012arXiv1210.3012J.
  • Joshi, Gauri; Liu, Yanpei; Soljanin, Emina (May 2014). On the Delay-Storage trade-off in Content Download from Coded Distributed Storage. Journal on Selected Areas of Communications. arXiv:1305.3945. Bibcode:2013arXiv1305.3945J.

cwi.nl

oai.cwi.nl

doi.org

  • Kim, C.; Agrawala, A. K. (1989). "Analysis of the fork-join queue". IEEE Transactions on Computers. 38 (2): 250. doi:10.1109/12.16501.
  • Serfozo, R. (2009). "Markov Chains". Basics of Applied Stochastic Processes. Probability and Its Applications. pp. 1–98. doi:10.1007/978-3-540-89332-5_1. ISBN 978-3-540-89331-8.
  • Flatto, L.; Hahn, S. (1984). "Two Parallel Queues Created by Arrivals with Two Demands I". SIAM Journal on Applied Mathematics. 44 (5): 1041. doi:10.1137/0144074.
  • Wright, Paul E. (1992), "Two parallel processors with coupled inputs", Advances in Applied Probability, 24 (4): 986–1007, doi:10.2307/1427722, JSTOR 1427722, S2CID 124774848
  • Pinotsi, D.; Zazanis, M. A. (2005). "Synchronized queues with deterministic arrivals". Operations Research Letters. 33 (6): 560. doi:10.1016/j.orl.2004.12.005.
  • Konstantopoulos, Panagiotis; Walrand, Jean (September 1989). "Stationary and Stability of Fork-Join Networks" (PDF). Journal of Applied Probability. 26 (3): 604–614. doi:10.2307/3214417. JSTOR 3214417. S2CID 120222029. Archived from the original (PDF) on 18 March 2012.
  • Lebrecht, A. S.; Dingle, N. J.; Knottenbelt, W. J. (2009). "Modelling Zoned RAID Systems Using Fork-Join Queueing Simulation". Computer Performance Engineering. Lecture Notes in Computer Science. Vol. 5652. pp. 16–29. CiteSeerX 10.1.1.158.7363. doi:10.1007/978-3-642-02924-0_2. ISBN 978-3-642-02923-3.
  • Kemper, B.; Mandjes, M. (2011). "Mean sojourn times in two-queue fork-join systems: Bounds and approximations". OR Spectrum. 34 (3): 723. doi:10.1007/s00291-010-0235-y.
  • Ko, S. S.; Serfozo, R. F. (2004). "Response times in M/M/s fork-join networks". Advances in Applied Probability. 36 (3): 854. doi:10.1239/aap/1093962238. S2CID 122581916.
  • Ko, S. S.; Serfozo, R. F. (2008). "Sojourn times in G/M/1 fork-join networks". Naval Research Logistics. 55 (5): 432. doi:10.1002/nav.20294. S2CID 119551482.
  • Qiu, Zhan; Pérez, Juan F.; Harrison, Peter G. (2015). "Beyond the mean in fork-join queues: Efficient approximation for response-time tails". Performance Evaluation. 91: 99–116. doi:10.1016/j.peva.2015.06.007.
  • Nelson, R.; Tantawi, A. N. (1988). "Approximate analysis of fork/join synchronization in parallel queues". IEEE Transactions on Computers. 37 (6): 739. doi:10.1109/12.2213.
  • Alomari, F.; Menasce, D. A. (2013). "Efficient Response Time Approximations for Multiclass Fork and Join Queues in Open and Closed Queuing Networks". IEEE Transactions on Parallel and Distributed Systems. 25 (6): 1437–1446. doi:10.1109/TPDS.2013.70. S2CID 422296.
  • Tsimashenka, I.; Knottenbelt, W. J. (2013). "Reduction of Subtask Dispersion in Fork-Join Systems" (PDF). Computer Performance Engineering. Lecture Notes in Computer Science. Vol. 8168. pp. 325–336. CiteSeerX 10.1.1.421.9780. doi:10.1007/978-3-642-40725-3_25. ISBN 978-3-642-40724-6.
  • Tan, X.; Knessl, C. (1996). "A fork-join queueing model: Diffusion approximation, integral representations and asymptotics". Queueing Systems. 22 (3–4): 287. doi:10.1007/BF01149176. S2CID 206789463.
  • Atar, R.; Mandelbaum, A.; Zviran, A. (2012). "Control of Fork-Join Networks in heavy traffic" (PDF). 2012 50th Annual Allerton Conference on Communication, Control, and Computing (Allerton). p. 823. doi:10.1109/Allerton.2012.6483303. ISBN 978-1-4673-4539-2. S2CID 18115820.
  • Li, J.; Zhao, Y. Q. (2010). "On the Probability Distribution of Join Queue Length in a Fork-Join Model". Probability in the Engineering and Informational Sciences. 24 (4): 473. doi:10.1017/S0269964810000112. S2CID 124693767.
  • Ko, S. S. (2007). "Cycle Times in a Serial Fork-Join Network". Computational Science and Its Applications – ICCSA 2007. Lecture Notes in Computer Science. Vol. 4705. pp. 758–766. doi:10.1007/978-3-540-74472-6_62. ISBN 978-3-540-74468-9.
  • Harrison, P.; Zertal, S. (2003). "Queueing Models with Maxima of Service Times". Computer Performance Evaluation. Modelling Techniques and Tools. Lecture Notes in Computer Science. Vol. 2794. pp. 152–168. doi:10.1007/978-3-540-45232-4_10. ISBN 978-3-540-40814-7.
  • Fiorini, Pierre M. (2015). "Exact Analysis of Some Split Merge Queues". SIGMETRICS Performance Evaluation Review. 43 (2): 51–53. doi:10.1145/2825236.2825257. S2CID 26219594.

harvard.edu

ui.adsabs.harvard.edu

  • Joshi, Gauri; Liu, Yanpei; Soljanin, Emina (October 2012). Coding for Fast Content Download. Allerton Conference on Communication, Control and Computing. arXiv:1210.3012. Bibcode:2012arXiv1210.3012J.
  • Joshi, Gauri; Liu, Yanpei; Soljanin, Emina (May 2014). On the Delay-Storage trade-off in Content Download from Coded Distributed Storage. Journal on Selected Areas of Communications. arXiv:1305.3945. Bibcode:2013arXiv1305.3945J.

ic.ac.uk

pubs.doc.ic.ac.uk

doc.ic.ac.uk

inria.fr

hal.inria.fr

jstor.org

psu.edu

citeseerx.ist.psu.edu

semanticscholar.org

api.semanticscholar.org

technion.ac.il

webee.technion.ac.il

umd.edu

drum.lib.umd.edu

unh.edu

cs.unh.edu

uu.se

www2.math.uu.se

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