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The impact of reneging on a fluid on-off queue with strategic customers

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Abstract

In the recent strategic queueing literature, there is a large number of papers that study the join-or-balk dilemma in queueing systems with server’s on-off periods, modeling vacations and failures. These studies consider the customers as discrete units and adopt the assumption that reneging is not permitted. In the present paper, we depart from this framework and study the effect of the reneging option in such systems. We consider the fluid on-off model of the basic queue with vacations/failures and study reneging vs. no-reneging when customers are strategic. We derive the equilibrium customer strategies and the corresponding performance measures of the system, and we use them to study the equilibrium throughput and social welfare. The main finding is that the existence of the reneging option is very beneficial for overloaded systems, i.e., for such systems balking alone is not sufficient to achieve good outcomes. On the contrary, for underloaded systems the reneging option is not particularly valuable.

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References

  • Anick, D., Mitra, D., & Sondhi, M. M. (1982). Stochastic theory of a data-handling system with multiple sources. The Bell System Technical Journal, 61, 1871–1894.

    Google Scholar 

  • Braun, M. (1983). Differential Equations and their Applications (3rd ed.). New York: Springer-Verlag.

    Google Scholar 

  • Boxma, O., Kaspi, H., Kella, O., & Perry, D. (2005). On/off storage systems with state-dependent input, output, and switching rates. Probability in the Engineering and Informational Sciences, 19(1), 1–14.

    Google Scholar 

  • Burnetas, A., & Economou, A. (2007). Equilibrium customer strategies in a single server Markovian queue with setup times. Queueing Systems, 56, 213–228.

    Google Scholar 

  • Chen, P., Zhou, W., & Zhou, Y. (2015). Equilibrium customer strategies in the queue with threshold policy and setup times (p. 361901). Article ID: Mathematical Problems in Engineering.

  • Do, C. T., Hong, C. S., Hong, J. (2012a). Pricing control for hybrid overlay/underlay spectrum access in cognitive radio networks. APNOMS (2012).

  • Do, C. T., Tran, N. H., Nguyen, M. V., Hong, C. S., & Lee, S. (2012). Social optimization strategy in unobserved queueing systems in cognitive radio networks. IEEE Communications letters, 16, 1944–1947.

    Google Scholar 

  • Economou, A. (2021). The impact of information structure on strategic behavior in queueing systems. Mathematics and StatisticsIn V. Anisimov & N. Limnios (Eds.), Queueing theory 2, advanced trends. London: Sciences, ISTE & Wiley.

    Google Scholar 

  • Economou, A., & Kanta, S. (2008). Equilibrium balking strategies in the observable single-server queue with breakdowns and repairs. Operations Research Letters, 36, 696–699.

    Google Scholar 

  • Economou, A., Gómez-Corral, A., & Kanta, S. (2011). Optimal balking strategies in single-server queues with general service and vacation times. Performance Evaluation, 68, 967–982.

    Google Scholar 

  • Economou, A., Logothetis, D., & Manou, A. (2022). The value of reneging for strategic customers in queueing systems with server vacations/failures. European Journal of Operational Research, 299, 960–976.

    Google Scholar 

  • Economou, A., & Manou, A. (2013). Equilibrium balking strategies for a clearing queueing system in alternating environment. Annals of Operations Research, 208, 489–514.

    Google Scholar 

  • Economou, A., & Manou, A. (2016). Strategic behavior in an observable fluid queue with alternating service process. European Journal of Operational Research, 254, 148–160.

    Google Scholar 

  • Edelson, N. M., & Hildebrand, K. (1975). Congestion tolls for Poisson queueing processes. Econometrica, 43, 81–92.

    Google Scholar 

  • Gautam, N. (2012). Analysis of queues: methods and applications. Boca Raton: CRC Press.

    Google Scholar 

  • Guo, P., & Hassin, R. (2011). Strategic behavior and social optimization in Markovian vacation queues. Operations Research, 59, 986–997.

    Google Scholar 

  • Guo, P., & Hassin, R. (2012). Strategic behavior and social optimization in Markovian vacation queues: the case of heterogeneous customers. European Journal of Operational Research, 222, 278–286.

    Google Scholar 

  • Guo, P., & Li, Q. (2013). Strategic behavior and social optimization in partially-observable Markovian vacation queues. Operations Research Letters, 41, 277–284.

    Google Scholar 

  • Guo, P., & Zhang, Z. G. (2013). Strategic queueing behavior and its impact on system performance in service systems with the congestionbased staffing policy. Manufacturing & Service Operations Management, 15, 118–131.

    Google Scholar 

  • Hassin, R. (2016). Rational queueing. Boca Raton: CRC Press, Taylor and Francis Group.

    Google Scholar 

  • Hassin, R., & Haviv, M. (2003). To queue or not to queue: equilibrium behavior in queueing systems. Boston: Kluwer Academic Publishers.

    Google Scholar 

  • Haviv, M. (2013). When to arrive at a queue with tardiness costs? Performance Evaluation, 70(6), 387–399.

    Google Scholar 

  • Huang, P., Wang, J., & Fu, L. (2012). Equilibrium balking strategies in the single-server queues with Erlangian service and setup times. LISS.

  • Jagannathan, K., Menache, I., Modiano, E., & Zussman, G. (2012). Non-cooperative spectrum access: the dedicated vs. free spectrum choice. IEEE Journal on Selected Areas in Communications, 30, 2251–2261.

    Google Scholar 

  • Jain, R., Juneja, S., & Shimkin, N. (2011). The concert queueing game: to wait or to be late? Discrete Event Dynamic Systems, 21, 103–138.

    Google Scholar 

  • Juneja, S., & Shimkin, N. (2013). The concert queueing game: strategic arrivals with waiting and tardiness costs. Queueing Systems, 74(4), 369–402.

    Google Scholar 

  • Kosten, L. (1974). Stochastic theory of multi-entry buffer, part 1. Delft Progress Report, Series F, 1, 10–18.

    Google Scholar 

  • Kosten, L. (1974). Stochastic theory of multi-entry buffer, part 2. Delft Progress Report, Series F, 1, 44–55.

    Google Scholar 

  • Kosten, L., & Vrieze, O. J. (1975). Stochastic theory of multi-entry buffer, part 3. Delft Progress Report, Series F, 1, 103–115.

    Google Scholar 

  • Kulkarni, V. G. (1997). Fluid models for single buffer systems. In J. H. Dshalalow (Ed.), Frontiers in queueing: models and applications in science and engineering (pp. 321–338). CRC Press.

  • Li, H., & Han, Z. (2011). Socially optimal queuing control in cognitive radio networks subject to service interruptions: to queue or not to queue? IEEE Transactions on Wireless Communications, 10, 1656–1666.

    Google Scholar 

  • Li, X., Wang, J., & Zhang, F. (2014). New results on equilibrium balking strategies in the single-server queue with breakdowns and repairs. Applied Mathematics and Computation, 241, 380–388.

    Google Scholar 

  • Liu, J., Xu, X., Wang, S., & Yue, D. (2021). Equilibrium analysis of the fluid model with two types of parallel customers and breakdowns. Communications in Statistics-Theory and Methods, 50(24), 5792–5805.

    Google Scholar 

  • Liu, Z., Ma, Y., & Zhang, Z. G. (2015). Equilibrium mixed strategies in a discrete-time Markovian queue under multiple and single vacation policies. Quality Technology & Quantitative Management, 12, 367–380.

    Google Scholar 

  • Ma, Y., Liu, W., & Li, J. (2013). Equilibrium balking behavior in the Geo/Geo/1 queueing system with multiple vacations. Applied Mathematical Modelling, 37, 3861–3878.

    Google Scholar 

  • Maglaras, C. (2006). Revenue management for a multiclass single-server queue via a fluid model analysis. Operations Research, 54(5), 914–932.

    Google Scholar 

  • Naor, P. (1969). The regulation of queue size by levying tolls. Econometrica, 37, 15–24.

    Google Scholar 

  • Schwartz, M. (1996). Broadband integrated networks. Prentice-Hall, Inc.

  • Stidham, S., Jr. (2009). Optimal design of queueing systems. Boca Raton: CRC Press, Taylor and Francis Group.

    Google Scholar 

  • Stidham, S., Rajagopal, S., & Kulkarni, V. G. (1995). Optimal flow control of a stochastic fluid-flow system. IEEE Journal on Selected Areas in Communications, 13(7), 1219–1228.

    Google Scholar 

  • Sun, W., Guo, P., & Tian, N. (2010). Equilibrium threshold strategies in observable queueing systems with setup/closedown times. Central European Journal of Operations Research, 18, 241–268.

    Google Scholar 

  • Sun, W., & Li, S. (2014). Equilibrium and optimal behavior of customers in Markovian queues with multiple working vacations. TOP, 22, 694–715.

    Google Scholar 

  • Sun, W., Li, S., & Cheng-Guo, E. (2016). Equilibrium and optimal balking strategies of customers in Markovian queues with multiple vacations and N-policy. Applied Mathematical Modelling, 40, 284–301.

    Google Scholar 

  • Tian, R., Yue, D., & Yue, W. (2015). Optimal balking strategies in an M/G/1 queueing system with a removal server under N-policy. Journal of Industrial and Management Optimization, 11, 715–731.

    Google Scholar 

  • Wang, S., & Xu, X. (2021). Equilibrium strategies of the fluid queue with working vacation. Operational Research, 21(2), 1211–1228.

    Google Scholar 

  • Wang, J., & Zhang, F. (2011). Equilibrium analysis of the observable queues with balking and delayed repairs. Applied Mathematics and Computation, 218, 2716–2729.

    Google Scholar 

  • Yang, B., Hou, Z., Wu, J. Liu, Z. (2014a). Analysis the equilibrium strategies in the Geo/Geo/1 queue with multiple working vacations.Preprint.

  • Yang, T., Wang, J., & Zhang, F. (2014). Equilibrium balking strategies in the Geo/Geo/1 queues with server breakdowns and repairs. Quality Technology & Quantitative Management, 11, 231–243.

    Google Scholar 

  • Yechiali, U. (1971). On optimal balking rules and toll charges in the GI/M/1 queuing process. Operations Research, 19(2), 349–370.

    Google Scholar 

  • Yechiali, U. (1972). Customers’ optimal joining rules for the GI/M/s queue. Management Science, 18(7), 434–443.

    Google Scholar 

  • Yechiali, U. (1973). A queuing-type birth-and-death process defined on a continuous-time Markov chain. Operations Research, 21(2), 604–609.

    Google Scholar 

  • Yechiali, U., & Naor, P. (1971). Queuing problems with heterogeneous arrivals and service. Operations Research, 19(3), 722–734.

    Google Scholar 

  • Zhang, F., Wang, J., & Liu, B. (2013). Equilibrium balking strategies in Markovian queues with working vacations. Applied Mathematical Modelling, 37, 8264–8282.

    Google Scholar 

Download references

Acknowledgements

D. Logothetis was supported by the Hellenic Foundation for Research and Innovation (HFRI) under the HFRI PhD Fellowship grant (Fellowship Number: 1158).

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Correspondence to Athanasia Manou.

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D. Logothetis was supported by the Hellenic Foundation for Research and Innovation (H.F.R.I.).

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Logothetis, D., Manou, A. & Economou, A. The impact of reneging on a fluid on-off queue with strategic customers. Ann Oper Res 331, 629–647 (2023). https://doi.org/10.1007/s10479-022-04807-z

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