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Erschienen in: Wireless Networks 8/2016

01.11.2016

Cross-layer-based adaptive TCP algorithm for cloud computing services in 4G LTE-A relaying communication

verfasst von: Ben-Jye Chang, Yi-Hsuan Li, Shin-Pin Chen, Ying-Hsin Liang

Erschienen in: Wireless Networks | Ausgabe 8/2016

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Abstract

Cloud computing provides various diverse services for users accessing big data through high data rate cellular networks, e.g., LTE-A, IEEE 802.11ac, etc. Although LTE-A supports very high data rate, multi-hop relaying, and cooperative transmission, LTE-A suffers from high interference, path loss, high mobility, etc. Additionally, the accesses of cloud computing services need the transport layer protocols (e.g., TCP, UDP, and streaming) for achieving end-to-end transmissions. Clearly, the transmission QoS is significantly degraded when the big data transmissions are done through the TCP protocol over a high interference LTE-A environment. The issue of providing high data rate and high reliability transmissions in cloud computing needs to be addressed completely. Thus, this paper proposes a cross-layer-based adaptive TCP algorithm to gather the LTE-A network states (e.g., AMC, CQI, relay link state, available bandwidth, etc.), and then feeds the state information back to the TCP sender for accurately executing the network congestion control of TCP. As a result, by using the accurate TCP congestion window (cwnd) under a high interference LTE-A, the number of timeouts and packet losses are significantly decreased. Numerical results demonstrate that the proposed approach outperforms the compared approaches in goodput and fairness, especially in high interference environment. Especially, the goodput of the proposed approach is 139.42 % higher than that of NewReno when the wireless loss increases up to 4 %. Furthermore, the throughput and the response functions are mathematically analyzed. The analysis results can justify the claims of the proposed approach.

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Literatur
1.
Zurück zum Zitat Balakrishnan, H., Padmanabhan, V., Seshan, S., & Katz, R. (1997). A comparison of mechanisms for improving TCP performance over wireless links, long distance networks. IEEE/ACM Transactions on Networking, 5(6), 756–769.CrossRef Balakrishnan, H., Padmanabhan, V., Seshan, S., & Katz, R. (1997). A comparison of mechanisms for improving TCP performance over wireless links, long distance networks. IEEE/ACM Transactions on Networking, 5(6), 756–769.CrossRef
2.
Zurück zum Zitat Tian, Y., Xu, K., & Ansari, N. ( 2005). TCP in wireless environments: Problems and solutions. IEEE Communications Magazine, 43(3), 27–32.CrossRef Tian, Y., Xu, K., & Ansari, N. ( 2005). TCP in wireless environments: Problems and solutions. IEEE Communications Magazine, 43(3), 27–32.CrossRef
3.
Zurück zum Zitat 3GPP Specification: TS 36.836 Version 12.0.0. (2014). Evolved Universal Terrestrial Radio Access (E-UTRA): Study on mobile relay. 3GPP. 3GPP Specification: TS 36.836 Version 12.0.0. (2014). Evolved Universal Terrestrial Radio Access (E-UTRA): Study on mobile relay. 3GPP.
4.
Zurück zum Zitat Li, Y., Liu, L., Li, H., Zhang, J., & Yi, Y. (2015). Resource allocation for delay-sensitive traffic over LTE-advanced relay networks. IEEE Transactions on Wireless Communications, 14(8), 4291–4303.CrossRef Li, Y., Liu, L., Li, H., Zhang, J., & Yi, Y. (2015). Resource allocation for delay-sensitive traffic over LTE-advanced relay networks. IEEE Transactions on Wireless Communications, 14(8), 4291–4303.CrossRef
5.
Zurück zum Zitat Lin, P.-C., Cheng, R.-G., & Chang, Y.-J. (2014). An enhanced handover scheme for mobile relays in LTE-A high-speed rail networks. IEEE Transactions on Vehicular Technology, 63(1), 334–343.CrossRef Lin, P.-C., Cheng, R.-G., & Chang, Y.-J. (2014). An enhanced handover scheme for mobile relays in LTE-A high-speed rail networks. IEEE Transactions on Vehicular Technology, 63(1), 334–343.CrossRef
6.
Zurück zum Zitat Liu, S., Basar, T., & Srikant, R. (2008). TCP-Illinois: A loss- and delay-based congestion control algorithm for high-speed networks. Performance Evaluation, 65(6), 417–440.CrossRef Liu, S., Basar, T., & Srikant, R. (2008). TCP-Illinois: A loss- and delay-based congestion control algorithm for high-speed networks. Performance Evaluation, 65(6), 417–440.CrossRef
7.
Zurück zum Zitat Tan, K., Song, J., Zhang, Q., & Sridharan M. (2006). A compound TCP approach for high-speed and long distance networks. In IEEE INFOCOM, pp. 1–12. Tan, K., Song, J., Zhang, Q., & Sridharan M. (2006). A compound TCP approach for high-speed and long distance networks. In IEEE INFOCOM, pp. 1–12.
8.
Zurück zum Zitat Xu, W., Zhou, Z., Pham, D.-T., Ji, C., Yang, M., & Liu, Q. (2011). Hybrid congestion control for high-speed networks. Journal of Network and Computer Applications, 34(4), 1416–1428.CrossRef Xu, W., Zhou, Z., Pham, D.-T., Ji, C., Yang, M., & Liu, Q. (2011). Hybrid congestion control for high-speed networks. Journal of Network and Computer Applications, 34(4), 1416–1428.CrossRef
9.
Zurück zum Zitat Wang, J., Wen, J., Zhang, J., & Han, Y. (2011). TCP-FIT: An improved TCP congestion control algorithm and its performance. In IEEE INFOCOM, pp. 2894–2902. Wang, J., Wen, J., Zhang, J., & Han, Y. (2011). TCP-FIT: An improved TCP congestion control algorithm and its performance. In IEEE INFOCOM, pp. 2894–2902.
10.
Zurück zum Zitat Staring, A. J., & Karagiannis, G. (2013). Cloud computing models and their application in LTE based cellular systems. In IEEE ICC 2013, pp. 750–755. Staring, A. J., & Karagiannis, G. (2013). Cloud computing models and their application in LTE based cellular systems. In IEEE ICC 2013, pp. 750–755.
11.
Zurück zum Zitat Sabella, D., et al. (2015). Benefits and challenges of cloud technologies for 5G architecture. IEEE VTC-Spring, 2015, 1–5. Sabella, D., et al. (2015). Benefits and challenges of cloud technologies for 5G architecture. IEEE VTC-Spring, 2015, 1–5.
12.
Zurück zum Zitat Oueis, J., Calvanese-Strinati, J. E., De Domenico, A., & Barbarossa, S. (2014). On the impact of backhaul network on distributed cloud computing. IEEE WCNC, 2014, 12–17. Oueis, J., Calvanese-Strinati, J. E., De Domenico, A., & Barbarossa, S. (2014). On the impact of backhaul network on distributed cloud computing. IEEE WCNC, 2014, 12–17.
13.
Zurück zum Zitat 3GPP Specification: TR 36.912 Version 12.0.0. (2014). Feasibility study for further advancements for E-UTRA (LTE-Advanced). 3GPP. 3GPP Specification: TR 36.912 Version 12.0.0. (2014). Feasibility study for further advancements for E-UTRA (LTE-Advanced). 3GPP.
14.
Zurück zum Zitat 3GPP Specification: TR 36.913 Version 12.0.0. (2014). Requirements for further advancements for Evolved Universal Terrestrial Radio Access (E-UTRA) (LTE-Advanced). 3GPP. 3GPP Specification: TR 36.913 Version 12.0.0. (2014). Requirements for further advancements for Evolved Universal Terrestrial Radio Access (E-UTRA) (LTE-Advanced). 3GPP.
15.
Zurück zum Zitat 3GPP Specification: TS 36.213 Version 12.7.0. (2015). Evolved Universal Terrestrial Radio Access (E-UTRA): Physical layer procedures. 3GPP. 3GPP Specification: TS 36.213 Version 12.7.0. (2015). Evolved Universal Terrestrial Radio Access (E-UTRA): Physical layer procedures. 3GPP.
16.
Zurück zum Zitat Yang, Y., Hu, H., Xu, J., & Mao, G. (2009). Relay technologies for WiMAX and LTE-advanced mobile systems. IEEE Communications Magazine, 47(10), 100–105.CrossRef Yang, Y., Hu, H., Xu, J., & Mao, G. (2009). Relay technologies for WiMAX and LTE-advanced mobile systems. IEEE Communications Magazine, 47(10), 100–105.CrossRef
17.
Zurück zum Zitat Salem, M., Adinoyi, A., Rahman, M., Yanikomeroglu, H., Falconer, D., Kim, Y. D., et al. (2010). An overview of radio resource management in relay-enhanced OFDMA-based networks. IEEE Communications Surveys and Tutorials, 12(3), 422–438.CrossRef Salem, M., Adinoyi, A., Rahman, M., Yanikomeroglu, H., Falconer, D., Kim, Y. D., et al. (2010). An overview of radio resource management in relay-enhanced OFDMA-based networks. IEEE Communications Surveys and Tutorials, 12(3), 422–438.CrossRef
18.
Zurück zum Zitat Akyildiz, I.-F., & Wang, X. (2008). Cross-layer design in wireless mesh networks. IEEE Transactions on Vehicular Technology, 57(2), 1–6.CrossRef Akyildiz, I.-F., & Wang, X. (2008). Cross-layer design in wireless mesh networks. IEEE Transactions on Vehicular Technology, 57(2), 1–6.CrossRef
19.
Zurück zum Zitat Shetty, S., Tang, Y., & Collani, W. (2010). TCP Venoplus—A cross-layer approach to improve TCP Performance in wired-cum-wireless networks using signal strength In Conference on Networking, Sensing and Control, pp. 693–697. Shetty, S., Tang, Y., & Collani, W. (2010). TCP Venoplus—A cross-layer approach to improve TCP Performance in wired-cum-wireless networks using signal strength In Conference on Networking, Sensing and Control, pp. 693–697.
20.
Zurück zum Zitat Mishra, M., & Sivalingam, K. M. (2008) Enhancing TCP performance in AMC based broadband wireless access networks. In IEEE International Conference on Communications, pp. 2984–2989. Mishra, M., & Sivalingam, K. M. (2008) Enhancing TCP performance in AMC based broadband wireless access networks. In IEEE International Conference on Communications, pp. 2984–2989.
21.
Zurück zum Zitat Cheng, R.-S., & Lin, H.-T. (2008). A cross-layer design for TCP End-to-end performance improvement in multi-hop wireless networks. Computer Communications, 31(4), 3145–3152.CrossRef Cheng, R.-S., & Lin, H.-T. (2008). A cross-layer design for TCP End-to-end performance improvement in multi-hop wireless networks. Computer Communications, 31(4), 3145–3152.CrossRef
22.
Zurück zum Zitat Chang, H.-P., Kan, H.-W., & Ho, M.-H. (2011). Adaptive TCP congestion control and routing schemes using cross-layer information for mobile ad hoc networks. Computer Communications. Chang, H.-P., Kan, H.-W., & Ho, M.-H. (2011). Adaptive TCP congestion control and routing schemes using cross-layer information for mobile ad hoc networks. Computer Communications.
23.
Zurück zum Zitat Majeeda, A., Abu-Ghazaleha, N., Razakb, S., & Harrasb, K. (2011). Analysis of TCP performance on multi-hop wireless networks: A cross layer approach. Ad Hoc Networks. Majeeda, A., Abu-Ghazaleha, N., Razakb, S., & Harrasb, K. (2011). Analysis of TCP performance on multi-hop wireless networks: A cross layer approach. Ad Hoc Networks.
24.
Zurück zum Zitat Qazi, I. A., & Znati, T. (2011). On the design of load factor based congestion control protocols for next-generation networks. Computer Networks, 55(1), 45–60.CrossRef Qazi, I. A., & Znati, T. (2011). On the design of load factor based congestion control protocols for next-generation networks. Computer Networks, 55(1), 45–60.CrossRef
25.
Zurück zum Zitat Lien, Y.-N., & Yu, Y.-F. (2009) Hop-by-Hop TCP over MANET. In IEEE Asia-Pacific Services Computing Conference, pp. 1150–1155. Lien, Y.-N., & Yu, Y.-F. (2009) Hop-by-Hop TCP over MANET. In IEEE Asia-Pacific Services Computing Conference, pp. 1150–1155.
26.
Zurück zum Zitat Park, E.-C., Kim, D.-Y., Kim, H., & Choi, C.-H. (2007). A cross-layer approach for per-station fairness in TCP over WLANs. IEEE Transactions on Mobile Computing, 7(7), 898–911.CrossRef Park, E.-C., Kim, D.-Y., Kim, H., & Choi, C.-H. (2007). A cross-layer approach for per-station fairness in TCP over WLANs. IEEE Transactions on Mobile Computing, 7(7), 898–911.CrossRef
27.
Zurück zum Zitat Kliazovich, D., Granelli, F., & Miorandi, D. (2008). Logarithmic window increase for TCP Westwood+ for improvement in high speed, long distance networks. Computer Networks, 52(12), 2395–2410.CrossRef Kliazovich, D., Granelli, F., & Miorandi, D. (2008). Logarithmic window increase for TCP Westwood+ for improvement in high speed, long distance networks. Computer Networks, 52(12), 2395–2410.CrossRef
28.
Zurück zum Zitat Ha, S., Rhee, I., & Xu, L. (2008). CUBIC: A new TCP-friendly high-speed TCP variant. ACM SIGOPS Operating Systems Review, 42(5), 64–74.CrossRef Ha, S., Rhee, I., & Xu, L. (2008). CUBIC: A new TCP-friendly high-speed TCP variant. ACM SIGOPS Operating Systems Review, 42(5), 64–74.CrossRef
29.
Zurück zum Zitat Ko, E., An, D., Yeom, I., & Yoon, H. (2011). Congestion control for sudden bandwidth changes in TCP. International Journal of Communication Systems. Ko, E., An, D., Yeom, I., & Yoon, H. (2011). Congestion control for sudden bandwidth changes in TCP. International Journal of Communication Systems.
30.
Zurück zum Zitat Zhang, K., & Fu, C.-P. (2008). An enhancement of TCP veno with forward acknowledgement. Computer Communications, 31(15), 3683–3690.CrossRef Zhang, K., & Fu, C.-P. (2008). An enhancement of TCP veno with forward acknowledgement. Computer Communications, 31(15), 3683–3690.CrossRef
31.
Zurück zum Zitat El-Ocla, H. (2008). TCP CERL: Congestion control enhancement over wireless networks. Wireless Networks, 16(1), 183–198.CrossRef El-Ocla, H. (2008). TCP CERL: Congestion control enhancement over wireless networks. Wireless Networks, 16(1), 183–198.CrossRef
32.
Zurück zum Zitat Chan, Y.-C., Lin, C.-L., Chan, C.-T., & Ho, C.-Y. (2010). CODE TCP: A competitive delay-based TCP. Computer Communications, 33(9), 1013–1029.CrossRef Chan, Y.-C., Lin, C.-L., Chan, C.-T., & Ho, C.-Y. (2010). CODE TCP: A competitive delay-based TCP. Computer Communications, 33(9), 1013–1029.CrossRef
33.
Zurück zum Zitat Hayes, D.-A., & Armitage, G. (2010). Improved coexistence and loss tolerance for delay based TCP congestion control. In IEEE Conference on Local Computer Networks, pp. 24–31. Hayes, D.-A., & Armitage, G. (2010). Improved coexistence and loss tolerance for delay based TCP congestion control. In IEEE Conference on Local Computer Networks, pp. 24–31.
34.
Zurück zum Zitat Jung, H., Kim, S.-G., Yeom, H.-Y., Kang, S., & Libman, L. (2011) Adaptive delay-based congestion control for high bandwidth-delay product networks. In IEEE INFOCOM, pp. 2885–2893. Jung, H., Kim, S.-G., Yeom, H.-Y., Kang, S., & Libman, L. (2011) Adaptive delay-based congestion control for high bandwidth-delay product networks. In IEEE INFOCOM, pp. 2885–2893.
35.
Zurück zum Zitat Cheng, R.-S., & Ke, C.-Y. (2011) An threshold-based congestion control mechanism for Vegas TCP over heterogeneous wireless networks. In Wireless and Pervasive Computing, pp. 1–6. Cheng, R.-S., & Ke, C.-Y. (2011) An threshold-based congestion control mechanism for Vegas TCP over heterogeneous wireless networks. In Wireless and Pervasive Computing, pp. 1–6.
36.
Zurück zum Zitat Mehrotra, S., Li, J., Sengupta, S., Jain, M., & Sen, S. (2010) Hybrid window and rate based congestion control for delay sensitive applications. In IEEE Global Telecommunications Conference, pp. 1–5. Mehrotra, S., Li, J., Sengupta, S., Jain, M., & Sen, S. (2010) Hybrid window and rate based congestion control for delay sensitive applications. In IEEE Global Telecommunications Conference, pp. 1–5.
37.
Zurück zum Zitat Chang, B.-J., Lin, S.-Y., & Jin, J.-Y. (2009). LIAD: Adaptive bandwidth prediction based logarithmic increase adaptive decrease for TCP congestion control in heterogeneous wireless networks. Computer Network, 53(14), 2566–2585.CrossRefMATH Chang, B.-J., Lin, S.-Y., & Jin, J.-Y. (2009). LIAD: Adaptive bandwidth prediction based logarithmic increase adaptive decrease for TCP congestion control in heterogeneous wireless networks. Computer Network, 53(14), 2566–2585.CrossRefMATH
38.
Zurück zum Zitat Chen, M., & Zakhor, A. (2006). Flow control over wireless network and application layer implementation. In IEEE INFOCOM, pp. 103–113. Chen, M., & Zakhor, A. (2006). Flow control over wireless network and application layer implementation. In IEEE INFOCOM, pp. 103–113.
39.
Zurück zum Zitat Jacobson, V., & Karels, M. (1999). The Newreno modification to TCP’s fast recovery algorithm. In IETF RFC 2582. Jacobson, V., & Karels, M. (1999). The Newreno modification to TCP’s fast recovery algorithm. In IETF RFC 2582.
40.
Zurück zum Zitat Grieco, L., & Mascolo, S. (2004). Performance evaluation and comparison of Westwood+, New Reno, and Vegas TCP congestion control. ACM Computer Communication Review, 34(2), 25–38.CrossRef Grieco, L., & Mascolo, S. (2004). Performance evaluation and comparison of Westwood+, New Reno, and Vegas TCP congestion control. ACM Computer Communication Review, 34(2), 25–38.CrossRef
42.
Zurück zum Zitat Villamizar, C., & Song, C. (1994). High performance TCP in the ANSNET. ACM SIGCOMM Computer Communication Review, 24(5), 45–60.CrossRef Villamizar, C., & Song, C. (1994). High performance TCP in the ANSNET. ACM SIGCOMM Computer Communication Review, 24(5), 45–60.CrossRef
43.
Zurück zum Zitat Corless, R. M., Gonnet, G. H., Hare, D. E. G., Jeffrey, D. J., & Knuth, D. E. (1996). On the LambertW function. Advances in Computational Mathematics, 5(4), 329–359.MathSciNetCrossRefMATH Corless, R. M., Gonnet, G. H., Hare, D. E. G., Jeffrey, D. J., & Knuth, D. E. (1996). On the LambertW function. Advances in Computational Mathematics, 5(4), 329–359.MathSciNetCrossRefMATH
Metadaten
Titel
Cross-layer-based adaptive TCP algorithm for cloud computing services in 4G LTE-A relaying communication
verfasst von
Ben-Jye Chang
Yi-Hsuan Li
Shin-Pin Chen
Ying-Hsin Liang
Publikationsdatum
01.11.2016
Verlag
Springer US
Erschienen in
Wireless Networks / Ausgabe 8/2016
Print ISSN: 1022-0038
Elektronische ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-015-1117-7

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