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Hava Trafik Yönetim Sistemleri Çekirdek Ağlarında Servis Kalitesi Temelli Ağ Trafik Yönetimi (Air-SDN)

Yıl 2024, Cilt: 17 Sayı: 2, 95 - 108
https://doi.org/10.54525/bbmd.1590440

Öz

Hava Trafik Yönetim (ATM) sistemleri, ticari hava taşımacılığının yanı sıra hava sahasında gerçekleşen tüm uçuşların yönetimini sağlar. Bu sistemin gerçek zamanlı, sürekli ve kritik veri barındırması nedeniyle, sistemin çekirdek ağında gerçekleşen ağ trafiğinin bu parametrelere cevap verebilecek şekilde yönetilmesi, başka bir ifade ile bu ağ yapısında belirli bir servis kalitesi (QoS) yaklaşımının uygulanması gerekmektedir. Bu çalışmada önerilen Air-SDN yöntemi, ATM sistemlerindeki çekirdek ağlarda Yazılım Tanımlı Ağ (SDN) konsepti çerçevesi içerisinde belirli bir servis kalitesi (QoS) yöntemi uygulayarak ağ trafiğinin hızlı ve güvenli yönetilmesine olanak tanımaktadır. Air-SDN yöntemi bir test ortamında emüle edilmiş ve önerilen yöntemin, TCP taşıma protokolü ile %153, UDP ve Burst-UDP taşıma protokolleri için de %63 oranında veri çıkış hacmi parametresinde performans artışı sağladığı gözlenmiştir.

Kaynakça

  • https://www.eurocontrol.int/Economics/DailyTrafficVariation-States.html (21.02.2023 tarihinde erişildi.)
  • https://www.frequentis.com/en/pr/air-traffic-managements-first-software-defined-network-sdn-proves-operational-success-brazil (17.03.2023 tarihinde erişildi.)
  • Thazin N., Nwe K. M., Ishibashi Y., End-to-End Dynamic Bandwidth Resource Allocation Based on QoS Demand in SDN, 2019, 25th Asia-Pasific Conference on Communications (APPC), Ho Chi Minh City, Vietnam, pp. 244-249.
  • Open Networking Foundation, Software-defined networking: the new form for networks, 2012, white paper.
  • Braden R., Clark D., Shenker S. Integrated services in the internet architecture: an overview, 1994, IETF RFC 1633.
  • Baker F., Black D., Blake S., Nichols K. Definition of the differentiated services field (DS field) in the IPv3 and IPv6 headers, 1998, RFC 2474.
  • Krishna H., van Adrichem L.M., Kuipers F.A. Providing bandwidth guarantees with OpenFlow, 2016, IEEE Symposium on Communications and Vehicular Technology in the Benelux, SCVT.
  • Xu C., Chen B., Qian H. Quality of service guaranteed resource management dynamically in software defined network, 2015, Journal of Communications, Vol.10 No.11 Kadim U.N., Mohammed I.J. SDN-RA: An optimized reschedule algorithm of SDN load balancer for data center networks based on QoS, 2020, 2nd International Scientific Conference of Al-Ayen University (ISCAU-2020).
  • Gu Z., Wang Y., Lin X. Achieving real-time quality of service in software defined networks, 2018, 44th Annual Conference of the IEEE Industrial Electronics Society.
  • Al-Jawad A., Shah P., Gemikonaklı O., Trestian R. Policy-based QoS management framework for software-defined networks, 2018, International Symposium on Networks, Computers and Communications (ISNCC).
  • Guo X., Lin H., Li Z., Peng M., Deep-Reinforcement-Learning-Based QoS-Aware Secure Routing for SDN-IoT, 2020, IEEE Internet of Things Journal, Vol.7, No.7.
  • Vanitchasatit P, Sanguankotchakorn T. A class-based adaptive QoS control scheme adopting optimization technique over WLAN SDN architecture, 2022, International Journal of Computer Networks & Communications (IJCNC), vol. 14, no.3, pp.55-72
  • Al-Haddad R., Velazquez E.S., Fatima A., Winckles A. A novel traffic shaping algorithm for SDN-slices networks using a new WFQ technique, 2021, International Journal of Advanced Computer Science and Applications (IJACSA), Vol. 12, No.1.
  • Li F., Cao J., Wang X., Sun Y., Sahni Y. Enabling software defined networking with QoS guarantee for cloud applications,", 2017, IEEE 10th International Conference on Cloud Computing.
  • Baek S.U., Park C.H., Kim E., Shin D. Implementation and verification of QoS priority over software defined networking, 2016, International Conference of Internet Computing and Internet of Things (ICOMP).
  • Akella A.V., Xiong K. Quality of service (QoS) guaranteed network resource allocation via software defined networking (SDN), 2014, IEEE 12th International Conference on Dependable, Autonomic and Secure Computing.
  • Karakus M., Durresi A. Quality of Service (QoS) in Software Defined Networking (SDN): A Survey, 2017, Journal of Network and Computer Applications, Vol.80, pp. 200-218.
  • Ongkasae K., Nakazato H., Koga T., Lu X. QoS implementation in system wide information management (SWIM) network model, 2015, IEEE Twelfth International Syposium on Autonomous Decentralized Systems, Taichung, Taiwan, pp. 181-184.
  • Izquierdo-Zaragoza J. -L., Lins W., Leydold P., Eier D. Hierarchical software-defined networks for wide-area air traffic management networks, 2019, Integrated Communications, Navigation and Surveillance Conference (ICNS), Herndon, VA, USA, pp. 1-11.
  • Open vSwitch What is Open vSwitch?, https://openvswitch.org (19.04.2023 tarihinde erişildi.)
  • Ryu What's Ryu?, https://ryu-sdn.org (20.04.2023 tarihinde erişildi.)
  • Pyhton Get Started, https://www.python.org/ (20.04.2023 tarihinde erişildi.)
  • Mininet An Instant Virtual Network on your Laptop (or other PC), https://mininet.org (20.04.2023 tarihinde erişildi)
  • Perf The ultimate speed test tool for TCP, UDP and SCTP, https://iperf.fr (20.04.2023 tarihinde erişildi.)
  • Wang S. Comparison of SDN OpenFlow network simulator and emulators: EstiNet vs. Mininet, 2014, IEEE Symposium on Computers and Communications (ISCC), Funchal, Portugal.

Quality-of-Service Based Network Traffic Management in Air Traffic Management System’s Core Network (Air-SDN)

Yıl 2024, Cilt: 17 Sayı: 2, 95 - 108
https://doi.org/10.54525/bbmd.1590440

Öz

Air Traffic Management (ATM) Systems provide managing all flights in the airspace including commercial air transporting. Because of this system contains real-time, consistent and critical data, the network traffic which occurs in the core network of this system should be managed to satisfy these parameters; in other terms, a quality of service (QoS) approach should be applied to this network structure. Air-SDN method, which is proposed in this paper makes enable to manage network traffic fast and reliable within ATM System’s core network using a specified quality of service (QoS) manner in Software Defined Networking (SDN) concept. Air-SDN method is emulated in a test-bed and it has been observed that this method provides performance gain as 153% for TCP transport protocol, 63% for UDP and Burst-UDP transport protocols.

Kaynakça

  • https://www.eurocontrol.int/Economics/DailyTrafficVariation-States.html (21.02.2023 tarihinde erişildi.)
  • https://www.frequentis.com/en/pr/air-traffic-managements-first-software-defined-network-sdn-proves-operational-success-brazil (17.03.2023 tarihinde erişildi.)
  • Thazin N., Nwe K. M., Ishibashi Y., End-to-End Dynamic Bandwidth Resource Allocation Based on QoS Demand in SDN, 2019, 25th Asia-Pasific Conference on Communications (APPC), Ho Chi Minh City, Vietnam, pp. 244-249.
  • Open Networking Foundation, Software-defined networking: the new form for networks, 2012, white paper.
  • Braden R., Clark D., Shenker S. Integrated services in the internet architecture: an overview, 1994, IETF RFC 1633.
  • Baker F., Black D., Blake S., Nichols K. Definition of the differentiated services field (DS field) in the IPv3 and IPv6 headers, 1998, RFC 2474.
  • Krishna H., van Adrichem L.M., Kuipers F.A. Providing bandwidth guarantees with OpenFlow, 2016, IEEE Symposium on Communications and Vehicular Technology in the Benelux, SCVT.
  • Xu C., Chen B., Qian H. Quality of service guaranteed resource management dynamically in software defined network, 2015, Journal of Communications, Vol.10 No.11 Kadim U.N., Mohammed I.J. SDN-RA: An optimized reschedule algorithm of SDN load balancer for data center networks based on QoS, 2020, 2nd International Scientific Conference of Al-Ayen University (ISCAU-2020).
  • Gu Z., Wang Y., Lin X. Achieving real-time quality of service in software defined networks, 2018, 44th Annual Conference of the IEEE Industrial Electronics Society.
  • Al-Jawad A., Shah P., Gemikonaklı O., Trestian R. Policy-based QoS management framework for software-defined networks, 2018, International Symposium on Networks, Computers and Communications (ISNCC).
  • Guo X., Lin H., Li Z., Peng M., Deep-Reinforcement-Learning-Based QoS-Aware Secure Routing for SDN-IoT, 2020, IEEE Internet of Things Journal, Vol.7, No.7.
  • Vanitchasatit P, Sanguankotchakorn T. A class-based adaptive QoS control scheme adopting optimization technique over WLAN SDN architecture, 2022, International Journal of Computer Networks & Communications (IJCNC), vol. 14, no.3, pp.55-72
  • Al-Haddad R., Velazquez E.S., Fatima A., Winckles A. A novel traffic shaping algorithm for SDN-slices networks using a new WFQ technique, 2021, International Journal of Advanced Computer Science and Applications (IJACSA), Vol. 12, No.1.
  • Li F., Cao J., Wang X., Sun Y., Sahni Y. Enabling software defined networking with QoS guarantee for cloud applications,", 2017, IEEE 10th International Conference on Cloud Computing.
  • Baek S.U., Park C.H., Kim E., Shin D. Implementation and verification of QoS priority over software defined networking, 2016, International Conference of Internet Computing and Internet of Things (ICOMP).
  • Akella A.V., Xiong K. Quality of service (QoS) guaranteed network resource allocation via software defined networking (SDN), 2014, IEEE 12th International Conference on Dependable, Autonomic and Secure Computing.
  • Karakus M., Durresi A. Quality of Service (QoS) in Software Defined Networking (SDN): A Survey, 2017, Journal of Network and Computer Applications, Vol.80, pp. 200-218.
  • Ongkasae K., Nakazato H., Koga T., Lu X. QoS implementation in system wide information management (SWIM) network model, 2015, IEEE Twelfth International Syposium on Autonomous Decentralized Systems, Taichung, Taiwan, pp. 181-184.
  • Izquierdo-Zaragoza J. -L., Lins W., Leydold P., Eier D. Hierarchical software-defined networks for wide-area air traffic management networks, 2019, Integrated Communications, Navigation and Surveillance Conference (ICNS), Herndon, VA, USA, pp. 1-11.
  • Open vSwitch What is Open vSwitch?, https://openvswitch.org (19.04.2023 tarihinde erişildi.)
  • Ryu What's Ryu?, https://ryu-sdn.org (20.04.2023 tarihinde erişildi.)
  • Pyhton Get Started, https://www.python.org/ (20.04.2023 tarihinde erişildi.)
  • Mininet An Instant Virtual Network on your Laptop (or other PC), https://mininet.org (20.04.2023 tarihinde erişildi)
  • Perf The ultimate speed test tool for TCP, UDP and SCTP, https://iperf.fr (20.04.2023 tarihinde erişildi.)
  • Wang S. Comparison of SDN OpenFlow network simulator and emulators: EstiNet vs. Mininet, 2014, IEEE Symposium on Computers and Communications (ISCC), Funchal, Portugal.
Toplam 25 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Bilgi Sistemleri Geliştirme Metodolojileri ve Uygulamaları
Bölüm Araştırma Makaleleri
Yazarlar

Sertan Pekel 0000-0003-0994-3307

Müge Sayıt 0000-0002-7990-1463

Erken Görünüm Tarihi 3 Aralık 2024
Yayımlanma Tarihi
Yayımlandığı Sayı Yıl 2024 Cilt: 17 Sayı: 2

Kaynak Göster

IEEE S. Pekel ve M. Sayıt, “Hava Trafik Yönetim Sistemleri Çekirdek Ağlarında Servis Kalitesi Temelli Ağ Trafik Yönetimi (Air-SDN)”, bbmd, c. 17, sy. 2, ss. 95–108, 2024, doi: 10.54525/bbmd.1590440.