Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks
Globally, there is a significant rise in the number of connected devices. Every device has an access to wide variety of telecom services among which voice, video and best effort (BE) contribute significantly. There is a noticeable growing trend towards upstream BE traffic besides real time e-service...
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IEEE
2020-01-01
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Online Access: | https://ieeexplore.ieee.org/document/9134770/ |
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author | Ravneet Kaur Akshita Gupta Anand Srivastava Bijoy Chand Chatterjee Abhijit Mitra Byrav Ramamurthy Vivek Ashok Bohara |
author_facet | Ravneet Kaur Akshita Gupta Anand Srivastava Bijoy Chand Chatterjee Abhijit Mitra Byrav Ramamurthy Vivek Ashok Bohara |
author_sort | Ravneet Kaur |
collection | DOAJ |
description | Globally, there is a significant rise in the number of connected devices. Every device has an access to wide variety of telecom services among which voice, video and best effort (BE) contribute significantly. There is a noticeable growing trend towards upstream BE traffic besides real time e-services that demand high quality of service (QoS). Converged next-generation fiber-wireless (FiWi) access networks composed of next-generation passive optical network (XG-PON) and 802.11n based wireless local area network (WLAN) has emerged as a suitable choice to provide high quality and affordable e-services to plenty of subscribers as they possess both high bandwidth and flexibility. In this paper, we study the performance of the integrated network architecture which combines XG-PON and enhanced distributed channel access (EDCA) under real time bursty traffic derived from the current global IP traffic distribution. The joint tuning of various crucial parameters of both XG-PON and EDCA with incorporation of an efficient deficit dynamic bandwidth algorithm (DBA) at optical line terminal (OLT) is done by exhaustive simulations in network simulator-3 (NS-3). Through intensive simulations and tuning, we are able to achieve a end-to-end delay performance of <; 150 ms for voice, <; 500 ms for video and a few seconds for BE upto full capacity. Also, a packet loss ratio (PLR) of <; 3% and <; 6% is achieved for voice and BE respectively upto full load. For voice PLR is <; 1% upto 60% total offered load. Further, it is observed that the fine tuning of key parameters has also resulted in increased bandwidth for dominant BE services. Therefore, this optimized network architecture is 20% more fair to BE services as compared to the conventional integrated FiWi architectures. |
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spelling | doaj.art-f455a421477f4916a84c6d216d72b1fe2022-12-21T22:23:57ZengIEEEIEEE Access2169-35362020-01-01812488312489310.1109/ACCESS.2020.30077789134770Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA NetworksRavneet Kaur0Akshita Gupta1https://orcid.org/0000-0001-6574-8915Anand Srivastava2Bijoy Chand Chatterjee3https://orcid.org/0000-0002-9363-9289Abhijit Mitra4https://orcid.org/0000-0002-0621-5796Byrav Ramamurthy5https://orcid.org/0000-0002-4104-7513Vivek Ashok Bohara6https://orcid.org/0000-0002-3798-7975Department of Electronics and Communication Engineering, Indraprastha Institute of Information Technology Delhi (IIITD), New Delhi, IndiaDepartment of Electronics and Communication Engineering, Indraprastha Institute of Information Technology Delhi (IIITD), New Delhi, IndiaDepartment of Electronics and Communication Engineering, Indraprastha Institute of Information Technology Delhi (IIITD), New Delhi, IndiaDepartment of Computer Science, South Asian University, New Delhi, IndiaDepartment of Electronics and Communication Engineering, Indraprastha Institute of Information Technology Delhi (IIITD), New Delhi, IndiaDepartment of Computer Science and Engineering, University of Nebraska, Lincoln, NE, USADepartment of Electronics and Communication Engineering, Indraprastha Institute of Information Technology Delhi (IIITD), New Delhi, IndiaGlobally, there is a significant rise in the number of connected devices. Every device has an access to wide variety of telecom services among which voice, video and best effort (BE) contribute significantly. There is a noticeable growing trend towards upstream BE traffic besides real time e-services that demand high quality of service (QoS). Converged next-generation fiber-wireless (FiWi) access networks composed of next-generation passive optical network (XG-PON) and 802.11n based wireless local area network (WLAN) has emerged as a suitable choice to provide high quality and affordable e-services to plenty of subscribers as they possess both high bandwidth and flexibility. In this paper, we study the performance of the integrated network architecture which combines XG-PON and enhanced distributed channel access (EDCA) under real time bursty traffic derived from the current global IP traffic distribution. The joint tuning of various crucial parameters of both XG-PON and EDCA with incorporation of an efficient deficit dynamic bandwidth algorithm (DBA) at optical line terminal (OLT) is done by exhaustive simulations in network simulator-3 (NS-3). Through intensive simulations and tuning, we are able to achieve a end-to-end delay performance of <; 150 ms for voice, <; 500 ms for video and a few seconds for BE upto full capacity. Also, a packet loss ratio (PLR) of <; 3% and <; 6% is achieved for voice and BE respectively upto full load. For voice PLR is <; 1% upto 60% total offered load. Further, it is observed that the fine tuning of key parameters has also resulted in increased bandwidth for dominant BE services. Therefore, this optimized network architecture is 20% more fair to BE services as compared to the conventional integrated FiWi architectures.https://ieeexplore.ieee.org/document/9134770/Fiber-wireless (FiWi)XG-PONEDCADBAPPBPglobal IP traffic |
spellingShingle | Ravneet Kaur Akshita Gupta Anand Srivastava Bijoy Chand Chatterjee Abhijit Mitra Byrav Ramamurthy Vivek Ashok Bohara Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks IEEE Access Fiber-wireless (FiWi) XG-PON EDCA DBA PPBP global IP traffic |
title | Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks |
title_full | Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks |
title_fullStr | Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks |
title_full_unstemmed | Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks |
title_short | Resource Allocation and QoS Guarantees for Real World IP Traffic in Integrated XG-PON and IEEE802.11e EDCA Networks |
title_sort | resource allocation and qos guarantees for real world ip traffic in integrated xg pon and ieee802 11e edca networks |
topic | Fiber-wireless (FiWi) XG-PON EDCA DBA PPBP global IP traffic |
url | https://ieeexplore.ieee.org/document/9134770/ |
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