Modified Opportunistic Deficit Round Robin Scheduling for improved QOS in IEEE 802.16 WBA networks
C. Kalyana Chakravarthy, P.V.G.D. Prasad Reddy

TL;DR
This paper proposes two modified credit-based scheduling schemes for WiMAX networks that improve QoS by reducing latency and enhancing throughput for real-time traffic compared to traditional ODRR scheduling.
Contribution
It introduces two novel credit distribution schemes, ODRREDC and ODRRSDC, compatible with IEEE 802.16, enhancing QoS for real-time flows in WiMAX networks.
Findings
Both schemes improve latency and throughput over standard ODRR.
ODRRSDC prioritizes highest priority flows for credit allocation.
Enhanced QoS for real-time bursty traffic in WiMAX networks.
Abstract
Packet and flow scheduling algorithms for WiMAX has been a topic of interest for a long time since the very inception of WiMAX networks. WiMAX offers advantages particularly in terms of Quality of service it offers over a longer range at the MAC level. In our work, we propose two credit based scheduling schemes one in which completed flows distributes the left over credits equally to all higher priority uncompleted flows(ODRREDC) and another in which completed flows give away all the excess credits to the highest priority uncompleted flow(ODRRSDC). Both the schemes are compatible with 802.16 MAC protocol and can efficiently serve real time bursty traffic with reduced latency and hence improved QOS for real time flows. We compare the two proposed schemes for their latency, bandwidth utilization and throughput for real time burst flows with the opportunity based Deficit Round Robin…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAdvanced Wireless Network Optimization · Wireless Communication Networks Research · Advanced MIMO Systems Optimization
