eprintid: 17555 rev_number: 2 eprint_status: archive userid: 1 dir: disk0/00/01/75/55 datestamp: 2023-12-19 03:23:55 lastmod: 2023-12-19 03:23:55 status_changed: 2023-12-19 03:08:15 type: article metadata_visibility: show creators_name: Nguyen, T.C. creators_name: Le, H.-C. creators_name: Sarang, S. creators_name: Drieberg, M. creators_name: Nguyen, T.-H.T. title: Priority and Traffic-Aware Contention-Based Medium Access Control Scheme for Multievent Wireless Sensor Networks ispublished: pub keywords: Energy efficiency; Energy utilization; Internet of things; Internet protocols; Medium access control; Quality control; Sensor nodes, Contention window; Data packet; Delay; Media access protocols; Medium access control protocols; Medium access control scheme; Multi-event wireless sensor network; Quality-of-service; Receiver, Quality of service note: cited By 4 abstract: The requirement of high quality of service (QoS) in multi-priority industrial and domestic sensor networks poses new challenges to the increasing adoption of Internet of Things (IoT). In Multi-event Wireless Sensor Networks (MWSNs), nodes generate different types of data packets i.e., urgent (high priority) or normal (low priority), with different traffic proportions. High priority packets require an assurance of faster transmission and higher reliability in the network. In the literature, the existing medium access control (MAC) protocols for MWSNs have limited consideration in supporting data priority with different traffic proportions. Therefore, this paper proposes an energy efficient MAC scheme that incorporates multi-priority of data packets with dynamic traffic proportion, called PriTraCon-MAC. PriTraCon-MAC supports multi-events by considering four different priority levels of data packets and uses a novel approach that adjusts the contention window adaptively. Due to that, Request-To-Send frame of higher priority data can be sent earlier in the contention window, resulting in the corresponding faster acceptance by the receiver. Furthermore, mathematical delay analysis with different priority traffic proportions has also been undertaken. In addition, PriTraCon-MAC has been implemented in OMNET++ Castalia and its performance has been evaluated in terms of packet delay, reliability, and energy consumption, and compared with the existing Timeout Multi-priority based-MAC (TMPQ-MAC) under various network conditions. The simulation results demonstrate that PriTraCon-MAC offers lower average delay and achieves significantly higher packet success rate, while reducing energy consumption by up to 80 when compared with TMPQ-MAC protocol. © 2022 IEEE. date: 2022 publisher: Institute of Electrical and Electronics Engineers Inc. official_url: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85136851974&doi=10.1109%2fACCESS.2022.3199385&partnerID=40&md5=47d8c129816751ae1cd074d115eeb766 id_number: 10.1109/ACCESS.2022.3199385 full_text_status: none publication: IEEE Access volume: 10 pagerange: 87361-87373 refereed: TRUE issn: 21693536 citation: Nguyen, T.C. and Le, H.-C. and Sarang, S. and Drieberg, M. and Nguyen, T.-H.T. (2022) Priority and Traffic-Aware Contention-Based Medium Access Control Scheme for Multievent Wireless Sensor Networks. IEEE Access, 10. pp. 87361-87373. ISSN 21693536