Abstract
The displacement of a sensor node on the human body to monitor the internal changes of human is an emerging technology. The Internet of Medical Things (IoMT) reduces an individual’s fatal problems. Hence, this paper presents the routing protocol for wireless body area network (WBAN) based on thermal and link quality and low-cost transmission. First, the number of paths is discovered based on the link quality and the thermal effect to transmit the sensed data by the IoMT device. All those evolved paths are optimized based on the cost for transmission; the prim’s algorithm achieves this. The price for all paths achieved by the prim’s algorithm is stored in the prim table, which will reduce the computation complexity and time. This two-stage process makes the proposed routing algorithm adaptive, hence the name Prim Based Link Quality and Thermal Aware Adaptive Routing (PLTAAR) protocol. Due to the focus on link quality, the energy utilized by the biosensor node for the retransmission of data queuing is reduced, and the thermal aware consideration protects the human from radiation effects caused by the IoMT devices. The proposed system model for the medical service is implemented on MATLAB.
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References
Abidi B, Jilbab A, Haziti ME (2017) Wireless sensor networks in biomedical: wireless body area networks. In: Rocha Á, Serrhini M, Felgueiras C (eds) Europe and MENA cooperation advances in information and communication technologies. Springer, Cham, pp 321–329
Ahmed G, Mahmood D, Islam S (2019) Thermal and energy-aware routing in wireless body area networks. Int J Distrib Sens Netw 15(6):1550147719854974
Ahmed G, Mehmood D, Shahzad K, Malick RAS (2021) An efficient routing protocol for the internet of medical things focusing hot spot node problem. Int J Distrib Sens Netw 17(2):1550147721991706
Al-Turjman F, Deebak BD (2020) Privacy-aware energy-efficient framework using the internet of medical things for COVID-19. IEEE Internet Things Magazine 3(3):64–68
Bhanumathi V, Sangeetha CP (2017) A guide for the selection of routing protocols in WBAN for healthcare applications. HCIS 7(1):24
Gardašević G, Katzis K, Bajić D, Berbakov L (2020) Emerging wireless sensor networks and Internet of Things technologies—foundations of smart healthcare. Sensors 20(13):3619
Geetha M, Ganesan R (2020) CEPRAN-cooperative energy efficient and priority based reliable routing protocol with network coding for WBAN. Wirel Pers Commun 1–19
George EM, Jacob L (2019) Multi-class delay sensitive medical packet scheduling in inter-WBAN communication. In 2019 IEEE International Conference on Advanced Networks and Telecommunications Systems (ANTS), IEEE, 1–5
Hou X, Wang J, Jiang C, Guan S, Ren Y (2018) A sink node assisted lightweight intrusion detection mechanism for WBAN. In 2018 IEEE International Conference on Communications (ICC), IEEE, 1–6
Iqbal M, Siahaan APU, Purba NE, Purwanto D (2017) Prim’s algorithm for optimizing fiber optic trajectory planning. Int J Sci Res Sci Technol 3(6):504–509
Jamal T, Butt SA (2017) Low-energy adaptive clustering hierarchy (LEACH) enhancement for military security operations. Proc J Basic Appl Sci Res ISSN, 2090-4304
Mostafaei H, Chowdhury MU, Obaidat MS (2018) Border surveillance with WSN systems in a distributed manner. IEEE Syst J 12(4):3703–3712
Ouyang F, Cheng H, Lan Y, Zhang Y, Yin X, Hu J, Peng X, Wang G, Chen S (2019) Automatic delivery and recovery system of Wireless Sensor Networks (WSN) nodes based on UAV for agricultural applications. Comput Electron Agric 162:31–43
Pramanik PK, Nayyar A, Pareek G (2019) WBAN: driving e-healthcare beyond telemedicine to remote health monitoring: architecture and protocols. In Telemedicine, Technologies Academic Press, 89–119
Qureshi KN, Din S, Jeon G, Piccialli F (2020) Link quality and energy utilization based preferable next-hop selection routing for wireless body area networks. Comput Commun 149:382–392
Saba T, Haseeb K, Ahmed I, Rehman A (2020) Secure and energy-efficient framework using Internet of Medical Things for e-healthcare. J Infect Public Health 13(10):1567–1575
Sagar AK, Singh S, Kumar A (2020) Energy-aware WBAN for health monitoring using critical data routing (CDR). Wirel Pers Commun 1–30
Saleh N, Kassem A, Haidar AM (2018) Energy-efficient architecture for wireless sensor networks in healthcare applications. IEEE Access 6:6478–6486
Selem E, Fatehy M, Abd El-Kader SM, Nassar H (2019) THE (temperature heterogeneity energy) aware routing protocol for IoT health application. IEEE Access 7:108957–108968
Shahbazi Z, Byun YC (2020) Towards a secure thermal-energy aware routing protocol in Wireless Body Area Network based on blockchain technology. Sensors 20(12):3604
Sharma N, Bhatt R (2018) Privacy preservation in WSN for healthcare application. Proc Comput Sci 132:1243–1252
Ventura JM, Fajardo A, Medina RP (2019) Priority-based data transmission for wireless body area network. Int J Electr Comput Eng 9:2088–8708
Wang D, Huang Q, Chen X, Ji L (2020) Location of three-dimensional movement for a human using a wearable multi-node instrument implemented by wireless body area networks. Comput Commun 153:34–41
Wang X, Zheng G, Ma H, Bai W, Wu H, Ji B (2021) Fuzzy control-based energy-aware routing protocol for wireless body area networks. J Sens 2021:1
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Bakkaiahgari, P.V.D., Prasad, K.V. Prim based link quality and thermal aware adaptive routing protocol for IoMT using SigFox network in WBAN. Evolving Systems 14, 533–544 (2023). https://doi.org/10.1007/s12530-022-09451-3
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DOI: https://doi.org/10.1007/s12530-022-09451-3