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Article

PEDTARA: Priority-Based Energy Efficient, Delay and Temperature Aware Routing Algorithm Using Multi-Objective Genetic Chaotic Spider Monkey Optimization for Critical Data Transmission in WBANs

1
School of Computer Science and Information Engineering, Hefei University of Technology, Hefei 230009, China
2
Faculty of Engineering, Tokushima University, Tokushima 770-8506, Japan
*
Author to whom correspondence should be addressed.
Electronics 2022, 11(1), 68; https://doi.org/10.3390/electronics11010068
Submission received: 3 December 2021 / Revised: 18 December 2021 / Accepted: 21 December 2021 / Published: 27 December 2021
(This article belongs to the Special Issue Emerging Technologies for the Next Generation Smart Systems)

Abstract

Software-Defined Wireless Body Area Network (WBAN)s have gained significance in emergency healthcare applications for remote patients. Prioritization of healthcare data traffic has a high influence on the congestion and delay in the WBAN routing process. Currently, the energy constraints, packet loss, retransmission delay and increased sensor heat are pivotal research challenges in WBAN. These challenges also degrade the network lifetime and create serious issues for critical health data transmission. In this context, a Priority-based Energy-efficient, Delay and Temperature Aware Routing Algorithm (PEDTARA) is presented in this paper using a hybrid optimization algorithm of Multi-objective Genetic Chaotic Spider Monkey Optimization (MGCSMO). This proposed optimized routing algorithm is designed by incorporating the benefits of chaotic and genetic operators to the position updating function of enhanced Spider Monkey Optimization. For the prioritized routing process, initially, the patient data transmission in the WBAN is categorized into normal, on-demand and emergency data transmissions. Each category is ensured with efficient routing using the three different strategies of the suggested PEDTARA. PEDTARA performs optimal shortest path routing for normal data, energy-efficient emergency routing for high priority critical data and faster but priority verified routing for on-demand data. Thus, the proposed PEDTARA ensures energy-efficient, congestion-controlled and delay and temperature aware routing at any given period of health monitoring. Experiments were performed over a high-performance simulation scenario and the evaluation results showed that the proposed PEDTARA performs efficient routing better than the traditional approaches in terms of energy, temperature, delay, congestion and network lifetime.
Keywords: wireless body area network; software-defined network; remote healthcare applications; multi-objective genetic chaotic spider monkey optimization; traffic priority; congestion control; critical data transmission; on-demand data wireless body area network; software-defined network; remote healthcare applications; multi-objective genetic chaotic spider monkey optimization; traffic priority; congestion control; critical data transmission; on-demand data

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MDPI and ACS Style

Ahmed, O.; Hu, M.; Ren, F. PEDTARA: Priority-Based Energy Efficient, Delay and Temperature Aware Routing Algorithm Using Multi-Objective Genetic Chaotic Spider Monkey Optimization for Critical Data Transmission in WBANs. Electronics 2022, 11, 68. https://doi.org/10.3390/electronics11010068

AMA Style

Ahmed O, Hu M, Ren F. PEDTARA: Priority-Based Energy Efficient, Delay and Temperature Aware Routing Algorithm Using Multi-Objective Genetic Chaotic Spider Monkey Optimization for Critical Data Transmission in WBANs. Electronics. 2022; 11(1):68. https://doi.org/10.3390/electronics11010068

Chicago/Turabian Style

Ahmed, Omar, Min Hu, and Fuji Ren. 2022. "PEDTARA: Priority-Based Energy Efficient, Delay and Temperature Aware Routing Algorithm Using Multi-Objective Genetic Chaotic Spider Monkey Optimization for Critical Data Transmission in WBANs" Electronics 11, no. 1: 68. https://doi.org/10.3390/electronics11010068

APA Style

Ahmed, O., Hu, M., & Ren, F. (2022). PEDTARA: Priority-Based Energy Efficient, Delay and Temperature Aware Routing Algorithm Using Multi-Objective Genetic Chaotic Spider Monkey Optimization for Critical Data Transmission in WBANs. Electronics, 11(1), 68. https://doi.org/10.3390/electronics11010068

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