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Articles

Enhanced heuristic algorithm-based energy-aware resource optimization for cooperative IoT

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Pages 959-970 | Received 16 Feb 2021, Accepted 10 Jan 2022, Published online: 02 Feb 2022

References

  • Haseeb K, Lee S, Jeon G. EBDS: An energy-efficient big data-based secure framework using Internet of Things for Green environment. Environ Technol Innov. 2020;20:101129.
  • Na Z, et al. Joint trajectory and power optimization for UAV-relay-assisted Internet of Things in emergency. Phys Commun. 2020b;41:101100.
  • Mekala MS, Viswanathan P. Energy-efficient virtual machine selection based on resource ranking and utilization factor approach in cloud computing for IoT. Comput Electr Eng. 2019;73:227–244.
  • Ejaz W, Ibnkahla M. Multiband spectrum sensing and resource allocation for IoT in Cognitive 5G networks. IEEE Internet Things J. 2018;5(1):150–163.
  • Wang Y, et al. Collaborative multiple centers fresh logistics distribution network optimization with resource sharing and temperature control constraints. Expert Syst Appl. 2021;165:113838.
  • Zhang L. Resource allocation for energy efficient user association in user-centric ultra-dense networks integrating NOMA and beamforming. AEU - Int J Electron Commun. 2020;124:153270.
  • Suganya E, Rajan C. An adaboost-modified classifier using particle swarm optimization and stochastic diffusion search in wireless IoT networks. Wireless Netw. 2020;27:2287–2299.
  • Shende K, Sonavane SS. (2020). CrowWhale-ETR: CrowWhale optimization algorithm for energy and trust aware multicast routing in WSN for IoT applications, Wireless Networks, pp. 1–19.
  • Njini I, Ekabua OO. Genetic algorithm based energy efficient optimization strategies in wireless sensor networks: a survey. Adv Comput Sci, An Int J. 2014;3(5):1–9.
  • Wahla AH, Chen L, Wang Y, et al. Automatic wireless signal classification in multimedia Internet of things. An Adapt Boosting Enabled Approach, IEEE Access. 2019;7:160334–160344.
  • Zhou Z, Dong M, Ota K, et al. Energy-Efficient resource allocation for D2D Communications underlaying cloud-RAN-based LTE-A networks. IEEE Internet Things J. 2016;3(3):428–438.
  • Kim MH, Ko I-Y. An efficient resource allocation approach based on a genetic algorithm for composite Services in IoT environments. IEEE. 2015:543–550.
  • Dai YS, Wang XL. Optimal resource allocation on grid systems for maximizing service reliability using a genetic algorithm. Reliab Eng Syst Saf. 2006;91(9):1071–1082.
  • Krishnamoorthy M, Ernst AT, Sharaiha YM. Comparison of algorithms for the degree constrained minimum spanning tree. J Heuristics. 2001;7(6):587–611.
  • Zheng LI, Kaihua LIU, Yuting SU, et al. Adaptive resource allocation algorithm for Internet of Things with bandwidth constraint. Trans Tianjin Univ. 2012;18:253–258.
  • Angelakis V, Avgouleas I, Pappas N, et al. Allocation of heterogeneous resources of an IoT device to flexible services. IEEE Internet Things J. 2016;3(5):691–700.
  • Ansere JA, Kamal M, Gyamfi E, et al. Energy efficient resource optimization in cooperative Internet of Things networks. Internet Things. 2020;12:100302.
  • Chen X, Liu Y, Cai LX, et al. Resource Allocation for Wireless cooperative IoT network with energy harvesting. IEEE Trans Wireless Commun. 2020;19(7):4879–4893.
  • Na Z, Zhanga M, Wang J, et al. UAV-assisted wireless powered Internet of Things: joint trajectory optimization and resource allocation. Ad Hoc Netw. 2020a;98:102052.
  • Bharti M, Kumar R, Saxena S, et al. Optimal resource selection framework for Internet-of-things. Comput Electr Eng. 2020;86:106693.
  • Liu X, Li Y, Zhang X, et al. Energy-efficient resource optimization in Green Cognitive Internet of things. Mobile Netw Appl. 2020;25:2527–2535.
  • Awoyemi BS, Alfa AS, Maharaj BTJ. Resource optimisation in 5G and internet-of-Things networking. Wireless Pers Commun. 2020;111:2671–2702.
  • Chen J, Zhang L, Liang Y, et al. Resource allocation for wireless-powered IoT networks with short packet communication. IEEE Trans Wireless Commun. 2019;18(2):1447–1461.
  • Wang Z, Liu D, Jolfaei A. Resource allocation solution for sensor networks using improved chaotic firefly algorithm in IoT environment. Comput Commun. 2020;156:91–100.
  • Bello O, Zen H, Othman AK, et al. Computing amplify-and-forward relay amplification factor to improve total capacity at destination. Amer J Appl Sci. 2015;12(8):572–580.
  • Meng X-B, Gao XZ, Gao XZ, et al. A new bio-inspired optimisation algorithm: Bird Swarm Algorithm. J Exp Theor Artif Intell. 2016;28(4):673–687.
  • George A, Rajakumar BR. Fuzzy Aided Ant Colony Optimization algorithm to solve optimization problem. Intell Inf, Adv Intell Syst Comput. 2013;182:207–215.
  • Swamy SM, Rajakumar BR, Valarmathi IR. (2013). Design of hybrid wind and photovoltaic power system using Opposition-based Genetic Algorithm with Cauchy Mutation, IET SEISCON.
  • Wang D, Tan D, Liu L. Particle swarm optimization algorithm: an overview. Soft Comput. 2018;22:387–408.
  • Mirjalili S, Mirjalili SM, Lewis A. Grey wolf optimizer. Adv Eng Softw. 2014;69:46–61.
  • Mirjalili S, Lewis A. The Whale optimization algorithm. Adv Eng Softw. 2016;95:51–67.
  • Xiao L, et al. Distributed cooperative communication nodes control and optimization reliability for resource-constrained WSNs. Neurocomputing. 2017;270:122–136.
  • Xiong X, Hou L, Zheng K, et al. SMDP-based radio resource allocation scheme in software-defined Internet of things networks. IEEE Sensors J. 2016;16(20):7304–7314.

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