A Survey on Various Aggregators for Routing Delay in Wireless Sensor System
Keywords:
Information total, virtual matrix engineering, Master aggregator, worldwide collection, neighborhood accumulationAbstract
Remote sensor systems have pulled in much research consideration lately and can be utilized in a wide range of uses. Vitality Efficiency is an essential factor for the execution of remote sensor systems (WSN). VGA can disseminate vitality scattering uniformly all through the sensors, multiplying the helpful framework lifetime for the systems. In this work, Virtual Grid Architecture (VGA) is a vitality effective directing worldview is proposed .The convention uses information total and inarrange handling to boost the system lifetime. A sensible methodology is to mastermind hubs in a changeless topology. Note that the area of the base station isn't really at the extraordinary corner of the framework; rather it tends to be situated at any subjective place. In this way VGA spares more vitality than performs better than the widely used metric as well as other two metrics devised recently in terms of energy consumption and end-to-end delay, different conventions when the transmission go is more remote.
References
[1] D. Liu, M. Hou, Z. Cao, J. Wang, Y. He, and Y. Liu, “Duplicate detectable opportunistic forwarding in duty-cycled wireless sensor networks,”IEEE-ACM Trans. Netw., vol. 24, no. 2, pp. 662–673, Apr. 2016.
[2] R. Khoshkangini, S. Zaboli, and M. Conti, “Efficient routing protocol via ant colony optimization (ACO) and breadth first search (BFS),” inProc. IEEE Int. Conf. Cyber, Phys. Soc. Comput., 2014, pp. 374–380.
[3] B. Pitchaimanickam and S. Radhakrishnan, “A hybrid bacteria foraging using particle swarm optimization algorithm for clustering in wireless sensor networks,” in Proc. IEEE Int. Conf. Sci. Eng. Manag. Res., Nov. 2014, pp. 16.
[4] X. Mao, S. Tang, X. Xu, X.-Y. Li, and H. Ma, “Energy-efficient opportunistic routing in wireless sensor networks,” IEEE Trans. Parallel Distrib. Syst., vol. 22, no. 11, pp. 1934–1942, Nov. 2011.
[5] R. C. Carrano, D. Passos, L. C. S. Magalhaes, and C. V. N. Albuquerque, “Survey and taxonomy of duty cycling mechanisms in wireless sensor networks,” IEEE Commun. Surveys Tuts. vol. 16, no. 1, pp. 181–194,1st Quart. 2013.
[6] D. Wei, Y. Jin, S. Vural, K. Moessner, and R. Tafazolli, “An energy efficient clustering solution for wireless sensor networks,” IEEE Trans.Wireless Commun., vol. 10, no. 11, pp. 3973–3983, Nov. 2011.
[7] P. Huang, L. Xiao, S. Soltani, M.W. Mutka, and N. Xi, “The evolution of MAC protocols in wireless sensor networks: A survey,” IEEE Commun. Surveys Tuts. vol. 15, no. 1, pp. 101–120, 1st Quart. 2013.
[8] S. Qaisar, R. M. Bilal, W. Iqbal, M. Naureen, and S. Lee, “Compressive sensing: From theory to applications, A survey,” J. Commun. Netw.vol. 15, no. 5, pp. 443–456, 2013.
[9] J. Yan, M. Zhou, and Z. Ding, “Recent advances in energy-efficient routing protocols for wireless sensor networks: A review,” IEEE Access, vol. 4, pp. 5673–5686, 2016.
[10] N. A. Pantazis, S. A. Nikolidakis, and D. D. Vergados, “Energy-efficient routing protocols in wireless sensor networks: A survey,” IEEE Commun. Surveys Tuts. vol. 15, no. 2, pp. 551–591, 2nd Quart. 2013.
[11] S. Paris, C. Nita-Rotaru, F. Martignon, and A. Capone, “Cross-layer metrics for reliable routing in wireless mesh networks,” IEEE/ACM Trans. Netw., vol. 21, no. 3, pp. 1003–1016, Jun. 2013.
[12] S.-S. Wang and Z.-P. Chen, “LCM: A link-aware clustering mechanism for energy-efficient routing in wireless sensor networks,” IEEE Sensors J., vol. 13, no. 2, pp. 728–736, Feb. 2013.
[13] G. Jakllari, S. Eidenbenz, N. Hengartner, S. V. Krishnamurthy, and M. Faloutsos, “Link positions matter: A non commutative routing metric for wireless mesh networks,” IEEE Trans. Mobile Comput., vol. 11,no. 1, pp. 61–72, Jan. 2012.
[14] E. Ghadimi, O. Landsiedel, P. Soldati, S. Duquennoy, and M. Johansson, “Opportunistic routing in low duty-cycle wireless sensor networks,”ACM Trans. Sensor Netw., vol. 10, no. 4, p. 67, 2014.
[15] J. Zuo, C. Dong, H. V. Nguyen, S. X. Ng, L.-L. Yang, and L. Hanzo, “Cross-layer aided energy-efficient opportunistic routing in ad hoc networks,” IEEE Trans. Commun., vol. 62, no. 2, pp. 522–535, Feb. 2014.
[16] Z. Zhao, D. Rosário, T. Braun, and E. Cerqueira, “Context-aware opportunistic routing in mobile ad-hoc networks incorporating node mobility,” in Proc. IEEE Wireless Commun. Netw. Conf., Apr. 2014, pp. 2138–2143.
[17] M. J. Tsai, H. Y. Yang, B. H. Liu, and W. Q. Huang, “Virtual-coordinate based delivery-guaranteed routing protocol in wireless sensor networks,”IEEE/ACM Trans. Netw., vol. 17, no. 4, pp. 1228–1241, Aug. 2009.
[18] M. Saleem, I. Ullah, and M. Farooq, “Bee Sensor: An energy-efficient and scalable routing protocol for wireless sensor networks,” Inf. Sci., vol. 200, pp. 38–56, Oct. 2012.
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