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Reseach Article

Differential Evolution based Inter-cluster Data Aggregation for Mobile Sink based Heuristic Algorithm for Clustering Hierarchy Protocol

by Ramandeep Singh, Parmbir Singh
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 179 - Number 28
Year of Publication: 2018
Authors: Ramandeep Singh, Parmbir Singh
10.5120/ijca2018916627

Ramandeep Singh, Parmbir Singh . Differential Evolution based Inter-cluster Data Aggregation for Mobile Sink based Heuristic Algorithm for Clustering Hierarchy Protocol. International Journal of Computer Applications. 179, 28 ( Mar 2018), 24-29. DOI=10.5120/ijca2018916627

@article{ 10.5120/ijca2018916627,
author = { Ramandeep Singh, Parmbir Singh },
title = { Differential Evolution based Inter-cluster Data Aggregation for Mobile Sink based Heuristic Algorithm for Clustering Hierarchy Protocol },
journal = { International Journal of Computer Applications },
issue_date = { Mar 2018 },
volume = { 179 },
number = { 28 },
month = { Mar },
year = { 2018 },
issn = { 0975-8887 },
pages = { 24-29 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume179/number28/29137-2018916627/ },
doi = { 10.5120/ijca2018916627 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-07T00:56:45.547221+05:30
%A Ramandeep Singh
%A Parmbir Singh
%T Differential Evolution based Inter-cluster Data Aggregation for Mobile Sink based Heuristic Algorithm for Clustering Hierarchy Protocol
%J International Journal of Computer Applications
%@ 0975-8887
%V 179
%N 28
%P 24-29
%D 2018
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Wireless sensor network (WSNs) are promising while important as well as common strategies to furnishing pervasive computing surroundings for several applications. Unbalanced use of power is surely an normal problem in WSNs, described as multi-hop routing as well as many-to-one visitors pattern. This irregular power dissipation might significantly minimize the system lifetime. So in the effort to enhance the network life-time along with minimizing energy dissipation various energy-efficient routing protocols are designed for the actual sensor networks. Hierarchical routing follows the clustering mechanism which is considered to be efficient in terms of energy and scalability. In this paper, a comparison of different parameters used in Differential evolution based inter-cluster data aggregation for mobile sink based heuristic algorithm for clustering hierarchy protocol are considered and the techniques used i.e. HEED, DWEHC, LEACH.

References
  1. Suma.N, Dr. T. Purusothaman. “Enhanced Logical Tree based Routing for Energy Efficient Wireless Sensor Networks”, International Journal of Advanced Information Science and Technology (IJAIST), no.8, (2012) :15-19.
  2. Goyal, Deepak, and Malay RanjanTripathy. "Routing protocols in wireless sensor networks: a survey." In 2012 Second International Conference on Advanced Computing & Communication Technologies, pp. 474-480. IEEE, 2012.
  3. Yi, Chenfu, Lili Wang, and Ye Li. "Energy efficient transmission approach for WBAN based on threshold distance." IEEE Sensors Journal 15, no. 9 (2015): 5133-5141.
  4. Khan, Abdul Waheed, Abdul Hanan Abdullah, Mohammad AbdurRazzaque, and JavedIqbalBangash. "VGDRA: a virtual grid-based dynamic routes adjustment scheme for mobile sink-based wireless sensor networks." IEEE sensors Journal 15, no. 1 (2015): 526-534.
  5. Saraswat, Lalit Kumar, and Sachin Kumar. "Comparative study of load balancing techniques for optimization of network lifetime in wireless sensor networks." IJCER 2, no. 2 (2013): 189-193.
  6. Valerio Rosset, Matheus A. Paulo, Juliana G. Cespedes, Maria C.V. Nascimento, "Enhancing the reliability on data delivery and energy efficiency by combining swarm intelligence and community detection in large-scale WSNs," Expert Systems with Applications, Volume 78, 15 July 2017, Pages 89-102.
  7. Kumar, Vikash, Anshu Jain, and P. N. Barwal. "Wireless sensor networks: security issues, challenges and solutions." International Journal of Information and Computation Technology 4, no. 8 (2014): 859-868.
  8. Samayveer Singh, Aruna Malik, Rajeev Kumar, "Energy efficient heterogeneous DEEC protocol for enhancing lifetime in WSNs," Engineering Science and Technology, an International Journal, Volume 20, Issue 1, February 2017, Pages 345-353.
  9. MuyiwaOlakanmiOladimeji, Mikdam Turkey, Sandra Dudley, "HACH: Heuristic Algorithm for Clustering Hierarchy protocol in wireless sensor networks," Applied Soft Computing, Volume 55, 2017, Pages 452-461.
  10. Dilbag Singh and Vijay Kumar. "Modified gain intervention filter based dehazing technique." Journal of Modern Optics 64, no. 20 (2017): 2165-2178.
  11. Dilbag Singh and Vijay Kumar. "Dehazing of remote sensing images using improved restoration model based dark channel prior." The Imaging Science Journal 65, no. 5 (2017): 282-292.
  12. Dilbag Singh and Vijay Kumar. "Comprehensive survey on haze removal techniques." Multimedia Tools and Applications (2017): 1-26.
  13. Dilbag Singh and Vijay Kumar. "Dehazing of remote sensing images using fourth-order partial differential equations based trilateral filter." IET Computer Vision (2017).
  14. Dilbag Singh and Vijay Kumar. "Single image haze removal using integrated dark and bright channel prior." Modern Physics Letters B 32, no. 04 (2018): 1850051.
  15. Dilbag Singh and Vijay Kumar. "Defogging of road images using gain coefficient-based trilateral filter." Journal of Electronic Imaging 27, no. 1 (2018): 013004.
  16. Dilbag Singh Deepak Garg, and Husanbir Singh Pannu. "Efficient landsat image fusion using fuzzy and stationary discrete wavelet transform." The Imaging Science Journal 65, no. 2 (2017): 108-114.
  17. Sengaliappan, M., and A. Marimuthu. "Improved general self-organized tree-basef routing protocol for wireless sensor network." Journal of Theoretical and Applied Information Technology 68, no. 1 (2014).
  18. Mankar, Gunjan, and Sonali T. Bodkhe. "Traffic aware energy efficient routing protocol." In Electronics Computer Technology (ICECT), 2011 3rd International Conference on, vol. 6, pp. 316-320. IEEE, 2011.
  19. Yogesh Kumar, Rajiv Munjal and Krishan Kumar. “Wireless Sensor Networks and Security Challenges”, National Workshop-Cum-Conference on Recent Trends in Mathematics and Computing (RTMC) Proceedings published in International Journal of Computer Applications, no.9 (2011):17-21.
  20. Zaid Abdul KaeemNaji, AchalaDeshmukh. “Performance Evaluation of Energy Efficient and Scalable BeeSensor Routing Protocol of Wireless Sensor Networks.” IJARCSSE International Journal, (2015): 9-18.
  21. Soleman, Hosam, and Ali Payandeh. "Self-protection mechanism for wireless sensor networks." International Journal of Network Security & Its Applications 6, no. 3 (2014): 85-97.
  22. Mundada, Monica R., SavanKiran, ShivanandKhobanna, Raja NahushaVarsha, and Seira Ann George. "A Study on Energy Efficient Routing Protocols in Wireless Sensor Networks." International Journal of Distributed and Parallel Systems (IJDPS) Vol 3 (2012): 311-330.
Index Terms

Computer Science
Information Sciences

Keywords

Differential evolution Energy Efficiency