Low financial cost with ant colony optimisation in intelligent agriculture

被引:0
作者
Gaofeng X. [1 ]
机构
[1] Hangzhou Vocational and Technical College, Hangzhou
关键词
Ant colony optimisation; Financial cost; Intelligent agriculture; Wireless sensor network;
D O I
10.1504/IJWMC.2020.105659
中图分类号
学科分类号
摘要
With the development of wireless sensor networks, and other information related high technologies, a lot of practical Internet of Things (IoT) applications have greatly increased the productivity. Currently, more and more capital is invested in IoT, especially intelligent agriculture as many countries begin to pay more attention to basic and intelligent agriculture. For a large intelligent agriculture system, it will cost a lot of time and energy for the mobile sink to collect all the data of the sensing system with the help of cluster head node. In this paper, we try to solve this issue by minimising the data collection path of the mobile sink, using the ant colony optimisation algorithm. We implement the algorithm in Python and conduct two experiments which show that we can get the best path of the given example and show how the efficiency changes when the numbers of ants and loops increase. Copyright © 2020 Inderscience Enterprises Ltd.
引用
收藏
页码:111 / 115
页数:4
相关论文
共 15 条
  • [11] Li S., Xu L.D., Zhao S., The internet of things: A survey, Information Systems Frontiers, 17, pp. 243-259, (2015)
  • [12] Shalli R., Rajneesh T., Jyoteesh M., Hassan A.S., Mahasweta S., Song H., A novel scheme for an energy efficient internet of things based on wireless sensor networks, Sensors, 15, 11, pp. 28603-28626, (2015)
  • [13] Singh B., Lobiyal D.K., A novel energy-aware cluster head selection based on particle swarm optimization for wireless sensor networks, Human-Centric Computing and Information Sciences, 2, 1, (2012)
  • [14] Thapar P., Batra U., Implementation of Ant colony optimization in routing protocol for internet of things, Journal of Virology, 83, 20, pp. 10480-10493, (2018)
  • [15] Zhong Y., Gao J., Lei Q., Zhou Y., A vision-based counting and recognition system for flying insects in intelligent agriculture, Sensors, 18, 5, (2018)