Optimal Arrangement of Wearable Devices Based on Lifespan of Animals as Device Transporter Materials for Long-term Monitoring of Wildlife Animal Sensor Network

Optimal Arrangement of Wearable Devices Based on Lifespan of Animals as Device Transporter Materials for Long-term Monitoring of Wildlife Animal Sensor Network
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DOI:
10.18494/sam.2020.2560
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发表时间:
2020-01-01
影响因子:
1.2
通讯作者:
Kobayashi, Hill Hiroki
Kobayashi, Hill Hiroki
中科院分区:
材料科学4区
文献类型:
--
作者:
Nakagawa, Keijiro;Kobayashi, Hill Hiroki

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在本文中,我们讨论了基于动物寿命的可穿戴设备的优化布置,这些设备被用作设备运输材料,用于利用多智能体模拟重现野生环境来长期监测野生动物传感器网络。相关研究提出动物间数据共享,以实现野生环境中的长期监测。利用动物行为对一组动物进行无线通信节能研究。然而,为了在野外环境中进行长期监测,除了省电之外,还需要一个考虑运输野生动物寿命的系统。在此,我们使用多智能体模拟来重现考虑动物寿命的野生环境,并研究了何时以及应将多少个体引入野生环境以实现动物群体中数年的数据共享。建议所提出的方法能够对偏远地区进行长期监测,这些地区在没有基站和电力基础设施的情况下人们无法进入,使用野生动物长达数年。
In this paper, we discuss the optimal arrangement of wearable devices based on the lifespan of animals, which arc utilized as device transporter materials, for the long-term monitoring of the wildlife animal sensor network using multi-agent simulation to reproduce the wild environment. Related studies have proposed animal-to-animal data sharing to realize long-term monitoring in the wild environment. The research on the power saving of wireless communication in a group of animals has been conducted using animal behavior. However, a system that considers the lifespan of transported wildlife, in addition to power saving, is required for long-term monitoring in the wild environment. Herein, we used multi-agent simulation to reproduce the wild environment considering the lifespan of animals, and examined when and how many individuals should be introduced to the wild environment to realize data sharing in the group of animals over several years. The proposed method is suggested to enable the long-term monitoring of remote areas where people cannot enter without base stations and power infrastructure using wild animals for several years.