基于RSSI的农业边坡环境ZigBee Mesh网络通信链路分析

Poonpong Uarchoojitt, Suphakon Pothongkham, Thawatchai Kongnarong, W. Boonsong, C. Samakee, Tanakorn Inthasuth
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引用次数: 1

摘要

在智能农业中,山区或斜坡上的一些弯道会阻碍通信。本文介绍了ZigBee协议的链路通信效率。测试场景是在一个农业斜坡地区,阻止了从地面到山顶的通信。因此,为了加强通信网络,我们通过调整中继器的数量来扩大网络,从而有效地进行通信。利用XCTU软件采用环回技术记录接收信号强度指标(RSSI)和分组成功率。结果表明,利用1、2、3号中继器,在基于坡度的75 m发射端距离上,平均RSSI值分别增加-83.1、-81.7、-79.9 dBm,成功率为100%。此外,如果系统仅与发射机和接收机通信,则受山区曲线面积的影响,网络有100%的信号损耗。然而,本实验表明,基于zigbee的无线性能数据集讨论。进一步实现了农业坡地ZigBee网络的安装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Communication Link Analysis of ZigBee Mesh Networks Using Received Signal Strength Indicator (RSSI) for the Agricultural Slope Environment
Some curves in mountainous areas or slopes can hinder communication in intelligent agriculture. This paper presents the link communication efficiency using the ZigBee protocol. The test scenarios were in an agricultural slope area that blocked communication from the ground to the top of the mountain. Therefore, to strengthen the communication network, we adjust the number of repeaters to expand the network to communicate effectively. The received signal strength indicator (RSSI) and packet success ratio were recorded using the loopback technique with XCTU software. The results showed that the transmitter to the receiver distance of slope-based 75 m, which utilizes signaling repeaters 1, 2, and 3, increased average RSSI values of -83.1, -81.7, and -79.9 dBm, respectively, and the success rate is 100%. In addition, if the system communicates with only the transmitter and receiver, the network is 100% signal loss affected by the curve area in the mountain. However, this experiment shows that ZigBee-based wireless performance data sets are discussed. Furthermore, the result can further implement ZigBee network installation for agricultural slope areas.
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