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Exploring a Design of Landslide Monitoring System

机译:探索滑坡监测系统设计

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Landslide is a critical natural geological hazard that causes severe damage to property, infrastructure, and humans. In general, some location-specific factors trigger a landslide. Wireless sensor network (WSN) is an enabling technology to monitor most of the parameters associated with these factors. A challenge in landslide monitoring through WSN is that each sensed data item might be critical whereas the underlying wireless communication is often unreliable. In case of landslides, the terrains have irregular shapes, providing harsh conditions for wireless communication thereby more data loss may be expected. This study focuses on the effect of lossy communication in WSN on the efficiency and accuracy of landslide monitoring systems. To this end, collaborative local data analysis is used to enable each node to decide locally whether its sensed data corresponds to a potential event-of-interest. Through extensive simulations, the performance of various landslide prediction and detection models has been evaluated. By and large, the study lets a significant insight into landslide monitoring before implementing a parameterized application for real-world deployment.
机译:Landslide是一个关键的自然地质危害,导致财产,基础设施和人类严重损害。一般来说,一些位置特定因素触发了滑坡。无线传感器网络(WSN)是一种能够监视与这些因素相关的大多数参数的启用技术。通过WSN的滑坡监测中的挑战是每个感测的数据项可能是至关重要的,而底层无线通信通常是不可靠的。在山体滑坡的情况下,地形具有不规则形状,提供了对无线通信的恶劣条件,从而可以预期更多数据丢失。本研究重点研究了WSN在滑坡监测系统效率和准确性中的损失通信的影响。为此,使用协同本地数据分析来使每个节点能够在本地决定其感测数据是否对应于潜在的兴趣事件。通过广泛的模拟,已经评估了各种滑坡预测和检测模型的性能。 BY ANDLY,该研究在实现现实世界部署的参数化应用程序之前,可以对滑坡监控进行显着洞察。

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