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Zigbee based Wireless Data Acquisition System for monitoring of partition stability above old underground coal workings

机译:基于ZigBee的无线数据采集系统,用于监控旧地下煤炭工作的分区稳定性

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Conversion of old underground workings into opencast mines leads to rock displacement, collapse of partition, and slope failures some times. Continuous monitoring of slopes and partition is required to maintain the stability over old workings. Wireless sensor network is more suitable method for continuous monitoring, and it is cost-effective, two-way communication, and provides real-time monitoring and analysis of data. In this paper, development of a low-cost Zigbee based Wireless Data Acquisition System (WDAQ) is described. Field investigations were carried out in an opencast coal mine in south India to assess the strain and deformation for different partition thicknesses of 4.12m, 5.91m, 6.86m, 7.91m, 10.21m and 12.10m over old underground workings, due to the external load caused by the movement of Heavy Earth Moving Machinery (HEMM). Maximum strain and deformation were 387 x 10(-6) and 2.41 mm for 4.12 m partition, respectively. It can be observed that the strain and deformation are decreased with increased partition thickness. This paper also describes that the validation of data based on Zigbee based WDAQ with conventional method of monitoring as well as numerical modeling. The data obtained using WDAQ is in close to the other two methods. The variation is around 5-19%.
机译:将旧地下运作的转换为Opencast Mines导致岩石位移,分区崩溃,斜率失效一段时间。需要持续监控斜坡和分区,以保持旧工作的稳定性。无线传感器网络更适合连续监控方法,并且具有成本效益,双向通信,并提供实时监控和数据分析。在本文中,描述了基于低成本的基于ZigBee的无线数据采集系统(WDAQ)的开发。现场调查在南印度露天煤矿进行,以评估不同分区厚度为4.12米,5.91米,6.86米,7.91M,10.21M,7.91M,10.21M和12.10米的伤害和变形,由于外部的外部由重物移动机械(麻线)移动引起的负荷。分别为4.12μm的最大应变和变形分别为387×10(-6)和2.41mm。可以观察到,随着隔断厚度的增加,应变和变形降低。本文还描述了基于基于ZigBee的WDAQ的数据验证,以及传统的监测方法以及数值建模。使用WDAQ获得的数据近于另外两种方法。变异约为5-19%。

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