scholarly journals Remote Monitoring System of Geological Exploration in Lava Area Based on GPS

2020 ◽  
Vol 24 (2) ◽  
pp. 207-214
Author(s):  
Aimei Xu

A remote monitoring system for geological exploration in a lava area based on GPS is designed. The system mainly collects geological exploration data in a lava area by means of multi-S integration through the data acquisition module of geological exploration in a lava area. Then the data collected are transmitted to the data analysis and management module of geological exploration data in a lava area by using a GPS network, and the data analysis and management module of geological exploration data in the lava area is exploited. The monitoring data processing method based on the unascertained filtering method is used to remove gross errors in geological exploration data of lava area, identify abnormal values in geological exploration data of lava area, and transmit the abnormal values to the GPS-based geological anomaly location module. The GPS-based geological anomaly location module locates the geological anomaly according to the abnormal values, thus completing the remote monitoring of the exploration of the lava area based on GPS. The test results show that when the system is applied to remote monitoring of geological exploration in a lava area, the positioning error of small soil caves is small, and the reliability of monitoring data is high, which meets the needs of remote monitoring of geological exploration in a lava area.

2017 ◽  
Vol 865 ◽  
pp. 694-700
Author(s):  
Quan Wang ◽  
Chuan Tian ◽  
Tian Liang Hu ◽  
Cheng Rui Zhang ◽  
Li Xue Xu

The implementation of remote monitor in workshop can improve the production efficiency and contribute to the production management. In this paper, a remote monitoring system of air-jet loom workshop based on B/S structure is designed. The system adopts wireless networking mode in hardware and mainly consists of data acquisition module, database service module and Web service module in software. The data acquisition module is implemented with Visual C++. MySQL is chosen as the database management to design database service module. The Web service module is developed on the platform of asp.net and it is released on the IIS platform of cloud server, so that users can visit the Web site through browser clients. Different yarn materials need to be configured with different parameters. The loom computer can send requests to the cloud server for parameters. The system can analyze the types of yarn materials according to the requests and configure different parameters. This will be quite convenient for workers to change yarn materials.


2014 ◽  
Vol 530-531 ◽  
pp. 1108-1111
Author(s):  
Zhi Jun Guo ◽  
Xian Feng Yu

Through the overall analysis to the irrigation water management, according to the characteristics of data acquisition and monitoring, the author designed and completed a monitoring system which based on the wireless network GPRS. This system uses a SQL serve 2000 database and Delphi7 programming software, which includes several functions, such as the monitoring data acquisition, processing, voice communication and man-machine interface and so on. At the same time, this system adapted a kind of low power consumption and high performance embedded processors and GPRS module, carrying out the acquisition transmission control integration, solving the water supply engineering every link of the monitoring data acquisition and monitoring. It also provides some reliable solutions for the remote monitoring for irrigation water management.


2012 ◽  
Vol 263-266 ◽  
pp. 853-856
Author(s):  
Jun Wu ◽  
Tao Sun ◽  
Xiang Guo Yang

To solve the problems in the slope monitoring that needs man on scene to get real time monitoring data, this paper designs a remote monitoring system based on wireless sensor networks for side slope. With this system, users can get the quasi-real time monitoring data far from monitoring spot. This project adopts the wireless sensor networks technology, and the design comprises four modules according to the system function. The frame of the system, the design and function of each module are introduced in this paper. It proves that the system is feasible by experimental results, and the design has its practical value.


2020 ◽  
Vol 36 (02) ◽  
pp. 123-130
Author(s):  
Peiyong Li ◽  
Qiming Huang ◽  
Kun Shu ◽  
Yongqing Zhou ◽  
Chong Wang

The aim of this study was to overcome the problems and difficulties in the process of using CNC ship cold frame bender, especially for the routine maintenance and troubleshooting of CNC ship cold frame bender. The remote monitoring system is established according to the work principle of CNC ship cold frame bender. The system is composed of Client/Server and Browser/Server mixed structure, which includes data acquisition module, data transmission module, data network sharing module, remote online fault detection module, etc. The test results show that the system can collect and analyze the operation condition of the equipment remotely, and then analyze the data to realize the remote online detection. Furthermore, experts can evaluate the performance data and the test results remotely and give feedback to the site by the data network distribution platform. The test results also demonstrate the promising application of the proposed remote monitoring system to effectively improve the efficiency of the CNC ship cold frame bender.


2018 ◽  
Vol 14 (01) ◽  
pp. 4
Author(s):  
Wang Weidong

To improve the efficiency of the remote monitoring system for logistics transportation, we proposed a remote monitoring system based on wireless sensor network and GPRS communication. The system can collect information from the wireless sensor network and transmit the information to the ZigBee interpreter. The monitoring system mainly includes the following parts: Car terminal, GPRS transmission network and monitoring center. Car terminal mainly consists by the Zigbee microcontroller and peripherals, wireless sensor nodes, RFID reader, GPRS wireless communication module composed of a micro-wireless monitoring network. The information collected by the sensor communicates through the GPRS and the monitoring center on the network coordinator, sends the collected information to the monitoring center, and the monitoring center realizes the information of the logistics vehicle in real time. The system has high applicability, meets the design requirements in the real-time acquisition and information transmission of the information of the logistics transport vehicles and goods, and realizes the function of remote monitoring.


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