To optimize the self-organization network, self-adaptation, real-time monitoring, remote management capability, and equipment reuse level of the meteorological station supporting the portable groundwater circulation w...To optimize the self-organization network, self-adaptation, real-time monitoring, remote management capability, and equipment reuse level of the meteorological station supporting the portable groundwater circulation wells, and to provide real-time and effective technical services and environmental data support for groundwater remediation, a real-time monitoring system design of the meteorological station supporting the portable groundwater circulation wells based on the existing equipment is proposed. A variety of environmental element information is collected and transmitted to the embedded web server by the intelligent weather transmitter, and then processed by the algorithm and stored internally, displayed locally, and published on the web. The system monitoring algorithm and user interface are designed in the CNWSCADA development environment to realize real-time processing and analysis of environmental data and monitoring, control, management, and maintenance of the system status. The PLC-controlled photovoltaic power generating panels and lithium battery packs are in line with the concept of energy saving and emission reduction, and at the same time, as an emergency power supply to guarantee the safety of equipment and data when the utility power fails to meet the requirements. The experiment proves that the system has the characteristics of remote control, real-time interaction, simple station deployment, reliable operation, convenient maintenance, and green environment protection, which is conducive to improving the comprehensive utilization efficiency of various types of environmental information and providing reliable data support, theoretical basis and guidance suggestions for the research of groundwater remediation technology and its disciplines, and the research and development of the movable groundwater cycling well monitoring system.展开更多
为解决日益严峻的供电问题,提高电网的供电能力和经济效益,针对目前单一线路上的动态增容监测装置不能考虑电网综合情况从而导致无法进行正确决策的缺陷,设计了一种基于物联网的输电线路动态增容监测系统构架。在该系统中每5个监测装置...为解决日益严峻的供电问题,提高电网的供电能力和经济效益,针对目前单一线路上的动态增容监测装置不能考虑电网综合情况从而导致无法进行正确决策的缺陷,设计了一种基于物联网的输电线路动态增容监测系统构架。在该系统中每5个监测装置中设置1个监测主站,监测装置将所监测到的单一线路数据传输至监测主站,监测主站将数据汇总后传输至后台上位机,后台上位机再根据摩尔根公式计算出容量裕量的最小值供工作人员参考,使其作出更为准确的判断。实验装置安装在连云港某110 k V输电线路上,后台上位机设于连云港供电局,所监测到的数据与实际相符,证明了该装置的正确性与有效性。展开更多
文摘To optimize the self-organization network, self-adaptation, real-time monitoring, remote management capability, and equipment reuse level of the meteorological station supporting the portable groundwater circulation wells, and to provide real-time and effective technical services and environmental data support for groundwater remediation, a real-time monitoring system design of the meteorological station supporting the portable groundwater circulation wells based on the existing equipment is proposed. A variety of environmental element information is collected and transmitted to the embedded web server by the intelligent weather transmitter, and then processed by the algorithm and stored internally, displayed locally, and published on the web. The system monitoring algorithm and user interface are designed in the CNWSCADA development environment to realize real-time processing and analysis of environmental data and monitoring, control, management, and maintenance of the system status. The PLC-controlled photovoltaic power generating panels and lithium battery packs are in line with the concept of energy saving and emission reduction, and at the same time, as an emergency power supply to guarantee the safety of equipment and data when the utility power fails to meet the requirements. The experiment proves that the system has the characteristics of remote control, real-time interaction, simple station deployment, reliable operation, convenient maintenance, and green environment protection, which is conducive to improving the comprehensive utilization efficiency of various types of environmental information and providing reliable data support, theoretical basis and guidance suggestions for the research of groundwater remediation technology and its disciplines, and the research and development of the movable groundwater cycling well monitoring system.
文摘为解决日益严峻的供电问题,提高电网的供电能力和经济效益,针对目前单一线路上的动态增容监测装置不能考虑电网综合情况从而导致无法进行正确决策的缺陷,设计了一种基于物联网的输电线路动态增容监测系统构架。在该系统中每5个监测装置中设置1个监测主站,监测装置将所监测到的单一线路数据传输至监测主站,监测主站将数据汇总后传输至后台上位机,后台上位机再根据摩尔根公式计算出容量裕量的最小值供工作人员参考,使其作出更为准确的判断。实验装置安装在连云港某110 k V输电线路上,后台上位机设于连云港供电局,所监测到的数据与实际相符,证明了该装置的正确性与有效性。