金属矿山
金屬礦山
금속광산
METAL MINE
2015年
4期
212-215
,共4页
CAN总线%采矿塌陷区%沉降监测%VB
CAN總線%採礦塌陷區%沉降鑑測%VB
CAN총선%채광탑함구%침강감측%VB
CAN bus%Mining subsidence area%Subsidence monitoring%Visual Basic
针对采矿塌陷区上建现代大型单层厂房、温室急需进行监测的要求,采用基于CAN总线技术的检测系统方案,通过单片机系统完成沉降数据的采集,实现智能节点的设计。同时采用CAN总线技术,实现数据的实时可靠的传输。再将数据直接传给计算机,进行数据集中分析处理。通过VB制作的监控管理软件,实现温度的查询与实时显示。以唐山马家沟矿区波及区上建设的凤凰花卉温室大棚为对象进行的监测试验表明,该地区塌陷明显,7个月的沉陷达到了几十毫米,最大点可以达到83 mm。本系统改变了传统集散控制系统的检测方式,节省了人力物力,并可以实现实时可靠的检测。
針對採礦塌陷區上建現代大型單層廠房、溫室急需進行鑑測的要求,採用基于CAN總線技術的檢測繫統方案,通過單片機繫統完成沉降數據的採集,實現智能節點的設計。同時採用CAN總線技術,實現數據的實時可靠的傳輸。再將數據直接傳給計算機,進行數據集中分析處理。通過VB製作的鑑控管理軟件,實現溫度的查詢與實時顯示。以唐山馬傢溝礦區波及區上建設的鳳凰花卉溫室大棚為對象進行的鑑測試驗錶明,該地區塌陷明顯,7箇月的沉陷達到瞭幾十毫米,最大點可以達到83 mm。本繫統改變瞭傳統集散控製繫統的檢測方式,節省瞭人力物力,併可以實現實時可靠的檢測。
침대채광탑함구상건현대대형단층엄방、온실급수진행감측적요구,채용기우CAN총선기술적검측계통방안,통과단편궤계통완성침강수거적채집,실현지능절점적설계。동시채용CAN총선기술,실현수거적실시가고적전수。재장수거직접전급계산궤,진행수거집중분석처리。통과VB제작적감공관리연건,실현온도적사순여실시현시。이당산마가구광구파급구상건설적봉황화훼온실대붕위대상진행적감측시험표명,해지구탑함명현,7개월적침함체도료궤십호미,최대점가이체도83 mm。본계통개변료전통집산공제계통적검측방식,절성료인력물력,병가이실현실시가고적검측。
According to the monitoring requirements of building modern large-scale monolayer workshop and greenhouse in the mining subsidence area,the detection scheme based on CAN technology is adopted to realize the design of intelligent node,through the MCU system to complete settlement data collection. At the same time,the real-time and reliable data trans-mission is realized by the technology of CAN bus. Then the data is directly transmitted to the computer for data analysis and processing. The monitoring and management software based on VB is used to query and display real-time temperature. Monito-ring test data in Fenghuang flower greenhouse of Tangshan Majiagou mining area shows that the area is subsided obviously. Sedimentation value reached dozens of millimeter in 7 months,and the maximum dedimentation value can reach 83mm. The system changes the traditional detection method of distributed control system,saves manpower and material resources,and reali-zes real-time and reliable detection.