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| Research on the design of the wireless monitoring system of heat medium circulating pump |
| Liu Jiehui, Tian Runliang |
| Machinery and Equipment Engineering Institute of Hebei University of Engineering, Handan 056038, China |
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Abstract In order to solve the shortages of traditional pump group monitoring system, such as poor real-time ability and tedious wiring, it was proposed to use ZigBee technology to carry out the network of multiple heat medium circulating pump. By means of vibration and temperature sensor, the bearing parts of the heat medium circulating pump motor were monitored wirelessly. At the same time, the hardware and software of the system were designed. ZigBee wireless data terminal was selected for networking, wireless connection between sensor and computer was realized, and real time parameter display of monitoring system was realized by programming with LabView software. The system can realize data record and alarm. Through the field experiment, the vibration error of the system is within 3%, and the temperature error is within 5%. The transmission of the system range can reach up to 200 meters. The safety and extensibility of the monitoring system of heat medium circulating pump were improved , and the power consumption and system construction cost were reduced.
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| [ 1 ] 刘素玲,张朝祥,韩小红,等. 我国泵行业近期发展概述[ J ]. 水泵技术,2016( 3 ):6 - 7.
[ 2 ] 李福刚. 离线状态监测仪在机泵故障诊断中的运用分析[ J ]. 中国石油和化工标准与质量,2016( 22 ):39 - 40.
[ 3 ] L.K. Wadhwa, Rashmi S. Deshpande, Vishnu Priye. Extended sho
-rtcut tree routing for ZigBee based wireless sensor network[ J ]. Ad Hoc Networks,2016( 37 ):45 - 47.
[ 4 ] 张芸薇. 基于ZigBee无线传感网数据采集的设计与实现[ D ].大连理工大学,2007.
[ 5 ] 马 海. 基于ZigBee无线传感器网络的远程数据监测的设计与实现[ D ]. 武汉理工大学,2010.
[ 6 ] 屈明佑,雷 航,郭文生. 基于ZigBee的现场数据采集系统设计与实现[ J ]. 电讯技术,2008,48( 4 ):34 - 38.
[ 7 ] Chong J W, Hwang H Y, Chang Y J, et al. Analysis of throughput in a ZigBee network under the presence of WLAN interference[ C ]. International Symposium on Communications and Information Technologies, IEEE, 2007:1 166 - 1 170.
[ 8 ] 齐 鹤. 基于ZigBee的机泵无线监测智能单元研究[ D ].北京
化工大学,2010.
[ 9 ] 袁洪芳,齐 鹤,柯细勇,等. ZigBee无线传感网络在机泵智能监测中的应用[ J ]. 计算机工程与设计,2011( 2 ):535 - 538.
[ 10 ] 蔡科涛,周 强,任 建. 基于Zigbee的钻井泵实时监测系统设计[ J ]. 企业技术开发,2011( 9 ):167 - 167.
[ 11 ] 张 健. 虚拟仪器系统架构研究[ D ]. 东北师范大学,2013.
[ 12 ] 陆家龙. 基于虚拟仪器的实时监控系统设计与实现[ D ]. 哈尔滨工业大学,2013.
[ 13 ] 赵新华. 基于LabVIEW的远程虚拟仪器技术[ D ]. 哈尔滨理工大学,2005.
[ 14 ] API Std 610 - 2010 / ISO 13709. 石油、石化和天然气工业用离心泵[ S ]. 2009.
[ 15 ] 吴运新,石文泽. 一种新型泵车监测系统的设计与开发[ J ]. 郑州大学学报工学版,2012,33( 1 ):93 - 97.
[ 16 ] 金维鑫,孙 铁,张素香,等. 基于WSN技术的离心泵群监控系统设计[ J ]. 电子设计工程,2016,24( 2 ):55 - 57.
[ 17 ] 张 煊. 基于ZigBee的瓦斯水环泵故障监测诊断系统设计[ D ]. 太原理工大学,2015.
[ 18 ] 傅 坚,周孝法,黄 山,等. 基于LabVIEW的换流站阀水冷主循环泵振动监测与状态评估系统[ J ]. 科技创新导报,2015( 3 ):7 - 9.
[ 19 ] 汪正东,张 申. 选煤厂ZigBee监测系统的设计[ J ]. 2011, 42( 7 ):93 - 96.
[ 20 ] Sun T, Liang N C, Chen L J, et al. Evaluating Mobility Support in ZigBee Networks[ C ]. Embedded and Ubiquitous Computing, International Conference, Taipei:2007.
[ 21 ] 游 磊,方 方,李平勇,等. 轴流泵振动加速度状态监测诊断系统的研究与设计[ J ]. 四川大学学报( 工程科学版 ),2011( s1 ):236 - 239.
[ 22 ] Yong - Ying D U, Ye - Peng M A, Chun - Mei L V. Design of Fault Diagnosis System Based on LabVIEW[ J ]. Coal Mine Machinery, 2011( 11 ):1 110 - 1 114. |
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