Xinlong Wang1, Yude Dong This email address is being protected from spambots. You need JavaScript enabled to view it.1, Minglong Chen1, Fang Su1 and Leshu Ling2
1School of Mechanical Engineering, Hefei University of Technology, Hefei 230009, P.R. China 2Suzhou Y&L Software Development Co., Ltd., Suzhou, Jiangsu, 215000, P.R. China
Received: November 1, 2017 Accepted: September 14, 2018 Publication Date: December 1, 2019
With the continuous development of the Internet of Things, to solve the problems of backward monitoring mode and high cost of temperature control equipment in heat runner system, a multivisualization remote temperature control scheme based on Internet of Things was proposed in order to make the productmore competitive. First of all, ZigBee, GPRS, Socket and other network communication technologies were used for the comprehensive construction of communication management software architecture. Multi-thread network programming technology solved the problem of communication blocking caused by high concurrency in the interactive process of system data. Secondly, by combining the monitoring terminal equipment such as mobile phone, computer and temperature control box industrial control panel, the system can realize the design and development of the system’s multivisualized real-time monitoring platform and meet the diversified monitoring. The system has been applied in a hot runner system manufacturing enterprise.
Keywords: Hot Runner System, Multiple Visualization, Gateway, Concurrent Obstruction
REFERENCES
[1] Guo, T. (2003) Protective control of hot-runner systems, Foreign Plastics 21(1), 3132.
[2] Chen, W. (2008) The Study and Design on Fuzzy PID Temperature Controller ofHot Runner, East ChinaUniversity of Science and Technology, 2136.
[3] Duan, J. (2013) Application Study on Fuzzy PID Controller in Temperature Control System with Large Inertia and Time Delay, Lanzhou University, 2939.
[4] Spina, R. (2004) Injection moulding of automotive components: Comparison between hot runner systems for a case study, Journal of Materials Processing Technology s155–156(1), 14971504. doi: 10. 1016/j.jmatprotec.2004.04.359
[5] Olaru, G. (2007) Hot Runner Nozzle and Manifold Seal, EP, US 7244118 B2.
[6] Zhang, C. G., D. Y. Mi, and Y. Zhang (2013) Research and development prospects of hot runner plastic mold technology, Plastic Industry 41(7), 59.
[7] Chen, J. L., and T. H. Liu (2003) Development and application of hot runner technology, Mold Industry (08), 3236.
[8] Gope, P., and T. Hwang (2015) Untraceable sensor movement in distributed iot infrastructure, IEEE Sensors Journal 15(9), 53405348. doi: 10.1109/JSEN.2015.2441113
[9] Kim, H., J. Park, and Y. Jeong (2016) Efficient resource management scheme for storage processing in cloud infrastructure with internet of things, Wireless Personal Communications 91(4), 16351651. doi: 10.1007/s11277-015-3093-8
[10] Chen, M. L., X. L. Wang, F. Su, L. H. Ling, and Y. D. Dong (2018) Research on multivariate visualization real-time temperature control method for hot runner system, Journal of Xi’an University of Engineering 32(01), 98104+120.
[11] Yao, Z., and Q. Wang (2014) Taxi scheduling system based on ZigBee technology, Measurement and Control Technology 33(4), 131133.
[12] Shariff, Farihah, N. A. Rahim, and W. P. Hew., (2015) “Zigbee-based Data Acquisition System for Online Monitoring of Grid-connected Photovoltaic System,” Expert Systems with Applications 42(3), 17301742. doi: 10.1016/j.eswa.2014.10.007
[13] Dong, Y. D., C. H. Zhang, and B. Y. Ding (2016) Design of GIS-based digital lighting system for city road, Journal of South China University of Technology (Natural Science Edition), 44(1), 5057.
[14] Wang, J., Y.Wang, and L. Tian (2014) Study on socket communication based onWSNs, Sensors and Microsystems 32(2), 3942.
[15] Guo, G., N. Wang, and K. Zhang (2014) Research of the highway speed limit system based on ZigBee, Microelectronics and Computer 31(5), 148150.
[16] Dong, Y. D., B. Y. Ding, C. H. Zhang, M. M. Liu, X. H. Quan, and Q. P. Du (2015) Street lamp visual monitoring system design based on internet of things, Hightech Communication 25(5), 515523.
We use cookies on this website to personalize content to improve your user experience and analyze our traffic. By using this site you agree to its use of cookies.