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Development Of Web-based DMC Remote Simulation And Control Platform

Posted on:2010-05-04Degree:MasterType:Thesis
Country:ChinaCandidate:H YuFull Text:PDF
GTID:2178360302960444Subject:Detection Technology and Automation
Abstract/Summary:PDF Full Text Request
Remote monitoring technology is a significant research subject, which has wide requirements and application in the field of industry, national defense and so on. As a high-speed information spreading channel in the nowadays society, Internet has provided fundamental environmental and technological support for remote control, and also supplied us an application platform based on the Web. The efficiency of work and learning is greatly improved by the realizing remote control and industrial processes experiments based on Internet, due to the advantage of real-time monitoring.In this paper, considering the batch reactor in Liaoning Province Key Laboratory of Industrial Equipment as the controlled plant, a Web-based remote control platform for the temperature inside the tank is designed. The Dynamic Matrix Control (DMC) method is applied to reactor temperature control system, which assists realize the accurate temperature control of the reactor. It has black modeling characteristic and relative higher control precision. Meanwhile the platform also provides a Web-based remote simulation module embedded dynamic matrix predictive control algorithm, which establishes a virtual control process to help users set corresponding parameters, so that the effective control parameters could be obtained before the actual remote control.This article describes the foundational structure required by remote simulation and control platform, as well as the implementation method of remote monitoring function and remote simulation capabilities. On this basis, the dynamic matrix predictive control method is adopted to the temperature control. In the end, the effectiveness of the proposed algorithm is verified by the actual experiment running results.
Keywords/Search Tags:Remote Control Platform, Batch Reactor, Predictive Control, Remote Simulation
PDF Full Text Request
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