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Development of a novel SCADA system for laboratory testing.

M Patel1, G R Cole, T L Pryor

  • 1Australian Cooperative Research Centre for Renewable Energy Ltd., Murdoch University, Perth 6150, Australia. patel@fizzy.murdoch.edu.au

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|July 27, 2004
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Summary

A dynamic Supervisory Control and Data Acquisition (SCADA) system was developed for renewable energy testing. This system flexibly adapts to changing test environments using a master server and multiple clients.

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Area of Science:

  • Engineering
  • Computer Science

Background:

  • Traditional SCADA systems often lack flexibility in dynamic environments.
  • Renewable energy test facilities require adaptable control systems for diverse testing scenarios.

Purpose of the Study:

  • To present a novel dynamic SCADA system for the RESLab facility.
  • To detail the architecture, features, and advantages of this adaptable SCADA system.

Main Methods:

  • The system utilizes LabVIEW and its Datalogging and Supervisory Control (DSC) module.
  • A master I/O server architecture with multiple client systems was implemented.
  • Real-time database 'tag engines' manage I/O operations and inter-client communication.

Main Results:

  • The dynamic SCADA system effectively supports a continuously changing operating environment.
  • Successful integration of various field devices with the master I/O server.
  • Demonstrated efficient I/O operations and network communication via tag engines.

Conclusions:

  • The developed SCADA system offers a flexible and robust solution for renewable energy testing.
  • The master-client architecture and LabVIEW DSC module provide significant advantages in dynamic settings.
  • This system enhances the capability of RESLab for diverse and evolving test requirements.