predictive consumption models for electropneumatic production systems

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ECWAY TECHNOLOGIES IEEE PROJECTS & SOFTWARE DEVELOPMENTS OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE BANGALORE / HYDRABAD CELL: +91 98949 17187, +91 875487 1111 / 2111 / 3111 / 4111 / 5111 / 6111 / 8111 VISIT: www.ecwaytechnologies.com | www.ecwayprojects.com Mail to: [email protected] | [email protected] Predictive Consumption Models for Electropneumatic Production Systems Abstract A predictive consumption model suitable for industrial type pneumatic production systems is presented in this paper. The model is developed inMATLAB Simulink and interfaced with a programmable logic controller via an OPC server. Theoretical model development and validation are discussed with particular emphasis on applicability to industrial systems. Currently, consumers such as linear cylinders, semirotary actuators, grippers, open pipes, nozzles, and leakage can be accounted for with the model. The proposed modeling approach will enable a greater understanding of the dynamic demand for compressed air by production machines and lines. Top-level diagram in Simulink for consumer subsystem (exemplary).

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Page 1: Predictive consumption models for electropneumatic production systems

ECWAY TECHNOLOGIESIEEE PROJECTS & SOFTWARE DEVELOPMENTS

OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE BANGALORE / HYDRABAD

CELL: +91 98949 17187, +91 875487 1111 / 2111 / 3111 / 4111 / 5111 / 6111 / 8111VISIT: www.ecwaytechnologies.com | www.ecwayprojects.com

Mail to: [email protected] | [email protected]

Predictive Consumption Models forElectropneumatic Production Systems

AbstractA predictive consumption model suitable for industrial type

pneumatic production systems is presented in this paper. The model is developed inMATLAB Simulink and interfaced with a programmable logic controller via an OPC server. Theoretical model development and validation are discussed with particular emphasis on applicability to industrial systems. Currently, consumers such as linear cylinders, semirotary actuators, grippers, open pipes, nozzles, and leakage can be accounted for with the model. The proposed modeling approach will enable a greater understanding of the dynamic demand for compressed air by production machines and lines.

Top-level diagram in Simulink for consumer subsystem (exemplary).