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1.
ISA Trans ; 51(1): 220-8, 2012 Jan.
Article in English | MEDLINE | ID: mdl-21981857

ABSTRACT

A thyristor driven pump is operated by varying the DC input signal in the firing circuit of thyristor drive. This operation suffers from difficulties due to the nonlinear relation between thyristor output and DC input. In the present paper, an opto-isolator based linearization technique of a typical thyristor driven pump has been proposed. The design, fabrication and the necessary circuit diagram along with theoretical explanations of the resultant output has been described. The operation of the linearized thyristor driven pump has been studied experimentally and the experimental data before and after linearization are reported. The characteristic graphs are found to have very good linearity.


Subject(s)
Industry/instrumentation , Semiconductors , Algorithms , Computer Simulation , Electronics , Equipment Design , Linear Models , Potentiometry , Water
2.
ISA Trans ; 50(3): 496-503, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21489523

ABSTRACT

In the present paper, design of a flow control loop using a thyristor driven pump as final control element has been described. In this technique, the load current of a thyristor driven pump motor has been utilized as a mass flow sensing parameter of a fluid passing through a pipeline. This thyristor driven pump has been utilized as a final control element of a flow control loop and the speed of the pump has been selected as the manipulated variable. The non-linearity between the thyristor input signal and pump output has been eliminated by using a modified PID control technique with inverse derivative control action. Thus without using any conventional flow meter and control valve only the thyristor driven pump has been utilized both as the final control element and flow indicating device by using the proposed technique. The whole system has been designed, fabricated and tested by using tap water as the flowing liquid through a pipe line. The experimental results along with the theoretical analysis are compared and reported in the paper.


Subject(s)
Algorithms , Electronics/instrumentation , Feedback , Models, Theoretical , Rheology/instrumentation , Transistors, Electronic , Computer Simulation , Electric Impedance , Equipment Design , Equipment Failure Analysis
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