2 research outputs found

    IMPLEMENTATION OF NONLINEAR FUZZY LOGIC FRACTIONAL ORDER PID CONTROLLER (NFL-FOPID) WITH FIRST ORDER TRANSFER FUNCTION

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    Today, the requirement of controllers in the field of engineering and process industries is going to be increased in order to control. Among all controllers, Proportional Integral Derivative (PID) controllers are widely used due to its easy implementation. The practical system is composed by the combination of sub-systems which exhibits the nonlinear behavior and conventional PID controllers are not so successful from stability point of view. In order to control those systems, in this paper, the Fractional Order PID (FOPID) controller has been used effectively instead of conventional PID controllers for those system which show the nonlinear behavior. Further, the control ability of the FOPID controller for the nonlinear environment has also been enhanced using Fuzzy Logic Control (FLC) concept with FOPID. Use of FLC concept with FOPID for nonlinear system has been abbreviated as NFL-FOPID (Nonlinear Fuzzy Logic- Fractional Order PID). Analysis and results verify that the proposed controller improves the efficiency as well as the stability of system

    Space station systems: A bibliography with indexes (supplement 10)

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    This bibliography lists 1,422 reports, articles, and other documents introduced into the NASA scientific and technical information system between July 1, 1989 and December 31, 1989. Its purpose is to provide helpful information to researchers, designers and managers engaged in Space Station technology development and mission design. Coverage includes documents that define major systems and subsystems related to structures and dynamic control, electronics and power supplies, propulsion, and payload integration. In addition, orbital construction methods, servicing and support requirements, procedures and operations, and missions for the current and future Space Station are included
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