
State Estimated Adaptive Controller Design for Microgrid Control
A novel approach to estimate the state of microgrid and control of voltage and current against unknown noise
LAP Lambert Academic Publishing
Published on 24. September 2019
Book
Paperback/Softback
104 pages
978-620-0-22990-8 (ISBN)
Description
A novel blended state estimated adaptive controller is designed for voltage and current control of microgrid against unknown noise. The state of a microgrid can deteriorate due to disturbances and packet losses. Therefore, it is necessary to achieve the true state of the system to enhance the control requirement and automation of the microgrid. To achieve the true state, this study proposes an unscented kalman filter algorithm. This algorithm is developed using an unscented-transformation and sigma-points measurement technique capable of minimizing the mean and covariance of a nonlinear cost function to estimate the true state of microgrid system. The effectiveness of the proposed algorithm is compared with an extended kalman filter. A model-reference modified adaptive PID controller is also developed and used in conjunction with the system to control its voltage and current. The performance of the developed controller is also evaluated against a certain number of load dynamics. Results indicate the controller provides more stable and high-tracking performance with the inclusion of the UKF in the system.
More details
Language
English
Product notice
Paperback (trade)
Unsewn / adhesive bound
Dimensions
Height: 220 mm
Width: 150 mm
Thickness: 7 mm
Weight
173 gr
ISBN-13
978-620-0-22990-8 (9786200229908)
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Schweitzer Classification
Persons
Abu Bakar Siddique was born in Chandpur, Bangladesh. He has completed his B.Sc. engineering under the department of Mechatronics Engineering from Rajshahi University of Engineering & Technology (RUET), Rajshahi, Bangladesh. His research interest includes Control Theory and Applications.