PID-type controller for marine cycloidal propeller: a simulation study

Author:

Nandy Subhashis,Prabhu J Joseph,Nagarajan VishwanathORCID,Sha Om Prakash

Funder

MHRD, Government of India

Tiara Charitable Foundation

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Oceanography

Reference23 articles.

1. Lee DK, Jeong Y, Shin JG, Oh D (2014) Optimized design of electric propulsion system for small crafts using the differential evolution algorithm. Int J Precis Eng Manuf Green Technol 1(3):229–240. https://doi.org/10.1007/s40684-014-0029-9

2. Balchen JG, Jenssen NA, Mathisen E, Saelid S (1980) A dynamic positioning system based on Kalman filtering and optimal control. Model Identif Control 1(3):135–163. https://doi.org/10.4173/mic.1980.3.1 . No.

3. Sorensen AJ, Sagatun SI, Fossen TI (1996) Design of a dynamic positioning system using model-based control. Control Eng Pract 4(3):359–368

4. White AS (2013) Limits to control of ship capsize using cycloidal propellers compared to active fins. World J Model Simul 9(2):130–138

5. Altosole M, Donnarumma S, Spagnolo V, Vignolo S (2018) Simulation of a marine dynamic positioning system equipped with cycloidal propellers. In: Guedes Soares, Santos (eds) Progress in maritime engineering and technology. Taylor & Francis Group, London. ISBN 978-1-138-58539-3

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