Modeling and Parameter Estimation of Planing and Semi-Planing Marine Vessels under Colored Disturbances
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
A linear grey-box Multiple Input Multiple Output (MIMO) model describing ship
attitude motion is derived from established nonlinear equations for ship motion.
The model describes how five control surfaces: two fins, two interceptors and a rudder
control the roll, pitch and yaw dynamics of a vessel. The model is developed
for ship stabilization control design and consists of 15 parameters, neglecting the
translational states surge, sway and heave. These neglected states are concluded to
introduce errors in the model through residual correlation analysis, but the model
is considered adequate for control design through empirical frequency domain validation
using SPAFDR. To ensure the model is applicable to the different operating
states of a planing vessel (displacement, hump and planing), it is validated at the
operating states respective speed of a test vessel: 10, 15 and 20 kt.
Input-output data is collected in open-loop system identification experiments. To
make this possible, an excitation signal for MIMO system identification is proposed
as a modified PRBS7 signal. The excitation signal is applied periodically to separate
the ship’s deterministic output from the noise. The noise is analyzed, modeled as
an ARMA process and concluded to be time-variant.
Parameter estimation of the proposed ship model is performed using a batch Prediction
Error Method (PEM) in the presence of colored noise. Furthermore, two
recursive parameter estimation algorithms are implemented and tested on data with
colored noise (specifically a Recursive Output Error Model and a Recursive Instrumental
Variable State Varying Filter) to allow for parameter estimation on limited
hardware, lacking the ability to use batch estimation methods.
Beskrivning
Ämne/nyckelord
Grey-box, MIMO, Open-loop, Parameter Estimation, PEM, RIVSVF, Levenberg-Marquardt Regularization, Colored Noise, Ocean Wave Modeling
