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In electric ship design the interaction of the physical plant with the power and energy control system is so complex that simulation for design or analysis is time consuming, especially when a range of time steps is required for dynamic simulation. This paper describes a unique solver that captures the power and control blocks of an electric ship power system described in Simulink and then creates...
In this paper, a reconfiguration method based on Model Predictive Control (MPC) is proposed for a nonlinear Medium-Voltage DC Shipboard Power System. By applying the proposed MPC approach, the reconfiguration is formulated as an optimization problem with respect to operating constraints and also the priorities of loads. The loads are categorized as vital loads, semi-vital loads, and non-vital loads...
A scalable predictive controller is proposed for coordinating multiple Shunt Switching Compensators (SSCs) to serve flexible compensation objectives while minimizing the power losses. A strategy utilizing Current Physical Component (CPC) theory and Recursive Discrete Fourier Transformation is used to orthogonally decompose the SSC reference currents into individual physical components. These components...
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