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In this paper, an explicit and unconditionally stable finite-difference time-domain (FDTD) method is developed for electromagnetic analysis. Its time step is not restricted by the space step, and its accuracy is ensured for the time step chosen based on accuracy. The strength of the conventional explicit FDTD is thus preserved in avoiding a system matrix solution, while the shortcoming of the conventional...
In this paper, a new method for computation of all stabilizing PI controllers is given. The method is based on the plant model in time domain and by using the extraordinary feature results from Kronecker sum operation, the proposed method is based on finding the explicit equation of control parameters defining the stability boundary in parametric space. Beyond stabilization, the method is used to...
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