Browsing by Author "Ali Saket, Mohammad"
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Item A comparison of genetic algorithm and immune algorithm in optimization of one typical axial flux permanent magnet motor(Видавництво Львівської політехніки, 2011) Alishahi, Ehsan; Ali Saket, Mohammad; Moghaddami, MasoodРermanent magnets motors are widely used in the industry due to their high efficiency and their small sizes. Axial flux permanent magnet motors are new generation of permanent magnet motors and they are mainly used as propulsion of electrical vehicles. First in this paper, equations which are related to design of one typical slot less bidirectional axial flux motor have been proposed. These equations have been used in order to optimize key parameters of motor with two optimization methods: genetic algorithm and immune algorithm. Finally results have been presented and one can see that immune algorithm is better than genetic algorithm in optimization of this kind of motor.Item Modeling one typical digital differential relay in the MATLAB(Видавництво Львівської політехніки, 2011) Ali Saket, Mohammad; Moghaddami, Masood; Alishahi, EhsanDifferential relays are widely used in the Power networks as a protection for power transformers, bus bars and generators. This paper aims tomodel one typical differential relay in the SIMULINK environmental. This model has been simulated in the MATLAB program and the results confirmed truth of the proposed model. Also, thismodel is used to build differential relay block inMATLAB software. SinceMATLABsoftware does not have a differential relay block, this block can be used in other power system's simulations as a differential relay.Item Thermal lumped parameter modeling of a toroidal transformer(Видавництво Львівської політехніки, 2011) Ali Saket, Mohammad; Jandaghi, Behzad; Moghaddami, M.; Oraee, HashemToroidal transformers have some advantages, including smaller size in comparison with the same rating EI core transformers. This paper presents a simple but accurate thermal lumped parameter model for toroidal transformers to calculate different point temperatures. The model is also verified experimentally.