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Öğe Modeling and analysis: power injection model approach for high performance of electrical distribution networks(Institute of Advanced Engineering and Science, 2021) Abdulelah, Baraa Jalil; Al-Mashhadany, Yousif Ismail Mohammed; Algburi, Sameer; Ulutagay, GözdeThe generation of electrical energy varies depending on the needs of the user, initial requirements, capacity, intended use, waste generation, and economic efficiency. In order to meet the challenges of the proposed overvoltage of the presented system, it is possible to use the solar collectors and profit from them economically through smart grid smart control systems. The mathematical model with four main parts was created: simulation, correlation, and evaluation according to the solar program set of photovoltaic solar modules, maximum power point tracking (MPPT), an adaptive neuro-fuzzy inference system (ANFIS) controller, and 600-volt electric network. Then in this phase, the investigation of the effects on the network on the basis of the output power with the coincidence of radiation and the effect of temperature in the network is carried out. An analysis was carried out to evaluate the impact of these fundamental limitations in practical application. In this section, the simulation of the proposed system is discussed. The block diagram of the developed system is presented in the last part. The proposed system was assessed from the Matlab simulation tapes and graphs for each part of the system, and the results of the overall system simulation were taken into account.Öğe Optimal control and dynamic stability of power injection based on fuzzy intelligent controller(Springer International Publishing Ag, 2022) Al Mashhadany, Yousif Ismail; Ulutagay, Gözde; Abdulelah, Baraa JalilMany countries are witnessing nice developments in construction, urban planning, technological development moreover as grid management the increasing demand for energy of every kind and totally different generation strategies as well because the want for low and medium voltage distribution altogether areas. The assembly of this energy varies per user needs, initial requirements, capacity, supposed use, waste generation, and economic potency. The improvement of those different energies depends on the number of synchronization achieved within the injection of power into the mains together with force control, tool stability, voltage quality, efficiency - and redundant power return. During this paper, a proposal is given for associate intelligent management unit supported the modeling and stabilization of the alarm force system. So as to satisfy the challenges of the planned overvoltage of the presented system, it's doable to feed the plentiful power from the surplus power of the private households into the grid. Use and profit economically from star collectors through good grid smart control systems. So as to review and analyze the practicableness of the proposed grid coordination and energy storage privately PV networks based on solar energy, a mathematical model was created consisting of 4 main parts: simulation, correlation, stability, and evaluation. An Adaptive Neuro-Fuzzy Inference System (ANFIS) to assess the impact of those basic limitations in sensible application. The simulation of the planned system is dispensed with the most powerful system with a capability of 600 V which will be operated with this power. The proposed system was evaluated from Matlab simulation bars and graphs for every part of the system, and therefore the overall system simulation results were taken into account.