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The proposed MFA is applied to the 66 kV, 45 bus distribution network of Alexandria, Egypt which is supported by multiple, different types of distributed generating units (DGs).
Coordination of directional overcurrent is developed for 9 bus and IEEE 30 bus distribution systems.
The accuracy of the proposed technique is determined by using a fault database obtained from the IEEE 34 bus distribution system.
The proposed integrated planning approach is used to develop a 10 years long-term plan for 9 and 33 bus distribution systems.
The proposed consensus based voltage regulation method for the ESBC has been tested on a modified IEEE-15 bus distribution system and compared with the ES-1.
The proposed model is tested on a reconstructed IEEE-33 bus distribution system and compared with the general day-ahead schedule.
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The algorithm is shown to be globally convergent and its effectiveness is illustrated by comparing its performance with that of three other commonly used procedures on a 69-bus distribution system and a 24-bus system with distributed generation.
A 16-bus distribution network is shown in Fig. 1.
Open image in new window Fig. 4 69-bus distribution network Open image in new window Fig. 5 119-bus distribution network.
An 18-bus distribution system driven by the proposed controller was implemented in a simulation environment.
IEEE 33-bus distribution system (Baran and Wu 1989) is shown in Fig. 6.
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