000 03143cam a2200337 a 4500
003 EG-GiCUC
005 20250223032551.0
008 200901s2020 ua dh f m 000 0 eng d
040 _aEG-GiCUC
_beng
_cEG-GiCUC
041 0 _aeng
049 _aDeposite
097 _aPh.D
099 _aCai01.13.07.Ph.D.2020.Ta.E
100 0 _aTamer Mohamed Shehata Kotb
245 1 0 _aEnhancing stability for power systems using facts controllers and fuzzy PI approach /
_cTamer Mohamed Shehata Kotb ; Supervised Essam M. Aboulzahab , Mohamed S. Abdelmoteleb
246 1 5 _aتعزيزالاستقرار لنظم القوى الكهربائية بأستخدام أنظمة نقل التيار المتردد مرنة التحكم وبأستخدام المتحكم المنزلق
260 _aCairo :
_bTamer Mohamed Shehata Kotb ,
_c2020
300 _a87 P. :
_bcharts , facimiles ;
_c30cm
502 _aThesis (Ph.D.) - Cairo University - Faculty of Engineering - Department of Electrical Power and Machines
520 _aWith the rapid development of power electronics, Flexible AC Transmission Systems (FACTS) devices have been proposed and implemented in power systems. The recent development of power electronics introduces the use of FACTS controllers in power system. FACTS technology provides the opportunity to increase loading capacity of transmission lines, prevent blackouts, improve generation productivity, reduce circulating reactive power, improves system stability limit, reduce voltage flicker, reduce system damping and oscillations, control power flow so that it flows through the designated routes and congestion management. FACTS devices can be used to control power flow and enhance system stability.There is an increasing interest in using FACTS devices in the operation and control of power systems. However, their coordination with the conventional damping controllers in the aiding of power system oscillation damping is still an open problem. Therefore, it is essential to investigate the coordinated control of FACTS devices, traditional power system controllers in large scale power systems and different aspects of voltage stability and the related basic concepts. We have seen that voltage stability and collapse are a dynamic phenomenon of large magnitude.Various methods aimed at increasing the voltage stability limit of the power system with reactive power compensation were also presented. In this thesis, we are concerned with modeling and enhancement stability of the power system network based on its V-I characteristics, considering the power flow constraints.Such a system can be controlled using advanced techniques like novel controller consists of fuzzy additional to PI, basic measured data and data computed by numerical field analysis
530 _aIssued also as CD
653 4 _aFuzzy
653 4 _aProportional integer (PI)
653 4 _aStatcom
700 0 _aEssam M. Aboulzahab ,
_eSupervisor
700 0 _aMohamed S. Abdelmoteleb ,
_eSupervisor
856 _uhttp://172.23.153.220/th.pdf
905 _aNazla
_eRevisor
905 _aShimaa
_eCataloger
942 _2ddc
_cTH
999 _c77509
_d77509