Analytical Method for Ferroresonance Solutions in Series Compensated Power Systems due to GICs: A Graphical Approach

Author(s):  
Behzad Behdani ◽  
Mehdi Allahbakhshi ◽  
Alia Asheralieva ◽  
Mehdi Gheisari
IEEE Access ◽  
2020 ◽  
Vol 8 ◽  
pp. 34900-34908
Author(s):  
Bin Sun ◽  
Ping Ju ◽  
Mohammad Shahidehpour ◽  
Xueping Pan

2018 ◽  
Vol 33 (6) ◽  
pp. 3095-3104 ◽  
Author(s):  
Xiaorong Xie ◽  
Wei Liu ◽  
Hui Liu ◽  
Yanling Du ◽  
Yunhong Li

Author(s):  
Saber M. Saleh ◽  
Mohamed E. Arafa

Harmonics in electrical networks occur as a result of non-linear loads.  It has an effect on power factor improvement using capacitors in terms of increasing the unbalance current between units. In addition, the occurrence of resonance and result in the exit of capacitors from service by the protective relays to protect the units from collapse. The main objective of this research is the real-time study of improving the power factor with reducing the effect of the resonance and harmonics on the power system. This reduction can be done using filters, consist of reactors and capacitors connected in series or in parallel or series and parallel together to reduce the current harmonics or voltage harmonics. Single Tuned filter type (passive filter) is used which presents very low impedance at the tuning frequency, through which all current of that particular frequency will be diverted. This research presents two practical power systems 11kV source in Fayoum substation and 13.8kV source in New Badr substation connected to power factor Improvement circuit. These models simulated by Matlab at different unbalance currents and harmonics. Also, it presents the design of the series reactor and the harmonics filter which satisfy the minimum effect of resonance and harmonics.


2020 ◽  
Vol 16 (8) ◽  
pp. 5032-5041
Author(s):  
Mohsen Tajdinian ◽  
Mehdi Allahbakhshi ◽  
Sandeep Biswal ◽  
Om P. Malik ◽  
Donya Behi
Keyword(s):  

2010 ◽  
Vol 431-432 ◽  
pp. 355-360
Author(s):  
Hong Jun San ◽  
Shi Sheng Zhong ◽  
Zhi Xing Wang

In this paper, a novel 5 degrees-of-freedom (DOF) numerical control (NC) serial-parallel machine tool is proposed. It can provide 3 translational DOF and 2 rotational DOF. The proposed mechine tool is composed of a 2-TPR/2-TPS special 4-DOF parallel mechanism in series with a rotatable component. The structure of this machine tool is simple. The machine tool can process the workpieces which have complex surfaces.The structural characteristics of this machine tool is introduced. The position inverse solution of this machine tool is deduced by analytical method and the position forward solution of this machine tool is achieved by numerical method.


Author(s):  
Madhusmita Patro ◽  
Kanhu Charan Bhuyan

<p>Power quality has become an important factor in power systems, for consumer and household appliances. The main causes of poor power quality are harmonic currents, poor power factor, supply voltage variations etc. A technique of achieving both active current distortion compensation, power factor correction and also mitigating the supply voltage variations at load side is compensated by unique device UPQC presented in this thesis. This concept presents a multi loop based controller to compensate power quality problems through a three phase four wire unified power quality conditioner (UPQC) under unbalanced and distorted load conditions. Here the UPQC is constituted of two voltage source converters (VSC) connected via power link. The series compensator is connected to the line in series and injects the voltage and thus compensates for voltage issues; whereas the shunt compensator injects current thus compensating for current issues, and is connected in shunt to the line. The voltage injection to the line uses an injecting transformer. The injection transformer is later replaced with injection capacitors, thus eliminating the drawback of conventional UPQC. In this way a good power quality is maintained.</p>


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