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Mitigating Subsynchronous Resonance Torques Using Dynamic Braking Resistor
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作者 Sherif Helmy Amged S. El-Wakeel +1 位作者 Mohammed Abdel Rahman Mohammed A.L. Badr 《Journal of Energy and Power Engineering》 2012年第5期833-839,共7页
Series compensation has proven to increase stability in transmission of electric power. On the other hand insertion of series capacitor results in severe subsynchronous torques. The subsynchronous torque leads to gene... Series compensation has proven to increase stability in transmission of electric power. On the other hand insertion of series capacitor results in severe subsynchronous torques. The subsynchronous torque leads to generator-turbine shaft damage. Mitigation of subsynchronous transient torques is achieved through resistor bank connected to generator terminals. The insertion of resistor bank is controlled by fuzzy logic controller. The proposed controller has been tested on IEEE First Benchmark Model and it proved to have good damping for the torsional torques. 展开更多
关键词 dynamic braking resistor First Benchmark Model fuzzy logic control subsynchronous resonance.
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An Integrated Reactive Power Control Strategy for Improving Low Voltage Ride-through Capability 被引量:3
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作者 Ehsan Gatavi Ali Hellany +1 位作者 Mahmood Nagrial Jamal Rizk 《Chinese Journal of Electrical Engineering》 CSCD 2019年第4期1-14,共14页
Among all renewable energies,wind power is rapidly growing,whereby it has the most participation to supply power.Doubly fed induction generator(DFIG)is the most popular wind turbine,as it can play a very significant r... Among all renewable energies,wind power is rapidly growing,whereby it has the most participation to supply power.Doubly fed induction generator(DFIG)is the most popular wind turbine,as it can play a very significant role to enhance low voltage ride through(LVRT)capability.Ancillary services such as voltage control and reactive power capability are the main topics in wind power control systems that should be handled profoundly and carefully.The lack of reactive power during fault period can result in instability in generators and/or disconnection of the wind turbine from the power system.The main aims of this study are to illustrate the most effective approaches subject to improve the efficiency,stability,and reliability of wind power plant associated with LVRT capability enhancement.This effectiveness and efficiency are demonstrated by,firstly,comparison between all types of wind turbines,focusing on the ancillary services,after the existing advanced control strategies.According to the literature,there is a consensus that modifying converter-based control topology is the most effective approach to enhance LVRT capability in DFIG-based wind turbine(WT).Therefore,an advanced integrated control strategy is designed by considering the effect of the rotor side converter(RSC)and the grid side converter(GSC).A model of the wind power plant is presented based on the control objectives.MATLAB/Simulink is also used to illustrate the effectiveness of the designed algorithm. 展开更多
关键词 Doubly fed induction generator low voltage ride-through series dynamic braking resistor reactive power
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Transient stability enhancement of DC-connected DFIG and its converter system using fault protective device 被引量:2
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作者 Shaomin YAN Aimin ZHANG +2 位作者 Hang ZHANG Jianhua WANG Bin CAI 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2017年第6期887-896,共10页
Transient stability of doubly-fed induction generators(DFIGs)is a major concern in both AC and DC grids,and DFIGs must stay connected for a time during grid faults according to the power grid requirements.For this pur... Transient stability of doubly-fed induction generators(DFIGs)is a major concern in both AC and DC grids,and DFIGs must stay connected for a time during grid faults according to the power grid requirements.For this purpose,this work proposes an overcurrent and overvoltage protective device(OCV-PD)to ensure that DCbased DFIG system can stay connected and operate well during the faults.Compared with a series dynamic braking resistor(SDBR),two aspects are improved.First,a twolevel control strategy and DC inductor circuit are used to ensure that the OCV-PD can limit the current impulse to protect DFIG system during an overcurrent fault.Second,the OCV-PD can protect system from overvoltage fault which a SDBR cannot do.Simulation results verify itsvalidity and feasibility,finding that for overcurrent protection the OCV-PD outperforms a SDBR with an average decreased index of 3.29%,and for overvoltage protection it achieves an average index of 1.02%. 展开更多
关键词 Transient stability Doubly-fed induction generator(DFIG) Overcurrent and overvoltage protective device(OCV-PD) DC grid Series dynamic braking resistor(SDBR)
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