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Dive into the research topics where Gao Benfeng is active.

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Featured researches published by Gao Benfeng.


Science China-technological Sciences | 2013

Simulation and study on mitigation measures of frequent subsynchronous oscillation with low amplitude at multi-power plants

Xiao Xiangning; Zhang Jian; Gao Benfeng; Wu YunSheng; Luo Chao; Guo Chunlin; Yang Lin

Subsynchronous oscillation (SSO) with low amplitude that exceeds cumulative fatigue threshold of the generator shaft frequently could significantly reduce the shaft’s service life, which is a new SSO problem that emerges in recent years. According to the real recording oscillograph, the basic reason for frequently over-threshold SSO with low amplitude at multi-power plants was analyzed based on Hulunbuir League system. The sensitivities of the electrical damping to the main electrical parameters in the contributing loop of subsynchronous torsional interaction were calculated. Based on the sensitivities, a simulation method was presented, which was used to excite the same oscillation as the actual case by exerting disturbance on the firing angle. The limitation of wide-band and narrow-band supplementary subsynchronous damping controller (SSDC) for mitigating this kind of SSO was analyzed based on the electromagnetic transient simulation model of Hulunbuir League system. The difference of supplementary excitation damping controller (SEDC) and parallel-form FACTS connected to the generator terminal was compared from the aspects of response time and the ability of damping torque supplying. The analysis indicates that their response time is similar but FACTS has stronger ability of damping torque supplying than SEDC. Time-domain simulation method was used to compare the mitigation effects of SEDC, static var compensator (SVC) and static synchronous compensator (STATCOM). Considering the mitigation effect, the floor space limit of the power plant and so on, STATCOM was considered as the best mitigation measure. A control strategy of cascaded STATCOM for engineering application was presented and the capacity for SSO mitigation as well as output characteristics was analyzed. The analysis indicates that STATCOM using the proposed control strategy has better mitigation effect and output characteristics with smaller capacity.


Archive | 2013

Method for restraining subsynchronous oscillation of double-fed wind turbine generator system

Gao Benfeng; Zhao Shuqiang; Lu Yun; Zhang Jian; Xiao Xiangning


Archive | 2014

Sub-synchronous oscillation suppression method based on fully-controlled inverter

Zhang Jian; Xiao Xiangning; Guo Chunlin; Yang Lin; Gao Benfeng


Power System Protection and Control | 2012

Study on sub-synchronous damping characteristic of VSC-HVDC

Gao Benfeng


Archive | 2017

Control method of using STATCOM to improve HVDC alternating current filter switching performance

Gao Benfeng; Mao Yapeng


Archive | 2017

Impedance analyzing method for sub-synchronous oscillation of thermal power unit

Zhao Shuqiang; Li Ren; Gao Benfeng; Wang Nan; Zhang Ruixue


Archive | 2016

Subsynchronous oscillation suppression method and system for wind power plant

Zhao Shuqiang; Zhang Xuewei; Song Ruihua; Yang Daye; Li Ren; Gao Benfeng; Sun Chenjun; Wei Minglei


Gaodianya Jishu | 2016

DFIGユニットにおける経串の振動モード解析【JST・京大機械翻訳】

Zhao Shuqiang; Li Ren; Gao Benfeng; Song Ruihua; Yang Daye


Dianwang Jishu | 2016

インバータ制御戦略スワップの失敗影響に関する研究【JST・京大機械翻訳】

Zhao Shuqiang; Dong Peiyi; Pu Ying; Lu Yajun; Ma Yulong; Gao Benfeng; Mao Yapeng


Dianli Zidonghua Shebei | 2015

DFIGベースモータ同期振動減衰特性と抑制戦略を組【JST・京大機械翻訳】

Gao Benfeng; Li Ren; Yang Daye; Song Ruihua; Zhao Shuqiang; Liu Jin; Zhang Xuewei

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Xiao Xiangning

North China Electric Power University

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Guo Chunlin

North China Electric Power University

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Zhang Jian

North China Electric Power University

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Song Ruihua

Electric Power Research Institute

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Yang Lin

North China Electric Power University

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Luo Chao

North China Electric Power University

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Zhao Chengyong

North China Electric Power University

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Zhao Yang

North China Electric Power University

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Wu YunSheng

Electric Power Research Institute

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