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Research on Control Strategy of Grid-connected Brushless Doubly-fed Wind Power System Based on Virtual Synchronous Generator Control 被引量:6
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作者 Shuai Liang Shi Jin Long Shi 《CES Transactions on Electrical Machines and Systems》 CSCD 2022年第4期404-412,共9页
The brushless doubly-fed wind power system based on conventional power control strategies lacks ‘inertia’ and the ability to support grid,which leads to the decline of grid stability.Therefore,a control strategy of ... The brushless doubly-fed wind power system based on conventional power control strategies lacks ‘inertia’ and the ability to support grid,which leads to the decline of grid stability.Therefore,a control strategy of brushless doubly-fed reluctance generator(BDFRG) based on virtual synchronous generator(VSG) control is proposed to solve the problem in this paper.The output characteristics of BDFRG based on VSG are similar to a synchronous generator(SG),which can support the grid frequency and increase the system ‘inertia’.According to the mathematical model of BDFRG,the inner loop voltage source control of BDFRG is derived.In addition,the specific structure and parameter selection principle of outer loop VSG control are expounded.The voltage source control inner loop of BDFRG is combined with the VSG control outer loop to establish the overall architecture of BDFRG-VSG control strategy.Finally,the effectiveness and feasibility of the proposed strategy are verified in the simulation. 展开更多
关键词 Virtual synchronous generator brushless doubly-fed relutance generator Grid support ability Voltage source control
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Robust Position Observer for Sensorless Direct Voltage Control of Stand-Alone Ship Shaft Brushless Doubly-Fed Induction Generators 被引量:4
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作者 Mohamed G.Hussien Yi Liu Wei Xu 《CES Transactions on Electrical Machines and Systems》 CSCD 2019年第4期363-376,共14页
The aim of this paper is to investigate an adaptive sensorless direct voltage control(DVC)strategy for the stand-alone ship shaft brushless doubly-fed induction generators(BDFIGs).The proposed new rotor position obser... The aim of this paper is to investigate an adaptive sensorless direct voltage control(DVC)strategy for the stand-alone ship shaft brushless doubly-fed induction generators(BDFIGs).The proposed new rotor position observer using the space vector flux relations of BDFIG may achieve the desired voltage control of the power winding(PW)in terms of magnitude and frequency,without any speed/position sensors.The proposed algorithm does not require any additional observers for obtaining the generator speed.The proposed technique can directly achieve the desired DVC based on the estimated rotor position,which may reduce the overall system cost.The stability analysis of the proposed observer is investigated and confirmed with the concept of quadratic Lyapunov function and using the multi-model representation.In addition,the sensitivity analysis of the presented method is confirmed under different issues of parameter uncertainties.Comprehensive results from both simulation and experiments are realized with a prototype wound-rotor BDFIG,which demonstrate the capability and efficacy of the proposed sensorless DVC strategy with good transient behavior under different operating conditions.Furthermore,the analysis confirms the robustness of the proposed observer via the machine parameter changes. 展开更多
关键词 brushless doubly-fed induction generator(BDFIG) direct voltage control(DVC) PW voltage-oriented vector control rotor position observer ship shaft applications.
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Stability Analysis and Enhanced Virtual Synchronous Control for Brushless Doubly-fed Induction Generator Based Wind Turbines
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作者 Hailiang Xu Chao Wang +2 位作者 Zhongxing Wang Pingjuan Ge Rende Zhao 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2024年第5期1445-1458,共14页
The brushless doubly-fed induction generator(BDFIG)presents significant potential for application in wind power systems,primarily due to the elimination of slip rings and brushes.The application of virtual synchronous... The brushless doubly-fed induction generator(BDFIG)presents significant potential for application in wind power systems,primarily due to the elimination of slip rings and brushes.The application of virtual synchronous control(VSynC)has been demonstrated to effectively augment the inertia of BDFIG systems.However,the dynamic characteristics and stability of BDFIG under weak grid conditions remain largely unexplored.The critical stabilizing factors for BDFIG-based wind turbines(WTs)are methodically investigated,and an enhanced VSynC method based on linear active disturbance rejection control(LADRC)is proposed.The stability analysis reveals that the proposed method can virtually enhance the stability of the grid-connected system under weak grid conditions.The accuracy of the theoretical analysis and the effectiveness of the proposed method are affirmed through extensive simulations and detailed experiments. 展开更多
关键词 brushless doubly-fed induction generator(BDFIG) virtual synchronous control(VSynC) stability analysis linear active disturbance rejection control(LADRC)
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A novel control strategy of a variable-speed doubly-fed-induction-generator-based wind energy conversion system
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作者 Shibani Prasad Mohapatra Pradipta Kishore Dash 《Clean Energy》 EI CSCD 2024年第1期153-170,共18页
This paper aims to address the issue of control of a variable-speed wind turbine based on doubly-fed induction generators. In this work,an effort is made to extract the maximum efficiency from a doubly-fed induction g... This paper aims to address the issue of control of a variable-speed wind turbine based on doubly-fed induction generators. In this work,an effort is made to extract the maximum efficiency from a doubly-fed induction generator-based variable-speed wind turbine by controlling the rotor current. In the first step, a maximum power point tracking technique is used to extract the maximum power from theturbine. Then a stator-flux-oriented vector control strategy is employed to control the rotor-side current. Subsequently, a grid voltagevector-oriented control strategy is used to control the grid-side system of the grid-connected generator. Considering the nonlinearityand parameter uncertainty of the system, an active disturbance rejection controller with a sliding-mode-based extended-state observeris developed for the above-mentioned control strategies. Furthermore, the stability of the controller is tested and the performance of thecontroller is compared with the classical proportional-integral controller based on disturbance rejection, robustness and tracking capability in a highly non-linear wind speed variation scenario. Modelling, control and comparison are conducted in the MATLAB®/Simulink®environment. Finally, a real-time hardware set-up is presented using the dSPACE ds-1104 R&D processing board to validate the controlscheme. From the result of the experiments, it is seen that the proposed controller takes 10-15 control cycles to settle to its steady-statevalues, depending on the control loop, whereas the conventional proportional-integral controller takes 60-75 control cycles. As a result,the settling time for the proposed control scheme is shorter than that of the proportional-integral controller. 展开更多
关键词 doubly-fed induction generator variable-speed wind turbine vector control active disturbance rejection controller stability analysis
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Analysis on Effect of Parameters of Different Wind Generator on Power Grid Transient Stability
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作者 Zhi-wei Wen Li Ding Shi-en He 《Energy and Power Engineering》 2013年第4期363-367,共5页
To analyze the factors which affecting transient stability of power system, the dynamic model of doubly-fed induction generator and direct-drive PM synchronous generator has been built using PSCAD. Impact of different... To analyze the factors which affecting transient stability of power system, the dynamic model of doubly-fed induction generator and direct-drive PM synchronous generator has been built using PSCAD. Impact of different wind farm integration on grid typically in China has been presented. The influence of the variations of transient reactance, negative sequence reactance and rotary inertia on critical clearing time of power system transient stability is analyzed by time-domain simulation. Mixture operation of DFIG and PMSG to optimize the stability of system has been analyzed firstly. The digital simulation results show that doubly-fed induction wind turbines is a better choice to meet the requirement of system instability due to large wind farm integration in comparison with direct-drive PM synchronous wind turbines. With a rather large rotary inertia, the proper ratio of direct-drive PM synchronous wind turbines used in wind farm could be comprehensive planning by optimized the stability of system. Analysis of this paper should be provided as academic reference for improving design of wind farm system. 展开更多
关键词 wind FARM doubly-fed Induction generator DIRECT-DRIVE PM SYNCHRONOUS generator Parameter
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Coordination between Fault-Ride-Through Capability and Over-current Protection of DFIG Generators for Wind Farms
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作者 B. Bak-Jensen T.A. Kawady M.H. Abdel-Rahman 《Journal of Energy and Power Engineering》 2010年第4期20-29,共10页
Fault Ride-Through (FRT) capabilities set up according to the grid codes may affect the performance of related protective elements during fault periods. Therefore, in this paper the coordination between the FRT capa... Fault Ride-Through (FRT) capabilities set up according to the grid codes may affect the performance of related protective elements during fault periods. Therefore, in this paper the coordination between the FRT capability and over-current protection of DFIG Wind Generators in MV networks is investigated. Simulation test cases using MATLAB-Simulink are implemented on a 365-MW wind farm in AL-Zaafarana, Egypt. The simulation results show the influence of the FRT capability on the protective relaying coordination in wind farms, showing that the FRT may work in situations where is were expected not to work, and then disabling the over-current protection, which should have worked in this situation. 展开更多
关键词 wind farms protection dynamic modeling MATLAB-SIMULINK FUSE doubly-fed induction generators
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A Long-Range Generalized Predictive Control Algorithm for a DFIG Based Wind Energy System 被引量:1
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作者 J.S.Solis-Chaves Lucas L.Rodrigues +1 位作者 C.M.Rocha-Osorio Alfeu J.Sguarezi Filho 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2019年第5期1209-1219,共11页
This paper presents a new Long-range generalized predictive controller in the synchronous reference frame for a wind energy system doubly-fed induction generator based. This controller uses the state space equations t... This paper presents a new Long-range generalized predictive controller in the synchronous reference frame for a wind energy system doubly-fed induction generator based. This controller uses the state space equations that consider the rotor current and voltage as state and control variables, to execute the predictive control action. Therefore, the model of the plant must be transformed into two discrete transference functions, by means of an auto-regressive moving average model, in order to attain a discrete and decoupled controller, which makes it possible to treat it as two independent single-input single-output systems instead of a magnetic coupled multiple-input multiple-output system. For achieving that, a direct power control strategy is used, based on the past and future rotor currents and voltages estimation. The algorithm evaluates the rotor current predictors for a defined prediction horizon and computes the new rotor voltages that must be injected to controlling the stator active and reactive powers. To evaluate the controller performance, some simulations were made using Matlab/Simulink. Experimental tests were carried out with a small-scale prototype assuming normal operating conditions with constant and variable wind speed profiles. Finally, some conclusions respect to the dynamic performance of this new controller are summarized. 展开更多
关键词 Direct power CONTROL doubly-fed INDUCTION generator flux oriented CONTROL generalized PREDICTIVE CONTROL LONG-RANGE PREDICTIVE CONTROL wind energy systems
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Simulation of grid tracking control of power system connection and maximum power brushless doubly-fed generator in point wind 被引量:1
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作者 Hicham SERHOUD Djilani BENATTOUS 《Frontiers in Energy》 SCIE CSCD 2013年第3期380-387,共8页
In this paper, based on the analysis of the mathematical model in a common synchronous reference frame of the brushless doubly-fed generator (BDFG), the grid connection strategy and maximum energy extraction control... In this paper, based on the analysis of the mathematical model in a common synchronous reference frame of the brushless doubly-fed generator (BDFG), the grid connection strategy and maximum energy extraction control were both analyzed. Besides, the transient simula- tion of no-load model and generation model of the BDFG have been developed on the MATLAB/Simulink platform. The test results during cutting-in grid confirmed the good dynamic performance of grid synchronization and effective power control approach for the BDFG-based variable speed wind turbines. 展开更多
关键词 brushless doubly-fed generator (BDFG) modeling grid connection control back-to-back pulse- width modulation (PWM) converter wind power generation
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New energy power generation-wind power generation 被引量:1
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作者 HAN Chen-xi ZHANG Si-han 《Journal of Energy and Power Engineering》 2009年第9期45-48,共4页
This paper introduced the status quo of wind power and wind power generation technology. Focusing on the introduction of wind power generating system ibrational self-consistent field(VSCF), program implementation in... This paper introduced the status quo of wind power and wind power generation technology. Focusing on the introduction of wind power generating system ibrational self-consistent field(VSCF), program implementation included Alternating Current (AC)-Direct Current (DC)-AC conversion system, magnetic field modulation generator system, doubly-fed generator system etc. Among these, doubly-fed generator system is the trend. Where to build the wind farm is very important, so a perfect site is needed. Wind power generation will have a bright future. As long as the wind power can be linked to the grid in large scale. 展开更多
关键词 wind power generation VSCF doubly-fed generator system wind farm site
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Fault-tolerant control of an open-winding brushless doublyfed wind power generator system with dual three-level converter
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作者 Shi JIN Long SHI +2 位作者 Sul ADEMI Yue ZHANG Fengge ZHANG 《Frontiers in Energy》 SCIE CSCD 2023年第1期149-164,共16页
To improve the fault redundancy capability for the high reliability requirement of a brushless doubly-fed generation system applied to large offshore wind farms,the control winding of a brushless doubly-fed reluctance... To improve the fault redundancy capability for the high reliability requirement of a brushless doubly-fed generation system applied to large offshore wind farms,the control winding of a brushless doubly-fed reluctance generator is designed as an open-winding structure.Consequently,the two ends of the control winding are connected via dual three-phase converters for the emerging open-winding structure.Therefore,a novel fault-tolerant control strategy based on the direct power control scheme is brought to focus in this paper.Based on the direct power control(DPC)strategy,the post-fault voltage vector selection method is explained in detail according to the fault types of the dual converters.The fault-tolerant control strategy proposed enables the open-winding brushless doubly-fed reluctance generator(BDFRG)system to operate normally in one,two,or three switches fault of the converter,simultaneously achieving power tracking control.The presented results verify the feasibility and validity of the scheme proposed. 展开更多
关键词 open-winding brushless doubly-fed reluctance generator(BDFRG) direct power control faulttolerant control multi-level converter wind power
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开绕组无刷双馈风力发电机直接功率控制容错策略 被引量:1
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作者 朱连成 肖阳 +1 位作者 金石 陈晓红 《电力自动化设备》 EI CSCD 北大核心 2024年第5期73-78,87,共7页
针对无刷双馈发电机提出了一种控制绕组采用开绕组拓扑(OW-BDFG)的馈电方案,将三相控制绕组两端打开分别连接变流器构成双两电平变流器(D-TLCs)馈电拓扑,对机侧变流器功率器件IGBT因故障切除后的容错控制策略进行深入分析,提出了功率偏... 针对无刷双馈发电机提出了一种控制绕组采用开绕组拓扑(OW-BDFG)的馈电方案,将三相控制绕组两端打开分别连接变流器构成双两电平变流器(D-TLCs)馈电拓扑,对机侧变流器功率器件IGBT因故障切除后的容错控制策略进行深入分析,提出了功率偏差比较直接功率控制(PEC-DPC)的D-TLCs电压空间矢量优化方案。对比分析了8/4极25kW样机的仿真及实验结果,表明:当机侧变流器1个或2个IGBT被切除后,所提OW-BDFG的PEC-DPC仍可实现变速恒频、最大功率点跟踪及单位功率因数控制,进一步提高了该发电机系统的可靠性和鲁棒性。 展开更多
关键词 无刷双馈发电机 开绕组 双两电平变流器 直接功率控制 容错控制 最大功率点跟踪
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双定子无刷双馈风力发电机无速度传感器反步法直接功率控制
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作者 朱连成 肖阳 +2 位作者 苏晓英 金石 陈晓红 《太阳能学报》 EI CAS CSCD 北大核心 2024年第4期206-213,共8页
针对双定子无刷双馈发电机,将内外功率绕组及内外控制绕组分别同相串联以保证电磁一致性。基于Lyapunov和Popov稳定性理论,采用反步法和模型参考自适应系统设计一种无速度传感器的反步法直接功率控制策略,利用空间矢量脉宽调制(SVPMW)... 针对双定子无刷双馈发电机,将内外功率绕组及内外控制绕组分别同相串联以保证电磁一致性。基于Lyapunov和Popov稳定性理论,采用反步法和模型参考自适应系统设计一种无速度传感器的反步法直接功率控制策略,利用空间矢量脉宽调制(SVPMW)以固定开关频率驱动控制绕组机侧变流器IGBT,以减小功率绕组功率波动及电流总谐波畸变率。通过12/8极50 kW样机控制系统的特性仿真研究,结果表明:所提控制策略在亚同步~超同步的速度变化范围内,可实现变速恒频发电、最大功率跟踪、无功功率及单位功率因数控制,电流总谐波畸变率约为2%。 展开更多
关键词 风电机组 双定子无刷双馈发电机 直接功率控制 反步法 最大功率跟踪 模型参考自适应系统
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双定子无刷双馈风力发电机无速度传感器超螺旋滑模直接功率控制
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作者 朱连成 肖阳 +2 位作者 苏晓英 金石 陈晓红 《太阳能学报》 EI CAS CSCD 北大核心 2024年第8期595-602,共8页
结合新型背靠背笼障转子耦合内外双定子无刷双馈发电机,提出一种无速度传感器直接功率控制方法。将电机内、外同相功率绕组及内、外同相控制绕组各自串联连接,采用超螺旋滑模控制及SVPWM技术,以固定开关频率驱动控制绕组机侧变流器功率... 结合新型背靠背笼障转子耦合内外双定子无刷双馈发电机,提出一种无速度传感器直接功率控制方法。将电机内、外同相功率绕组及内、外同相控制绕组各自串联连接,采用超螺旋滑模控制及SVPWM技术,以固定开关频率驱动控制绕组机侧变流器功率器件,以模型参考自适应系统和Popov超稳定性理论设计发电机速度观测器,取代易发生故障的传统机电式转速/位置传感器。通过12/8极50 kW样机控制系统的特性仿真,验证了所提无速度传感器超螺旋滑模直接功率控制策略的正确性和有效性。 展开更多
关键词 海上风电 风力机 双定子无刷双馈发电机 超螺旋滑模直接功率控制 最大功率跟踪 模型参考自适应系统
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复合转子无刷双馈风力发电机的设计与分析
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作者 张长国 辛瑗 《微电机》 2024年第6期55-61,共7页
无刷双馈发电机由于取消电刷滑环,可靠性高,在海上风力发电等领域具有应用前景。为了提升转子的调制能力,本文基于电机气隙磁场调制统一理论研究了短路线圈加凸极磁阻调制器结合的复合转子无刷双馈发电机。首先从理论上揭示了复合调制... 无刷双馈发电机由于取消电刷滑环,可靠性高,在海上风力发电等领域具有应用前景。为了提升转子的调制能力,本文基于电机气隙磁场调制统一理论研究了短路线圈加凸极磁阻调制器结合的复合转子无刷双馈发电机。首先从理论上揭示了复合调制器比单个调制器可产生更高有用谐波分量的机理,之后对复合转子的结构进行优化,包括凸极上笼条数目与短路线圈的连接方式,最后基于所建立的电机模型,对比了复合转子无刷双馈发电机与传统三种无刷双馈发电机的气隙有用谐波构成,2D有限元以及样机实验结果验证了电机拓扑与分析方法的有效性。 展开更多
关键词 无刷双馈 磁场调制 凸极磁阻 短路线圈 风力发电
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Dynamic modelling and robust current control of wind-turbine driven DFIG during external AC voltage dip 被引量:10
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作者 HU Jia-bing HE Yi-kang 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2006年第10期1757-1764,共8页
Doubly-Fed Induction Generator (DFIG), with vector control applied, is widely used in Variable-Speed Constant- Frequency (VSCF) wind energy generation system and shows good performance in maximum wind energy captu... Doubly-Fed Induction Generator (DFIG), with vector control applied, is widely used in Variable-Speed Constant- Frequency (VSCF) wind energy generation system and shows good performance in maximum wind energy capture. But in two traditional vector control schemes, the equivalent stator magnetizing current is considered invariant in order to simplify the rotor current inner-loop controller. The two schemes can perform very well when the grid is in normal condition. However, when grid disturbance such as grid voltage dip or swell fault occurs, the control performance worsens, the rotor over current occurs and the Fault Ride-Through (FRT) capability of the DFIG wind energy generation system gets seriously deteriorated. An accurate DFIG model was used to deeply investigate the deficiency of the traditional vector control. The improved control schemes of two typical traditional vector control schemes used in DFIG were proposed, and simulation study of the proposed and traditional control schemes, with robust rotor current control using Internal Model Control (IMC) method, was carded out. The validity of the proposed modified schemes to control the rotor current and to improve the FRT capability of the DFIG wind energy generation system was proved by the comparison study. 展开更多
关键词 wind energy generation Variable-Speed Constant-Frequency (VSCF) doubly-fed Induction generator (DFIG) Fault Ride-Through (FRT) Internal Model Control (IMC)
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Equivalent circuit and characteristic simulation of a brushless electrically excited synchronous wind power generator 被引量:2
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作者 Hao WANG Fengge ZHANG +1 位作者 Tao GUAN Siyang YU 《Frontiers of Mechanical Engineering》 SCIE CSCD 2017年第3期420-426,共7页
A brushless electrically excited synchronous generator (BEESG) with a hybrid rotor is a novel electrically excited synchronous generator. The BEESG proposed in this paper is composed of a conventional stator with tw... A brushless electrically excited synchronous generator (BEESG) with a hybrid rotor is a novel electrically excited synchronous generator. The BEESG proposed in this paper is composed of a conventional stator with two different sets of windings with different pole numbers, and a hybrid rotor with powerful coupling capacity. The pole number of the rotor is different from those of the stator windings. Thus, an analysis method different from that applied to conventional generators should be applied to the BEESG. In view of this problem, the equivalent circuit and electromagnetic torque expression of the BEESG are derived on the basis of electromagnetic relation of the proposed generator. The generator is simulated and tested experimentally using the established equivalent circuit model. The experimental and simulation data are then analyzed and compared. Results show the validity of the equivalent circuit model. 展开更多
关键词 wind power brushless electrically excited synchronous generator hybrid rotor equivalent circuit
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Dynamic modeling and direct power control of wind turbine driven DFIG under unbalanced network voltage conditions 被引量:2
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作者 Jia-bing HU Yi-kang HE Lie XU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第12期1731-1740,共10页
This paper proposes an analysis and a direct power control (DPC) design of a wind turbine driven doubly-fed induction generator (DFIG) under unbalanced network voltage conditions. A DFIG model described in the positiv... This paper proposes an analysis and a direct power control (DPC) design of a wind turbine driven doubly-fed induction generator (DFIG) under unbalanced network voltage conditions. A DFIG model described in the positive and negative synchronous reference frames is presented. Variations of the stator output active and reactive powers are fully deduced in the presence of negative sequence supply voltage and rotor flux. An enhanced DPC scheme is proposed to eliminate stator active power oscillation during network unbalance. The proposed control scheme removes rotor current regulators and the decomposition processing of positive and negative sequence rotor currents. Simulation results using PSCAD/EMTDC are presented on a 2-MW DFIG wind power generation system to validate the feasibility of the proposed control scheme under balanced and unbalanced network conditions. 展开更多
关键词 doubly-fed induction generator (DFIG) wind turbine Direct power control (DPC) Stator voltage oriented (SVO) Unbalanced network
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Model of DFIG Wind Farm and Study on Its LVRT Capability 被引量:1
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作者 He Guo Ding-Zhong Huang +1 位作者 Li-Gang Gu Fang-Yuan Wu 《Journal of Electronic Science and Technology》 CAS 2013年第1期78-83,共6页
As a typical clean and renewable energy, wind power is becoming more and more widely used in electrical industry. However, its characteristics of random and intermittent have brought serious problems to the power syst... As a typical clean and renewable energy, wind power is becoming more and more widely used in electrical industry. However, its characteristics of random and intermittent have brought serious problems to the power system, such as voltage fluctuation and insufficient reactive power. Based on the K-means clustering algorithm, this paper classifies the doubly-fed induction generators (DFIG) according to the operation of propeller pitch angle control. At the same time, to obtain the optimal parameter, advanced particle swarm optimization (PSO) is used. Then the dynamic model of DFIG under the network fault condition is built. What is more, the role that crowbar circuit plays in low voltage ride through (LVRT) is discussed. Finally, simulations in DigSILENT verify the model. 展开更多
关键词 CROWBAR doubly-fed induction generators low voltage ride through MODEL wind turbine.
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Doubly-fed induction generator drive based WECS using fuzzy logic controller 被引量:1
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作者 Abdelhak DIDA Djilani BEN ATTOUS 《Frontiers in Energy》 SCIE CSCD 2015年第3期272-281,共10页
The purpose of this paper is to improve the control performance of the variable speed, constant frequency doubly-fed induction generator in the wind turbine generation system by using fuzzy logic controllers. The cont... The purpose of this paper is to improve the control performance of the variable speed, constant frequency doubly-fed induction generator in the wind turbine generation system by using fuzzy logic controllers. The control of the rotor-side converter is realized by stator flux oriented control, whereas the control of the grid-side converter is performed by a control strategy based on grid voltage orientation to maintain the DC-link voltage stability. An intelligent fuzzy inference system is proposed as an alternative of the conventional proportional and integral (PI) controller to overcome any disturbance, such as fast wind speed variation, short grid voltage fault, parameter variations and so on. Five fuzzy logic controllers are used in the rotor side converter (RSC) for maximum power point tracking (MPPT) algorithm, active and reactive power control loops, and another two fuzzy logic controllers for direct and quadratic rotor currents components control loops. The performances have been tested on 1.5 MW doubly-fed induction generator (DFIG) in a Matlab/Simulink software environment. 展开更多
关键词 fuzzy logic wind turbine vector control doubly-fed induction generator (DFIG)
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Overview of Sub-synchronous Oscillation in Wind Power System 被引量:1
20
作者 Han Chen Chunlin Guo +1 位作者 Jianting Xu Pengxin Hou 《Energy and Power Engineering》 2013年第4期454-457,共4页
Nowadays with the improvement in the degree of emphasis on new energy, the wind power system has developed more and more rapidly over the world. Usually the wind plants are located in the remote areas which are far fr... Nowadays with the improvement in the degree of emphasis on new energy, the wind power system has developed more and more rapidly over the world. Usually the wind plants are located in the remote areas which are far from the load centers. Generally series compensated AC transmission and high voltage DC transmission are made use of to improve the transmission capacity as two main effective ways which can solve the problem of large scale wind power transmission. The paper describes the three kinds of impact varieties and impact mechanisms in the sub-synchronous oscillation phenomena of wind power system based on doubly fed induction generator (DFIG) wind generators. At last, we point out the important problem that should be stressed in the wind power system. 展开更多
关键词 Sub-synchronous Oscillation (SSO) Sub-synchronous Resonance(SSR) Sub-Synchronous Torsional INTERACTIONS (SSTI) Sub-Synchronous Control INTERACTIONS (SSCI) wind Turbines doubly-fed Induction generator
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