期刊文献+
共找到11篇文章
< 1 >
每页显示 20 50 100
Control of Doubly Fed Induction Generator under Unbalanced Voltages for Reduction of Torque Pulsation
1
作者 S. Wangsathitwong S. Sirisumrannukul +1 位作者 S. Chatratana W. Deleroi 《Journal of Energy and Power Engineering》 2011年第3期243-251,共9页
The unbalanced voltages cause negative effects on the doubly fed induction generator (DFIG) sucn as torque pulsation,and increased stator current. Based on the symmetrical component theory, the torque pulsation is t... The unbalanced voltages cause negative effects on the doubly fed induction generator (DFIG) sucn as torque pulsation,and increased stator current. Based on the symmetrical component theory, the torque pulsation is the consequence of the interaction of stator and rotor currents of different sequences. This paper presents a control technique to reduce the effect of unbalanced voltages on the DFIG in wind energy conversion systems. The negative sequence stator voltage is derived from the unbalanced three phase stator voltages. The compensated rotor voltage in terms of the derived negative sequence stator voltage and slip which minimizes the negative stator and rotor currents is proposed. The results from the simulation of control system with steady state model and dynamic model of the DFIG show that additional control loop with compensated voltage can significantly reduce torque and reactive power pulsations. 展开更多
关键词 Doubly fed induction generator (DFIG) unbalanced voltages symmetrical components.
在线阅读 下载PDF
Unbalanced Voltage Suppression of Bipolar DC Microgrids with Integration of DC Zero-carbon Buildings
2
作者 Xuefei Zhang Chunsheng Guo +4 位作者 Yiyao Zhou Xiaolong Xu Jianquan Liao Niancheng Zhou Qianggang Wang 《Journal of Modern Power Systems and Clean Energy》 CSCD 2024年第6期1942-1956,共15页
Considering the majority of electrical equipment utilized in society is driven by DC,integrating a DC system can significantly enhance the efficiency and reliability of power sys-tems by implementing the integration o... Considering the majority of electrical equipment utilized in society is driven by DC,integrating a DC system can significantly enhance the efficiency and reliability of power sys-tems by implementing the integration of diverse loads,renew-able energy sources(RESs),and energy storage systems(ESSs).In this paper,the integration of multiple DC zero-carbon build-ings(DC-ZCBs)is proposed to achieve the unbalanced voltage suppression of the bipolar DC microgrid(DCMG).The photo-voltaic(PV)technology,loads,and DC electric springs(DC-ESs)are adopted as a unified entity to achieve the zero-carbon emission of the building.Firstly,a new configuration of PV and DC-ESs is introduced.The energy management of PV,ESS,and load are fully considered in this new configuration,which can reduce the capacity of the EsS.Subsequently,a distributed co-operative control strategy for DC-ESs based on the modulus voltage is presented,which is implemented with integration of the new configuration into the bipolar DCMG.The proposed approach addresses the issues of unbalanced voltage to improve the operating efficiency and power quality of the bipolar DC-MG.The simulation is conducted in MATLAB/Simulink plat-form to confirm the effectiveness of the proposed approach. 展开更多
关键词 Bipolar DC microgrid(DCMG) DC zero-car-bon building(DC-ZCB) electric spring(ES) modulus voltage control unbalanced voltage suppression
原文传递
Enhanced control of DFIG-used back-to-back PWM VSC under unbalanced grid voltage conditions 被引量:20
3
作者 HU Jia-bing HE Yi-kang NIAN Heng 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第8期1330-1339,共10页
This paper presents a unified positive-and negative-sequence dual-dq dynamic model of wind-turbine driven doubly-fed induction generator(DFIG) under unbalanced grid voltage conditions. Strategies for enhanced control ... This paper presents a unified positive-and negative-sequence dual-dq dynamic model of wind-turbine driven doubly-fed induction generator(DFIG) under unbalanced grid voltage conditions. Strategies for enhanced control and operation of a DFIG-used back-to-back(BTB) PWM voltage source converter(VSC) are proposed. The modified control design for the grid-side converter in the stationary αβ frames diminishes the amplitude of DC-link voltage ripples of twice the grid frequency,and the two proposed control targets for the rotor-side converter are alternatively achieved,which,as a result,improve the fault-ride through(FRT) capability of the DFIG based wind power generation systems during unbalanced network supply. A complete unbalanced control scheme with both grid-and rotor-side converters included is designed. Finally,simulation was carried out on a 1.5 MW wind-turbine driven DFIG system and the validity of the developed unified model and the feasibility of the proposed control strategies are all confirmed by the simulated results. 展开更多
关键词 unbalanced grid voltage Doubly-fed induction generator (DFIG) Back-to-back (BTB) Fault-ride through (FRT) voltage source converter (VSC)
在线阅读 下载PDF
Novel control scheme for 3-phase PWM current-source converters under unbalanced source voltage conditions 被引量:1
4
作者 李玉玲 楼珍丽 张仲超 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2006年第2期263-268,共6页
Under unbalanced source voltage supply, considerable output second harmonics and input low-order harmonics in 3-phase PWM current-source converters (PWM-CSC) are generated. This paper proposes a new deadbeat controlle... Under unbalanced source voltage supply, considerable output second harmonics and input low-order harmonics in 3-phase PWM current-source converters (PWM-CSC) are generated. This paper proposes a new deadbeat controller based on compensation for unbalanced source voltage and current. With the proposed scheme, the second harmonics of the output current are eliminated and low-order harmonics of the source current are reduced effectively. Simulation and experimental results con- firmed the feasibility of the proposed method. 展开更多
关键词 PWM current-source converters (PWM-CSC) unbalanced source voltage conditions Deadbeat control
在线阅读 下载PDF
Dual-negative-objective Coordinated Control of Brushless Doubly Fed Induction Generator under Unbalanced Grid Voltage
5
作者 Ming Cheng Zheng Cao Xiaoming Yan 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第3期347-355,共9页
This article proposes a dual-negative-objective coordinated control strategy for brushless doubly fed induction generator(BDFIG)based wind power generation system under unbalanced grid voltage.To alleviate the mechani... This article proposes a dual-negative-objective coordinated control strategy for brushless doubly fed induction generator(BDFIG)based wind power generation system under unbalanced grid voltage.To alleviate the mechanical stress and impaction on rotating shaft,the negative control objective(NCO)of machine side converter(MSC)is set to suppress the ripple of electromagnetic torque.While the NCO of grid side converter(GSC)is selected to suppress the oscillation of total output active power or the unbalanced degree of total output current for BDFIG generation system.In comparison with traditional single converter control scheme of the MSC or GSC,dual NCOs can be satisfied at the same time due to the enlarged freedom degree in the proposed improved coordinated control system for back-toback converters.The effectiveness of proposed control strategy is validated by simulation and experimental results on a dual-cagerotor BDFIG(DCR-BDFIG)prototype. 展开更多
关键词 Brushless doubly fed induction generator Dual-negative-objective Freedom degree unbalanced grid voltage
在线阅读 下载PDF
Optimal Control for Vienna Rectifier in Unbalanced Conditions
6
作者 LIU Chengzi HUANG Xiaoqi +1 位作者 MA Yaopeng BEN Guicin 《Transactions of Nanjing University of Aeronautics and Astronautics》 2025年第3期385-394,共10页
The Vienna rectifier is a widely adopted solution for high-power rectification due to its efficiency and straightforward design.However,its performance can degrade under unbalanced three phase voltage conditions,leadi... The Vienna rectifier is a widely adopted solution for high-power rectification due to its efficiency and straightforward design.However,its performance can degrade under unbalanced three phase voltage conditions,leading to current zero-crossing distortion and compromised dynamic response.This paper investigates the causes of these distortions,identifying a phase shift between the input current and the grid voltage as a primary factor,and proposes an effective distortion phase identification strategy.Furthermore,the dynamic performance is enhanced through improved current reference calculations and a refined power feedforward strategy.This approach optimizes the system's response to load changes and maintains output voltage stability under unbalanced conditions.Simulation results validate the effectiveness of the proposed methods in reducing current distortion and improving overall performance. 展开更多
关键词 zero-crossing distortion three-phase voltage unbalanced RECTIFIER power feedforward
在线阅读 下载PDF
Pareto Multi-Objective Reconfiguration of IEEE 123-Bus Unbalanced Power Distribution Networks Using Metaheuristic Algorithms:A Comprehensive Analysis of Power Quality Improvement
7
作者 Nisa NacarÇıkan 《Computer Modeling in Engineering & Sciences》 2025年第6期3279-3327,共49页
This study addresses the critical challenge of reconfiguration in unbalanced power distribution networks(UPDNs),focusing on the complex 123-Bus test system.Three scenarios are investigated:(1)simultaneous power loss r... This study addresses the critical challenge of reconfiguration in unbalanced power distribution networks(UPDNs),focusing on the complex 123-Bus test system.Three scenarios are investigated:(1)simultaneous power loss reduction and voltage profile improvement,(2)minimization of voltage and current unbalance indices under various operational cases,and(3)multi-objective optimization using Pareto front analysis to concurrently optimize voltage unbalance index,active power loss,and current unbalance index.Unlike previous research that oftensimplified system components,this work maintains all equipment,including capacitor banks,transformers,and voltage regulators,to ensure realistic results.The study evaluates twelve metaheuristic algorithms to solve the reconfiguration problem(RecPrb)in UPDNs.A comprehensive statistical analysis is conducted to identify the most efficient algorithm for solving the RecPrb in the 123-Bus UPDN,employing multiple performance metrics and comparative techniques.The Artificial Hummingbird Algorithm emerges as the top-performing algorithm and is subsequently applied to address a multi-objective optimization challenge in the 123-Bus UPDN.This research contributes valuable insights for network operators and researchers in selecting suitable algorithms for specific reconfiguration scenarios,advancing the field of UPDN optimization and management. 展开更多
关键词 voltage and current unbalanced index unbalanced power distribution network power quality metaheuristic algorithms RECONFIGURATION optimization
在线阅读 下载PDF
Adaptive rotor current control for wind-turbine driven DFIG using resonant controllers in a rotor rotating reference frame 被引量:3
8
作者 Jia-bing HU Yi-kang HE Hong-sheng WANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第2期149-155,共7页
This paper proposes an adaptive rotor current controller for doubly-fed induction generator (DFIG), which consists of a proportional (P) controller and two harmonic resonant (R) controllers implemented in the rotor ro... This paper proposes an adaptive rotor current controller for doubly-fed induction generator (DFIG), which consists of a proportional (P) controller and two harmonic resonant (R) controllers implemented in the rotor rotating reference frame. The two resonant controllers are tuned at slip frequencies ωslip+ and ωslip-, respectively. As a result, the positive- and negative-sequence components of the rotor current are fully regulated by the PR controller without involving the positive- and negative-sequence decomposition, which in effect improves the fault ride-through (FRT) capability of the DFIG-based wind power generation system during the period of large transient grid voltage unbalance. Correctness of the theoretical analysis and feasibility of the proposed unbalanced control scheme are validated by simulation on a 1.5-MW DFIG wind power generation system. 展开更多
关键词 unbalanced grid voltage Doubly-fed induction generator (DFIG) Proportional plus Resonant (PR) controller Faultride-through (FRT)
在线阅读 下载PDF
Multiple target implementation for a doubly fed induction generator based on direct power control under unbalanced and distorted grid voltage 被引量:2
9
作者 Heng NIAN Yi-peng SONG 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2015年第4期321-334,共14页
This paper presents a multiple target implementation technique for a doubly fed induction generator (DFIG) under unbalanced and distorted grid voltage based on direct power control (DPC). Based on the mathematical... This paper presents a multiple target implementation technique for a doubly fed induction generator (DFIG) under unbalanced and distorted grid voltage based on direct power control (DPC). Based on the mathematical model of DFIG under unbalanced and distorted voltage, the proportional and integral (PI) regulator is adopted to regulate the DFIG average active and reactive powers, while the vector P1 (VPI) resonant regulator is used to achieve three alternative control targets: (1) balanced and sinusoidal stator current; (2) smooth instantaneous stator active and reactive powers; (3) smooth electromagnetic torque and instantaneous stator reactive power. The major advantage of the proposed control strategy over the conventional method is that neither negative and harmonic sequence decomposition of grid voltage nor complicated control reference calculation is required. The insensitivity of the proposed control strategy to DFIG parameter deviation is analyzed. Finally, the DFIG experimental system is developed to validate the availability of the proposed DPC strategy under unbalanced and distorted grid voltage, 展开更多
关键词 Direct power control Doubly fed induction generator unbalanced and distorted grid voltage Vector proportionaland integral resonant regulator Parameter deviation
原文传递
Sequence-based Vector Control of Hybrid VSC-CSC HVDC System for DC Power Second Harmonic Suppression
10
作者 Yao Xiong Xiaoguang Wei +5 位作者 Guangfu Tang Song Li Wenwen Zhang Hui Du Taosha Jiang Yunhai Shan 《CSEE Journal of Power and Energy Systems》 2025年第6期2912-2927,共16页
This paper proposes a dual vector control scheme based on the sequence component separation strategy(SCSS)for second harmonic suppression in DC power.Firstly,an analytical model is established to depict the positive a... This paper proposes a dual vector control scheme based on the sequence component separation strategy(SCSS)for second harmonic suppression in DC power.Firstly,an analytical model is established to depict the positive and negative sequences of the controllable current source converter(CSC)under unbalanced grid conditions.Moreover,the generation mechanism of the DC power second harmonic component in the hybrid VSC-CSC HVDC system is demonstrated.This paper summarizes the impact of the modulation index(MI)and power factor(PF)on the operating characteristics of the modular multilevel converter(MMC)during the variation of the DC voltage.Based on the above analysis,the proposed control scheme extracts the sequence components of the CSC capacitor voltage and directly computes the sequence voltage reference value using instantaneous power.This approach effectively suppresses the second-harmonic component in DC power and significantly reduces the range of capacitor-voltage fluctuations in MMC submodules.Finally,an electromagnetic transient model of the hybrid HVDC system is constructed to validate the accuracy of the theoretical analysis and the effectiveness of the proposed control scheme. 展开更多
关键词 Controllable current source converter hybrid HVDC second harmonic suppression unbalanced grid voltage
原文传递
Detection Scheme of Positive Sequence Components Based on Operation Period Delay Filter 被引量:2
11
作者 Liwei Du Liansong Xiong +3 位作者 Mingxian Li Zhen Tang Liancheng Xiu Xun Ma 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2023年第1期235-243,共9页
Fast and accurate acquisition of positive sequence components of unbalanced grid voltage is an essential requirement to ensure the safety operation of the grid-connected inverter.To improve the extraction speed of pos... Fast and accurate acquisition of positive sequence components of unbalanced grid voltage is an essential requirement to ensure the safety operation of the grid-connected inverter.To improve the extraction speed of positive sequence components of unbalanced voltage,this study proposes a sampling period delay filter(SPDF)to quickly separate positive and negative sequence components by delaying two sampling periods of grid voltage in dq frame.With the SPDF method,only one coordinate transformation is required and the computational burden can be reduced apparently.Then,the noise immunity performance of the proposed SPDF algorithm is investigated;and the corresponding solution,operation period delay filter(OPDF),can guarantee the desired fast response performance under the premise of limiting the amplified noise within the acceptable range.Finally,the feasibility and priority of the above two algorithms have been verified by the simulation and experimental results. 展开更多
关键词 Noise immunity positive sequence components second harmonic components SPDF/OPDF algorithm unbalanced grid voltage
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部