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Transient Damping of Virtual Synchronous Generator for Enhancing Synchronization Stability during Voltage Dips
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作者 Shitao Sun Yu Lei +4 位作者 Guowen Hao Yi Lu Jindong Liu Zhaoxin Song Jie Zhang 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第2期143-151,共9页
Virtual synchronous generators(VSGs)are widely introduced to the renewable power generation,the variablespeed pumped storage units,and so on,as a promising gridforming solution.It is noted that VSGs can provide virtua... Virtual synchronous generators(VSGs)are widely introduced to the renewable power generation,the variablespeed pumped storage units,and so on,as a promising gridforming solution.It is noted that VSGs can provide virtual inertia for frequency support,but the larger inertia would worsen the synchronization stability,referring to keeping synchronization with the grid during voltage dips.Thus,this paper presents a transient damping method of VSGs for enhancing the synchronization stability during voltage dips.It is revealed that the loss of synchronization(LOS)of VSGs always accompanies with the positive frequency deviation and the damping is the key factor to remove LOS when the equilibrium point exists.In order to enhance synchronization stability during voltage dips,the transient damping is proposed,which is generated by the frequency deviation in active power loop.Additionally,the proposed method can realize seamless switching between normal state and grid fault.Moreover,detailed control design for transient damping gain is given to ensure the synchronization stability under different inertia requirements during voltage dips.Finally,the experimental results are presented to validate the analysis and the effectiveness of the improved transient damping method. 展开更多
关键词 virtual synchronous generator(VSG) Transient damping Synchronization stability Voltage dips
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Improved Strategy of Grid-Forming Virtual Synchronous Generator Based on Transient Damping
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作者 Lei Zhang Rongliang Shi +2 位作者 Junhui Li Yannan Yu Yu Zhang 《Energy Engineering》 EI 2024年第11期3181-3197,共17页
The grid-forming virtual synchronous generator(GFVSG)not only employs a first-order low-pass filter for virtual inertia control but also introduces grid-connected active power(GCAP)dynamic oscillation issues,akin to t... The grid-forming virtual synchronous generator(GFVSG)not only employs a first-order low-pass filter for virtual inertia control but also introduces grid-connected active power(GCAP)dynamic oscillation issues,akin to those observed in traditional synchronous generators.In response to this,an improved strategy for lead-lag filter based GFVSG(LLF-GFVSG)is presented in this article.Firstly,the grid-connected circuit structure and control principle of typical GFVSG are described,and a closed-loop small-signal model for GCAP in GFVSG is established.The causes of GCAP dynamic oscillation of GFVSG under the disturbances of active power command as well as grid frequency are analyzed.On this basis,the LLF-GFVSG improvement strategy and its parameter design method are given.Finally,the efficiency of the proposed control strategy in damping GCAP dynamic oscillations under various disturbances is verified using MATLAB simulations and experimental comparison results. 展开更多
关键词 Grid-forming virtual synchronous generator first-order low-pass filter lead-lag filter small-signal model parameter design
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An Adaptive Control Strategy for Energy Storage Interface Converter Based on Analogous Virtual Synchronous Generator
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作者 Feng Zhao Jinshuo Zhang +1 位作者 Xiaoqiang Chen Ying Wang 《Energy Engineering》 EI 2024年第2期339-358,共20页
In the DC microgrid,the lack of inertia and damping in power electronic converters results in poor stability of DC bus voltage and low inertia of the DC microgrid during fluctuations in load and photovoltaic power.To ... In the DC microgrid,the lack of inertia and damping in power electronic converters results in poor stability of DC bus voltage and low inertia of the DC microgrid during fluctuations in load and photovoltaic power.To address this issue,the application of a virtual synchronous generator(VSG)in grid-connected inverters control is referenced and proposes a control strategy called the analogous virtual synchronous generator(AVSG)control strategy for the interface DC/DC converter of the battery in the microgrid.Besides,a flexible parameter adaptive control method is introduced to further enhance the inertial behavior of the AVSG control.Firstly,a theoretical analysis is conducted on the various components of the DC microgrid,the structure of analogous virtual synchronous generator,and the control structure’s main parameters related to the DC microgrid’s inertial behavior.Secondly,the voltage change rate tracking coefficient is introduced to adjust the change of the virtual capacitance and damping coefficient flexibility,which further strengthens the inertia trend of the DC microgrid.Additionally,a small-signal modeling approach is used to analyze the approximate range of the AVSG’s main parameters ensuring system stability.Finally,conduct a simulation analysis by building the model of the DC microgrid system with photovoltaic(PV)and battery energy storage(BES)in MATLAB/Simulink.Simulation results from different scenarios have verified that the AVSG control introduces fixed inertia and damping into the droop control of the battery,resulting in a certain level of inertia enhancement.Furthermore,the additional adaptive control strategy built upon the AVSG control provides better and flexible inertial support for the DC microgrid,further enhances the stability of the DC bus voltage,and has a more positive impact on the battery performance. 展开更多
关键词 Adaptive control analogous virtual synchronous generator DC/DC converter inertia of DC microgrid DC microgrid with PV and BES BATTERY DC bus voltage
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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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Coordinated control strategy for a PV-storage grid-connected system based on a virtual synchronous generator 被引量:4
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作者 Xing Zhang Qian Gao +3 位作者 Zixuan Guo Haizheng Zhang Ming Li Fei Li 《Global Energy Interconnection》 2020年第1期52-60,共9页
Due to the characteristics of intermittent photovoltaic power generation and power fluctuations in distributed photovoltaic power generation,photovoltaic grid-connected systems are usually equipped with energy storage... Due to the characteristics of intermittent photovoltaic power generation and power fluctuations in distributed photovoltaic power generation,photovoltaic grid-connected systems are usually equipped with energy storage units.Most of the structures combined with energy storage are used as the DC side.At the same time,virtual synchronous generators have been widely used in distributed power generation due to their inertial damping and frequency and voltage regulation.For the PV-storage grid-connected system based on virtual synchronous generators,the existing control strategy has unclear function allocation,fluctuations in photovoltaic inverter output power,and high requirements for coordinated control of PV arrays,energy storage units,and photovoltaic inverters,which make the control strategy more complicated.In order to solve the above problems,a control strategy for PV-storage grid-connected system based on a virtual synchronous generator is proposed.In this strategy,the energy storage unit implements maximum power point tracking,and the photovoltaic inverter implements a virtual synchronous generator algorithm,so that the functions implemented by each part of the system are clear,which reduces the requirements for coordinated control.At the same time,the smooth power command is used to suppress the fluctuation of the output power of the photovoltaic inverter.The simulation validates the effectiveness of the proposed method from three aspects:grid-connected operating conditions,frequency-modulated operating conditions,and illumination sudden-drop operating condition.Compared with the existing control strategies,the proposed method simplifies the control strategies and stabilizes the photovoltaic inverter fluctuation in the output power of the inverter. 展开更多
关键词 Photovoltaic power generation Energy STORAGE unit virtual synchronous generator SMOOTH FLUCTUATION COORDINATED control
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Research on Seamless Switching Control Strategy Based on Virtual Synchronous Generator 被引量:1
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作者 Wei Kang Jibo Wan +1 位作者 Lixia Zhang Qilong Zhang 《Energy and Power Engineering》 2017年第4期436-444,共9页
This paper studies the voltage, phase and current tracking strategy to eliminate voltage and current mutations when the virtual synchronous generator is switching between grid-connected and islanded. By using these st... This paper studies the voltage, phase and current tracking strategy to eliminate voltage and current mutations when the virtual synchronous generator is switching between grid-connected and islanded. By using these strategies the inverter can realize secondary frequency regulation and voltage regulation. If the phase is near 0 or 2π a little disturbance may made the PLL output a big error, so a new PLL is proposed by this paper. A sine module is added in the PLL to avoid this error. In order to verify the strategy proposed by this paper a simulation model is built in Matlab/Simulink. The simulation results show that the control strategy can realize seamless switching. 展开更多
关键词 virtual synchronous generator PLL SEAMLESS SWITCHING Micro GRID
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Consensus-Based Distributed Control with Communication Time Delays for Virtual Synchronous Generators in Isolate Microgrid 被引量:1
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作者 Laijun Chen Yuyang Wang +1 位作者 Tianwen Zheng Zhenquan Sun 《Energy and Power Engineering》 2017年第4期102-111,共10页
A consensus-based distributed control method of coordinated VSGs with communication time delays in isolate microgrid is proposed. When time delays are considered in communication, there are some effects on frequency r... A consensus-based distributed control method of coordinated VSGs with communication time delays in isolate microgrid is proposed. When time delays are considered in communication, there are some effects on frequency restoration and active power output allocation. In the control structure, only local information exchange is needed, while the final frequency can be controlled to the nominal value and the VSGs can automatically share loads according to their rated values. An AC microgrid with three VSGs and some loads is implemented. The proposed control strategy is verified by MATLAB/ Simulink simulation results. 展开更多
关键词 virtual synchronous generator Time DELAYS Distributed Control CONSENSUS Algorithm
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Active Power Allocation of Virtual Synchronous Generator Using Particle Swarm Optimization Approach
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作者 Fathin Saifur Rahman Thongchart Kerdphol +1 位作者 Masayuki Watanabe Yasunori Mitani 《Energy and Power Engineering》 2017年第4期414-424,共11页
In recent years, the penetration of renewable energy sources (RES) is increasing due to energy and environmental issues, causing several problems in the power system. These problems are usually more apparent in microg... In recent years, the penetration of renewable energy sources (RES) is increasing due to energy and environmental issues, causing several problems in the power system. These problems are usually more apparent in microgrids. One of the problems that could arise is frequency stability issue due to lack of inertia in microgrids. Lack of inertia in such system can lead to system instability when a large disturbance occurs in the system. To solve this issue, providing inertia support to the microgrids by a virtual synchronous generator (VSG) utilizing energy storage system is a promising method. In applying VSG, one important aspect is regarding the set value of the active power output from the VSG. The amount of allocated active power during normal operation should be determined carefully so that the frequency of microgrids could be restored to the allowable limits, as close as possible to the nominal value. In this paper, active power allocation of VSG using particle swarm optimization (PSO) is presented. The results show that by using VSG supported by active power allocation determined by the method, frequency stability and dynamic stability of the system could be improved. 展开更多
关键词 virtual synchronous generator (VSG) virtual INERTIA Particle SWARM Optimization (PSO) Active Power ALLOCATION Microgrid
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Modelling and Implementation of Multi-source Isolated Microgrid Using Virtual Synchronous Generator Technology
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作者 CHEN Xing QIAN Shengnan +2 位作者 LI Fei GE Zhaohui CAO Xin 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第5期747-757,共11页
To improve the living standards,economical efficiency and environmental protection of isolated islands,remote areas and other areas with weak electric power facilities construction,a multi-source independent microgrid... To improve the living standards,economical efficiency and environmental protection of isolated islands,remote areas and other areas with weak electric power facilities construction,a multi-source independent microgrid system is studied,including diesel generators,photovoltaic power generation system,wind power generation system and energy storage unit.Meanwhile,in order to realize the voltage and frequency stability control of AC bus of multisource microgrid,the virtual synchronous generator technology is introduced into the energy storage unit,and the charge and discharge control of the energy storage battery are simulated as the control behavior characteristics of synchronous motors,so as to provide damping and inertia support for the microgrid.The operation mode and control principle of each energy subsystem are expounded and analyzed.The algorithm principle of virtual synchronous generator and the control method of energy storage unit are given.Then,the working modes of the microgrid system under different environmental conditions are analyzed,and the multi-source microgrid system simulation model is built based on MATLAB/Simulink.The simulation results show that the microgrid system can run stably under different working modes and the energy storage unit using the virtual synchronous generator technology can provide good voltage and frequency support for the microgrid system.Finally,experiments verify the supporting function of energy storage unit on the voltage and frequency of the microgrid system. 展开更多
关键词 isolated microgrid wind/solar/diesel/storage virtual synchronous generator MODELLING
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The Novel Current Control for Virtual Synchronous Generator
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作者 Atsushi Umemura Rion Takahashi Junji Tamura 《Journal of Power and Energy Engineering》 2020年第2期78-89,共12页
In recent years, power generation using renewable energy sources has been developed as a solution to the global warming problem. Among these power generation methods, wind power generation is increasing. However, as t... In recent years, power generation using renewable energy sources has been developed as a solution to the global warming problem. Among these power generation methods, wind power generation is increasing. However, as the penetration level of wind power generation increases, the low inertia and lack of synchronous power characteristics of the penetrated power system can have a significant impact on the transient stability of the grid. The virtual synchronous generator provides the ability of virtual inertia and synchronous power to interconnected inverters. The interconnected inverter with the virtual synchronous generator ability uses, in general, PI control based current controller. This paper proposes a new current-control method and compares it with conventional methods. The proposed current control is a method that follows virtual synchronous generator model that changes every moment by solving the discrete-time linear quadratic optimal control problem for each sampling time interval. The new method follows the conventional method, and therefore the reactive power fluctuation can be suppressed and the interconnected inverter will be downsized. 展开更多
关键词 WIND Energy Generation State Feedback Electric Current CONTROL LINEARIZATION Techniques Discrete Time Model FOLLOWING CONTROL virtual synchronous generator
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A Study of Discrete-Time Optimum Current Controller for the Virtual Synchronous Generator under Constraints
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作者 Atushi Umemura Rion Takahashi Junji Tamura 《Smart Grid and Renewable Energy》 2020年第1期1-20,共20页
In recent years, power generation using renewable energy sources has been increasing as a solution to the global warning problem. Wind power generation can generate electricity day and night, and it is relatively more... In recent years, power generation using renewable energy sources has been increasing as a solution to the global warning problem. Wind power generation can generate electricity day and night, and it is relatively more efficient among the renewable energy sources. The penetration level of variable-speed wind turbines continues to increase. The interconnected wind turbines, however, have no inertia and no synchronous power. Such devices can have a serious impact on the transient stability of the power grid system. One solution to stabilize such grid with renewable energy sources is to provide emulated inertia and synchronizing power. We have proposed an optimal design method of current control for virtual synchronous generators. This paper proposes an optimal control method that can follow the virtual generator model under constrains. As a result, it is shown that the proposed system can suppress the peak of the output of semiconductor device under instantaneous output voltage drop. 展开更多
关键词 Wind Energy Generation virtual synchronous generator Electric Current CONTROL Optimal CONTROL Discreate-Time Model Following CONTROL MULTI-OBJECTIVE GENETIC Algorithm
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Improve Strategy for Transient Power Angle Stability Control of VSG Combining Frequency Difference Feedback and Virtual Impedance
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作者 Dianlang Wang Qi Yin +3 位作者 Haifeng Wang Jing Chen Hong Miao Yihan Chen 《Energy Engineering》 2025年第2期651-666,共16页
As the penetration rate of distributed energy increases,the transient power angle stability problem of the virtual synchronous generator(VSG)has gradually become prominent.In view of the situation that the grid impeda... As the penetration rate of distributed energy increases,the transient power angle stability problem of the virtual synchronous generator(VSG)has gradually become prominent.In view of the situation that the grid impedance ratio(R/X)is high and affects the transient power angle stability of VSG,this paper proposes a VSG transient power angle stability control strategy based on the combination of frequency difference feedback and virtual impedance.To improve the transient power angle stability of the VSG,a virtual impedance is adopted in the voltage loop to adjust the impedance ratio R/X;and the PI control feedback of the VSG frequency difference is introduced in the reactive powervoltage link of theVSGto enhance the damping effect.Thesecond-orderVSGdynamic nonlinearmodel considering the reactive power-voltage loop is established and the influence of different proportional integral(PI)control parameters on the system balance stability is analyzed.Moreover,the impact of the impedance ratio R/X on the transient power angle stability is presented using the equal area criterion.In the simulations,during the voltage dips with the reduction of R/X from 1.6 to 0.8,Δδ_(1)is reduced from 0.194 rad to 0.072 rad,Δf_(1)is reduced from 0.170 to 0.093 Hz,which shows better transient power angle stability.Simulation results verify that compared with traditional VSG,the proposedmethod can effectively improve the transient power angle stability of the system. 展开更多
关键词 Transient synchronous stability virtual synchronous generator impedance ratio
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Virtual Synchronous Generator Based Current Synchronous Detection Scheme for a Virtual Inertia Emulation in SmartGrids
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作者 Arvind Parwal Martin Fregelius +7 位作者 Dalmo Cardosa Silva Tatiana Potapenko Johannes Hjalmarsson James Kelly Irina Temiz Janaina Goncalves de Oliveira Cecilia Bostrom Mats Leijon 《Energy and Power Engineering》 2019年第3期99-131,共33页
Renewable energy sources, such as photovoltaic wind turbines, and wave power converters, use power converters to connect to the grid which causes a loss in rotational inertia. The attempt to meet the increasing energy... Renewable energy sources, such as photovoltaic wind turbines, and wave power converters, use power converters to connect to the grid which causes a loss in rotational inertia. The attempt to meet the increasing energy demand means that the interest for the integration of renewable energy sources in the existing power system is growing, but such integration poses challenges to the operating stability. Power converters play a major role in the evolution of power system towards SmartGrids, by regulating as virtual synchronous generators. The concept of virtual synchronous generators requires an energy storage system with power converters to emulate virtual inertia similar to the dynamics of traditional synchronous generators. In this paper, a dynamic droop control for the estimation of fundamental reference sources is implemented in the control loop of the converter, including active and reactive power components acting as a mechanical input to the virtual synchronous generator and the virtual excitation controller. An inertia coefficient and a droop coefficient are implemented in the control loop. The proposed controller uses a current synchronous detection scheme to emulate a virtual inertia from the virtual synchronous generators. In this study, a wave energy converter as the power source is used and a power management of virtual synchronous generators to control the frequency deviation and the terminal voltage is implemented. The dynamic control scheme based on a current synchronous detection scheme is presented in detail with a power management control. Finally, we carried out numerical simulations and verified the scheme through the experimental results in a microgrid structure. 展开更多
关键词 Current synchronous Detection Dynamic Droop Control Energy Storage virtual Inertia virtual synchronous generator
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一种风电场经VSC-HVDC并网的VSG变参数负荷频率控制策略 被引量:3
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作者 赵熙临 龚楚峰 付波 《高电压技术》 EI CAS CSCD 北大核心 2024年第1期117-126,共10页
风电的大规模并网导致系统等效惯量下降、不确定性增加,给电力系统的负荷频率控制(loadfrequency control,LFC)带来新的挑战。考虑到柔性直流输电系统(voltage source converter based high voltage DC,VSC-HVDC)具有的潜在调频能力,对... 风电的大规模并网导致系统等效惯量下降、不确定性增加,给电力系统的负荷频率控制(loadfrequency control,LFC)带来新的挑战。考虑到柔性直流输电系统(voltage source converter based high voltage DC,VSC-HVDC)具有的潜在调频能力,对此展开研究,针对风电场经VSC-HVDC并网的情形提出了一种虚拟同步发电机(virtual synchronous generator,VSG)变参数负荷频率控制策略。首先,在风电场经VSC-HVDC并网的LFC模型及拓扑结构分析基础上,为了提高VSC-HVDC的可控性,对换流器的控制环节进行了VSG控制方法的设计;然后,对VSG控制参数与频率变化的关联性进行分析,并基于分数阶梯度下降法(fractional-order gradient descent method,FOGDM),利用频率的分数阶导数提取频率深层变化特征,以优化VSG控制参数;在此基础上,考虑到系统的不确定性,设计触发机制对VSG变参数优化模式进行调整,以降低VSG参数的变换频次,提高系统频率控制的针对性。仿真结果表明:所提控制方法能有效改善电网负荷频率控制效果,具有良好的适应性。 展开更多
关键词 负荷频率控制 虚拟同步发电机 风电 柔性直流输电系统 分数阶 参数优化
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Research on Grid-Connected Control Strategy of Distributed Generator Based on Improved Linear Active Disturbance Rejection Control
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作者 Xin Mao Hongsheng Su Jingxiu Li 《Energy Engineering》 EI 2024年第12期3929-3951,共23页
The virtual synchronous generator(VSG)technology has been proposed to address the problem of system frequency and active power oscillation caused by grid-connected new energy power sources.However,the traditional volt... The virtual synchronous generator(VSG)technology has been proposed to address the problem of system frequency and active power oscillation caused by grid-connected new energy power sources.However,the traditional voltage-current double-closed-loop control used in VSG has the disadvantages of poor disturbance immunity and insufficient dynamic response.In light of the issues above,a virtual synchronous generator voltage outer-loop control strategy based on improved linear autonomous disturbance rejection control(ILADRC)is put forth for consideration.Firstly,an improved first-order linear self-immunity control structure is established for the characteristics of the voltage outer loop;then,the effects of two key control parameters-observer bandwidthω_(0)and controller bandwidthω_(c)on the control system are analyzed,and the key parameters of ILADRC are optimally tuned online using improved gray wolf optimizer-radial basis function(IGWO-RBF)neural network.A simulationmodel is developed using MATLAB to simulate,analyze,and compare the method introduced in this paper.Simulations are performed with the traditional control strategy for comparison,and the results demonstrate that the proposed control method offers superior anti-interference performance.It effectively addresses power and frequency oscillation issues and enhances the stability of the VSG during grid-connected operation. 展开更多
关键词 virtual synchronous generator(VSG) active power improved linear active disturbance rejection control(ILADRC) radial basis function(RBF)neural networks improved gray wolf optimizer(IGWO)
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含类虚拟同步发电机和柔性负荷的直流微电网大信号稳定控制方法
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作者 王慧 赵书强 +3 位作者 陈旭博 孟建辉 田艳军 高本锋 《电工技术学报》 北大核心 2025年第3期705-716,共12页
直流微电网稳态工作点切换、负荷变化较大时经常会出现暂态失稳现象,属于比较典型的“大信号失稳”工况,传统基于小信号的解决方法难以应对。为此,该文提出一种考虑类虚拟同步发电机(AVSG)控制参数和柔性负荷灵活调节的稳定控制方法。... 直流微电网稳态工作点切换、负荷变化较大时经常会出现暂态失稳现象,属于比较典型的“大信号失稳”工况,传统基于小信号的解决方法难以应对。为此,该文提出一种考虑类虚拟同步发电机(AVSG)控制参数和柔性负荷灵活调节的稳定控制方法。首先建立直流微电网的Takagi-Sugeno(TS)模糊模型。然后,借助线性矩阵不等式(LMI)工具构建Lyapunov函数以估计目标稳态点的吸引域。若目标稳态点的最大估计吸引域(LEDA)包含初始稳态点,则系统是渐近稳定的;否则存在失稳的风险。此时,利用灵活可调的虚拟阻尼、虚拟惯量和柔性负荷等资源,让目标稳态点的LEDA直接或者间接包含初始稳态点,从而消除振荡失稳的风险。研究结果表明:基于吸引域理论改进虚拟阻尼和虚拟惯量等控制参数以及工作点运行轨迹,是一种实用且有效保障系统稳定运行的方法。最后,通过硬件在环仿真(HIL)进行了验证。 展开更多
关键词 直流微电网 大信号稳定 吸引域估计 类虚拟同步发电机 柔性负荷
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基于虚拟同步机的新能源制氢系统协调控制策略
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作者 袁铁江 张江飞 滕越 《中国电机工程学报》 北大核心 2025年第1期163-174,I0013,共13页
针对传统控制策略下新能源制氢系统缺乏惯量响应特性,难以主动参与电网调节、系统频率稳定性差等问题,提出基于虚拟同步机(virtual synchronous generator,VSG)的新能源制氢系统协调控制策略。首先,在建立新能源制氢系统模型的基础上,... 针对传统控制策略下新能源制氢系统缺乏惯量响应特性,难以主动参与电网调节、系统频率稳定性差等问题,提出基于虚拟同步机(virtual synchronous generator,VSG)的新能源制氢系统协调控制策略。首先,在建立新能源制氢系统模型的基础上,考虑到通过变流器并网的制氢系统惯量缺失和电解槽低功率运行的安全约束,提出基于电解槽与蓄电池的VSG控制方案,建立系统网侧VSG控制模型;其次,为防止VSG过度响应导致系统平抑新能源波动能力下降,提出考虑系统状态的VSG自适应方法;然后,针对系统功率波动影响直流母线电压稳定的问题,设计各单元控制策略,并在电解槽单元加入附加响应控制环节以缓解直流母线电压波动;最后,为实现能量合理分配,针对系统不同运行模式,提出考虑各单元运行状态的能量管理策略。仿真结果表明:所提策略充分发挥了电解槽调节能力,系统具备惯量与一次调频响应特性,频率稳定性增强等。 展开更多
关键词 新能源制氢 虚拟同步机 协调控制 惯量响应 频率调节
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基于VSC-HVDC的海上风电系统虚拟惯性控制技术 被引量:16
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作者 付媛 王毅 +1 位作者 张祥宇 罗应立 《电测与仪表》 北大核心 2014年第1期43-48,共6页
海上风电系统的惯性响应有利于增强其所在区域电网的暂态稳定性。文中首先提出适用于海上风电场并网的VSC-HVDC控制策略,并解决由风电机组组网的海上交流系统缺乏惯性的问题。其次,基于所提的VSC-HVDC控制策略,结合变速恒频风电机组的... 海上风电系统的惯性响应有利于增强其所在区域电网的暂态稳定性。文中首先提出适用于海上风电场并网的VSC-HVDC控制策略,并解决由风电机组组网的海上交流系统缺乏惯性的问题。其次,基于所提的VSC-HVDC控制策略,结合变速恒频风电机组的虚拟惯性控制,研究海上风电系统的虚拟转动惯量与电网频率变化的关系,实现海上风电系统对电网频率的动态支持。最后,通过对含海上风电系统的区域电网的仿真分析,验证所提控制策略能够实现海上风电系统对电网频率的快速响应。 展开更多
关键词 vsc—HVDC 风力发电 虚拟惯量 变速风电机组
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光伏电站与VSC-HVDC无通信虚拟同步机协调控制策略 被引量:3
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作者 李琰 王岩 +3 位作者 高峰 魏林君 郝全睿 刘超 《现代电力》 北大核心 2017年第5期74-81,共8页
光伏电站通过柔性直流输电系统集电后可向受端电网供电,同时柔直系统的虚拟同步响应有利于增强受端电网的暂态稳定性。本文分析了VSC-HVDC的控制策略,并且针对受端电网发生频率扰动的情况,提出了一种不依靠通信的光伏电站与VSC-HVDC的... 光伏电站通过柔性直流输电系统集电后可向受端电网供电,同时柔直系统的虚拟同步响应有利于增强受端电网的暂态稳定性。本文分析了VSC-HVDC的控制策略,并且针对受端电网发生频率扰动的情况,提出了一种不依靠通信的光伏电站与VSC-HVDC的虚拟同步机协调控制策略。在受端电网扰动情况下,受端交流系统频率与送端交流系统电压幅值通过送端换流器的变压控制实现耦合。光伏逆变器的功率控制器将响应送端换流器的电压变化并调整输出的功率指令值,同时实现集电系统有功功率平衡控制和HVDC虚拟同步控制的直流电压无差调节。应用MATLAB/SIMULINK仿真软件搭建了系统的仿真模型,验证了所提协调控制策略的有效性。 展开更多
关键词 柔性直流输电 虚拟同步发电机 协调控制 频率控制
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基于虚拟同步电机技术的VSC-HVDC整流侧建模及参数设计 被引量:40
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作者 高丙团 夏超鹏 +1 位作者 张磊 陈宁 《中国电机工程学报》 EI CSCD 北大核心 2017年第2期534-543,共10页
在传统控制方式下,柔性直流输电(voltage source converter based high voltage direct current,VSC-HVDC)系统换流站难以有效参与电网动态调节,而虚拟同步电机技术通过合适的控制设计使得换流器单元能够为系统提供惯性支撑,已引起广泛... 在传统控制方式下,柔性直流输电(voltage source converter based high voltage direct current,VSC-HVDC)系统换流站难以有效参与电网动态调节,而虚拟同步电机技术通过合适的控制设计使得换流器单元能够为系统提供惯性支撑,已引起广泛关注。首先结合VSC-HVDC系统数学模型,分析换流站等效为同步电机的可行性,给出基于虚拟同步电机技术的换流站控制方案。其次,针对整流侧换流站,在动态过程中将逆变侧等效为一个恒功率负载,建立虚拟同步电机内环和电压外环的小信号数学模型,分析并给出一种系统化的控制参数设计方法。最后,通过仿真分析验证文中理论分析的正确性和参数设计方法的有效性。 展开更多
关键词 柔性直流输电 虚拟同步电机 整流站 小信号模型 参数设计
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