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Maximum Power Point Tracking in Variable Speed Wind Turbine Based on Permanent Magnet Synchronous Generator Using Maximum Torque Sliding Mode Control Strategy 被引量:3
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作者 Esmaeil Ghaderi Hossein Tohidi Behnam Khosrozadeh 《Journal of Electronic Science and Technology》 CAS CSCD 2017年第4期391-399,共9页
The present study was carried out in order to track the maximum power point in a variable speed turbine by minimizing electromechanical torque changes using a sliding mode control strategy. In this strategy, first, th... The present study was carried out in order to track the maximum power point in a variable speed turbine by minimizing electromechanical torque changes using a sliding mode control strategy. In this strategy, first, the rotor speed is set at an optimal point for different wind speeds. As a result of which, the tip speed ratio reaches an optimal point, mechanical power coefficient is maximized, and wind turbine produces its maximum power and mechanical torque. Then, the maximum mechanical torque is tracked using electromechanical torque. In this technique, tracking error integral of maximum mechanical torque, the error, and the derivative of error are used as state variables. During changes in wind speed, sliding mode control is designed to absorb the maximum energy from the wind and minimize the response time of maximum power point tracking(MPPT). In this method, the actual control input signal is formed from a second order integral operation of the original sliding mode control input signal. The result of the second order integral in this model includes control signal integrity, full chattering attenuation, and prevention from large fluctuations in the power generator output. The simulation results, calculated by using MATLAB/m-file software, have shown the effectiveness of the proposed control strategy for wind energy systems based on the permanent magnet synchronous generator(PMSG). 展开更多
关键词 Maximum power point tracking permanent magnet synchronous generator(PMSG) sliding mode control wind turbine
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Performance analysis of 20 Pole 1.5 KW Three Phase Permanent Magnet Synchronous Generator for low Speed Vertical Axis Wind Turbine 被引量:2
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作者 Shahrukh Adnan Khan Rajprasad K. Rajkumar +1 位作者 Rajparthiban K. Rajkumar Aravind CV 《Energy and Power Engineering》 2013年第4期423-428,共6页
This paper gives performance analysis of a three phase Permanent Magnet Synchronous Generator (PMSG) connected to a Vertical Axis Wind Turbine (VAWT). Low speed wind condition (less than 5 m/s) is taken in considerati... This paper gives performance analysis of a three phase Permanent Magnet Synchronous Generator (PMSG) connected to a Vertical Axis Wind Turbine (VAWT). Low speed wind condition (less than 5 m/s) is taken in consideration and the entire simulation is carried in Matlab/Simulink environment. The rated power for the generator is fixed at 1.5 KW and number of pole at 20. It is observed under low wind speed of6 m/s, a turbine having approximately1 mof radius and2.6 mof height develops 150 Nm mechanical torque that can generate power up to 1.5 KW. The generator is designed using modeling tool and is fabricated. The fabricated generator is tested in the laboratory with the simulation result for the error analysis. The range of error is about 5%-27% for the same output power value. The limitations and possible causes for error are presented and discussed. 展开更多
关键词 Vertical Axis wind turbine Three Phase Multi-pole permanent magnet SYNCHRONOUS Generator Low wind Speed Modeling Performance Analysis
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Integrated Equivalent Model of Permanent Magnet Synchronous Generator Based Wind Turbine for Large-scale Offshore Wind Farm Simulation 被引量:1
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作者 Ming Zou Yan Wang +3 位作者 Chengyong Zhao Jianzhong Xu Xiaojiang Guo Xu Sun 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2023年第5期1415-1426,共12页
The high-speed simulation of large-scale offshore wind farms(OWFs) preserving the internal machine information has become a huge challenge due to the large wind turbine(WT) count and microsecond-range time step. Hence... The high-speed simulation of large-scale offshore wind farms(OWFs) preserving the internal machine information has become a huge challenge due to the large wind turbine(WT) count and microsecond-range time step. Hence, it is undoable to investigate the internal node information of the OWF in the electro-magnetic transient(EMT) programs. To fill this gap,this paper presents an equivalent modeling method for largescale OWF, whose accuracy and efficiency are guaranteed by integrating the individual devices of permanent magnet synchronous generator(PMSG) based WT. The node-elimination algorithm is used while the internal machine information is recursively updated. Unlike the existing aggregation methods, the developed EMT model can reflect the characteristics of each WT under different wind speeds and WT parameters without modifying the codes. The access to each WT controller is preserved so that the time-varying dynamics of all the WTs could be simulated. Comparisons of the proposed model with the detailed model in PSCAD/EMTDC have shown very high precision and high efficiency. The proposed modeling procedures can be used as reference for other types of WTs once the structures and parameters are given. 展开更多
关键词 Offshore wind farm(OWF) electro-magnetic transient(EMT) integrated equivalent modelling permanent magnet synchronous generator(PMSG)based wind turbine(WT)
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PID-Type Fuzzy Controller for Grid-Supporting Inverter of Battery in Embedded Small Variable Speed Wind Turbine
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作者 Ferdian Ronilaya Hajime Miyauchi Adi Kurniawan 《Journal of Power and Energy Engineering》 2014年第4期151-160,共10页
Frequency and voltage of embedded variable speed wind turbine (VSWT) driving a permanent magnet synchronous generator (PMSG) is strongly affected by wind speed fluctuations. In practice, power imbalance between supply... Frequency and voltage of embedded variable speed wind turbine (VSWT) driving a permanent magnet synchronous generator (PMSG) is strongly affected by wind speed fluctuations. In practice, power imbalance between supply and demand is also common, especially when VSWT-PMSG is connected to a weak micro grid (MG). If load demand fluctuations become high, isolated MG may be unable to stabilize the frequency and voltage so that battery storage needs to be installed into the MG to adjust energy supply and demand. To allow flexible control of active and reactive power flow from/to battery storage, grid-supporting inverters are used. For a system that contains highly nonlinear components, the use of conventional linear proportional-integral-derivative (PID) controllers may cause system performance deterioration. Additionally, these controllers show slow, oscillating responses, and complex equations are required to obtain optimum responses in other controllers. To cope with these limitations, this paper proposes PID-type fuzzy controller (PIDfc) design to control grid-supporting inverter of battery. To ensure safe battery operating limits, we also propose a new controller scheme called intelligent battery protection (IBP). This IBP is integrated into PIDfc. Several simulation tests are performed to verify the scheme’s effectiveness. The results show that the proposed PIDfc controller exhibits improved performance and acceptable responses, and can be used instead of conventional controllers. 展开更多
关键词 BATTERY PID-Type Fuzzy Controller INVERTER permanent magnet Synchronous Generator (PMSG) Variable Speed wind turbine (VSWT)
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The Multi-Objective Optimization of AFPM Generators with Double-Sided Internal Stator Structures for Vertical Axis Wind Turbines
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作者 Dandan Song Lianjun Zhou +2 位作者 Ziqi Peng Senhua Luo Jun Zhu 《Energy Engineering》 EI 2021年第5期1439-1452,共14页
The axial flux permanent magnet(AFPM)generator with double-sided internal stator structure is highly suitable for vertical axis wind turbines due to its high power density.The performance of the AFPM generator with do... The axial flux permanent magnet(AFPM)generator with double-sided internal stator structure is highly suitable for vertical axis wind turbines due to its high power density.The performance of the AFPM generator with double-sided internal stator structure can be improved by the reasonable design of electromagnetic parameters.To further improve the overall performance of the AFPM generator with double-sided internal stator structure,multivariable(coil widthω_(c),permanent magnet thickness h,pole arc coefficient α_(p) and working air gap l_(g))and multi-objective(generator efficiencyη,total harmonic distortion of the voltage THD and induced electromotive force amplitude EMF)functional relationships are innovatively established.Orthogonal analysis,mean analysis and variance analysis are performed on the influence parameters by combining the Taguchi method and response surface methodology to study the influence degrees of each influence parameter on the optimization objectives to determine the most appropriate electromagnetic parameters.The optimization results are verified by 3D finite element analysis.The optimized APFM generator with double-sided internal stator structure exhibits superior economy,stronger magnetic density,higher efficiency and improved power quality. 展开更多
关键词 wind turbine double-sided internal stator structure multi-objective optimization axial flux permanent magnet generator
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Enhancement of DC-Link Protection of PMSG Based Wind Turbine under Network Disturbance by Using New Buck Controller System
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作者 Linda Sartika Atsushi Umemura +1 位作者 Rion Takahashi Junji Tamura 《Journal of Mechanics Engineering and Automation》 2017年第4期171-179,共9页
Protection system for DC-link circuit of back-to-back converter of PMSG (Permanent Magnet Synchronous Generator) based wind turbine is essential part for the system to ride through a network fault in grid system. Vo... Protection system for DC-link circuit of back-to-back converter of PMSG (Permanent Magnet Synchronous Generator) based wind turbine is essential part for the system to ride through a network fault in grid system. Voltage on the DC-link circuit can be increased significantly due to power unbalance between stator side converter and grid side converter. Increase of DC-link circuit voltage can lead to a damage of IGBT of the converter and control system failure. In this paper performance enhancement of DC-link protection of PMSG based Wind turbine by using new control system of buck converter is proposed. The buck converter is used to control supplied voltage of a breaking resistor to dissipate energy from the wind generator during network disturbance. In order to investigate effectiveness of the proposed DC-link protection system, fault analysis is performed in the simulation study by using PSCAD/EMTDC software program. In addition, comparative analysis between the proposed protection system and the conventional protection system using DC chopper is also performed. 展开更多
关键词 wind farm variable speed wind turbine permanent magnet synchronous generator buck controller.
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Control Strategy of Wind Turbine Based on Permanent Magnet Synchronous Generator and Energy Storage for Stand-Alone Systems 被引量:2
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作者 Fujin Deng Dong Liu +1 位作者 Zhe Chen Peng Su 《Chinese Journal of Electrical Engineering》 CSCD 2017年第1期51-62,共12页
This paper investigates a variable speed wind turbine based on permanent magnet synchronous generator and a full-scale power converter in a stand-alone system.An energy storage system(ESS)including battery and fuel ce... This paper investigates a variable speed wind turbine based on permanent magnet synchronous generator and a full-scale power converter in a stand-alone system.An energy storage system(ESS)including battery and fuel cell-electrolyzer combination is connected to the DC link of the full-scale power converter through the power electronics interface.Wind is the primary power source of the system,the battery and FC-electrolyzer combination is used as a backup and a long-term storage system to provide or absorb power in the stand-alone system,respectively.In this paper,a control strategy is proposed for the operation of this variable speed wind turbine in a stand-alone system,where the generator-side converter and the ESS operate together to meet the demand of the loads.This control strategy is competent for supporting the variation of the loads or wind speed and limiting the DC-link voltage of the full-scale power converter in a small range.A simulation model of a variable speed wind turbine in a stand-alone system is developed using the simulation tool of PSCAD/EMTDC.The dynamic performance of the stand-alone wind turbine system and the proposed control strategy is assessed and emphasized with the simulation results. 展开更多
关键词 Variable speed wind turbine(VSWT) permanent magnet synchronous generator(PMSG) stand-alone system energy storage system(ESS).
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A Review of Direct Driven PMSG for Wind Energy Systems 被引量:1
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作者 Faeka Khater Alaa Omar 《Journal of Energy and Power Engineering》 2013年第8期1592-1603,共12页
This paper presents a comprehensive overview study of the DDPMSG (direct driven permanent magnet synchronous generator) for wind energy generation system. Wind turbine controls are provided. The PMSG (permanent mag... This paper presents a comprehensive overview study of the DDPMSG (direct driven permanent magnet synchronous generator) for wind energy generation system. Wind turbine controls are provided. The PMSG (permanent magnet synchronous generator) is introduced as construction and model. Configurations of different power converters are presented for use with DDPMSG in wind systems at variable speed operation and maximum power capture. Control techniques for the system are discussed for both machine-side and grid-side in details. Grid integration is provided with focus on how to insure power quality of the system and the performance at disturbances. 展开更多
关键词 direct-driven permanent magnet synchronous generator wind turbine power converter control.
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基于滑模变结构的风电机组一次调频算法研究
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作者 李继超 贾梦欣 +3 位作者 陈超波 张彬彬 王坤 杨冰 《科学技术与工程》 北大核心 2024年第12期4998-5005,共8页
针对并网风电场中,经典一次调频控制方法存在抗干扰能力弱、机组易脱网的问题,提出一种基于滑模变结构的风电机组一次调频控制算法。首先,在永磁同步风电机组工作原理的基础上,建立含有大电网的风电机组模型。其次,为了解决传统比例积... 针对并网风电场中,经典一次调频控制方法存在抗干扰能力弱、机组易脱网的问题,提出一种基于滑模变结构的风电机组一次调频控制算法。首先,在永磁同步风电机组工作原理的基础上,建立含有大电网的风电机组模型。其次,为了解决传统比例积分微分(proportional integral differential,PID)控制下抗干扰能力弱的问题、引入经典滑模变结构控制器。然后,针对经典滑模变结构控制器导致执行机构存在抖振较多的缺点,提出一种基于sigmoid函数趋近率的滑模变结构一次调频控制算法。最后,通过MATLAB/Simulink对风电机组一次调频进行建模仿真,并与经典控制算法相比,验证了所提算法的可行性,在风速波动和电网故障的环境下,滑模变结构一次调频控制算法更具有效性。 展开更多
关键词 风电机组 永磁同步发电机(PMSM) 一次调频 滑模变结构控制器
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结合风速预测的直驱风电机组减载调频策略
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作者 王印松 袁环环 《华北电力大学学报(自然科学版)》 CAS 北大核心 2024年第3期101-109,共9页
直驱永磁风电机组常用的减载调频控制策略缺乏对风电机组运行经济性和调频能力的考虑,易导致系统出现调频能力不足或备用功率冗余的问题,对此提出了一种基于变减载率的优化减载调频策略。首先划分不同的风速模式,确立不同模式下的超速... 直驱永磁风电机组常用的减载调频控制策略缺乏对风电机组运行经济性和调频能力的考虑,易导致系统出现调频能力不足或备用功率冗余的问题,对此提出了一种基于变减载率的优化减载调频策略。首先划分不同的风速模式,确立不同模式下的超速与变桨距协调控制方案;其次考虑系统调频能力和发电量两因素,设计函数求取不同工况下的最优减载率;由于风速波动频繁,风机控制具有延迟,因此利用风速预测和滑动窗口法对最优减载率做进一步调整;最后搭建系统仿真模型,通过改进的频率控制动态调整减载率参与系统调频。仿真实验表明,所提控制策略与常用的策略相比在实时风速、负荷扰动下系统频率动态偏差减小、达到最低值的时间延长,风机发电量增加,桨距角变化量减小。该策略能满足调频需求,提升调频质量,减小机械磨损,提高风机运行的经济性。 展开更多
关键词 直驱永磁风电机组 可变减载率 超速控制 变桨距控制 优化减载控制
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并联永磁同步风电机组小干扰稳定性分析 被引量:1
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作者 孙士奇 单俊豪 +1 位作者 仉志华 时振堂 《电机与控制应用》 2024年第3期38-48,共11页
采用平均磁链定向控制多台永磁同步风电机组进而构造分频发电系统是未来陆上尤其是海上风电的汇集方案之一,但对该模式下多台风电机组间稳定性的研究鲜有文献涉及。针对此问题,基于特征值分析法,研究了平均磁链定向控制的永磁同步风电... 采用平均磁链定向控制多台永磁同步风电机组进而构造分频发电系统是未来陆上尤其是海上风电的汇集方案之一,但对该模式下多台风电机组间稳定性的研究鲜有文献涉及。针对此问题,基于特征值分析法,研究了平均磁链定向控制的永磁同步风电机组之间的小干扰稳定性。首先,基于高压大容量直驱式永磁同步风电机组的分频集电系统拓扑结构,建立了适用于小干扰稳定分析的风电系统的数学模型;其次,通过辨识振荡模态并分析模态参与因子确定了影响系统振荡的主控因素,通过绘制根轨迹分析了主控因素参数变化对系统振荡的影响,并发现系统振荡受发电机电感、电阻和直流电容参数的影响最大;最后,通过时域仿真验证了研究结论的正确性。 展开更多
关键词 海上风电 永磁同步风电机组 平均磁链定向控制 小干扰稳定 特征值分析
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风储一体化系统无功响应技术研究
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作者 张宝锋 宋子琛 +6 位作者 王剑彬 高斌 吴叙锐 陈宝桥 童博 朱尤省 赵勇 《热力发电》 CAS CSCD 北大核心 2024年第8期135-142,共8页
针对永磁直驱风机与分散式混合储能系统提出了联合无功控制策略。首先对永磁直驱风机以及储能系统的无功调节能力进行分析,确定永磁直驱风机与储能系统通过变流器控制均可参与无功调节;其次提出无功控制策略,从信号接收、初次分配、内... 针对永磁直驱风机与分散式混合储能系统提出了联合无功控制策略。首先对永磁直驱风机以及储能系统的无功调节能力进行分析,确定永磁直驱风机与储能系统通过变流器控制均可参与无功调节;其次提出无功控制策略,从信号接收、初次分配、内部分配等方面进行分析,在初次分配中采用了等裕度分配方法,在内部分配中考虑了以储能优先出力进行比例分配;最后通过仿真验证了该策略的有效性,该策略可充分利用永磁直驱风机与储能系统的无功容量能力对电网的电压提供有效支撑。 展开更多
关键词 永磁直驱风机 风储一体化系统 分散式储能 无功分配 电压调节
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包含串补的并网直驱风电场振荡稳定性及可行域分析 被引量:1
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作者 季一宁 王海风 《电工技术学报》 EI CSCD 北大核心 2024年第3期686-698,共13页
串补装置广泛存在于电力系统中,含串补的大规模直驱永磁同步发电机(PMSG)构成的风电场并网系统存在次同步振荡范畴的小干扰失稳风险。针对上述现象,该文首先构建包含PMSG网侧换流器控制模型、锁相环控制模型以及含有串补装置的线路动态... 串补装置广泛存在于电力系统中,含串补的大规模直驱永磁同步发电机(PMSG)构成的风电场并网系统存在次同步振荡范畴的小干扰失稳风险。针对上述现象,该文首先构建包含PMSG网侧换流器控制模型、锁相环控制模型以及含有串补装置的线路动态模型的并网系统全阶模型及等效模型。然后在不同的时间尺度下对等效模型进行化简,运用劳斯-赫尔维茨判据求得各时间尺度场景下并网系统的稳定性判据,从机理上解释了并网系统中各运行参数和控制参数之间的联系及其对系统稳定性的影响。进一步通过一个包含15台PMSG风电机组的并网风电场验证了该文推导的稳定判据的正确性。最后基于可行域的分析,直观地讨论了串补线路和其他参数对系统稳定性的影响。 展开更多
关键词 永磁直驱风机 串补 小干扰稳定性 稳定判据 可行域
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某大型永磁直驱风力发电机低挥发份型绝缘系统开发及评估
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作者 李术林 夏静 +2 位作者 胡道雄 胡葆福 刘振清 《大电机技术》 2024年第4期69-80,共12页
传统的风力发电机绝缘系统在真空压力浸渍工序中,会产生较多的挥发物排放,极大地污染了环境,亟需开发一款生产过程中低挥发份的绝缘系统,在满足风电高可靠性要求的前提下,解决空气污染问题。本文通过对风力发电机组全运行工况和设计边... 传统的风力发电机绝缘系统在真空压力浸渍工序中,会产生较多的挥发物排放,极大地污染了环境,亟需开发一款生产过程中低挥发份的绝缘系统,在满足风电高可靠性要求的前提下,解决空气污染问题。本文通过对风力发电机组全运行工况和设计边界的分析,对应力因子进行了全范围筛选和调研。从TEAM四种类型的应力中确定了关键影响因子和劣化参数水平,其中应力关键影响因子是热机械应力和潮湿应力。然后,构思与设计了模拟试验规程,将新开发的绝缘系统与已经运行超过10年的基准绝缘系统进行平行对照试验,将对照结果作为横向判定依据,同时设定最低绝对值指标作为纵向性能标准。在低挥发绝缘系统的局部模型经历了12周期冷热冲击及浸水试验后,对其电气性能和工艺匹配性进行评估,得出该绝缘系统可耐受热机械应力和潮湿应力的结论,且发现在该应力和热态环境下的电气绝缘性能等同甚至优于基准绝缘结构。 展开更多
关键词 永磁电机 风力发电机 低挥发份 绝缘系统 设计评估
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基于VSG的永磁风力发电机高/低电压穿越研究
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作者 孔令清 何山 +3 位作者 董新胜 李骥 杨定乾 胡帅 《电气传动》 2024年第3期30-37,共8页
为解决永磁风力发电机在高/低电压穿越期间并网点电压和频率波动问题,提出采用虚拟同步发电机(VSG)控制网侧变流器,提高永磁风力发电系统惯性和阻尼,使其在电压穿越期间支撑并网点电压和频率的恢复。通过VSG的有功-频率调节作用,根据系... 为解决永磁风力发电机在高/低电压穿越期间并网点电压和频率波动问题,提出采用虚拟同步发电机(VSG)控制网侧变流器,提高永磁风力发电系统惯性和阻尼,使其在电压穿越期间支撑并网点电压和频率的恢复。通过VSG的有功-频率调节作用,根据系统频率变化量,调节网侧变流器有功功率输出能力,在转动惯量和阻尼系数的作用下实现对频率波动的抑制;调节VSG的无功功率指令实现对虚拟电动势的调节,使其在电压穿越期间为电网提供动态无功支撑,对并网点电压进行调节。并有效抑制连续高/低电压穿越期间系统功率、频率持续性波动,提高系统在连续高/低电压穿越期间的并网稳定性。最后,通过系统仿真验证所提控制策略的有效性。 展开更多
关键词 永磁风力发电机 虚拟同步发电机 高/低电压穿越 频率波动 连续高/低电压穿越
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基于决策树算法的风力发电机组偏航控制系统设计 被引量:1
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作者 何修成 覃东东 +2 位作者 赵俊杰 田克琴 贺遇烗 《机械与电子》 2024年第6期76-80,共5页
风力发电机组偏航系统对风力控制方面效果欠佳,为提升风能利用率与发电效益,将决策树作为基本算法,构建风力发电机组偏航控制系统。整合信号采集、位置伺服和偏航传动等物理装置单元,建立偏航控制系统的硬件结构。基于决策树算法,综合... 风力发电机组偏航系统对风力控制方面效果欠佳,为提升风能利用率与发电效益,将决策树作为基本算法,构建风力发电机组偏航控制系统。整合信号采集、位置伺服和偏航传动等物理装置单元,建立偏航控制系统的硬件结构。基于决策树算法,综合考虑滞后性、机械损耗等影响因素,设计偏航控制规则提取、叶轮侧对风向及自动解缆等系统的软件控制程序。将系统应用于搭建的大型风力发电机组仿真模型中开展实验,通过对比风向角度呈线性递增过程中,控制前后偏航电机启动脉冲、发电机功率与风力机转速以及偏航角度等模拟数据发现,各项参数均与风向角度有较强关联性。偏航角度的曲线斜率无限接近1,与风向角度的等量线性关系显著。结果表明,该系统能提升机组的发电效率与偏航控制效率,能快速、精准地实现风力发电机组偏航控制。 展开更多
关键词 决策树算法 永磁同步电动机 最高增益率 风力发电机组 偏航控制
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直驱风电场并网系统宽频振荡小干扰稳定判据及稳定性分析
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作者 季一宁 王海风 《华北电力大学学报(自然科学版)》 CAS 北大核心 2024年第3期30-39,共10页
并网电力系统中多直驱风电机组(direct-driven permanent magnet synchronous generator,PMSG)风电场可能出现次同步/超同步振荡现象,为深入的研究直驱风电场并网系统的宽频振荡,文章对多PMSG风电场并网系统进行了一系列研究。首先,针... 并网电力系统中多直驱风电机组(direct-driven permanent magnet synchronous generator,PMSG)风电场可能出现次同步/超同步振荡现象,为深入的研究直驱风电场并网系统的宽频振荡,文章对多PMSG风电场并网系统进行了一系列研究。首先,针对次同步振荡频率场景和超同步振荡频率场景分别建立了单台PMSG的简化数学模型。然后,结合风电场的等效降阶法求解了多PMSG风电场并网系统的特征方程,运用劳斯赫尔维兹判据得出各频率场景下并网系统中风电场的稳定性判据,从解析的角度分析了并网系统中各运行参数对系统稳定性的影响。最后,通过一个可扩展的多PMSG风电场并网系统验证了文中提出的风电场等效降阶模型下的稳定判据是可行有效的,并直观的讨论了并网系统中PMSG风电机组数量以及长线路等效电抗变化对并网系统稳定性的影响。 展开更多
关键词 直驱永磁同步发电机 风电场 小干扰稳定 宽频振荡 稳定判据
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海上半直驱永磁风力发电机电磁设计与温度场分析
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作者 段志强 何庆峰 +1 位作者 项尚 刘闯闯 《微电机》 2024年第4期66-70,共5页
以海上16 MW半直驱永磁风力发电机作为研究对象,基于有限元分析方法针对不等气隙条件下电磁特性、冷却结构设计及温度场仿真展开研究,结果表明优化后的电机能够合理地降低电机损耗,提高电磁性能,水套冷却和空水冷却相结合的冷却方式散... 以海上16 MW半直驱永磁风力发电机作为研究对象,基于有限元分析方法针对不等气隙条件下电磁特性、冷却结构设计及温度场仿真展开研究,结果表明优化后的电机能够合理地降低电机损耗,提高电磁性能,水套冷却和空水冷却相结合的冷却方式散热效果良好。通过型式试验,验证了电机设计的合理性。该电机的设计对海上永磁风力发电机大型化的发展发挥了重要作用。 展开更多
关键词 半直驱永磁风力发电机 电磁特性 冷却结构 温度场
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齿轮箱油对发电机影响研究及应用
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作者 石胜杰 李延慧 +1 位作者 李斐斐 何海涛 《微电机》 2024年第2期50-55,共6页
中速永磁风力发电机组的发电机与齿轮箱高度集成,共用高速轴和端盖。若端盖密封失效会导致油液、油雾进入发电机内部。由于端盖密封的寿命未经过长期老化验证,因此亟需研究油液、油雾对发电机绕组绝缘和防腐等功能的影响。然而,齿轮箱... 中速永磁风力发电机组的发电机与齿轮箱高度集成,共用高速轴和端盖。若端盖密封失效会导致油液、油雾进入发电机内部。由于端盖密封的寿命未经过长期老化验证,因此亟需研究油液、油雾对发电机绕组绝缘和防腐等功能的影响。然而,齿轮箱漏油程度等环境工况无法量化,故在研究过程中通过常规试验项目提高试验严苛等级,提出了“高温长时油膜+高温长时浸油”的发电机绝缘及防腐耐油测试方法,完成了发电机绝缘的系统级防腐体系的油雾耐受性试验,为发电机的可靠性设计提供了重要依据。 展开更多
关键词 中速永磁发电机 风力发电机组 绝缘及防腐 耐油测试
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基于自抗扰控制策略的直接转矩风力发电系统研究
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作者 高宇 张继勇 《科技创新与应用》 2024年第3期40-42,46,共4页
针对直接转矩控制的永磁直驱风力发电系统中系统未能较好地跟踪最大功率点的问题,提出将自抗扰控制策略加入风力发电系统机侧控制结构中以提高系统性能。基于风力机和永磁同步风力发电机数学模型,结合自抗扰控制的基本模型构建发电机自... 针对直接转矩控制的永磁直驱风力发电系统中系统未能较好地跟踪最大功率点的问题,提出将自抗扰控制策略加入风力发电系统机侧控制结构中以提高系统性能。基于风力机和永磁同步风力发电机数学模型,结合自抗扰控制的基本模型构建发电机自抗扰速度环,最后以Matlab/Simulink软件对所提控制策略进行仿真分析,对比传统PI控制直接转矩风电系统,自抗扰控制策略的引入可提升系统整体的抗干扰能力和跟踪性能。 展开更多
关键词 风力发电 直接转矩控制 最大功率跟踪 自抗扰 风力机 永磁同步风力发电机
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