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Design and analysis of dual-mode structure repetitive control based hybrid current regulation scheme for active power filters
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作者 邹志翔 王政 程明 《Journal of Southeast University(English Edition)》 EI CAS 2013年第4期407-413,共7页
An all-digital hybrid current regulation scheme for the single-phase shunt active power filter (APF) is presented. The proposed hybrid current control scheme integrates the deadbeat control and the dual-mode structu... An all-digital hybrid current regulation scheme for the single-phase shunt active power filter (APF) is presented. The proposed hybrid current control scheme integrates the deadbeat control and the dual-mode structure repetitive control (DMRC) so that it can offer superior steady-state performance and good transient features. Unlike the conventional schemes, the proposed scheme-based APF can compensate both the odd and the even order harmonics in grid. The detailed design criteria and the stability analysis of the proposed hybrid current controller are presented. Moreover, an improved structure which incorporates the proposed hybrid controller and the resonant controller for tracking specific order harmonics is given. The relationships between the resonant controller and different repetitive control schemes are discussed. Experimental results verify the effectiveness and advantages of the proposed hybrid control scheme. 展开更多
关键词 active power filter dual-mode structure repetitive control (DMRC) current control harmonic compensation resonant controller
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Adaptive linear active disturbance-rejection control strategy reduces the impulse current of compressed air energy storage connected to the grid 被引量:1
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作者 Jianhui Meng Yaxin Sun Zili Zhang 《Global Energy Interconnection》 EI CSCD 2024年第5期577-589,共13页
The merits of compressed air energy storage(CAES)include large power generation capacity,long service life,and environmental safety.When a CAES plant is switched to the grid-connected mode and participates in grid reg... The merits of compressed air energy storage(CAES)include large power generation capacity,long service life,and environmental safety.When a CAES plant is switched to the grid-connected mode and participates in grid regulation,using the traditional control mode with low accuracy can result in excess grid-connected impulse current and junction voltage.This occurs because the CAES output voltage does not match the frequency,amplitude,and phase of the power grid voltage.Therefore,an adaptive linear active disturbance-rejection control(A-LADRC)strategy was proposed.Based on the LADRC strategy,which is more accurate than the traditional proportional integral controller,the proposed controller is enhanced to allow adaptive adjustment of bandwidth parameters,resulting in improved accuracy and response speed.The problem of large impulse current when CAES is switched to the grid-connected mode is addressed,and the frequency fluctuation is reduced.Finally,the effectiveness of the proposed strategy in reducing the impact of CAES on the grid connection was verified using a hardware-in-the-loop simulation platform.The influence of the k value in the adaptive-adjustment formula on the A-LADRC was analyzed through simulation.The anti-interference performance of the control was verified by increasing and decreasing the load during the presynchronization process. 展开更多
关键词 Compressed air energy storage Linear active disturbance-rejection control Smooth grid connection Impulse current Adaptive adjustment of bandwidth parameters
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A novel digital control strategy of three-phase shunt active power filter under non-ideal mains voltages 被引量:1
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作者 胡志坤 陈志文 +2 位作者 华长春 王会海 丁家峰 《Journal of Central South University》 SCIE EI CAS 2011年第6期2021-2030,共10页
A novel control strategy for three-phase shunt active power filter (SAPF) was proposed to improve its performance under non-ideal mains voltages. The approach was inspired by our finding that the classic instantaneous... A novel control strategy for three-phase shunt active power filter (SAPF) was proposed to improve its performance under non-ideal mains voltages. The approach was inspired by our finding that the classic instantaneous reactive power theory based algorithm was unsatisfactory in terms of isolating positive sequence fundamental active components exactly under non-ideal mains voltages. So, a modified ip-iq reference current calculation method was presented. With usage of the new method, not only the positive sequence but also the fundamental active current components can be accurately isolated from load current. A deadbeat closed-loop control model is built in order to eliminate both delay error and tracking error between reference voltages and compensation voltages under unbalanced and distorted mains voltages. Computer simulation results show that the proposed strategy is effective with better tracking ability and lower total harmonic distortion (THD). The strategy is also applied to a 10 kV substation with a local electrolysis manganese plant injecting a large amount of harmonics into the power system, and is proved to be more practical and efficient. 展开更多
关键词 non-ideal mains voltage deadbeat control fundamental positive sequence active current shunt active power filter
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A Improved Shunt-hybrid-type Active Power Filter and Its Control Method 被引量:2
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作者 ZHOU Ke WANG Kai +2 位作者 LIU Lu TAN Qi CHU Hongbo 《中国电机工程学报》 EI CSCD 北大核心 2012年第30期I0010-I0010,共1页
关键词 混合型有源电力滤波器 并联 控制 注入电路 电能质量 谐波电流 谐波注入 电流注入
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Enhanced Repetitive Control with Phase Compensation based ADRC for Harmonic Suppression in Magnetically Suspended Rotor under Strong Gyroscopic Effects
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作者 Yuxiang Zhu Fanqiang Gao +2 位作者 Kaiyu Shan Zixin Li Yaohua Li 《CES Transactions on Electrical Machines and Systems》 2026年第1期97-108,共12页
Magnetically suspended rotor(MSR)systems have gained widespread industrial adoption owing to their frictionless operation and exceptional reliability.However,harmonic current generated by unbalanced mass and sensor ru... Magnetically suspended rotor(MSR)systems have gained widespread industrial adoption owing to their frictionless operation and exceptional reliability.However,harmonic current generated by unbalanced mass and sensor runout threatens the system stability.Repetitive control(RC)effectively suppresses harmonic current,but its parameter design relies on an accurate decoupling model of the system.The decoupling model for the MSR system is often simplified to a second-order linear system.Such a simplification,however,necessitates explicit consideration of system uncertainties caused by unmodeled nonlinearities during the RC design process.Especially under strong gyroscopic effects,the parameter uncertainty is further increased.In this article,an active disturbance rejection controller(ADRC)based on phase compensation(PC)is used to suppress coupling disturbances and improve the control performance of harmonic suppression.Firstly,the dynamic model of the MSR system is established,and both internal and external disturbances are thoroughly analyzed.Then,the RC-PCADRC scheme is designed,integrating the complementary strengths of RC and ADRC,with a particular emphasis on PC to improve stability margins.A comprehensive stability analysis is conducted,along with parameter optimization guidelines.Finally,the effectiveness and superiority of the proposed scheme are validated through both simulations and experiments. 展开更多
关键词 Magnetically suspended rotor(MSR) Harmonic current Gyroscopic effects Repetitive control(RC) active disturbance rejection controller(ADRC)
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Online Learning Control for Harmonics Reduction Based on Current Controlled Voltage Source Power Inverters 被引量:3
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作者 Naresh Malla Ujjwol Tamrakar +2 位作者 Dipesh Shrestha Zhen Ni Reinaldo Tonkoski 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2017年第3期447-457,共11页
Nonlinear loads in the power distribution system cause non-sinusoidal currents and voltages with harmonic components.Shunt active filters(SAF) with current controlled voltage source inverters(CCVSI) are usually used t... Nonlinear loads in the power distribution system cause non-sinusoidal currents and voltages with harmonic components.Shunt active filters(SAF) with current controlled voltage source inverters(CCVSI) are usually used to obtain balanced and sinusoidal source currents by injecting compensation currents.However,CCVSI with traditional controllers have a limited transient and steady state performance.In this paper,we propose an adaptive dynamic programming(ADP) controller with online learning capability to improve transient response and harmonics.The proposed controller works alongside existing proportional integral(PI) controllers to efficiently track the reference currents in the d-q domain.It can generate adaptive control actions to compensate the PI controller.The proposed system was simulated under different nonlinear(three-phase full wave rectifier) load conditions.The performance of the proposed approach was compared with the traditional approach.We have also included the simulation results without connecting the traditional PI control based power inverter for reference comparison.The online learning based ADP controller not only reduced average total harmonic distortion by 18.41%,but also outperformed traditional PI controllers during transients. 展开更多
关键词 Adaptive dynamic programming(ADP) current controlled voltage source power inverter(CCVSI) online learning based controller neural networks shunt active filter(SAF) total harmonic distortion(THD)
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Predictive current control system of PMSM based on LADRC 被引量:5
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作者 Wang Xiaopeng Zhao Jun +1 位作者 Wang Bohui Li Baomin 《Journal of Southeast University(English Edition)》 EI CAS 2022年第3期227-234,共8页
For a permanent magnet synchronous motor(PMSM)model predictive current control(MPCC)system,when the speed loop adopts proportional-integral(PI)control,speed regulation is easily affected by motor parameters,resulting ... For a permanent magnet synchronous motor(PMSM)model predictive current control(MPCC)system,when the speed loop adopts proportional-integral(PI)control,speed regulation is easily affected by motor parameters,resulting in the inability to balance the system robustness and dynamic performance.A PMSM optimal control strategy combining linear active disturbance rejection control(LADRC)and two-vector MPCC(TV-MPCC)is proposed.Firstly,a mathematical model of a PMSM is presented,and the PMSM TV-MPCC model is developed in the synchronous rotation coordinate system.Secondly,a first-order LADRC controller composed of a linear extended state observer and linear state error feedback is designed to reduce the complexity of parameter tuning while linearly simplifying the traditional active disturbance rejection control(ADRC)structure.Finally,the conventional PI speed regulator in the motor speed control system is replaced by the designed LADRC controller.The simulation results show that the speed control system using LADRC can effectively deal with the changes in motor parameters and has better robustness and dynamic performance than PI control and similar methods.The system has a fast motor speed response,small overshoot,strong anti-interference,and no steady-state error,and the total harmonic distortion is reduced. 展开更多
关键词 permanent magnet synchronous motor(PMSM) two-vector model predictive current control linear active disturbance rejection control speed control system
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Improved PLL Tuning of Shunt Active Power Filter for Grid Connected Photo Voltaic Energy System
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作者 Rajmohan Rajalakshmi Vairamani Rajasekaran 《Circuits and Systems》 2016年第10期3063-3080,共18页
This research work brings out the unique predictive current control method for attaining an efficient grid connected Photo Voltaic (PV) system by Shunt Active Power Filter (SAPF) as grid connected converter. The major... This research work brings out the unique predictive current control method for attaining an efficient grid connected Photo Voltaic (PV) system by Shunt Active Power Filter (SAPF) as grid connected converter. The major objective of the research work is to address the presence of Direct Current (DC) component, frequency improvement, quicker theta response, voltage magnitude estimation in the input signal of the Phase Locked Loop (PLL) which is challenging. This work focuses on tuning the PLL block (K<sub>p</sub>, K<sub>i</sub>, K<sub>v</sub> and K<sub>o</sub>) through Artificial Bee Colony (ABC) optimization algorithm. The proposed ABC based modified three-phase PLL method is based on adding a new loop inside the PLL structure. In power converters, ABC algorithm is used to select the optimal switching states. The voltage vector which minimizes a cost optimization function is selected. Simulation is carried out for both balanced and unbalanced system and the results validate that the performance of the proposed approach is better in terms of harmonic compensation as per the IEEE standards within ±5%, power factor improvement of the system, quicker theta tracking and suppression of frequency jump with the interconnection of PV system. 展开更多
关键词 Shunt active Filter Phase Locked Loop Artificial Bee Colony current control Method PV System
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An Efficient Particle Swarm Optimization Technique for 4-Leg Shunt Active Power Filter
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作者 V. Parimala S. Chenthur Pandian D. Ganeshkumar 《Circuits and Systems》 2016年第8期1546-1559,共14页
This paper describes the mitigation of harmonics in source and neutral current in three phase four wire system based on 4-leg shunt active power filter under balanced and unbalanced load conditions. Particle Swarm Opt... This paper describes the mitigation of harmonics in source and neutral current in three phase four wire system based on 4-leg shunt active power filter under balanced and unbalanced load conditions. Particle Swarm Optimization (PSO) and conventional Proportional Integral (PI) controller are used as control techniques to analyze the control performance of 4-leg shunt active power filter. The synchronous reference frame (SRF) method is used to extract reference current in 4-leg shunt active filter. The Hysteresis Current Controller (HCC) is used to generate gate pulses for Voltage Source Inverter (VSI) based 4-leg shunt active power filter. The proposed PSO technique gives less percentage of Total Harmonic Distortion (THD) value in source and neutral current and settling time of the DC capacitor voltage compared to conventional PI controller technique. The model of the proposed system performance was validated using MATLAB/Simulink environment. 展开更多
关键词 Hysteresis current controller Particle Swarm Optimization Shunt active Power Filter SRF Method
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基于拓展移相控制的DAB最小电流应力分段优化控制策略
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作者 谭兴国 李超猛 +2 位作者 冯高明 赵鑫 孙亮亮 《电力工程技术》 北大核心 2026年第3期127-138,共12页
针对双有源桥(dual active bridge,DAB)电路在电动汽车充放电能量转换过程中存在的传输效率低的问题,文中提出一种结合微分极值法与分段控制的最小电流应力优化控制策略。该策略在满足软开关约束的前提下,优化电流应力与抑制回流功率,... 针对双有源桥(dual active bridge,DAB)电路在电动汽车充放电能量转换过程中存在的传输效率低的问题,文中提出一种结合微分极值法与分段控制的最小电流应力优化控制策略。该策略在满足软开关约束的前提下,优化电流应力与抑制回流功率,从而有效提升传输效率。首先,以功率正向传输为例,推导拓展移相(extended phase shift,EPS)控制在两种工作模态下实现开关管软开关的条件,并分析回流功率的产生机理,阐述减小电流应力对抑制回流功率的作用;然后,基于微分极值法推导最小电流应力的最优移相比组合,并结合不同模态下软开关范围进行分段控制;最后,实验结果表明,在电压传输比大于1时,该最小电流应力优化策略在全功率范围内实现所有开关管软开关的同时,可以有效降低电流应力、抑制回流功率、提升传输效率。在电压传输比小于1时,该策略虽仍可降低电流应力,但并不能实现所有开关管零电压开通。 展开更多
关键词 双有源桥(DAB) 拓展移相(EPS) 软开关 最小电流应力 分段控制 传输效率
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考虑限流的构网型变流器及角频率PID补偿器暂态稳定性分析
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作者 颜湘武 胡演 +2 位作者 蔡光 贾焦心 邵尹池 《电力系统自动化》 北大核心 2026年第6期87-99,共13页
大扰动故障时有限过载能力的构网型变流器可能出现暂态失稳问题。首先,分析有功环暂态稳定性改造思路,推导了有功环参变量对暂态功角和频率稳定性的作用,得出了较为统一的角频率比例-积分-微分(PID)补偿器,该方法分别通过比例、积分和... 大扰动故障时有限过载能力的构网型变流器可能出现暂态失稳问题。首先,分析有功环暂态稳定性改造思路,推导了有功环参变量对暂态功角和频率稳定性的作用,得出了较为统一的角频率比例-积分-微分(PID)补偿器,该方法分别通过比例、积分和微分系数修正阻尼、功率指令和惯量,改善功角动态过程并构造功角平衡点以提高变流器暂态稳定性能;其次,考虑了限流幅值对变流器的影响,揭示了限流幅值恶化功角曲线的内在机制;随后,针对补偿器系数暂态稳定性分析比例和微分系数适用于功角平衡点存在的故障穿越,积分系数构造平衡点适用于永久故障穿越;同时,提出了考虑限流的补偿器参数设计流程,突出了限流削弱补偿器参数大小的潜在联系,并以吸引域大小和极限切除时间长短的暂态稳定性指标定性描述;最后,通过仿真和实验对比几种方案,验证了角频率PID补偿器提高构网型变流器暂态稳定性能的有效性。 展开更多
关键词 构网型变流器 有功环 限流幅值 暂态稳定性 比例-积分-微分补偿器 功角曲线 故障穿越
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一种提高LCL型并网逆变器鲁棒性的延时补偿策略
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作者 鲁晓艳 张继红 +2 位作者 孙旭 颉新春 吴振奎 《电工电能新技术》 北大核心 2026年第2期67-77,共11页
在弱电网环境下,数字控制的固有延时会对LCL型逆变器有源阻尼的谐振抑制策略产生不利影响,削弱有源阻尼性能、降低逆变系统的稳定性。对于此问题,本文首先基于频率特性曲线分析了控制延时对逆变系统产生的具体影响,并有针对性地提出了... 在弱电网环境下,数字控制的固有延时会对LCL型逆变器有源阻尼的谐振抑制策略产生不利影响,削弱有源阻尼性能、降低逆变系统的稳定性。对于此问题,本文首先基于频率特性曲线分析了控制延时对逆变系统产生的具体影响,并有针对性地提出了有源阻尼鲁棒延时补偿的控制方法,即通过加入补偿环节消除电容电流回路中的时间延迟,解决谐振抑制策略失效的问题,并在前向通道中引入校正环节解决相位滞后问题;对于补偿环节中未知的电网阻抗采用注入非特征次谐波的方法计算测量,可以更加准确地对有源阻尼环节进行补偿;在此基础上,根据稳定裕度约束条件分别对电流控制器和有源阻尼参数进行参数优化,运用阻抗稳定判据分析了改进前、后的系统稳定性。最后,通过Matlab/Simulink仿真分析和实验验证,证明了所提策略的有效性。 展开更多
关键词 弱电网 数字控制延时 电容电流有源阻尼 相位超前校正 稳定裕度
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基于模糊自抗扰的光储预同步虚拟同步发电机并网策略 被引量:1
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作者 李涛 张春 胡添诚 《发电技术》 2026年第1期111-121,共11页
【目的】虚拟同步发电机(virtual synchronous generator,VSG)因其能够调节逆变器并网中的阻尼和惯性而得到广泛应用。但在实际工况下,线路普遍存在阻抗以及离/并网预同步过程中容易出现电压电流畸变。为此,对VSG的控制结构和预同步方... 【目的】虚拟同步发电机(virtual synchronous generator,VSG)因其能够调节逆变器并网中的阻尼和惯性而得到广泛应用。但在实际工况下,线路普遍存在阻抗以及离/并网预同步过程中容易出现电压电流畸变。为此,对VSG的控制结构和预同步方法进行了优化。【方法】采用光伏发电系统和混合储能代替传统的直流源用于模拟实际情况,并在传统VSG模型中增加虚拟有功和虚拟电流来补偿并网过程中存在的相位差和幅值差,以实现频率和电压的调节。针对传统线性自抗扰控制(linear active disturbance rejection control,LADRC)系统中的PD控制参数选定问题,采用模糊控制在线自适应整定PD控制参数,并将LADRC引入有功环进行二次调频,以增加系统的鲁棒性。【结果】通过MATLAB/Simulink的仿真验证了该方法设计的可行性,表明预同步控制系统运行效果优越。【结论】模糊LADRC可以快速实现平滑并网,抑制网侧电流冲击和降低频率振荡,从而提高并网逆变器-电网交互系统的稳定性。 展开更多
关键词 虚拟同步发电机(VSG) 微电网 分布式能源 预同步 阻抗 虚拟电流 模糊线性自抗扰控制 光储系统
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基于死区重叠现象的双有源桥式变换器控制策略
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作者 王桥 刘闯 《电气工程学报》 北大核心 2026年第1期241-250,共10页
随着双有源桥(Dual active bridge,DAB)变换器工作频率的不断提高,开关损耗对传输效率的影响也在不断增加。DAB变换器通过采用合适的软开关控制策略,来尽可能实现全开关器件的软开关,但轻载工况下的死区重叠现象使软开关条件产生了冲突... 随着双有源桥(Dual active bridge,DAB)变换器工作频率的不断提高,开关损耗对传输效率的影响也在不断增加。DAB变换器通过采用合适的软开关控制策略,来尽可能实现全开关器件的软开关,但轻载工况下的死区重叠现象使软开关条件产生了冲突,这种现象在高频轻载条件下尤为突出。为了提高DAB变换器在高频轻载条件下的能量传输效率,对轻载条件下的死区重叠现象进行了分析,结合缓冲电容对死区过程的影响,提出了以电流应力为优化目标的三自由度控制策略。最后,通过试验验证了分析过程的正确性和所提控制策略的有效性。 展开更多
关键词 双有源桥变换器 死区重叠现象 电流应力优化控制策略 轻载
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低电压穿越期间新能源并网系统静态失稳机理及改进控制方法
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作者 金伟涛 娄云天 +3 位作者 汤波 谢锣辰 单永鹏 辛焕海 《电力自动化设备》 北大核心 2026年第3期196-204,共9页
低电压穿越期间新能源的电流控制特性不合理将导致并网系统发生静态失稳。为此,基于新能源并网系统的静态等值数学模型,揭示了新能源低电压穿越控制期间导致并网系统失稳的分岔类型,分析了电网强度及新能源电流控制参数对分岔形态演化... 低电压穿越期间新能源的电流控制特性不合理将导致并网系统发生静态失稳。为此,基于新能源并网系统的静态等值数学模型,揭示了新能源低电压穿越控制期间导致并网系统失稳的分岔类型,分析了电网强度及新能源电流控制参数对分岔形态演化的作用规律;根据控制环节的动态特性,明确了低电压穿越期间并网系统的失稳形态,并提出了有效防止系统失稳的新能源有功电流改进控制方法。时域仿真结果验证了所提控制方法保持低电压穿越期间并网系统稳定运行的有效性。 展开更多
关键词 新能源并网系统 静态稳定 低电压穿越控制 分岔理论 电网强度 影响规律 有功电流控制
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基于电机驱动系统的DAB变换器控制优化方法
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作者 李东东 刘晨亮 +1 位作者 吉裕晖 孙震威 《微特电机》 2026年第1期61-68,共8页
针对微特电机驱动控制系统中,双有源桥(dual active bridge,DAB)变换器在高频调制过程中易产生较大电流应力,导致器件温升高、寿命衰减及负载扰动下系统稳定性下降等问题,本文提出一种改进型双移相优化调制策略。该方法基于双有源桥拓扑... 针对微特电机驱动控制系统中,双有源桥(dual active bridge,DAB)变换器在高频调制过程中易产生较大电流应力,导致器件温升高、寿命衰减及负载扰动下系统稳定性下降等问题,本文提出一种改进型双移相优化调制策略。该方法基于双有源桥拓扑,建立双移相调制下的功率传输模型与电流应力数学模型,采用拉格朗日乘数法求解最优移相比组合,并进一步推导多功率场景下的电流应力解析表达式;在控制器设计方面,引入电感电流内环补偿机制,提高系统对电机驱动过程中负载变化的动态响应能力。MATLAB/Simulink仿真结果表明,该方法在典型微特电机负载工况下能有效降低变换器的电流应力,缩短暂态响应时间,并改善输出电压纹波,对提升微特电机控制系统的稳态与暂态性能具有良好效果,为高效能电机驱动供电模块的优化设计提供理论依据。 展开更多
关键词 微特电机 双有源桥拓扑 最优移相比 电流内环控制 暂态响应优化
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大规模风电经柔直送出系统交流汇集线路测距式纵联保护方案
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作者 陈瑞 黄天啸 +1 位作者 张思琪 张璐 《电力系统及其自动化学报》 北大核心 2026年第3期45-55,共11页
大规模风电经柔直送出系统交流汇集线路,因两侧换流器采用负序电流抑制策略导致不对称故障特征微弱,为解决现有工频量交流保护性能不足的问题,提出一种适用于大规模风电经柔直送出系统交流汇集线路的测距式纵联保护方案。首先剖析现有... 大规模风电经柔直送出系统交流汇集线路,因两侧换流器采用负序电流抑制策略导致不对称故障特征微弱,为解决现有工频量交流保护性能不足的问题,提出一种适用于大规模风电经柔直送出系统交流汇集线路的测距式纵联保护方案。首先剖析现有距离保护不正确动作机理,结合不同故障下的等值序网图及边界约束方程,利用双端电气量信息及实虚部分离算法,在送端换流站采用主动负序电流控制策略时,分析送端换流站侧保护安装处至故障位置的距离比例系数解析式。然后,基于该故障距离比例系数构造高灵敏保护启动判据,实现区内外故障的判断。最后,在PSCAD/EMTDC平台上搭建双端柔直送出系统仿真模型。仿真结果表明,所提保护方案可以准确判别区内外故障,同时不受负序电流注入幅值、线路长度及过渡电阻的影响。 展开更多
关键词 柔性直流输电 交流汇集线路 测距式保护 主动负序电流控制 故障距离比例系数
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基于海鸥算法的电力系统谐振自适应抑制
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作者 杨康 倪杰 +2 位作者 周航 李蓝青 李言 《电子设计工程》 2026年第5期137-141,共5页
为了在降低电力系统损耗的同时有效控制系统谐振,提出基于海鸥算法的电力系统谐振自适应抑制方法。利用并联式有源滤波器(APF)检测电力系统中的低次谐波,实时监测并反馈滤波电容中的电流变化,生成反向补偿电流。构建以最大化抑制输出响... 为了在降低电力系统损耗的同时有效控制系统谐振,提出基于海鸥算法的电力系统谐振自适应抑制方法。利用并联式有源滤波器(APF)检测电力系统中的低次谐波,实时监测并反馈滤波电容中的电流变化,生成反向补偿电流。构建以最大化抑制输出响应幅值为目标,同时满足衰减系数、幅值误差、滤波电容等约束条件的LCL滤波器优化数学模型。采用海鸥算法求解该模型,利用优化后的LCL滤波器将反向补偿电流引入APF控制回路,通过反向补偿电流动态调整APF输出,实现电力系统谐振自适应抑制。实验结果表明,该方法可有效抑制电力系统谐振,使5次、10次谐波电流分别降低至0.076%、0.095%,证实了优化后的LCL滤波器在谐振抑制方面表现出色。 展开更多
关键词 海鸥算法 谐振抑制 有源滤波器 谐波 电容电流反馈 APF控制回路
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Design of Controller for New EAST Fast Control Power Supply 被引量:4
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作者 黄海宏 殷明 王海欣 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第11期1068-1073,共6页
The effectiveness of the magnetic confinement of plasma can be improved by elongat- ing the plasma cross-section in tokamak devices. But elongated plasma has vertical displacement instability, so a feedback control sy... The effectiveness of the magnetic confinement of plasma can be improved by elongat- ing the plasma cross-section in tokamak devices. But elongated plasma has vertical displacement instability, so a feedback control system is needed to restrain the plasma's vertical displacement. A fast control power supply is needed to excite the active feedback coils, which produces a magnetic field to control the plasma's displacement. With the development of EAST, the fast control power supply needs to keep on enhancing the fast response and output current. The structure of a new power supply is introduced in this paper. The method of multiple inverters paralleled with the current sharing reactor is presented to meet the need for large current and fast control. According to the design demands of the EAST fast control power supply, the adjuster of the current close loop is applied to the inverter, which can advance its ability to restrain the loop current in low frequency and DC output. The result of the experiment confirms the validity of the proposed scheme and control strategy. 展开更多
关键词 EAST plasma vertical stability active feedback fast control power supply current close loop
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Current Loop Disturbance Suppression for Dual Three Phase Permanent Magnet Synchronous Generators Based on Modified Linear Active Disturbance Rejection Control 被引量:2
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作者 Dezhi Xu Hu Yao +1 位作者 Yang He Wenxiang Zhao 《Chinese Journal of Electrical Engineering》 EI CSCD 2024年第1期101-113,共13页
A modified four-dimensional linear active disturbance rejection control(LADRC)strategy is proposed for a dual three-phase permanent magnet synchronous generator(DTP-PMSG)system to reduce cross-coupling between the d a... A modified four-dimensional linear active disturbance rejection control(LADRC)strategy is proposed for a dual three-phase permanent magnet synchronous generator(DTP-PMSG)system to reduce cross-coupling between the d and q axis currents in the d-q subspace and harmonic currents in the x-y subspace.In the d-q subspace,the proposed strategy uses a model-based LADRC to enhance the decoupling effect between the d and q axes and the disturbance rejection ability against parameter variation.In the x-y subspace,the 5th and 7th harmonic current suppression abilities are improved by using quasi-resonant units parallel to the extended state observer of the traditional LADRC.The proposed modified LADRC strategy improved both the steady-state performance and dynamic response of the DTP-PMSG system.The experimental results demonstrate that the proposed strategy is both feasible and effective. 展开更多
关键词 Dual three-phase permanent magnet synchronous generator current loop decoupling control harmonic suppression linear active disturbance rejection control
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