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COMPARISON AND EVALUATION OF CURRENT REFERENCE GENERATION STRATEGIES FOR ACTIVE POWER FILTERS IN THREE-PHASE FOUR-WIRE SYSTEMS
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作者 陈东华 郭涛 +1 位作者 谢少军 周波 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2005年第4期298-306,共9页
For three phase four-wire active power filters (APFs), several typical power theories and corresponding current reference generation strategies are induced, p-q, d-q, unify power factor (UPF) and instantaneous act... For three phase four-wire active power filters (APFs), several typical power theories and corresponding current reference generation strategies are induced, p-q, d-q, unify power factor (UPF) and instantaneous active current (IAC) methods are analyzed and compared with each other. The interpretation of active and reactive currents in non-sinusoidal and unbalanced three-phase four-wire systems is given based on the generalized instantaneous reactive power theory. The performance and the characteristic are evaluated, and the application conditions of current reference generation strategies are concluded. Simulation results under different source voltages and loads verify the evaluation result. 展开更多
关键词 active power filters instantaneous reactive power current reference three-phase four wire power
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Zero-sequence Current Suppressing Strategy for Dual Three-phase Permanent Magnet Synchronous Machines Connected with Single Neutral Point 被引量:3
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作者 Zongwang Li Yuxuan Du +2 位作者 Jinghua Ji Tao Tao Wenxiang Zhao 《CES Transactions on Electrical Machines and Systems》 CSCD 2022年第4期465-472,共8页
Dual three-phase permanent-magnet synchronous machines(DTP-PMSM)connected with a single neutral point provide a loop for zero-sequence current(ZSC).This paper proposes a novel space vector pulse width modulation(SVPWM... Dual three-phase permanent-magnet synchronous machines(DTP-PMSM)connected with a single neutral point provide a loop for zero-sequence current(ZSC).This paper proposes a novel space vector pulse width modulation(SVPWM)strategy to suppress the ZSC.Five vectors are selected as basic voltage vectors in one switching period.The fundamental and harmonic planes and the zero-sequence plane are taken into consideration to synthesis the reference voltage vector.To suppress the ZSC,a non-zero zero-sequence voltage(ZSV)is generated to compensate the third harmonic back-EMF.Rather than triangular carrier modulation,the sawtooth carrier modulation strategy is used to generate asymmetric PWM signals.The modulation range is investigated to explore the variation of modulation range caused by considering the zero-sequence plane.With the proposed method,the ZSC can be considerably reduced.The simulated and experimental results are presented to validate the effectiveness of the proposed modulation strategy. 展开更多
关键词 Zero-sequence current a single neutral point dual three-phase permanent-magnet synchronous machine third harmonic back-EMF
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Simplified Model Predictive Current Control for Dual Three-phase PMSM with Low Computation Burden and Switching Frequency 被引量:1
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作者 Huawei Zhou Xiaolong Xiang +1 位作者 Yibo Li Tao Tao 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第4期447-454,共8页
Finite-control-set model predictive control(FCSMPC)has advantages of multi-objective optimization and easy implementation.To reduce the computational burden and switching frequency,this article proposed a simplified M... Finite-control-set model predictive control(FCSMPC)has advantages of multi-objective optimization and easy implementation.To reduce the computational burden and switching frequency,this article proposed a simplified MPC for dual three-phase permanent magnet synchronous motor(DTPPMSM).The novelty of this method is the decomposition of prediction function and the switching optimization algorithm.Based on the decomposition of prediction function,the current increment vector is obtained,which is employed to select the optimal voltage vector and calculate the duty cycle.Then,the computation burden can be reduced and the current tracking performance can be maintained.Additionally,the switching optimization algorithm was proposed to optimize the voltage vector action sequence,which results in lower switching frequency.Hence,this control strategy can not only reduce the computation burden and switching frequency,but also maintain the steady-state and dynamic performance.The simulation and experimental results are presented to verify the feasibility of the proposed strategy. 展开更多
关键词 Computation time current increment vector Dual three-phase permanent magnet synchronous motor(DTPPMSM) Model predictive current control(MPCC) Switching frequency
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Load Balancing Control Strategy for Multi-Substation Flexible Interconnection Distribution Networks Considering Unbalanced Power Compensation
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作者 Qiji Dai Jikai Li +3 位作者 Bohui Ning Yutao Xu Chang Liu Xuan Zhang 《Energy Engineering》 2025年第10期4061-4080,共20页
Aiming at the challenge of complex load balancing coordination for a three-phase four-leg(3P4L)based multi-ended low voltage flexible DC distribution system(M-LVDC)considering unbalanced power compensation,this paper ... Aiming at the challenge of complex load balancing coordination for a three-phase four-leg(3P4L)based multi-ended low voltage flexible DC distribution system(M-LVDC)considering unbalanced power compensation,this paper proposes a phase-split power decoupling unbalanced compensation strategy based load balancing strategy for 3P4L based M-LVDC.Firstly,the topology and operation principle of the 3P4L-based M-LVDC system is introduced,and quasi-proportional resonant(QPR)based phase-split power current control for the 3P4L converter is proposed.Secondly,a load-balancing control strategy considering unbalanced compensation for 3P4L-based MLVDC is presented,in which the control diagrams for each 3P4L-based converter are detailed.The core idea of the proposed strategy is to comprehensively consider the imbalance compensation and load rate balancing between the two areas to calculate the split-phase power and current reference values of each 3P4L converter and achieve the static error-free tracking of the reference values through the QPR current inner-loop control.These reference values are then tracked with zero steady-state error using QPR current inner-loop control.Finally,the effectiveness of the proposed control strategy is verified through a 3P4L M-LVDC case study conducted on the PSCAD/EMTDC software.Theresults indicate that the proposed method not only can reduce the three-phase imbalance degrees from>20% to<0.5%,but also achieve excellent balanced load rates,with the load-rate difference smaller than 1.5%. 展开更多
关键词 three-phase four-bridge-arm Quasi-PR direct current control unbalanced power compensation
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Optimal Control for Vienna Rectifier in Unbalanced Conditions
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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
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Pareto Multi-Objective Reconfiguration of IEEE 123-Bus Unbalanced Power Distribution Networks Using Metaheuristic Algorithms:A Comprehensive Analysis of Power Quality Improvement
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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
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Multi-Objective Approaches for Optimizing 37-Bus Power Distribution Systems with Reconfiguration Technique:From Unbalance Current&Voltage Factor to Reliability Indices
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作者 Murat Cikan 《Computer Modeling in Engineering & Sciences》 2025年第4期673-721,共49页
This study examines various issues arising in three-phase unbalanced power distribution networks(PDNs)using a comprehensive optimization approach.With the integration of renewable energy sources,increasing energy dema... This study examines various issues arising in three-phase unbalanced power distribution networks(PDNs)using a comprehensive optimization approach.With the integration of renewable energy sources,increasing energy demands,and the adoption of smart grid technologies,power systems are undergoing a rapid transformation,making the need for efficient,reliable,and sustainable distribution networks increasingly critical.In this paper,the reconfiguration problem in a 37-bus unbalanced PDN test system is solved using five different popular metaheuristic algorithms.Among these advanced search algorithms,the Bonobo Optimizer(BO)has demonstrated superior performance in handling the complexities of unbalanced power distribution network optimization.The study is structured around four distinct scenarios:(Ⅰ)improving mean voltage profile and minimizing active power loss,(Ⅱ)minimizing Voltage Unbalance Index(VUI)and Current Unbalance Index(CUI),(Ⅲ)optimizing key reliability indices using both Line Oriented Reliability Index(LORI)and Customer Oriented Reliability Index(CORI)approaches,and(Ⅳ)employing multi-objective optimization using the Pareto front technique to simultaneously minimize active power loss,average CUI,and System Average Interruption Duration Index(SAIDI).The study aims to contribute to the development of more efficient,reliable,and sustainable energy systems by addressing voltage profiles,power losses,reduction of imbalance,and the enhancement of reliability together. 展开更多
关键词 unbalanced power distribution network line and customer reliability index unbalance voltage and current index meta-heuristic optimization active power loss
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Current optimization-based control of dual three-phase PMSM for low-frequency temperature swing reduction
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作者 Linlin Lu Xueqing Wang +3 位作者 Luhan Jin Qiong Liu Yun Zhang Yao Mao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期238-246,共9页
In this paper,a control scheme based on current optimization is proposed for dual three-phase permanent-magnet synchronous motor(DTP-PMSM)drive to reduce the low-frequency temperature swing.The reduction of temperatur... In this paper,a control scheme based on current optimization is proposed for dual three-phase permanent-magnet synchronous motor(DTP-PMSM)drive to reduce the low-frequency temperature swing.The reduction of temperature swing can be equivalent to reducing maximum instantaneous phase copper loss in this paper.First,a two-level optimization aiming at minimizing maximum instantaneous phase copper loss at each electrical angle is proposed.Then,the optimization is transformed to a singlelevel optimization by introducing the auxiliary variable for easy solving.Considering that singleobjective optimization trades a great total copper loss for a small reduction of maximum phase copper loss,the optimization considering both instantaneous total copper loss and maximum phase copper loss is proposed,which has the same performance of temperature swing reduction but with lower total loss.In this way,the proposed control scheme can reduce maximum junction temperature by 11%.Both simulation and experimental results are presented to prove the effectiveness and superiority of the proposed control scheme for low-frequency temperature swing reduction. 展开更多
关键词 Dual three-phase PMSM Low-frequency temperature swing Copper loss current optimization Connected neutral points
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Three-Phase Heterojunction NiMo-Based Nano-Needle for Water Splitting at Industrial Alkaline Condition 被引量:10
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作者 Guangfu Qian Jinli Chen +3 位作者 Tianqi Yu Jiacheng Liu Lin Luo Shibin Yin 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第1期325-339,共15页
Constructing heterojunction is an effective strategy to develop high-performance non-preciousmetal-based catalysts for electrochemical water splitting(WS).Herein,we design and prepare an N-doped-carbon-encapsulated Ni... Constructing heterojunction is an effective strategy to develop high-performance non-preciousmetal-based catalysts for electrochemical water splitting(WS).Herein,we design and prepare an N-doped-carbon-encapsulated Ni/MoO_(2) nano-needle with three-phase heterojunction(Ni/MoO_(2)@CN)for accelerating the WS under industrial alkaline condition.Density functional theory calculations reveal that the electrons are redistributed at the three-phase heterojunction interface,which optimizes the adsorption energy of H-and O-containing intermediates to obtain the best ΔG_(H*) for hydrogen evolution reaction(HER)and decrease the ΔG value of ratedetermining step for oxygen evolution reaction(OER),thus enhancing the HER/OER catalytic activity.Electrochemical results confirm that Ni/MoO_(2)@CN exhibits good activity for HER(ƞ_(-10)=33 mV,ƞ_(-1000)=267 mV)and OER(ƞ_(10)=250 mV,ƞ_(1000)=420 mV).It shows a low potential of 1.86 V at 1000 mA cm^(−2) for WS in 6.0 M KOH solution at 60℃ and can steadily operate for 330 h.This good HER/OER performance can be attributed to the three-phase heterojunction with high intrinsic activity and the self-supporting nano-needle with more active sites,faster mass diffusion,and bubbles release.This work provides a unique idea for designing high efficiency catalytic materials for WS. 展开更多
关键词 three-phase heterojunction Interfacial electronic redistribution Catalyst Large current density Water splitting
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Electrical characteristics of new three-phase traction power supply system for rail transit 被引量:1
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作者 Xiaohong Huang Hanlin Wang +4 位作者 Qunzhan Li Naiqi Yang Tao Ren You Peng Haoyang Li 《Railway Engineering Science》 2023年第1期75-88,共14页
A novel three-phase traction power supply system is proposed to eliminate the adverse effects caused by electric phase separation in catenary and accomplish a unifying manner of traction power supply for rail transit.... A novel three-phase traction power supply system is proposed to eliminate the adverse effects caused by electric phase separation in catenary and accomplish a unifying manner of traction power supply for rail transit.With the application of two-stage three-phase continuous power supply structure,the electrical characteristics exhibit new features differing from the existing traction system.In this work,the principle for voltage levels determining two-stage network is dissected in accordance with the requirements of traction network and electric locomotive.The equivalent model of three-phase traction system is built for deducing the formula of current distribution and voltage losses.Based on the chain network model of the traction network,a simulation model is established to analyze the electrical characteristics such as traction current distribution,voltage losses,system equivalent impedance,voltage distribution,voltage unbalance and regenerative energy utilization.In a few words,quite a lot traction current of about 99%is undertaken by long-section cable network.The proportion of system voltage losses is small attributed to the two-stage three-phase power supply structure,and the voltage unbal-ance caused by impedance asymmetry of traction network is less than 1‰.In addition,the utilization rate of regenerative energy for locomotive achieves a significant promotion of over 97%. 展开更多
关键词 three-phase AC power supply Two-stage power supply structure Electrical characteristics current distribution Voltage losses Regenerative energy
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Electromagnetic Performance Prediction for the Symmetrical Dual Three-phase Surface-mounted PMSM under Open-phase Faults Based on Accurate Subdomain Model 被引量:1
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作者 Zhe Liang Deliang Liang +1 位作者 Peng Kou Shaofeng Jia 《CES Transactions on Electrical Machines and Systems》 CSCD 2022年第4期422-437,共16页
The paper presents an accurate analytical subdomain model for predicting the electromagnetic performance in the symmetrical dual three-phase surface-mounted permanent magnet synchronous machine(PMSM)under open-phase f... The paper presents an accurate analytical subdomain model for predicting the electromagnetic performance in the symmetrical dual three-phase surface-mounted permanent magnet synchronous machine(PMSM)under open-phase faulty conditions.The model derivations are extended from previous accurate subdomain models accounting for slotting effects.Compared with most conventional subdomain models for traditional three-phase machines with nonoverlapping winding arrangement,the subdomain model proposed in this paper applied for the 24-slot/4-pole dual three-phase machine with symmetrical overlapping winding arrangement.In order to investigate the postfault electromagnetic performance,the reconfigured phase currents and then current density distribution in stator slots under different open-circuit conditions are discussed.According to the developed model and postfault current density distribution,the steady-state electromagnetic performance,such as the electromagnetic torque and unbalanced magnetic force,under open-circuit faulty conditions are obtained.For validation purposes,finite element analysis(FEA)is employed to validate the analytical results.The result indicate that the postfault electromagnet performance can be accurately predicted by the proposed subdomain model,which is in good agreement with FEA results. 展开更多
关键词 Dual three-phase Permanent magnet synchronous machine Subdomain model Electromagnetic torque unbalanced magnetic force Open-phase fault
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FCS-MPC for four-switch three-phase AC-DC converters with DC-link capacitor voltage balancing 被引量:1
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作者 MA Wei-jie ZHANG Bao-ge 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2019年第2期150-156,共7页
Due to the decrease in the number of switches for the four-switch three-phase alternating current-direct current(FSTP AC-DC)converter,it can easily lead to DC-link capacitor voltage imbalance and the system stability ... Due to the decrease in the number of switches for the four-switch three-phase alternating current-direct current(FSTP AC-DC)converter,it can easily lead to DC-link capacitor voltage imbalance and the system stability reduction.In order to solve these problems,a finite control set model predictive control(FCS-MPC)for FSTP AC-DC converters with DC-link capacitor voltage balancing is proposed.In this strategy,in order to facilitate calculation,theαβcoordinate system model is established and all voltage vectors are evaluated by establishing a cost function.During the whole process,phase locked loop(PLL)and complex modulation strategy are not required.In the new established cost function,the additional objective term of suppressing capacitor voltage fluctuation is to eliminate effectively the capacitor voltages oscillations and deviations and improve the system reliability.The simulation results show that the proposed strategy can keep the capacitor voltage balancing and has good dynamic and static performance. 展开更多
关键词 finite control set model predictive control(FCS-MPC) four-switch three-phase alternating current-direct current(FSTP AC-DC)converters cost function capacitor voltage balancing
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The Control Technology Research of the Z-source Three-phase Four-bridge Arm Inverter
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作者 Xiangli Li Zhaoyang Yan +2 位作者 Keke Pan Chenghao Ma Hanhong Qi 《Energy and Power Engineering》 2013年第4期733-739,共7页
Z-source inverter can boost the voltage of the DC-side, allow the two switches of the same bridge arm conducting at the same time and it has some other advantages. The zero-sequence current flows through the fourth le... Z-source inverter can boost the voltage of the DC-side, allow the two switches of the same bridge arm conducting at the same time and it has some other advantages. The zero-sequence current flows through the fourth leg of the three-phase four-leg inverter so the three-phase four-leg inverter can work with unbalanced load. This paper presents a Z-source three-phase four-leg inverter which combines a Z-source network with three-phase four-leg inverter. The circuit uses simple SPWM modulation technique and the fourth bridge arm uses fully compensated control method. The inverter can maintain a symmetrical output voltage when the proposed scheme under the unbalanced load. 展开更多
关键词 Z-SOURCE INVERTER three-phase FOUR-LEG INVERTER unbalanced Load Imbalanced VOLTAGE
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Research on a New Control Strategy of Three Phase Inverter for Unbalanced Loads
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作者 Wenhua HU Weiming Ma Chunxi LIU 《Journal of Electromagnetic Analysis and Applications》 2010年第1期39-44,共6页
One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing... One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing and superimpose theory can keep the voltage balance through compensating the positive-, negative- and zero-sequence components of the output voltage of inverter, however, this method is time-consuming and not suitable for control. Aiming at high power medium frequency inverter source, a P+Resonant (Proportion and Resonant) controller which ensured a balanced three phase output voltage under unbalanced load is proposed in this paper. The regulator was proved to be applicable to both three-phase three-wire system and three-phase four-wire system and developed two methods of realization. The simulation results verified that this method can suppressed effectively the output voltage distorted caused by the unbalanced load and attained a high quality voltage waveforms. 展开更多
关键词 three-phase INVERTER unbalanced Load the three-phase OUTPUT Voltage SYMMETRIC MEDIUM Frequency P+Resonant Controller
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The improved PAC method for a three-phase PWM grid-connected inverter
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作者 李杰 马祎炜 +2 位作者 陈国呈 王得利 俞俊杰 《Journal of Shanghai University(English Edition)》 CAS 2008年第6期560-564,共5页
In this paper, a vector regulating principle of the phase and amplitude control PAC method for three-phase grid-connected inverters is presented.To solve the problem of heavy inrush current and slow dynamic response w... In this paper, a vector regulating principle of the phase and amplitude control PAC method for three-phase grid-connected inverters is presented.To solve the problem of heavy inrush current and slow dynamic response when system starts up, the starting voltage prediction control and the current feed-forward control are proposed and used, which improve the dynamic performance of the system in the PAC.The experimental results carried out on a three-phase grid-connected inverter proved the validity of the proposed method. 展开更多
关键词 three-phase pulse width modulation (PWM) grid-connected inverter phase and amplitude control (PAC) starting voltage prediction control current feed-forward control
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Vector Control of Three-Phase Solar Farm Converters Based on Fictive-Axis Emulation
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作者 Kai Kang Qiaoyu Wang Jiayi Meng 《Journal of Computer Science Research》 2020年第3期10-13,共4页
In this paper,a new method for adjusting the current of three-phase voltage source DC-AC converter in orthogonal(DQ)reference frame is presented.In the DQ reference system,AC variable appears in the constant form of D... In this paper,a new method for adjusting the current of three-phase voltage source DC-AC converter in orthogonal(DQ)reference frame is presented.In the DQ reference system,AC variable appears in the constant form of DC,making the controller design the same as the DC-DC converter[1].It provides controllable gain benefits at the steady-state operating point,and finally realizes zero steady-state error[2].In addition,the creative analytical model is dedicated to building up a series of virtual quantities orthogonal to the actual single-phase system.In general,orthogonal imaginary numbers get the reference signal by delaying the real quantity by a quarter period.However,the introduction of such time delay makes the dynamic response of the system worse.In this paper,orthogonal quantities are generated from a virtual axis system parallel to the real axis,which can effectively improve the dynamic performance of traditional methods without increasing the complexity of controller structure.Through PSCAD simulation,the ideal experimental results are obtained. 展开更多
关键词 current Controller Fictive-axis Emulation(FAE) three-phase voltage-source converters(VSCs) Vector controller
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光伏参与的配电网分布式不平衡电流补偿控制 被引量:1
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作者 冯启帆 夏杨红 +1 位作者 杨鹏程 韦巍 《电力系统自动化》 北大核心 2026年第2期115-124,共10页
大量三相不平衡设备并网导致台区三相电流不平衡,利用配电网台区内变流器进行不平衡电流的补偿是抑制台区负序和零序电流的有效方法。三相光伏变流器广泛用于配电网中,其剩余容量可以解决电能质量问题。文中提出了一种利用三相光伏变流... 大量三相不平衡设备并网导致台区三相电流不平衡,利用配电网台区内变流器进行不平衡电流的补偿是抑制台区负序和零序电流的有效方法。三相光伏变流器广泛用于配电网中,其剩余容量可以解决电能质量问题。文中提出了一种利用三相光伏变流器治理配电网台区不平衡电流的分布式控制策略。首先,测量流经台区变压器的三相不平衡功率;其次,根据当前时刻台区内光伏变流器的剩余容量,采用分布式控制器计算每台承担补偿任务的变流器的功率指令,通过低带宽单向通信下发该功率指令并执行;然后,对所提控制策略在通信故障情形下及两端供电网络中的适用性进行讨论;最后,在RT-LAB中进行半实物仿真验证。结果表明,所提分布式不平衡电流补偿控制能在光伏变流器电流限幅的约束下有效降低台区的不平衡电流,并能广泛适用于配电网的不同场景。 展开更多
关键词 不平衡电流 电能质量 分布式光伏 变流器 电流限幅 台区 配电网
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考虑综合补偿的台区间柔性互联交直流系统潮流计算方法
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作者 周大程 袁旭峰 +2 位作者 熊炜 张超 陆之洋 《电子科技》 2026年第3期40-46,共7页
目前大量用户采用低压台区的单相用电方式,仅有少量用户使用三相用电方式。针对在低压台区中同时存在单相和三相负荷导致三相不均衡问题,文中提出了一种基于嵌入式直流互联台区三相潮流方法来评估柔性互联环节分相控制对台区三相不平衡... 目前大量用户采用低压台区的单相用电方式,仅有少量用户使用三相用电方式。针对在低压台区中同时存在单相和三相负荷导致三相不均衡问题,文中提出了一种基于嵌入式直流互联台区三相潮流方法来评估柔性互联环节分相控制对台区三相不平衡的抑制作用,并兼顾平衡台区负载率。构建含嵌入式直流的柔性低压台区三相模型,分析交流台区与台区的功率传递关系,提出台区间通过嵌入式直流网络进行首首互联。利用台区间的功率互济和三相补偿实现台区间综合补偿。采用改进IEEE13进行潮流计算,引入嵌入式直流网络来验证所提方法的有效性。 展开更多
关键词 嵌入式直流 三相不平衡补偿 三相潮流 功率互济 负载均衡 台区互联 三相不平衡负载 综合补偿
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基于模糊逻辑控制的光储直柔双极系统不平衡电压抑制策略
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作者 谭昊 周平 +5 位作者 管真琪 李音洁 刘华勇 周念成 王强钢 杨美辉 《南方电网技术》 北大核心 2026年第2期11-22,共12页
光储直柔双极系统参数变化会导致正、负极母线电压不平衡,在增加网络损耗的同时还会威胁系统正常运行。对此提出了基于模糊逻辑控制的光储直柔双极系统不平衡电压抑制策略。首先,根据光储直柔双极系统结构和电流平衡方程,分析了系统参... 光储直柔双极系统参数变化会导致正、负极母线电压不平衡,在增加网络损耗的同时还会威胁系统正常运行。对此提出了基于模糊逻辑控制的光储直柔双极系统不平衡电压抑制策略。首先,根据光储直柔双极系统结构和电流平衡方程,分析了系统参数对极间电压不平衡度的影响作用。然后,利用模糊逻辑控制器,根据正负极电压和系统电压不平衡采集数据修正各电源换流器下垂控制参数,调整各电源换流器输出电压和功率,最终将光储直柔双极系统的极间电压不平衡度抑制在可接受范围。在光储直柔双极系统仿真模型上进行的不平衡电压抑制试验验证了所提方法的有效性。 展开更多
关键词 光储直柔双极系统 不平衡电压 模糊控制 下垂控制
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基于动态检测的高速铁路牵引回流不平衡特征分析及识别
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作者 罗依梦 孟景辉 +4 位作者 谢博才 张涛 乔乾 王晓东 罗泽霖 《铁道标准设计》 北大核心 2026年第1期179-186,195,共9页
随着列车速度不断提高,不平衡牵引回流对信号系统的干扰影响随之增加。为了通过动态检测手段有效描述并识别牵引回流不平衡,对牵引回流动态检测数据展开深入分析,分析结果表明,(1)检测车单一采集端数据无法全面反映牵引回流均衡情况;(2... 随着列车速度不断提高,不平衡牵引回流对信号系统的干扰影响随之增加。为了通过动态检测手段有效描述并识别牵引回流不平衡,对牵引回流动态检测数据展开深入分析,分析结果表明,(1)检测车单一采集端数据无法全面反映牵引回流均衡情况;(2)单一牵引回流动态检测指标并不能有效反映牵引回流的均衡性。(3)牵引回流均衡性与列车运行速度有关,速度越大牵引回流均衡性越差。针对以上情况,提出“牵引回流不平衡度”指标表征及其识别方法。首先,对车头尾两端数据进行里程校准,然后按照回流点位置将数据划分为若干个回流单元;针对每一个回流单元,获取机车受流后分别流经两条钢轨的全部电流,并基于Sigmoid函数对牵引回流不平衡值及不平衡系数进行归一化映射,将值域映射至(0,1);最后,针对列车在每个回流单元内的运行速度计算牵引回流不平衡度指标,对牵引回流均衡性做出分类。为了验证所提指标对于牵引回流不平衡的识别效果,与采用现有检测指标的识别方法进行对比试验。基于实际检测数据的试验结果表明,所提出的指标对于牵引回流不平衡引起的轨道电路干扰识别正确率为99.97%,比应用现有牵引回流不平衡值、牵引回流不平衡系数指标的识别正确率分别提高0.04%、45.24%。 展开更多
关键词 高速铁路 动态检测 牵引回流 不平衡电流 特征分析 SIGMOID函数
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