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Zero-sequence Circulating Current Reduction for Three-phase Three-level Modular Photovoltaic Grid-connected Systems 被引量:16
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作者 ZHANG Xing SHAO Zhangping WANG Fusheng LIU Ping REN Kangle 《中国电机工程学报》 EI CSCD 北大核心 2013年第9期I0003-I0003,共1页
针对共享正、负母线和交流母线的三相三电平模块化光伏并网系统的零序环流问题,建立三电平模块化系统零序环流的等效模型,并根据激励源的不同将零序环流分成3类,提出一种共享正、负母线和中线的并联方案来抑制I类零序环流,及一种基于改... 针对共享正、负母线和交流母线的三相三电平模块化光伏并网系统的零序环流问题,建立三电平模块化系统零序环流的等效模型,并根据激励源的不同将零序环流分成3类,提出一种共享正、负母线和中线的并联方案来抑制I类零序环流,及一种基于改进型LCL滤波器的并联方案来抑制II、III类零序环流的高频分量,和采用零序环流控制器来抑制II、III类零序环流的低频分量。最后,通过10 kW的三相三电平模块化光伏并网系统的仿真和实验,证明了零序环流模型分析和抑制方法的正确性。 展开更多
关键词 光伏系统 光伏并网 循环电流 模块化 三相 零序 逆变器并联 闭合回路
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Reassessment of Permissible Negative Sequence Current for Power Plant Operation of Taipower
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作者 Ping-heng Ho Chi-jui Wu +1 位作者 Chung-liang Chang Yuin-hong Liu 《Energy and Power Engineering》 2010年第4期271-282,共12页
The N3 power plant of Taipower is located in the southern tip of Taiwan and connected to the power pool by four out-linking 345-kV overhead transmission circuits. There are two 951-MW generators. Each generator occupi... The N3 power plant of Taipower is located in the southern tip of Taiwan and connected to the power pool by four out-linking 345-kV overhead transmission circuits. There are two 951-MW generators. Each generator occupied 11% of the system peak load in 1985 when the generator was in commercial operation. Since Taipower is an isolated system, at the N-2 conditions, those generators were reduced to 75% loading to protect the power system. By the way, to avoid damage of negative sequence current (NSC), the limits of the N3 power plant are stricter than those in the IEEE Standard. However, in 2010, the capacity ratio of each generator in the plant to the system peak load has been reduced to 3% only. To increase the economic benefit of those generators, it is required to reassess the operation limits of NSC. EMTP was used to calculate the levels of NSC from the out-linking transmission circuits. From the results of this study, the effects of NSC could be ignored when the four out-linking circuits are in N-0, N-1, and N-2 conditions. The generators can be operated in full loading under these conditions. The modifications to the NSC limits of the N3 power plant are also suggested. 展开更多
关键词 negative sequence current Transmission LINE GENERATOR EMTP
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Effects of Voltage Sag on the Performance of Induction Motor Based on a New Transient Sequence Component Method 被引量:6
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作者 Dongdong Zhang Tianhao Liu 《CES Transactions on Electrical Machines and Systems》 CSCD 2019年第3期316-324,共9页
Voltage sag is one of the most common power quality disturbances in industry,which causes huge inrush currents in stator windings of induction motors,and adversely impacts the motor secure operation.This paper firstly... Voltage sag is one of the most common power quality disturbances in industry,which causes huge inrush currents in stator windings of induction motors,and adversely impacts the motor secure operation.This paper firstly introduces a 2D Time-Stepping multi-slice finite element method(2D T-S multi-slice FEM)which is used for calculating the magnetic field distribution in induction motors under different sag events.Then the paper deduces the transient analytical expression of stator inrush current based on the classical theory of AC motors and presents a separation method for the positive,negative and zero sequence values based on instantaneous currents.With this method,the paper studies the influences of voltage sag amplitude,phase-angle jump and initial phase angle on the stator positive-and negative-sequence peak currents of 5.5 kW and 55 kW induction motors.This paper further proposes a motor protection method under voltage sag condition with the stator negative-sequence peak currents as the protection threshold,so that the protection false trip can be avoided effectively.Finally,the calculation and analysis results are validated by the comparison of calculated and measured stator peak value of the 5.5 kW induction motor. 展开更多
关键词 Induction motors instantaneous negative sequence current time-stepping finite element method voltage sag.
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一种综合性能优化的两电平并联类交错一体化空间矢量调制策略
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作者 杜燕 梁晶 +2 位作者 蔡志成 杨向真 苏建徽 《电工技术学报》 北大核心 2026年第2期622-634,共13页
交错并联逆变器可抵消输出纹波,改善并网电流总谐波畸变率(THD),但可能导致共模和零序环流增大。针对此问题,该文提出一种双机并联逆变器的类交错一体化空间矢量调制(SISVM)策略,旨在实现系统的共模电压、零序环流、输出电流纹波以及开... 交错并联逆变器可抵消输出纹波,改善并网电流总谐波畸变率(THD),但可能导致共模和零序环流增大。针对此问题,该文提出一种双机并联逆变器的类交错一体化空间矢量调制(SISVM)策略,旨在实现系统的共模电压、零序环流、输出电流纹波以及开关损耗的综合优化。该文建立两电平并联逆变器的等效三电平模型,并以共模、环流、开关次数为约束条件筛选等效三电平矢量,并通过两电平载波移相实现类三电平调制。对比分析SISVM的输出电流纹波和环流特性,说明了与三电平空间矢量调制(TLSVM)相比,该调制策略可进一步减小零序环流和开关损耗。最后,通过DSP+Starsim实验平台验证了该策略在零序环流和开关损耗方面的有效性。 展开更多
关键词 交错并联逆变器 共模电压 零序环流 输出电流纹波 开关损耗 类交错 一体化调制
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基于高频负序电流的永磁电机伺服系统匝间短路故障诊断方法
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作者 傅捷 饶尧 +2 位作者 王伟 郑再平 黄玉平 《导弹与航天运载技术(中英文)》 北大核心 2026年第1期58-66,共9页
永磁同步电机因具备高功率因数、高运行效率和高功率密度,已广泛用于航空航天飞行器中,可实现高动态的伺服运动。然而,在长期跟踪控制或姿态保持过程中电机容易发生匝间短路故障,且在伺服工况下故障信号具有时域非周期性特征,给故障诊... 永磁同步电机因具备高功率因数、高运行效率和高功率密度,已广泛用于航空航天飞行器中,可实现高动态的伺服运动。然而,在长期跟踪控制或姿态保持过程中电机容易发生匝间短路故障,且在伺服工况下故障信号具有时域非周期性特征,给故障诊断带来较大挑战。针对这一问题,提出一种基于高频负序电流的匝间短路故障诊断方法。首先,建立永磁同步电机匝间短路故障简化解析模型,揭示故障对电气量的特征影响;其次,在控制系统中注入高频电压信号,并利用带通滤波器提取电机的高频电流响应;最后,计算高频电流的负序分量作为故障诊断指标,实现故障的实时识别。将高频负序电流作为故障特征,能够有效区分伺服状态下电机的正常运行状态与匝间短路故障状态,并提升诊断速度与鲁棒性。仿真验证表明,所提方法可在电机位置、转速和负载快速变化等伺服工况下实现可靠诊断,诊断时间不超过一个基波周期,具有良好的工程应用潜力。 展开更多
关键词 永磁同步电机 伺服控制 匝间短路故障 高频注入 负序电流
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角接五相电机单相开路故障零序环流抑制方法
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作者 周亚蒙 田兵 +1 位作者 谭强 王涛 《电力工程技术》 北大核心 2026年第2期60-69,共10页
角接五相电机在单相绕组开路故障下存在典型零序环流,会引起相电流畸变和转矩波动等问题。为此,文中提出一种近似线性化控制方法,并结合比例-积分(proportional-integral,PI)控制实现对交变零序环流的有效抑制。首先,基于现有的星接五... 角接五相电机在单相绕组开路故障下存在典型零序环流,会引起相电流畸变和转矩波动等问题。为此,文中提出一种近似线性化控制方法,并结合比例-积分(proportional-integral,PI)控制实现对交变零序环流的有效抑制。首先,基于现有的星接五相电机容错控制模型,通过增设绕组相电流和电压的变换矩阵,给出一种角接五相电机的容错解耦控制方案;然后,推导零序环流和零序电磁转矩的非线性数学模型,并依据位置角度细分方法将非线性零序模型近似线性化,结合多维度PI控制器实现零序环流抑制;最后,进行仿真验证。实验结果表明,零序环流在未抑制前呈现具有一定幅值且基频波动的交流特性,在实行抑制方法之后,零序环流近乎为0。相电流由抑制前的严重失衡和幅值过大状态转变为正常状态,转矩波动问题也明显改善。因此,在角接五相电机发生单相开路故障时,可以使用主动抑制零序环流的容错控制方法改善相电流畸变和转矩波动问题。 展开更多
关键词 角接五相电机 容错控制 零序环流 近似线性化 比例-积分(PI)控制 矢量控制
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十二相开绕组感应电机零序电流抑制方法
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作者 裘呈熠 胡亮灯 +3 位作者 林明耀 郭城 鲁斌 龙齐杰 《中国电机工程学报》 北大核心 2026年第1期389-397,I0029,共10页
十二相开绕组电机系统具有冗余性好、转矩脉动小等优点,是船舶大容量推进的首选方案,但开绕组电机系统存在零序电流难以较好抑制问题。该文根据十二相感应电机相位特点(4套三相互差15°),提出一种八维Park(派克)变换矩阵及其反变换... 十二相开绕组电机系统具有冗余性好、转矩脉动小等优点,是船舶大容量推进的首选方案,但开绕组电机系统存在零序电流难以较好抑制问题。该文根据十二相感应电机相位特点(4套三相互差15°),提出一种八维Park(派克)变换矩阵及其反变换矩阵,将4套零序电流及其反相信号经过八维Park变换后变成直流量,利用比例积分调节器输出补偿电压,并经八维Park反变换叠加到原控制调制波,实现零序电流的闭环控制。与传统准比例谐振零序电流抑制方法相比,所提方法可以明显提高零序电流抑制效果,避免零序电流因频率高超电流环带宽限制抑制效果不佳问题。最后,通过仿真和实验验证所提算法可行性、正确性。 展开更多
关键词 十二相感应电机 开绕组 多相Park变换 零序电流 闭环控制 准比例谐振
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基于多环控制解耦的构网型变流器阻抗特性与振荡稳定机理研究
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作者 闫子晗 艾欣 +2 位作者 于思奇 刘辉 李蕴红 《电工技术学报》 北大核心 2026年第5期1589-1606,共18页
构网型(GFM)变流器以自同步电压源的方式并网,是高比例新能源系统提供频率和电压支撑的关键设备,然而其多环控制环节耦合复杂,所处新能源场站的送出场景与电网条件多样,导致其并网稳定性分析与宽频振荡机理解析面临挑战。基于此,该文采... 构网型(GFM)变流器以自同步电压源的方式并网,是高比例新能源系统提供频率和电压支撑的关键设备,然而其多环控制环节耦合复杂,所处新能源场站的送出场景与电网条件多样,导致其并网稳定性分析与宽频振荡机理解析面临挑战。基于此,该文采用谐波线性化方法建立了基于调制信号传递函数的统一化序阻抗模型,并提出了基于调制信号解析式的多环控制解耦方法,明晰了频率外环、电压外环、电压-电流双内环对阻抗特性的独立贡献,深入剖析了不同控制拓扑的GFM变流器在不同强度交流电网及经串补送出场景下的振荡风险来源及影响因素。主要结论如下:外环主要影响近工频阻抗特性,一阶控制结构较二阶控制结构具有更优的振荡稳定性;无内环的GFM在强电网下的次同步振荡问题可通过优化控制结构或调整控制参数得到控制;双内环的引入使GFM在次/超同步频段呈容性,增加了强电网下的振荡风险,但在串补送出场景下能改善系统稳定性。 展开更多
关键词 构网变流器 电压-电流双环控制 序阻抗建模 振荡稳定性 电网强度 串联补偿
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起重机起升电机零序电流抑制自动控制方法研究
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作者 黄庆 《自动化应用》 2026年第1期133-135,共3页
针对起重机起升电机在多相驱动系统中因零序电流导致的损耗增加、转矩波动以及系统稳定性下降问题,开展起重机起升电机零序电流抑制自动控制方法研究。通过建立开绕组永磁同步电机的零序电压平衡模型,设计双闭环矢量控制策略,结合零序电... 针对起重机起升电机在多相驱动系统中因零序电流导致的损耗增加、转矩波动以及系统稳定性下降问题,开展起重机起升电机零序电流抑制自动控制方法研究。通过建立开绕组永磁同步电机的零序电压平衡模型,设计双闭环矢量控制策略,结合零序电流PR调节与直接转矩控制,实现零序分量的动态补偿与转矩精准跟踪。同时,优化电压矢量合成方法,在α-β平面和零序平面协同调控,确保系统在稳态与动态负载下的低零序运行。通过实例应用证明,所提方法能有效抑制零序电流,提升电机在正常及故障工况下的运行可靠性。 展开更多
关键词 起重机 零序电流 起升电机 抑制
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面向消弧线圈接地系统单相高阻接地故障线路的零序电流检测方法
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作者 欧阳帆 肖遥遥 +3 位作者 龚禹生 余斌 龙雪梅 徐彪 《湖南电力》 2026年第1期60-66,共7页
消弧线圈接地系统配电网发生高阻故障时,其故障分布特征与不接地系统存在较大差异,现有故障检测方法存在难以检测等问题。基于此,提出一种基于瞬时零序电流的线路比幅方法,构建馈线零序电流模型与各馈线综合零序电流模型,将二者进行对比... 消弧线圈接地系统配电网发生高阻故障时,其故障分布特征与不接地系统存在较大差异,现有故障检测方法存在难以检测等问题。基于此,提出一种基于瞬时零序电流的线路比幅方法,构建馈线零序电流模型与各馈线综合零序电流模型,将二者进行对比,并考虑零序电流方向,可有效实现高阻故障的准确检测。该方法在消弧线圈接地系统配电网仿真平台进行验证,仿真结果表明所提方法可有效识别故障馈线,对促进配电网安全运行具有参考作用。 展开更多
关键词 故障线路选线方法 零序电流 单相接地故障 消弧线圈接地系统 配电网
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小电流接地故障特征分析及选线方法研究
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作者 唐毅 于洋 +3 位作者 王超 杨建平 范荣奇 陈恒 《自动化仪表》 2026年第2期99-105,共7页
针对目前因配电线路结构复杂而导致故障选线成功率低的问题,提出一种基于动态时间弯曲距离的小电流接地故障特征分析及选线方法。通过分析零序网络等效阻抗相频特性,确定了故障信息高频段和低频段的频率范围,并计算各线路零序电流高频... 针对目前因配电线路结构复杂而导致故障选线成功率低的问题,提出一种基于动态时间弯曲距离的小电流接地故障特征分析及选线方法。通过分析零序网络等效阻抗相频特性,确定了故障信息高频段和低频段的频率范围,并计算各线路零序电流高频段和低频段内故障信息的点积。利用动态时间弯曲距离算法得到点积矩阵。若各行元素中最大值小于剩余元素之和,将判定为母线故障;否则,比较矩阵各行元素之和,将最大值对应的线路判定为故障线路。经验证,该方法能准确区分母线故障和馈线故障,且在不同故障初相角、故障距离或经过渡电阻接地情境下仍能准确选线。该方法提高了故障选线成功率。 展开更多
关键词 小电流接地系统 单相接地故障 相频特性 零序电流 过渡电阻 点积 动态时间弯曲距离 故障选线
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Application of fractal theory in detecting low current faults of power distribution system in coal mines 被引量:5
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作者 LIU Jian-hua LIANG Rui WANG Chong-lin FAN Di-peng 《Mining Science and Technology》 EI CAS 2009年第3期321-325,共5页
Single-phase low current grounding faults areoften seen in power distribution system of coal mines.These faults are difficult to reliably identify.We propose a new method of single-phase ground fault protection based ... Single-phase low current grounding faults areoften seen in power distribution system of coal mines.These faults are difficult to reliably identify.We propose a new method of single-phase ground fault protection based upon a discernible matrix of the fractal dimension associated with line currents.The method builds on existing selective protection methods.Faulted feeders are distinguished using differences in the zero-sequence transient current fractal dimension.The current signals were first processed through a fast Fourier transform and then the characteristics of a faulted line were identified using a discernible matrix.The method of calculation is illustrated.The results show that the method involves simple calculations, is easy to do and is highly accurate.It is, therefore, suitable for distribution networks having different neutral grounding modes. 展开更多
关键词 low current faults zero sequence transient current fractal dimension discernible matrix selective protection
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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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Residual current compensation for single-phase grounding fault in coal mine power network 被引量:3
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作者 Jia Chenxi Wang Chonglin Du Guifu 《International Journal of Mining Science and Technology》 SCIE EI 2014年第2期213-218,共6页
The way of neutral point to earth via full compensation arc suppression coil can solve the problem of residual current compensation in coal mine power network effectively. Based on the analysis on the grounding curren... The way of neutral point to earth via full compensation arc suppression coil can solve the problem of residual current compensation in coal mine power network effectively. Based on the analysis on the grounding current detection results of Xieqiao coal mine, the conclusion that harmonic component of grounding current is dominated by higher harmonics with complex harmonic sources in coal mine power network system was obtained. The influences of harmonic source type and fault point position on harmonic voltage and harmonic current were analyzed theoretically. The influences of earthed fault feeder detection result and the estimation errors of parameters to earth on residual current compensation were analyzed. A new thought of residual current prediction and the selections of model method and control method were proposed on this basis. The simulation results prove that harmonic amplitudes of zero sequence voltage and zero sequence current are determined by harmonic source type as well as fault point position in coal mine power network, and also prove that zero sequence voltage detection can avoid the unstable problem of coal mine power network system caused by undercompensation of capacitive current. Finally, the experimental device of full compensation arc suppression coil is introduced. 展开更多
关键词 Full compensation arc suppression co Residual current compensation Grounding current detection zero sequence voltage detection
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Grid-Connected Control Strategy of VSG under Complex Grid Voltage Conditions 被引量:1
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作者 Bin Zhang Yanjun Jin 《Energy Engineering》 EI 2022年第4期1467-1482,共16页
Under complex grid conditions,the grid voltage usually has an imbalance,low order harmonics,and a small of DC bias.When the grid voltage contains low order harmonics and a small amount of DC bias component,the inverte... Under complex grid conditions,the grid voltage usually has an imbalance,low order harmonics,and a small of DC bias.When the grid voltage contains low order harmonics and a small amount of DC bias component,the inverter’s output current cannot meet the grid connection requirements,and there is a three-phase current imbalance in the control strategy of common VSG under unbalanced voltage.A theoretical analysis of non-ideal power grids is carried out,and a VSG control strategy under complex operating conditions is proposed.Firstly,the third-order generalized integrator(TOGI)is used to eliminate the influence of the DC component of grid voltage.An improved delay signal cancellation(DSC)method is proposed to control the balance current and power fluctuation under unbalanced voltage based on the method of common VSG positive and negative sequence separation,It also eliminates the harmonic of command current.Then,the improved quasi proportional resonant controller(QPR)cascaded PI is used to suppress the harmonic current further so that the harmonic content of grid-connected current can meet the grid-connected requirements and achieve the three-phase current balance.Finally,the proposed strategy is verified by simulation under the control objectives of the current balance,active power,and reactive power constant. 展开更多
关键词 Complicated condition harmonic elimination VSG control DC component quasi-proportional resonance sequence current control
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Design of DSTATCOM Controller for Compensating Unbalances 被引量:1
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作者 Murugesan Kullan Ranganath Muthu +1 位作者 Jebamalai Benny Mervin Vijayenthiran Subramanian 《Circuits and Systems》 2016年第9期2362-2372,共11页
In a three phase power system, the voltages at the generation side are in sinusoidal and equal in magnitude with 120? phase difference between the phases. However, at the load side voltages may become unbalanced due t... In a three phase power system, the voltages at the generation side are in sinusoidal and equal in magnitude with 120? phase difference between the phases. However, at the load side voltages may become unbalanced due to unequal voltage magnitudes at the fundamental frequency, phase angle deviations or unequal distribution of single phase loads. The voltage unbalance is a major power quality issue, because a small unbalance in the phase voltages can cause a larger unbalance in the phase currents. A completely balanced three-phase three wire system contains only positive sequence components of voltage, current and impedance, whereas unbalanced system contains both positive and negative sequence components of voltages and currents. The negative sequence component of current in the unbalanced system increases the temperature and losses in the equipments. Hence, it is necessary to mitigate this problem by supplying the negative sequence current to the load at the load side and keep the source side balanced. This paper proposes the shunt connected, current injecting Distribution Static Synchronous Compensator (DSTATCOM) with appropriate controller to mitigate the unbalanced load current. The symmetrical components based Hysteresis Current Controller (HCC) is designed for DSTATCOM to diminish the unbalances in a three-phase three-wire system. The performance of the controller is studied by simulating the entire system in the MATLAB/Simulink environment. The DSTATCOM with HCC is found to be better than other controllers because it is suitable for compensating both balanced and unbalanced loads. 展开更多
关键词 COMPENSATION DSTATCOM Hysteresis current controller Symmetrical Components Unbalanced Systems negative sequence current
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Phases-Controlled Coordinated Charging Method for Electric Vehicles 被引量:1
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作者 Chenglin Liao Bing Yang 《CES Transactions on Electrical Machines and Systems》 2018年第1期3-12,共10页
When private electric vehicles(EVs),which will be the main part of the EVs’cluster in the future,are plugged in power system by single phase power line,can result to three-phase unbalance problem of distribution netw... When private electric vehicles(EVs),which will be the main part of the EVs’cluster in the future,are plugged in power system by single phase power line,can result to three-phase unbalance problem of distribution network.In this work,a phased-controlled coordinated charging method was put forward to solve this problem.Firstly,the impacts of charging load to distribution network was analyzed based on the equivalent circuit;and then an architecture of the control method and its corresponding optimal control model were introduced.The optimal model is a multi-objective optimization model,which includes minimizing load variance of each phase and minimizing the power asymmetrical degree of three-phase load;lastly,three scenarios considering balance and unbalance cases were envisioned to verify the reasonableness of this control method based on IEEE-37 distribution network.Results show that the phased-controlled coordinated charging method can minimize the load variance as well as the negative sequence current. 展开更多
关键词 Electric Vehicles(EVs) load variance negative sequence current Percentage power asymmetrical degree
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计及电网参数不平衡的灵活接地系统高阻接地故障选线方法 被引量:3
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作者 李晓波 张世乐 +3 位作者 谢剑锋 彭超红 刘栩鹏 梁睿 《电力系统保护与控制》 北大核心 2025年第5期59-68,共10页
灵活接地系统采用的零序过电流保护存在耐过渡电阻能力低的问题,并且现有的选线方法对互感器精度要求较高,也未考虑电网参数不平衡对判据的影响,存在保护误判的风险。针对上述问题,首先在计及电网参数不平衡条件下,探究了并联小电阻投... 灵活接地系统采用的零序过电流保护存在耐过渡电阻能力低的问题,并且现有的选线方法对互感器精度要求较高,也未考虑电网参数不平衡对判据的影响,存在保护误判的风险。针对上述问题,首先在计及电网参数不平衡条件下,探究了并联小电阻投入前后各电气信号变化量与线路对地参数、不平衡电流的关系。研究发现健全线路零序电流变化量与零序电压变化量之比等于该线路对地导纳,故障线路的零序电流变化量与零序电压变化量之比则为线路对地导纳与接地导纳的总和。在此基础上,提出了一种适用于灵活接地系统单相高阻接地故障的选线方法。该方法不受电网参数不平衡与零序CT极性反接影响,能够有效降低保护对互感器精度的要求。此外,该方法还可利用故障信息实现电网参数不平衡条件下对过渡电阻及单条线路对地导纳的测量。最后,在搭建的仿真电路中验证了所述方法的正确性和有效性。 展开更多
关键词 灵活接地系统 电网参数不平衡 零序电压变化量 零序电流变化量 高阻接地故障
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基于动态相量的并联逆变器并网系统超高次谐波零序环流特性分析 被引量:1
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作者 钟庆 曾子健 +3 位作者 梁铭 王钢 李海锋 汪隆君 《电力系统及其自动化学报》 北大核心 2025年第1期10-16,共7页
为研究共交直流侧母线的并联逆变器并网系统中超高次谐波零序环流特征分量及边带分量的特性,通过分析各逆变器的开关状态研究系统中零序环流的流通路径,并建立零序环流等效电路;利用动态相量法建立计及逆变器间载波相位差的超高次谐波... 为研究共交直流侧母线的并联逆变器并网系统中超高次谐波零序环流特征分量及边带分量的特性,通过分析各逆变器的开关状态研究系统中零序环流的流通路径,并建立零序环流等效电路;利用动态相量法建立计及逆变器间载波相位差的超高次谐波零序环流分析模型;以该模型为基础,分析并联逆变器并网系统的超高次谐波零序环流特征分量特性和边带分量特性。最后,通过仿真验证了理论分析的正确性。 展开更多
关键词 超高次谐波 零序环流 动态相量 并联逆变器 并网系统
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基于零序电流幅值比的灵活接地系统高阻接地故障选线方法 被引量:1
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作者 李晓波 张世乐 +4 位作者 刘栩鹏 刘硕 谢剑锋 袁璐健 彭超红 《电网技术》 北大核心 2025年第6期2595-2604,I0136-I0141,共16页
零序电流互感器(current transformer,CT)测量精度问题一直是限制配电网故障选线准确率的关键性问题,现有研究方法在理论层面已较为成熟,但在现场使用中受限于零序CT测量精度,耐过渡电阻能力往往不佳。灵活接地系统是一种新型接地方式,... 零序电流互感器(current transformer,CT)测量精度问题一直是限制配电网故障选线准确率的关键性问题,现有研究方法在理论层面已较为成熟,但在现场使用中受限于零序CT测量精度,耐过渡电阻能力往往不佳。灵活接地系统是一种新型接地方式,系统感知永久性接地故障后,于中性点投入并联小电阻,使得配电网接地方式发生转变,从而导致同一电气信号量呈现两种完全不同的故障特征,故障信息量增加了一倍,综合利用两阶段故障特征有望突破现有故障选线装置性能极限,摆脱选线装置对零序CT测量精度的依赖。为此,该文首先分析了灵活接地系统不同阶段各电气量的故障特征,之后结合灵活接地系统特点提出了一种基于零序电流幅值比的高阻接地故障选线方法,最后通过合理设计选线算法,剔除误差较大数据,最大程度降低保护对零序CT测量精度的依赖。实时数字仿真系统(real time digital simulation system,RTDS)以及低压实验平台实验结果表明,该方法不受零序CT极性反接与相位测量误差影响,且无需故障信息间的横向比较,具有耐过渡电阻能力强、可靠性高、对零序CT测量精度要求低、易实现等优点。 展开更多
关键词 零序电流互感器 灵活接地系统 零序电流幅值比 故障信息量 高阻接地故障
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