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Power Network Asymmetrical Faults Analysis Using Instantaneous Symmetrical Components
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作者 S. LEVA 《Journal of Electromagnetic Analysis and Applications》 2009年第4期205-213,共9页
Although the application of Symmetrical Components to time-dependent variables was introduced by Lyon in 1954, for many years its application was essentially restricted to electric machines. Recently, thanks to its ad... Although the application of Symmetrical Components to time-dependent variables was introduced by Lyon in 1954, for many years its application was essentially restricted to electric machines. Recently, thanks to its advantages, the Lyon transformation is also applied to power network calculation. In this paper, time-dependent symmetrical components are used to study the dynamic analysis of asymmetrical faults in a power system. The Lyon approach allows the calculation of the maximum values of overvoltages and overcurrents under transient conditions and to study network under non-sinusoidal conditions. Finally, some examples with longitudinal asymmetrical faults are illustrated. 展开更多
关键词 POWER System fault Analysis asymmetrical faultS SYMMETRICAL COMPONENTS Lyon TRANSFORMATION
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Coordinated Rotor-Side Control Strategy for Doubly-FedWind Turbine under Symmetrical and Asymmetrical Grid Faults
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作者 Quanchun Yan Chao Yuan +2 位作者 WenGu Yanan Liu Yiming Tang 《Energy Engineering》 EI 2023年第1期49-68,共20页
In order to solve the problems of rotor overvoltage,overcurrent and DC side voltage rise caused by grid voltage drops,a coordinated control strategy based on symmetrical and asymmetrical low voltage ride through of ro... In order to solve the problems of rotor overvoltage,overcurrent and DC side voltage rise caused by grid voltage drops,a coordinated control strategy based on symmetrical and asymmetrical low voltage ride through of rotor side converter of the doubly-fed generator is proposed.When the power grid voltage drops symmetrically,the generator approximate equation under steady-state conditions is no longer applicable.Considering the dynamic process of stator current excitation,according to the change of stator flux and the depth of voltage drop,the system can dynamically provide reactive power support for parallel nodes and suppress the rise of DC side voltage and rotor over-current.When the grid voltage drops asymmetrically,the positive and negative sequence components are separated in the rotating coordinate system.The doubly fed generator model is established to suppress the rotor positive sequence current and negative sequence current respectively.At the same time,the output voltage limit of the converter is discussed,and the reference value is adjusted within the allowable output voltage range.In order to adapt to the occurrence of different types of power grid faults and complex operating conditions,a fast switching module of fault type detection and rotor control mode is designed to detect the type of power grid faults and voltage drop depth in real time and switch the rotor side control mode dynamically.Finally,the simulation model of the doubly fed wind turbine is constructed in Matlab/Simulink.The simulation results verify that the proposed control strategy can improve the low-voltage ride through performance of the system when dealing with the symmetrical and asymmetric voltage drop of the power grid and identify the power grid fault type and provide the correct control strategy. 展开更多
关键词 Doubly-fed wind turbines symmetrical faults asymmetrical faults low voltage ride through rotor side control fault type detection
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Influence of fault asymmetric dislocation on the gravity changes 被引量:1
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作者 Duan Hurong Wang Tao 《Geodesy and Geodynamics》 2014年第3期1-7,共7页
A fault is a planar fracture or discontinuity in a volume of rock, across which there has been significant displacement along the fractures as a result of earth movement. Large faults within the Earth's crust result ... A fault is a planar fracture or discontinuity in a volume of rock, across which there has been significant displacement along the fractures as a result of earth movement. Large faults within the Earth's crust result from the action of plate tectonic forces, with the largest forming the boundaries between the plates, energy release associated with rapid movement on active faults is the cause of most earthquakes. The relationship between unevenness dislocation and gravity changes was studied on the theoretical thought of differential fault. Simulated observation values were adopted to deduce the gravity changes with the model of asymmetric fault and the model of Okada, respectively. The characteristic of unevenness fault momentum distribution is from two end points to middle by 0 according to a certain continuous functional increase. However, the fault momentum distribution in the fault length range is a constant when the Okada model is adopted. Numerical simulation experiments for the activities of the strike-slip fault, dip-slip fault and extension fault were carried out, respectively, to find that both the gravity contours and the gravity variation values are consistent when either of the two models is adopted. The apparent difference lies in that the values at the end points are 17.97% for the strike-slip fault, 25.58% for the dip-slip fault, and 24.73% for the extension fault. 展开更多
关键词 fault asymmetrIC gravity changes numerical simulation
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DC System Modeling and AC/DC System Harmonic Calculation under Asymmetric Faults 被引量:1
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作者 Haifeng Li Junlei Liu +1 位作者 Fengjiao Wang Gang Wang 《Energy and Power Engineering》 2013年第4期1202-1208,共7页
The accurate DC system model is the key to fault analysis and harmonic calculation of AC/DC system. In this paper, a frequency domain analysis model of DC system is established, and based on it a unified fundamental f... The accurate DC system model is the key to fault analysis and harmonic calculation of AC/DC system. In this paper, a frequency domain analysis model of DC system is established, and based on it a unified fundamental frequency and harmonic iterative calculation method is proposed. The DC system model is derived considering the dynamic switching characteristic of converter and the steady-state response features of dc control system synchronously. And the proposed harmonic calculation method fully considers the AC/DC harmonic interaction and fault interaction under AC asymmetric fault condition. The method is used to the harmonic analysis and calculation of CIGRE HVDC system. Compared with those obtained by simulation using PSCAD/EMTDC software, the results show that the proposed model and method are accurate and effective, and provides the analysis basis of harmonic suppression, filter configuration and protection analysis in AC/DC system. 展开更多
关键词 DC System Model HARMONIC CALCULATION SWITCHING FUNCTION asymmetrIC faultS
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Analysis on the fault characteristics of three-phase short-circuit for half-wavelength AC transmission lines 被引量:2
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作者 Xuankun Song Teng Feng +4 位作者 Liu Han Travis MSmith Xinzhou Dong Wenxuan Liu Rui Zhang 《Global Energy Interconnection》 2018年第2期115-121,共7页
Half-wavelength AC transmission(HWACT) is an ultra-long distance AC transmission technology, whose electrical distance is close to half-wavelength at the system power frequency. It is very important for the constructi... Half-wavelength AC transmission(HWACT) is an ultra-long distance AC transmission technology, whose electrical distance is close to half-wavelength at the system power frequency. It is very important for the construction and operation of HWACT to analyze its fault features and corresponding protection technology. In this paper, the steady-state voltage and current characteristics of the bus bar and fault point and the steady-state overvoltage distribution along the line will be analyzed when a three-phase symmetrical short-circuit fault occurs on an HWACT line. On this basis, the threephase fault characteristics for longer transmission lines are also studied. 展开更多
关键词 Half-wavelength AC transmission fault characteristics Three-phase short-circuit fault distance OVERVOLTAGE
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Short-circuit fault analysis and isolation strategy for matrix converters
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作者 王莉娜 L.De Lillo +2 位作者 C.Brunson L.Empringham P.Wheeler 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3458-3470,共13页
The behavior of matrix converter(MC) drive systems under the condition of MC short-circuit faults is comprehensively investigated. Two isolation strategies using semiconductors and high speed fuses(HSFs) for MC short-... The behavior of matrix converter(MC) drive systems under the condition of MC short-circuit faults is comprehensively investigated. Two isolation strategies using semiconductors and high speed fuses(HSFs) for MC short-circuit faults are examined and their performances are compared. The behavior of MC drive systems during the fuse action time under different operating conditions is explored. The feasibility of fault-tolerant operation during the fuse action time is also studied. The basic selection laws for the HSFs and the requirements for the passive components of the MC drive system from the point view of short-circuit faults are also discussed. Simulation results are used to demonstrate the feasibility of the proposed isolation strategies. 展开更多
关键词 matrix converter short-circuit fault fault analysis fault behavior fault isolation
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Remedial Phase-Angle Control of a Five-Phase Fault-Tolerant Permanent- Magnet Vernier Machine With Short-Circuit Fault 被引量:2
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作者 Wenxiang Zhao Chenyu Gu +2 位作者 Qian Chen Jinghua Ji Dezhi Xu 《CES Transactions on Electrical Machines and Systems》 2017年第1期83-88,共6页
A fault-tolerant permanent-magnet vernier(FT-PMV)machine incorporates the merits of high fault-tolerant capability and high torque density.In this paper,a remedial phase-angle control(RPAC)strategy is proposed for a f... A fault-tolerant permanent-magnet vernier(FT-PMV)machine incorporates the merits of high fault-tolerant capability and high torque density.In this paper,a remedial phase-angle control(RPAC)strategy is proposed for a five-phase FT-PMV machine with short-circuit fault.Firstly,the proposed strategy can reduce the amount of unknown quantities by structuring the phase-angles of the normal phases.It can simplify the calculation of the remedial currents.Then,in order to obtain the desired torque,only the amplitudes of the remedial currents need to be calculated.Based on the principle of instantaneous electrical input power and mechanical output power balance condition,the real components are used to maintain the torque capability,while the reactive components are limited zero to minimize the torque ripple.Both simulations and experiments are presented to verify the proposed RPAC strategy. 展开更多
关键词 fault-tolerant permanent-magnet vernier(FT-PMV)machine remedial phase-angle control(RPAC) short-circuit fault.
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Seismic Responses of Asymmetric Base-Isolated Structures under Near-Fault Ground Motion 被引量:1
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作者 叶昆 李黎 方秦汉 《Journal of Southwest Jiaotong University(English Edition)》 2008年第4期335-345,共11页
An inter-story shear model of asymmetric base-isolated structures incorporating deformation of each isolation bearing was built, and a method to simultaneously simulate bi-directional near-fault and far-field ground m... An inter-story shear model of asymmetric base-isolated structures incorporating deformation of each isolation bearing was built, and a method to simultaneously simulate bi-directional near-fault and far-field ground motions was proposed. A comparative study on the dynamic responses of asymmetric base-isolated structures under near-fault and far-field ground motions were conducted to investigate the effects of eccentricity in the isolation system and in the superstructures, the ratio of the uncoupled torsional to lateral frequency of the superstructure and the pulse period of near-fault ground motions on the nonlinear seismic response of asymmetric base-isolated structures. Numerical results show that eccentricity in the isolation system makes asymmetric base-isolated structure more sensitive to near-fault ground motions, and the pulse period of near-fault ground motions plays an import role in governing the seismic responses of asymmetric base-isolated structures. 展开更多
关键词 asymmetric base-isolated structure Near-fault ground motion Far-field ground motion Nonlinear seismic response
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Research on Inter-turn Short-circuit Fault Diagnosis Method Based on High Frequency Voltage Residual for PMSM
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作者 Xiaobao Feng Bo Wang +2 位作者 Chaohui Liu Jiayun Zeng Zheng Wang 《CES Transactions on Electrical Machines and Systems》 CSCD 2023年第3期256-265,共10页
Inter-turn fault is a serious stator winding short-circuit fault of permanent magnet synchronous machine(PMSM). Once it occurs, it produces a huge short-circuit current that poses a great risk to the safe operation of... Inter-turn fault is a serious stator winding short-circuit fault of permanent magnet synchronous machine(PMSM). Once it occurs, it produces a huge short-circuit current that poses a great risk to the safe operation of PMSM. Thus, an inter-turn short-circuit fault(ITSCF) diagnosis method based on high frequency(HF) voltage residual is proposed in this paper with proper HF signal injection. First, the analytical models of PMSM after the ITSCF are deduced. Based on the model, the voltage residual at low frequency(LF) and HF can be obtained. It is revealed that the HF voltage residual has a stronger ITSCF detection capability compared to the LF voltage residual. To obtain optimal fault signature, a 3-phase symmetrical HF voltage is injected into the machine drive system, and the HF voltage residuals are extracted. The fault indicator is defined as the standard deviation of the 3-phase HF voltage residuals. The effectiveness of the proposed ITSCF diagnosis method is verified by experiments on a triple 3-phase PMSM. It is worth noting that no extra hardware equipment is required to implement the proposed method. 展开更多
关键词 Inter-turn short-circuit fault(ITSCF) Permanent magnet synchronous machine(PMSM) High frequency(HF)injection Voltage residual fault diagnosis
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Asymmetrical Fault Current Calculation Method and Influencing Factors Analysis of Droop-Controlled Inverters 被引量:1
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作者 Huimin Zhao Zhikang Shuai +3 位作者 Jun Ge An Luo Weimin Wu Z.John Shen 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2024年第2期562-573,共12页
Since the fault dynamic of droop-controlled inverter is different from synchronous generators (SGs), protection devices may become invalid, and the fault overcurrent may damage power electronic devices and threaten th... Since the fault dynamic of droop-controlled inverter is different from synchronous generators (SGs), protection devices may become invalid, and the fault overcurrent may damage power electronic devices and threaten the safety of the microgrid. Therefore, it is imperative to conduct a comprehensive fault analysis of the inverter to guide the design of protection schemes. However, due to the complexity of droop control strategy, existing literatures have simplified asymmetric fault analysis of droop-controlled inverters to varying degrees. Therefore, accurate fault analysis of a droop-controlled inverter is needed. In this paper, by analyzing the control system, an accurate fault model is established. Based on this, a calculation method for instantaneous asymmetrical fault current is proposed. In addition, the current components and current characteristics are analyzed. It was determined that fault currents are affected by control loops, fault types, fault distance and nonlinear limiters. In particular, the influences of limiters on the fault model, fault current calculation and fault current characteristics were analyzed. Through detailed analysis, it was found that dynamics of the control loop cannot be ignored, the fault type and fault distance determine fault current level, and part of the limiters will totally change the fault current trend. Finally, calculation and experimental results verify the correctness of the proposed method. 展开更多
关键词 asymmetrical fault analysis droop control fault current calculation method LIMITER transient fault characteristics
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Conjugate Vectors Method Applied to Asymmetrical Fault Analysis of Power Electronized Power Systems
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作者 Yingbiao Li Xing Liu +2 位作者 Jiabing Hu Jianhang Zhu Jianbo Guo 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2024年第4期1536-1549,共14页
With the wide application of power electronized resources(PERs),the amplitude and frequency of voltages show significant time-varying characteristics under asymmetrical faults.As a result,the traditional phasor model,... With the wide application of power electronized resources(PERs),the amplitude and frequency of voltages show significant time-varying characteristics under asymmetrical faults.As a result,the traditional phasor model,impedance model,and symmetrical components method based on the constant amplitude and frequency of voltages are facing great challenges.Hence,a novel asymmetrical fault analysis method based on conjugate vectors is proposed in this paper which can meet the modeling and analysis requirements of the network excited by voltages with time-varying amplitude/frequency.Furthermore,asymmetrical fault characteristics are extracted.As an application,a faulted phase identification(FPI)strategy is proposed based on the fault characteristics.The correctness and superiority of the asymmetrical fault analysis method and FPI strategy are verified in time-domain simulations and a real-time digital simulator. 展开更多
关键词 asymmetrical fault characteristics conjugate vectors method dynamic asymmetrical fault analysis time-varying amplitude/frequency
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Design and Optimization of Dual-Winding Fault-Tolerant Permanent Magnet Motor 被引量:5
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作者 Xuefeng Jiang Shaoshuai Wang +1 位作者 Qiang Li Yufei Gao 《CES Transactions on Electrical Machines and Systems》 CSCD 2019年第1期45-53,共9页
To improve the performance of the traditional fault-tolerant permanent magnet(PM)motor,the design and optimal schemes of dual-winding fault-tolerant permanent magnet motor(DWFT-PMM)are proposed and investigated.In ord... To improve the performance of the traditional fault-tolerant permanent magnet(PM)motor,the design and optimal schemes of dual-winding fault-tolerant permanent magnet motor(DWFT-PMM)are proposed and investigated.In order to obtain small cogging torque ripple and inhibiting the short-circuit current,the air gap surface shape of the PM and the anti short-circuits reactance parameters are designed and optimized.According to the actual design requirements of an aircraft electrical actuation system,the parameters,finite element analysis and experimental verification of the DWFT-PMM after optimal design are presented.The research results show that the optimized DWFT-PMM owns the merits of strong magnetic isolation,physics isolation,inhibiting the short circuit current,small cogging torque ripple and high fault tolerance. 展开更多
关键词 Dual-winding motor design and optimization fault-TOLERANCE finite element analysis short-circuit fault
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Placement optimization of Multi-Type fault current limiters based on genetic algorithm
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作者 Guofeng Jin Jie Tan +2 位作者 Lingling Liu Chuan Wang Tiejiang Yuan 《Global Energy Interconnection》 EI CAS CSCD 2021年第5期501-512,共12页
The fault current limiter(FCL)is an effective measure for improving system stability and suppressing short-circuit fault current.Because of space and economic costs,the optimum placement of FCLs is vital in industrial... The fault current limiter(FCL)is an effective measure for improving system stability and suppressing short-circuit fault current.Because of space and economic costs,the optimum placement of FCLs is vital in industrial applications.In this study,two objectives with the same dimensional measurement unit,namely,the total capital investment cost of FCLs and circuit breaker loss related to short-circuit currents,are considered.The circuit breaker loss model is developed based on the attenuation rule of the circuit breaker service life.The circuit breaker loss is used to quantify the current-limiting effect to avoid the problem of weight selection in a multi-objective problem.The IEEE 10-generator 39-bus system in New England is used to evaluate the performance of the proposed genetic algorithm(GA)method.Comparative and sensitivity analyses are performed.The results of the optimized plan are validated through simulations,indicating the significant potential of the GA for such optimization. 展开更多
关键词 fault current limiter Genetic algorithm MULTI-OBJECTIVE Circuit breaker loss short-circuit current PLACEMENT
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Single-phase earth fault current distribution between optical fiber composite overhead ground wire and ordinary ground wire in transmission system
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作者 许高雄 《Journal of Chongqing University》 CAS 2011年第2期78-83,共6页
It is important for the safety of transmission system to accurately calculate single-phase earth fault current distribution.Features of double sided elimination method were illustrated.Quantitative calculation of sing... It is important for the safety of transmission system to accurately calculate single-phase earth fault current distribution.Features of double sided elimination method were illustrated.Quantitative calculation of single-phase earth fault current distribution and case verification were accomplished by using the loop method.Influences of some factors,such as single-phase earth fault location and ground resistance of poles,on short-circuit current distribution were discussed.Results show that:1) results of the loop method conform to those of double sided elimination method;2) the fault location hardly influences macro-distribution of short-circuit current.However,current near fault location is evidently influenced;and 3) the short-circuit current distribution is not so sensitive to the ground resistance of poles. 展开更多
关键词 loop method single-phase earth fault short-circuit current distribution optical fiber composite overhead ground wire ordinary ground wire
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Fault Ride-Through(FRT)Behavior in VSC-HVDC as Key Enabler of Transmission Systems Using SCADA Viewer Software
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作者 Samuel Bimenyimana Chen Wang +9 位作者 Godwin Norense Osarumwense Asemota Aphrodis Nduwamungu Francis Mulolani Jean De Dieu Niyonteze Shilpi Bora Chun-Ling Ho Noel Hagumimana Theobald Habineza Waqar Bashir Yiyi Mo 《Energy Engineering》 EI 2022年第6期2369-2406,共38页
The world’s energy consumption and power generation demand will continue to rise.Furthermore,the bulk of the energy resources needed to satisfy the rising demand is far from the load centers.The aforementioned requir... The world’s energy consumption and power generation demand will continue to rise.Furthermore,the bulk of the energy resources needed to satisfy the rising demand is far from the load centers.The aforementioned requires long-distance transmission systems and one way to accomplish this is to use high voltage direct current(HVDC)transmission systems.The main technical issues for HVDC transmission systems are loss of synchronism,variation of quadrature currents,amplitude,the inability of station 1(rectifier),and station 2(inverter)to either inject,or absorb active,or reactive power in the network in any circumstances(before a fault occurs,during having a fault in network and after a fault cleared),and the variations of power transfer capabilities.Additionally,faults impact power quality such as voltage dips and power line outage time.This paper presents a method of overcoming the aforementioned technical issues using voltage-source converter(VSC)based HVDC transmission systems with SCADA VIEWER software and dynamic grid simulator.The benefits include having a higher capacity transmission system and proposed best method for control of active and reactive power transfer capabilities.Simulation results obtained using MATLAB validated the experimental results from SCADA Viewer software.The results indicate that the station’s rectifier or inverter can either inject or absorb either active power or reactive power in any circumstance.Also,the reverse power flow under different modes of operation can ride through faults.At a 100.0%power transfer rate,the rectifier injected 775.0 W into the network.At a 0.0%power transfer rate,the rectifier injected 164.0 W into the network.At a-100.0%rated power,the rectifier injected 1264.0 W into the network and direction was also changed. 展开更多
关键词 fault ride through capability dynamic grid fault simulator asymmetric components negative sequence control
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Research on Formation Mechanism of Asymmetric Basins, Taking the Weihe Basin as an Example
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作者 Zhang Hongwei and Deng QidongDepartment of Seismic Hazard Prevention,SSB,Beijing 100036,China Institute of Geology,SSB,Beijing 100029,China 《Earthquake Research in China》 1994年第3期68-78,共11页
Asymmetry of the Weihe Basin is discussed in the paper,and also the master control fault,secondary control fault of asymmetric basin is proposed in the paper.The asymmetry of the Weihe Basin is expressed as follows:(1... Asymmetry of the Weihe Basin is discussed in the paper,and also the master control fault,secondary control fault of asymmetric basin is proposed in the paper.The asymmetry of the Weihe Basin is expressed as follows:(1) its shape of the cross sections is asymmetrical;(2) the tectonic activity of the southern margin fault and the northern margin one is apparently different;(3) its deep tectonics is asymmetrical.Finally,we use the Weihe Basin as an example to establish a "cantilever-beam" model for calculations.The results show that:(1) flexure leads to stress accumulation and forming extensional fractures;(2) fractures slope steeply towards the free end;(3) when the length of beam becomes longer,it is possible that new extensional fractures will occur in the fixed end. 展开更多
关键词 asymmetrIC Basin Master CONTROL fault Secondary CONTROL fault cantilever-beam model
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New “Intellectual Networks” (Smart Grid) for Detecting Electrical Equipment Faults, Defects and Weaknesses
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作者 Alexander Yu. Khrennikov 《Smart Grid and Renewable Energy》 2012年第3期159-164,共6页
The most important elements of “intellectual networks” (Smart Grid) are the systems of monitoring the parameters of electrical equipment. Information-measuring systems (IMS), which described in this paper, were prop... The most important elements of “intellectual networks” (Smart Grid) are the systems of monitoring the parameters of electrical equipment. Information-measuring systems (IMS), which described in this paper, were proposed to use together with rapid digital protection against short-circuit regimes in transformer windings. This paper presents an application’s experience of LVI-testing, some results of the use of Frequency Response Analysis (FRA) to check the condition of transformer windings and infra-red control results of electrical equipment. The LVI method and short-circuit inductive reactance measurements are sensitive for detecting such faults as radial, axial winding deformations, a twisting of low-voltage or regulating winding, a losing of winding’s pressing and others. 展开更多
关键词 INTELLECTUAL NETWORKS Smart Grid Monitoring SYSTEM Electrical Equipment Information-Measuring SYSTEM Frequency Response Analysis Transformer WINDING fault Diagnostic Low Voltage Impulse Method short-circuit Inductive REACTANCE Measurement
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改进卷积胶囊网络的滚动轴承故障诊断方法 被引量:3
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作者 赵小强 柴靖轩 《振动工程学报》 EI CSCD 北大核心 2024年第5期885-895,共11页
目前许多基于卷积网络的滚动轴承故障诊断方法受噪声信号以及负荷变化的影响,存在诊断效果不佳、泛化能力差的问题。针对此问题提出一种改进卷积胶囊网络的滚动轴承变工况故障诊断方法。该方法设计了多尺度非对称卷积模块,其中采用不同... 目前许多基于卷积网络的滚动轴承故障诊断方法受噪声信号以及负荷变化的影响,存在诊断效果不佳、泛化能力差的问题。针对此问题提出一种改进卷积胶囊网络的滚动轴承变工况故障诊断方法。该方法设计了多尺度非对称卷积模块,其中采用不同尺度的非对称卷积层对输入数据进行特征提取,在实现最大化提取数据中的特征信息的同时,还能够有效减少参数量;在该模块中引入通道注意力机制,能更好地提取有用的通道特征,提高该方法特征提取的能力;通过将网络中的全连接层改进为胶囊全连接层,使得胶囊在输出向量特征信息时,避免了特征信息在空间中的丢失。使用凯斯西储大学轴承数据集和东南大学变速箱数据集来验证所提方法的诊断性能,并与其他深度学习方法进行了比较。实验结果表明,与其他深度学习方法相比,具有较好的泛化性,效果更佳。 展开更多
关键词 故障诊断 滚动轴承 胶囊网络 非对称卷积 特征提取
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Intelligent System Design for Stator Windings Faults Diagnosis:Suitable for Maintenance Work
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作者 Lane M.Rabelo Baccarini Vinícius S.Avelar +1 位作者 Valceres Vieira R.E.Silva Gleison F.V.Amaral 《Journal of Software Engineering and Applications》 2013年第10期526-532,共7页
The short circuit is a severe fault that occurs in the stator windings. Therefore, it is very important to diagnose this type of failure in its beginning before it causes unscheduled stop and the machine loss. In this... The short circuit is a severe fault that occurs in the stator windings. Therefore, it is very important to diagnose this type of failure in its beginning before it causes unscheduled stop and the machine loss. In this context, the Support Vector Machine (SVM) is a tool of considerable importance for standard classification. From some training data, it can diagnose whether or not there is a short circuit beginning, and which is important for predictive maintenance. This work proposes a technique for early detection of a short circuit between the turns aiming at its implementation in a real plant. The paper shows simulation and experimental results, and validates the proposed technique. 展开更多
关键词 fault Diagnosis Support Vector Machines Maintenance Work Software Tool Winding short-circuit
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不对称短路故障下永磁直驱风电机组并网控制策略研究 被引量:2
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作者 陶大军 闫涵 《大电机技术》 2024年第2期1-8,共8页
电网侧发生不对称故障时,永磁直驱风电机组并网电流会发生三相不平衡的问题。针对这一问题,提出一种基于自适应陷波器的网侧换流器控制策略。该控制策略基于解决机组并网电流二倍频分量的思想,在电网侧发生不对称短路故障时,将进入逆变... 电网侧发生不对称故障时,永磁直驱风电机组并网电流会发生三相不平衡的问题。针对这一问题,提出一种基于自适应陷波器的网侧换流器控制策略。该控制策略基于解决机组并网电流二倍频分量的思想,在电网侧发生不对称短路故障时,将进入逆变器的dq坐标系下的二倍频电压分量去除,从而使得网侧换流器输出的电流达到三相平衡。本文首先分析了电网侧发生不对称短路故障后永磁直驱风力发电机组的动态响应;然后建立了机侧和网侧换流器的模型,并分别采用了双闭环矢量控制技术和基于自适应陷波器的控制策略;最后进行仿真分析,验证了改进后的控制策略相较于传统控制策略,有效解决了不对称短路故障下并网电流三相不平衡问题。 展开更多
关键词 直驱风电机组 不对称短路故障 故障穿越 并网电流
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