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Fault Distance EstimationMethod for DC Distribution Networks Based on Sparse Measurement of High-Frequency Electrical Quantities
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作者 He Wang Shiqiang Li +1 位作者 Yiqi Liu Jing Bian 《Energy Engineering》 2025年第11期4497-4521,共25页
With the evolution of DC distribution networks from traditional radial topologies to more complex multi-branch structures,the number of measurement points supporting synchronous communication remains relatively limite... With the evolution of DC distribution networks from traditional radial topologies to more complex multi-branch structures,the number of measurement points supporting synchronous communication remains relatively limited.This poses challenges for conventional fault distance estimation methods,which are often tailored to simple topologies and are thus difficult to apply to large-scale,multi-node DC networks.To address this,a fault distance estimation method based on sparse measurement of high-frequency electrical quantities is proposed in this paper.First,a preliminary fault line identification model based on compressed sensing is constructed to effectively narrow the fault search range and improve localization efficiency.Then,leveraging the high-frequency impedance characteristics and the voltage-current relationship of electrical quantities,a fault distance estimation approach based on high-frequency measurements from both ends of a line is designed.This enables accurate distance estimation even when the measurement devices are not directly placed at both ends of the faulted line,overcoming the dependence on specific sensor placement inherent in traditional methods.Finally,to further enhance accuracy,an optimization model based on minimizing the high-frequency voltage error at the fault point is introduced to reduce estimation error.Simulation results demonstrate that the proposed method achieves a fault distance estimation error of less than 1%under normal conditions,and maintains good performance even under adverse scenarios. 展开更多
关键词 dc distribution network fault location compressed sensing fault distance estimation high-frequency electrical quantities
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Analysis of DC Aging Characteristics of Stable ZnO Varistors Based on Voronoi Network and Finite Element Simulation Model
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作者 ZHANG Ping LU Mingtai +1 位作者 LU Tiantian YUE Yinghu 《材料导报》 北大核心 2026年第2期20-28,共9页
In modern ZnO varistors,traditional aging mechanisms based on increased power consumption are no longer relevant due to reduced power consumption during DC aging.Prolonged exposure to both AC and DC voltages results i... In modern ZnO varistors,traditional aging mechanisms based on increased power consumption are no longer relevant due to reduced power consumption during DC aging.Prolonged exposure to both AC and DC voltages results in increased leakage current,decreased breakdown voltage,and lower nonlinearity,ultimately compromising their protective performance.To investigate the evolution in electrical properties during DC aging,this work developed a finite element model based on Voronoi networks and conducted accelerated aging tests on commercial varistors.Throughout the aging process,current-voltage characteristics and Schottky barrier parameters were measured and analyzed.The results indicate that when subjected to constant voltage,current flows through regions with larger grain sizes,forming discharge channels.As aging progresses,the current focus increases on these channels,leading to a decline in the varistor’s overall performance.Furthermore,analysis of the Schottky barrier parameters shows that the changes in electrical performance during aging are non-monotonic.These findings offer theoretical support for understanding the aging mechanisms and condition assessment of modern stable ZnO varistors. 展开更多
关键词 ZnO varistors Voronoi network dc aging finite element method(FEM) current distribution double Schottky barrier theory
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Research on power electronic transformer applied in AC/DC hybrid distribution networks 被引量:15
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作者 Yiqun Miao Jieying Song +6 位作者 Haijun Liu Zhengang Lu Shufan Chen Chun Ding Tianzhi Cao Linhai Cai Yuzhong Gong 《Global Energy Interconnection》 2018年第3期396-403,共8页
The AC/DC hybrid distribution network is one of the trends in distribution network development, which poses great challenges to the traditional distribution transformer. In this paper, a new topology suitable for AC/D... The AC/DC hybrid distribution network is one of the trends in distribution network development, which poses great challenges to the traditional distribution transformer. In this paper, a new topology suitable for AC/DC hybrid distribution network is put forward according to the demands of power grid, with advantages of accepting DG and DC loads, while clearing DC fault by blocking the clamping double sub-module(CDSM) of input stage. Then, this paper shows the typical structure of AC/DC distribution network that is hand in hand. Based on the new topology, this paper designs the control and modulation strategies of each stage, where the outer loop controller of input stage is emphasized for its twocontrol mode. At last, the rationality of new topology and the validity of control strategies are verified by the steady and dynamic state simulation. At the same time, the simulation results highlight the role of PET in energy regulation. 展开更多
关键词 AC/dc hybrid distribution network Power electronic transformer(PET) Clamping double sub-module(CDSM) Energy router
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Operation Control Method of Relay Protection in Flexible DC Distribution Network Compatible with Distributed Power Supply 被引量:1
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作者 Zihan Qi 《Energy Engineering》 EI 2023年第11期2547-2563,共17页
A novel operation control method for relay protection in flexible DC distribution networks with distributed power supply is proposed to address the issue of inaccurate fault location during relay protection,leading to... A novel operation control method for relay protection in flexible DC distribution networks with distributed power supply is proposed to address the issue of inaccurate fault location during relay protection,leading to poor performance.The method combines a fault-tolerant fault location method based on long-term and short-term memory networks to accurately locate the fault section.Then,an operation control method for relay protection based on adaptive weight and whale optimization algorithm(WOA)is used to construct an objective function considering the shortest relay protection action time and the smallest impulse current.The adaptive weight and WOA are employed to obtain the optimal strategy for relay protection operation control,reducing the action time and impulse current.Experimental results demonstrate the effectiveness of the proposed method in accurately locating faults and improving relay protection performance.The longest operation time is reduced by 4.7023 s,and the maximum impulse current is limited to 0.3 A,effectively controlling the impact of large impulse currents and enhancing control efficiency. 展开更多
关键词 Compatible distributed power supply FLEXIBILITY dc distribution network relay protection operation control
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Line Fault Detection of DC Distribution Networks Using the Artificial Neural Network
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作者 Xunyou Zhang Chuanyang Liu Zuo Sun 《Energy Engineering》 EI 2023年第7期1667-1683,共17页
ADC distribution network is an effective solution for increasing renewable energy utilization with distinct benefits,such as high efficiency and easy control.However,a sudden increase in the current after the occurren... ADC distribution network is an effective solution for increasing renewable energy utilization with distinct benefits,such as high efficiency and easy control.However,a sudden increase in the current after the occurrence of faults in the network may adversely affect network stability.This study proposes an artificial neural network(ANN)-based fault detection and protection method for DC distribution networks.The ANN is applied to a classifier for different faults ontheDC line.The backpropagationneuralnetwork is used to predict the line current,and the fault detection threshold is obtained on the basis of the difference between the predicted current and the actual current.The proposed method only uses local signals,with no requirement of a strict communication link.Simulation experiments are conducted for the proposed algorithm on a two-terminal DC distribution network modeled in the PSCAD/EMTDC and developed on the MATLAB platform.The results confirm that the proposed method can accurately detect and classify line faults within a few milliseconds and is not affected by fault locations,fault resistance,noise,and communication delay. 展开更多
关键词 Artificial neural network dc distribution network fault detection
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Optimal Configuration of Fault Location Measurement Points in DC Distribution Networks Based on Improved Particle Swarm Optimization Algorithm
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作者 Huanan Yu Hangyu Li +1 位作者 He Wang Shiqiang Li 《Energy Engineering》 EI 2024年第6期1535-1555,共21页
The escalating deployment of distributed power sources and random loads in DC distribution networks hasamplified the potential consequences of faults if left uncontrolled. To expedite the process of achieving an optim... The escalating deployment of distributed power sources and random loads in DC distribution networks hasamplified the potential consequences of faults if left uncontrolled. To expedite the process of achieving an optimalconfiguration of measurement points, this paper presents an optimal configuration scheme for fault locationmeasurement points in DC distribution networks based on an improved particle swarm optimization algorithm.Initially, a measurement point distribution optimization model is formulated, leveraging compressive sensing.The model aims to achieve the minimum number of measurement points while attaining the best compressivesensing reconstruction effect. It incorporates constraints from the compressive sensing algorithm and networkwide viewability. Subsequently, the traditional particle swarm algorithm is enhanced by utilizing the Haltonsequence for population initialization, generating uniformly distributed individuals. This enhancement reducesindividual search blindness and overlap probability, thereby promoting population diversity. Furthermore, anadaptive t-distribution perturbation strategy is introduced during the particle update process to enhance the globalsearch capability and search speed. The established model for the optimal configuration of measurement points issolved, and the results demonstrate the efficacy and practicality of the proposed method. The optimal configurationreduces the number of measurement points, enhances localization accuracy, and improves the convergence speedof the algorithm. These findings validate the effectiveness and utility of the proposed approach. 展开更多
关键词 Optimal allocation improved particle swarm algorithm fault location compressed sensing dc distribution network
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Research on Scheduling Strategy of Flexible Interconnection Distribution Network Considering Distributed Photovoltaic and Hydrogen Energy Storage 被引量:1
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作者 Yang Li Jianjun Zhao +2 位作者 Xiaolong Yang He Wang Yuyan Wang 《Energy Engineering》 EI 2024年第5期1263-1289,共27页
Distributed photovoltaic(PV)is one of the important power sources for building a new power system with new energy as the main body.The rapid development of distributed PV has brought new challenges to the operation of... Distributed photovoltaic(PV)is one of the important power sources for building a new power system with new energy as the main body.The rapid development of distributed PV has brought new challenges to the operation of distribution networks.In order to improve the absorption ability of large-scale distributed PV access to the distribution network,the AC/DC hybrid distribution network is constructed based on flexible interconnection technology,and a coordinated scheduling strategy model of hydrogen energy storage(HS)and distributed PV is established.Firstly,the mathematical model of distributed PV and HS system is established,and a comprehensive energy storage system combining seasonal hydrogen energy storage(SHS)and battery(BT)is proposed.Then,a flexible interconnected distribution network scheduling optimization model is established to minimize the total active power loss,voltage deviation and system operating cost.Finally,simulation analysis is carried out on the improved IEEE33 node,the NSGA-II algorithm is used to solve specific examples,and the optimal scheduling results of the comprehensive economy and power quality of the distribution network are obtained.Compared with the method that does not consider HS and flexible interconnection technology,the network loss and voltage deviation of this method are lower,and the total system cost can be reduced by 3.55%,which verifies the effectiveness of the proposed method. 展开更多
关键词 Seasonal hydrogen storage flexible interconnection AC/dc distribution network photovoltaic absorption scheduling strategy
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Coordinated control strategy for multi-DG DC microgrid based on two-layer fuzzy neural network
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作者 Hao Pan Limin Jia 《Global Energy Interconnection》 2025年第5期732-746,共15页
Conventional coordinated control strategies for DC bus voltage signal(DBS)in islanded DC microgrids(IDCMGs)struggle with coordinating multiple distributed generators(DGs)and cannot effectively incorporate state of cha... Conventional coordinated control strategies for DC bus voltage signal(DBS)in islanded DC microgrids(IDCMGs)struggle with coordinating multiple distributed generators(DGs)and cannot effectively incorporate state of charge(SOC)information of the energy storage system,thereby reducing the system flexibility.In this study,we propose an adaptive coordinated control strategy that employs a two-layer fuzzy neural network controller(FNNC)to adapt to varying operating conditions in an IDCMG with multiple PV and battery energy storage system(BESS)units.The first-layer FNNC generates optimal operating mode commands for each DG,thereby avoiding the requirement for complex operating modes based on SOC segmentation.An optimal switching sequence logic prioritizes the most appropriate units during mode transitions.The second-layer FNNC dynamically adjusts the droop power to overcome power distribution challenges among DG groups.This helps in preventing the PV power from exceeding the limits and mitigating the risk of BESS overcharging or over-discharging.The simulation results indicate that the proposed strategy enhances the coordinated operation of multi-DG IDCMGs,thereby ensuring the efficient and safe utilization of PV and BESS. 展开更多
关键词 dc microgrid distributed generation Droop control Fuzzy neural network Coordinated control
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Stability Analysis and Control of DC Distribution System with Electric Vehicles
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作者 Zhijie Zheng Song Zhang +3 位作者 Xiaolei Zhang Bo Yang Fang Yan Xiaoning Ge 《Energy Engineering》 EI 2023年第3期633-647,共15页
The DC distribution network system equipped with a large number of power electronic equipment exhibits weak damping characteristics and is prone to low-frequency and high-frequency unstable oscillations.The current in... The DC distribution network system equipped with a large number of power electronic equipment exhibits weak damping characteristics and is prone to low-frequency and high-frequency unstable oscillations.The current interpretation of the oscillation mechanism has not been unified.Firstly,this paper established the complete statespace model of the distribution system consisting of a large number of electric vehicles,characteristic equation of the distribution network system is derived by establishing a state-space model,and simplified reduced-order equations describing the low-frequency oscillation and the high-frequency oscillation are obtained.Secondly,based on eigenvalue analysis,the oscillation modes and the influence of the key system parameters on the oscillation mode are studied.Besides,impacts of key factors,such as distribution network connection topology and number of dynamic loads,have been discussed to suppress oscillatory instability caused by inappropriate design or dynamic interactions.Finally,using the DC distribution example system,through model calculation and time-domain simulation analysis,the correctness of the aforementioned analysis is verified. 展开更多
关键词 dc distribution network system oscillation instability reduced-order equivalent model damping control sensitivity analysis
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基于PLC与DCS的工业现场通信网络系统设计与实现
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作者 张慧霞 《通信电源技术》 2025年第24期28-30,共3页
为解决工业现场通信网络普遍存在的协议碎片化、拓扑灵活性不足及实时性与带宽难以兼顾等问题,设计了一种基于可编程逻辑控制器(Programmable Logic Controller,PLC)与分布式控制系统(Distributed Control System,DCS)的工业现场通信网... 为解决工业现场通信网络普遍存在的协议碎片化、拓扑灵活性不足及实时性与带宽难以兼顾等问题,设计了一种基于可编程逻辑控制器(Programmable Logic Controller,PLC)与分布式控制系统(Distributed Control System,DCS)的工业现场通信网络系统。该系统通过整合多协议网关与冗余控制架构,实现了异构协议的协同工作,并采用混合拓扑结构与优先级队列机制,有效提升了数据传输的可靠性与网络扩展能力。测试结果表明,该系统能够降低协议转换错误率和传输延迟,提高带宽利用率,为复杂工业环境下的设备互联与数据交互提供了技术支撑。 展开更多
关键词 工业现场通信网络 可编程逻辑控制器(PLC) 分布式控制系统(dcS) 协议转换
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Maximum Loadability Evaluation Method for Multi-voltage-level DC Distribution Network with DC Electric Springs
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作者 Xiaolong Xu Qianggang Wang +5 位作者 Jianquan Liao Yuan Chi Tao Huang Niancheng Zhou Yiyao Zhou Xuefei Zhang 《Journal of Modern Power Systems and Clean Energy》 2025年第4期1274-1286,共13页
The multi-voltage-level DC distribution network(MVL-DC-DN)is a promising network for efficiently integrat ing rapidly growing DC loads,and fast-growing load demand would bring a challenge to the MVL-DC-DN in terms of ... The multi-voltage-level DC distribution network(MVL-DC-DN)is a promising network for efficiently integrat ing rapidly growing DC loads,and fast-growing load demand would bring a challenge to the MVL-DC-DN in terms of the maximum loadability.This paper considers the DC electric spring(DC-ES)as a novel candidate flexible resource for en hancing the maximum loadability of the MVL-DC-DN,and pro poses an evaluation method for the maximum loadability.First ly,with the consideration of device constraints,the impact that the DC-ES on the maximum loadability of the DC distribution network(DC-DN)is analyzed via a simplified equivalent cir cuit.Subsequently,the power flow(PF)model of an MVL-DCDN with DC-ESs is established.Finally,a method based on con tinuation power flow(CPF)for evaluating the maximum load ability of an MVL-DC-DN with DC-ESs is proposed.During the evaluation,limitations of the DC-ES and the DC transform er(DCT)are considered.The consideration of the practical con straints avoids the overestimation of the maximum loadability.The case study verifies the effectiveness of the proposed method. 展开更多
关键词 dc electric spring maximum loadability multivoltage-level dc distribution network continuation power flow(CPF)
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Optimal Power Flow Based on Branch Flow Model for Bipolar DC Distribution Networks
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作者 Yiyao Zhou Qianggang Wang +5 位作者 Xiaolong Xu Tao Huang Jianquan Liao Yuan Chi Xuefei Zhang Niancheng Zhou 《CSEE Journal of Power and Energy Systems》 2025年第2期944-948,共5页
Optimal Power Flow (OPF) plays a crucial role in optimization and operation of the bipolar DC distribution network (Bi-DCDN). However, existing OPF models encounter difficulties in the power optimization of Bi-DCDNs d... Optimal Power Flow (OPF) plays a crucial role in optimization and operation of the bipolar DC distribution network (Bi-DCDN). However, existing OPF models encounter difficulties in the power optimization of Bi-DCDNs due to the optimal power expressed as a product form, i.e., the product of voltage and current. Hence, this brief formulates the OPF problem of Bi-DCDNs using the branch flow model (BFM). The BFM employs power, instead of current, to account for the unique structure of Bi-DCDNs. Convex relaxation and linear approximation are sequentially applied to reformulate the BFM-based OPF, presenting it as a second-order cone programming (SOCP) problem. Further, the effectiveness of the proposed OPF model is verified in case studies. The numerical results demonstrate that the BFM-based OPF is a feasible and promising approach for Bi-DCDNs. 展开更多
关键词 Bipolar dc distribution network branchflow model optimal powerflow second-order cone programming problem
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Interactive Game Based Peak Shaving Management in AC/DC Hybrid Distribution Network
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作者 Hongjun Gao Lei Zhong +4 位作者 Cheng Wang Lingzhu Zhang Shafqat Jawad Youbo Liu Junyong Liu 《CSEE Journal of Power and Energy Systems》 2025年第4期1489-1500,共12页
The large-scale integration of DC loads,such as electric vehicles and air conditioners,has increased the peak demand of the distribution network.Therefore,this paper proposes a load peak shaving operation management m... The large-scale integration of DC loads,such as electric vehicles and air conditioners,has increased the peak demand of the distribution network.Therefore,this paper proposes a load peak shaving operation management model based on interactive games among multi-stakeholders(e.g.,distribution network operator,energy storage owner and electric vehicle users)in an AC/DC hybrid distribution network.The supply and demand balance among multiple AC networks can be realized through the DC network with the help of electric vehicles and energy storage when the distribution network operator adjusts the time-of-use electricity price in the peak shaving management model.Distribution network operators aim at minimizing the peak-to-valley difference and maximizing the operation revenue while the energy storage owner and electric vehicle users seek for the greatest benefits in the interactive game process.The above game model is constructed in a master-slave framework,where the existence and uniqueness of the game equilibrium is also proved.Finally,the numerical results show that the proposed operation management model can effectively reduce the peak-to-valley differences while ensuring the best interests of all stakeholders. 展开更多
关键词 AC/dc hybrid distribution network electric vehicle interactive game orderly charging/discharging
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火电厂DCS系统通信延迟问题及其解决方案
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作者 马凯凯 《通信电源技术》 2025年第18期179-181,共3页
火电厂分布式控制系统(Distributed Control System,DCS)在机组控制与安全运行中依赖稳定的通信网络,而通信延迟易引发控制响应滞后与数据异常,影响运行可靠性。通过分析通信延迟问题,提出网络设备升级、系统配置优化及环境防干扰等解... 火电厂分布式控制系统(Distributed Control System,DCS)在机组控制与安全运行中依赖稳定的通信网络,而通信延迟易引发控制响应滞后与数据异常,影响运行可靠性。通过分析通信延迟问题,提出网络设备升级、系统配置优化及环境防干扰等解决方案,并验证其实施效果,提出一系列优化策略。研究为提升火电厂DCS系统通信实时性与稳定性提供了工程参考与应用价值。 展开更多
关键词 火电厂 分布式控制系统(dcS) 通信延迟 网络优化
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火电厂DCS的冗余通信网络拓扑优化
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作者 李博远 《通信电源技术》 2025年第22期143-145,共3页
为提升火电厂分布式控制系统(Distributed Control System,DCS)通信网络的可靠性和实时性,通过分析常见火电厂DCS的冗余通信网络拓扑及其存在的问题,探讨了单点故障隐患、切换延迟大和网络负载不均等关键技术难点,提出了实现全路径物理... 为提升火电厂分布式控制系统(Distributed Control System,DCS)通信网络的可靠性和实时性,通过分析常见火电厂DCS的冗余通信网络拓扑及其存在的问题,探讨了单点故障隐患、切换延迟大和网络负载不均等关键技术难点,提出了实现全路径物理+逻辑双冗余、采用毫秒级智能切换协议、部署动态负载均衡与服务质量(Quality of Service,QoS)策略等优化策略。验证结果表明,这些优化策略能够有效消除火电厂DCS的冗余通信网络拓扑单点故障风险,显著缩短冗余切换时间,合理分配网络带宽。 展开更多
关键词 火电厂分布式控制系统(dcS) 冗余通信网络 拓扑优化
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基于CNN与DCGAN的柔性直流配电网故障检测 被引量:8
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作者 韦延方 吴郑磊 +4 位作者 王鹏 王浩 杨明 曾志辉 王晓卫 《煤炭学报》 EI CAS CSCD 北大核心 2021年第S02期1201-1208,共8页
煤矿直流供电技术凭借其优良的供电性能将大大提高煤矿供电的可靠性和安全性,但由于该技术所采用的电力电子设备耐受故障冲击电流能力差,保护需利用数毫秒内的暂态信息识别故障区域,给传统交流电网继电保护带来了新的挑战。针对直流电... 煤矿直流供电技术凭借其优良的供电性能将大大提高煤矿供电的可靠性和安全性,但由于该技术所采用的电力电子设备耐受故障冲击电流能力差,保护需利用数毫秒内的暂态信息识别故障区域,给传统交流电网继电保护带来了新的挑战。针对直流电网故障检测正确率低、鲁棒性弱的问题,提出了一种基于卷积神经网络(CNN)与深度卷积对抗生成网络(DCGAN)的柔性直流配电网故障检测新方法。首先利用集合经验模态分解方法将暂态电流分解,得到若干个本征模态函数(IMF)分量,计算各个IMF的相关系数,并重构成新的暂态电流信号;通过滑动窗口取值、信号组合,将其经过信号-图像转换变为二维图像,该图像分为测试集和训练集;接着,将训练集利用DCGAN通过轮流训练判别器和生成器,经多次训练逼近真实值,从生成器中得到增强样本作为训练集的扩充;并将训练集与DCGAN生成的训练集来训练网络,进一步利用CNN进行故障检测判断;最后,从样本增强对识别结果的影响,以及卷积核大小、池化方式和激活函数等方面对网络性能的影响进行仿真测试,验证了所提算法的有效性。测试结果表明,该方法所分析的4种不同工况下都能有较高的检测精度,且平均检测精度为95.044%,对于分辨率为44像素×44像素的图像,检测速度可达20帧/s。 展开更多
关键词 卷积神经网络 故障检测 集合经验模态分解 dcGAN 相关系数 柔性直流配电网
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基于DCS的网络分布式实时监控系统的设计与实现 被引量:2
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作者 严华 古钟璧 +3 位作者 王祯学 李建国 王劲松 李中志 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第4期657-660,共4页
提出了一种基于DCS的网络分布式实时监控系统的设计方法 ,介绍了DCS系统的基本组成与结构 ,讨论了网络分布式实时监控系统的基本结构与功能及其实现要点 。
关键词 网络分布式实时监控系统 dcS 计算机网络 分布式计算机控制 CIMS 系统设计 系统结构
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DCS网络噪声干扰原因分析及对策 被引量:5
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作者 张兴 蔡兵 陈胜利 《自动化仪表》 CAS 北大核心 2013年第2期38-41,共4页
DCS系统的抗干扰能力是攸关整个控制系统安全运行的关键因素之一,而接地系统是DCS安全和应用过程中的重要环节。针对某电厂DCS存在的网络噪声干扰问题,从系统接地类型、方式及接地装置等方面,对该电厂DCS接地系统进行了全面的研究和测... DCS系统的抗干扰能力是攸关整个控制系统安全运行的关键因素之一,而接地系统是DCS安全和应用过程中的重要环节。针对某电厂DCS存在的网络噪声干扰问题,从系统接地类型、方式及接地装置等方面,对该电厂DCS接地系统进行了全面的研究和测试。分析了该电厂DCS系统内、外部干扰产生的原因,并提出了相应的解决和预防措施,由此确保了DCS系统的长期稳定运行。 展开更多
关键词 分散控制系统(dcS) 网络噪声 抗干扰 接地 屏蔽
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集散控制系统(DCS)的发展及展望 被引量:23
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作者 潘世永 郑萍 李英 《自动化与仪器仪表》 2003年第4期4-6,共3页
本文主要以横河公司的产品为例 ,介绍DCS的功能、结构、特点 ,并说明了DCS发展的三个阶段及其特点。
关键词 集散控制系统 dcS 分散控制 集中管理 控制网络
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计及多种分布式能源的多端直流配电网故障电流计算方法
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作者 贾东梨 任昭颖 +3 位作者 刘科研 叶学顺 李跃涛 徐利梅 《中国电力》 北大核心 2026年第1期84-96,共13页
直流配电网短路故障电流将在极短时间内上升至正常运行电流的数倍,对系统保护与安全运行构成严峻挑战。直流配电网中含有多种分布式能源,其并网变流器多样、耦合关系复杂,导致故障特性分析与故障电流计算困难,不利于保护策略设计。为此... 直流配电网短路故障电流将在极短时间内上升至正常运行电流的数倍,对系统保护与安全运行构成严峻挑战。直流配电网中含有多种分布式能源,其并网变流器多样、耦合关系复杂,导致故障特性分析与故障电流计算困难,不利于保护策略设计。为此,提出含多种分布式能源的直流配电网故障电流计算模型。首先,建立电压源型变流器(voltage source converter,VSC)的故障等效回路,并分析分布式光伏Boost变换器、分布式风电机侧变流器(modular multilevel converter,MSC)、储能双有源桥变流器(dual active bridge,DAB)与VSC耦合运行下故障响应特性,建立多场景故障等效回路。其次,从故障电流多阶段暂态响应过程出发,建立故障前初始稳态阶段、直流母线放电阶段、二极管续流阶段与故障后稳态阶段的故障电流计算模型。然后,基于所建多阶段故障电流计算模型,分析影响故障峰值电流的关键因素。最后,以含多分布式能源的多端直流配电网为例,将理论计算结果与Matlab/Simulink仿真结果对比,验证所提模型的准确性。 展开更多
关键词 多端直流配电网 分布式能源 故障等效回路 故障电流计算 峰值电流
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