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期刊文章列表

  • Yanshuo Liu,Licheng Wang,Dezhi Li,Kai Wang(School of Electrical Engineering;School of Information Engineering).State-of-health estimation of lithium-ion batteries based on electrochemical impedance spectroscopy:a review[J].Protection and Control of Modern Power Systems,2023,第3期
  • Junhui Li,Gang Mu,Jiahui Zhang,Cuiping Li,Gangui Yan,Haotian Zhang,Guohang Chen(Key Laboratory of Modern Power System Simulation and Control and Renewable Energy Technology;State Grid Zhejiang Pinghu City Electric Power Supply Company.LTD.).Dynamic economic evaluation of hundred megawatt-scale electrochemical energy storage for auxiliary peak shaving[J].Protection and Control of Modern Power Systems,2023,第3期
  • Minan Tang,Hang Lu,Bin Li(School of New Energy and Power Engineering;School of Electrical and Information Engineering).Fault location of untransposed double-circuit transmission lines based on an improved Karrenbauer matrix and the QPSO algorithm[J].Protection and Control of Modern Power Systems,2023,第3期
  • Jinmu Lai,Xin Yin,Xianggen Yin,Jiaxuan Hu,Fan Xiao(School of Electrical and Information Engineering;School of Automation;School of Electrical and Electronic Engineering;State Grid Hubei Electric Power Research Institute).Typology and working mechanism of a hybrid power router based on power-frequency transformer electromagnetic coupling with converters[J].Protection and Control of Modern Power Systems,2023,第3期
  • Yi Wang,Tao Wang,Liyuan Liu(School of Electrical Engineering and Electronic Information;Key Laboratory of Fluid and Power Machinery).A fault segment location method for distribution networks based on spiking neural P systems and Bayesian estimation[J].Protection and Control of Modern Power Systems,2023,第3期
  • Jinxin Ouyang,Xinyu Pan,Junjun Ye,Chao Xiao,Yanbo Diao,Qingwu Zhang(State Key Laboratory of Power Transmission Equipment and System Security and New Technology;Electric Power Research Institute of State Grid Henan Electric Power Company;Chongqing City Management College;NR Electric Co.).An improved prediction method of subsequent commutation failure of an LCC-HVDC considering sequential control response[J].Protection and Control of Modern Power Systems,2023,第3期
  • Jian Wang,Ning Xie,Chunyi Huang,Yong Wang(Department of Electrical Engineering;Department of Energy).Two-stage stochastic-robust model for the self-scheduling problem of an aggregator participating in energy and reserve markets[J].Protection and Control of Modern Power Systems,2023,第3期
  • Dan Jiao,Changzheng Shao,Bo Hu,Kaigui Xie,Chengrong Lin,Zhuoxuan Ju(State Key Laboratory of Power Transmission Equipment and System Security;Department of Electrical and Computer Engineering).Age-of-information-aware PI controller for load frequency control[J].Protection and Control of Modern Power Systems,2023,第3期
  • Yutong Wang,Bo Yang(Faculty of Electric Power Engineering).Optimal PV array reconfiguration under partial shading condition through dynamic leader based collective intelligence[J].Protection and Control of Modern Power Systems,2023,第3期
  • Shahbaz Hussain,S.M.Suhail Hussain,Marziyeh Hemmati,Atif Iqbal,Rashid Alammari,Stefano Zanero,Enrico Ragaini,Giambattista Gruosso(Department of Electrical Engineering;Dipartimento di Elettronica;Department of Electrical Engineering;Interdisciplinary Research Center for Renewable Energy and Power Systems(IRC-REPS)).A novel hybrid cybersecurity scheme against false data injection attacks in automated power systems[J].Protection and Control of Modern Power Systems,2023,第3期
  • Nisha Kumari,Pulakraj Aryan,G.Lloyds Raja,Yogendra Arya(Department of Electrical Engineering;Department of Electrical Engineering;Department of Electrical Engineering).Dual degree branched type-2 fuzzy controller optimized with a hybrid algorithm for frequency regulation in a triple-area power system integrated with renewable sources[J].Protection and Control of Modern Power Systems,2023,第3期
  • Subrat Kumar Pradhan,Dushmanta Kumar Das(Department of Electrical Engineering;Department of Electrical and Electronics Engineering).Sliding mode controller design via delay-dependent H∞ stabilization criterion for load frequency regulation[J].Protection and Control of Modern Power Systems,2023,第3期
  • Erfan Taherzadeh,Hamid Radmanesh,Shahram Javadi,G.B.Gharehpetian(Department of Electrical Engineering;Electrical Engineering Department).Circuit breakers in HVDC systems:state-of-the-art review and future trends[J].Protection and Control of Modern Power Systems,2023,第3期
  • Faiaz Ahsan,Nazia Hasan Dana,Subrata K.Sarker,Li Li,S.M.Muyeen,Md.Firoj Ali,Zinat Tasneem,Md.Mehedi Hasan,Sarafat Hussain Abhi,Md.Robiul Islam,Md.Hafiz Ahamed,Md.Manirul Islam,Sajal K.Das,Md.Faisal R.Badal,Prangon Das(Department of Mechatronics Engineering;School of Electrical and Data Engineering;Electrical Engineering Department).Data-driven next-generation smart grid towards sustainable energy evolution:techniques and technology review[J].Protection and Control of Modern Power Systems,2023,第3期
  • Botong Li,Dingchuan Zheng,Bin Li,Xinru Jiao,Qiteng Hong,Liang Ji(Key Laboratory of Smart Grid of Ministry of Education;National Industry-Education Platform of Energy Storage;Department of Electronic and Electrical Engineering;Department of Electrical Power Engineering).Analysis of low voltage ride-through capability and optimal control strategy of doubly-fed wind farms under symmetrical fault[J].Protection and Control of Modern Power Systems,2023,第2期
  • Guowei Cai,Shuyu Zhou,Cheng Liu,Yuchi Zhang,Shujia Guo,Zhichong Cao(School of Electrical Engineering).Hierarchical under frequency load shedding scheme for inter-connected power systems[J].Protection and Control of Modern Power Systems,2023,第2期
  • Bairen Chen,Q.H.Wu,Mengshi Li,Kaishun Xiahou(School of Electric Power Engineering).Detection of false data injection attacks on power systems using graph edge-conditioned convolutional networks[J].Protection and Control of Modern Power Systems,2023,第2期
  • Yibin Qiu,Qi Li,Yuxuan Ai,Weirong Chen,Mohamed Benbouzid,Shukui Liu,Fei Gao(School of Electrical Engineering;Institut National des Sciences Appliquées de Rennes;UMR CNRS 6027 IRDL;Logistics Engineering College;Chengdu Power Supply Company;CNRS).Two-stage distributionally robust optimization-based coordinated scheduling of integrated energy system with electricity-hydrogen hybrid energy storage[J].Protection and Control of Modern Power Systems,2023,第2期
  • Yajian Zhang,Chen Peng(School of Mechatronic Engineering and Automation).Adaptive H∞ event-triggered load frequency control in islanded microgirds with limited spinning reserve constraints[J].Protection and Control of Modern Power Systems,2023,第2期
  • Cairan Miao,Qi Wang,Yi Tang(School of Electrical Engineering).A multi-energy inertia-based power support strategy with gas network constraints[J].Protection and Control of Modern Power Systems,2023,第2期
  • Hongchun Shu,Shixin Wang,Shunguang Lei(Yunnan Key Laboratory of Green Energy;School of Electrical Engineering and Automation).Single-ended protection method for hybrid HVDC transmission line based on transient voltage characteristic frequency band[J].Protection and Control of Modern Power Systems,2023,第2期
  • Dejin Fan,Shu Zhang,He Huang,Liping Zhou,Yang Wang,Xianyong Xiao(College of Electricial Engineering).Three-stage day-ahead scheduling strategy for regional thermostatically controlled load aggregators[J].Protection and Control of Modern Power Systems,2023,第2期
  • Neevatika Verma,Narendra Kumar,Saket Gupta,Hasmat Malik,Fausto Pedro García Márquez(Department of Electrical Engineering;Department of Electrical Power Engineering;Ingenium Research Group;Department of Electrical Engineering;Instrumentation and Control Engineering Department).Review of sub-synchronous interaction in wind integrated power systems:classification,challenges,and mitigation techniques[J].Protection and Control of Modern Power Systems,2023,第2期
  • Xinpei Chen,Tao Yu,Zhenning Pan,Zihao Wang,Shengchun Yang(School of Electric Power Engineering;China Electric Power Research Institute).Graph representation learning-based residential electricity behavior identification and energy management[J].Protection and Control of Modern Power Systems,2023,第2期
  • Jiaqing Wu,Jie Gu,Shuqi Liu,Zhijian Jin(Department of Electrical Engineering).Strategies for improving resilience of regional integrated energy systems in the prevention-resistance phase of integration[J].Protection and Control of Modern Power Systems,2023,第2期
  • Yi Luo,Jun Yao,Zhaoyang Chen,Sen Huang,Shiyue Chen,Qi Zhang,Zhentao Qin(State Key Laboratory of Power Transmission Equipment and System Security and New Technology;State Grid Changzhou Power Supply Company).Transient synchronous stability analysis and enhancement control strategy of a PLL-based VSC system during asymmetric grid faults[J].Protection and Control of Modern Power Systems,2023,第2期
  • Juan Carlos Quispe,John Morales,Eduardo Orduna,Carlo Liebermann,Michael Bruhns,Peter Schegner(Universidad Nacional de San Juan-CONICET;Universidad Tecnológica del Perú;Technical University of Dresden).Time-frequency multiresolution of fault-generated transient signals in transmission lines using a morphological filter[J].Protection and Control of Modern Power Systems,2023,第2期
  • Zhenxiao Yi,Zhaoliang Chen,Kai Yin,Licheng Wang,Kai Wang(School of Electrical Engineering;Qingdao No.2 Middle School;Hunan Key Laboratory of Nanophotonics and Devices;School of Information Engineering).Sensing as the key to the safety and sustainability of new energy storage devices[J].Protection and Control of Modern Power Systems,2023,第2期
  • Yaojian Wang,Jie Gu,Lyuzerui Yuan(Department of Electrical Engineering).Distribution network state estimation based on attention-enhanced recurrent neural network pseudo-measurement modeling[J].Protection and Control of Modern Power Systems,2023,第2期
  • Xiuxing Yin,Meizhen Lei(The State Key Laboratory of Water Resources Engineering and Management;The School of Information Science and Engineering).Jointly improving energy efficiency and smoothing power oscillations of integrated offshore wind and photovoltaic power:a deep reinforcement learning approach[J].Protection and Control of Modern Power Systems,2023,第2期
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