Risk assessment and alleviation of regional integrated energy system considering cross-system failures
暂无分享,去创建一个
[1] C. Ruiz,et al. Risk management of energy communities with hydrogen production and storage technologies , 2023, Applied Energy.
[2] Yuan Zeng,et al. A tri-level optimal defense method against coordinated cyber-physical attacks considering full substation topology , 2023, Applied Energy.
[3] S. Imtiaz,et al. Integrating Process Dynamics in Data-driven Models of Chemical Processing Systems , 2023, Process Safety and Environmental Protection.
[4] B. Cai,et al. Fault Diagnosis Methodology of Redundant Closed-Loop Feedback Control Systems: Subsea Blowout Preventer System as a Case Study , 2023, IEEE Transactions on Systems, Man, and Cybernetics: Systems.
[5] Mingbo Liu,et al. Risk assessment for cascading failures in regional integrated energy system considering the pipeline dynamics , 2023, Energy.
[6] D. Jena,et al. Probabilistic Load Flow for Wind Integrated Power System Considering Node Power Uncertainties and Random Branch Outages , 2023, IEEE Transactions on Sustainable Energy.
[7] Xinrui Liu,et al. Research on reliability assessment and multi-time scale improvement strategy of electricity-gas integrated energy system under cyber attack , 2022, Frontiers in Energy Research.
[8] Jiangyan Liu,et al. Comparative study on deep transfer learning strategies for cross-system and cross-operation-condition building energy systems fault diagnosis , 2022, Energy.
[9] Lane D. Smith,et al. How Much Demand Flexibility Could Have Spared Texas from the 2021 Outage? , 2022, Advances in Applied Energy.
[10] Junbo Zhao,et al. Planning-Oriented resilience assessment and enhancement of integrated electricity-gas system considering multi-type natural disasters , 2022, Applied Energy.
[11] Jingdong Wang,et al. Creating Knowledge Graph of Electric Power Equipment Faults Based on BERT–BiLSTM–CRF Model , 2022, Journal of Electrical Engineering & Technology.
[12] Tao Jiang,et al. Coordinating multi-energy to improve urban integrated energy system resilience against extreme weather events , 2022, Applied Energy.
[13] Qiuye Sun,et al. A Distributed Robust Economic Dispatch Strategy for Integrated Energy System Considering Cyber-Attacks , 2022, IEEE Transactions on Industrial Informatics.
[14] H. Jia,et al. A CVaR-based risk assessment method for park-level integrated energy system considering the uncertainties and correlation of energy prices , 2022, Energy.
[15] M. Shafiee,et al. Offshore wind decommissioning: an assessment of the risk of operations , 2022, International Journal of Sustainable Energy.
[16] D. Mandelli,et al. Risk analysis virtual ENvironment for dynamic event tree-based analyses , 2022, Annals of Nuclear Energy.
[17] Hao Chen,et al. Assessing the business interruption costs from power outages in China , 2021, Energy Economics.
[18] Peng Wang,et al. Fault detection and control in integrated energy system using machine learning , 2021 .
[19] Bo Hu,et al. Reliability Assessment of Integrated Energy Systems Considering Emergency Dispatch Based on Dynamic Optimal Energy Flow , 2021, IEEE Transactions on Sustainable Energy.
[20] Kaigui Xie,et al. Incorporating compressor station multiple failure modes in risk evaluation of electricity-gas integrated energy systems , 2021, CSEE Journal of Power and Energy Systems.
[21] Qinglai Guo,et al. A Conditional Value-at-Risk Based Planning Model for Integrated Energy System with Energy Storage and Renewables , 2021, Applied Energy.
[22] Wei Wei,et al. Supply Inadequacy Risk Evaluation of Stand-Alone Renewable Powered Heat-Electricity Energy Systems: A Data-Driven Robust Approach , 2021, IEEE Transactions on Industrial Informatics.
[23] Goran Strbac,et al. Reliability and Vulnerability Assessment of Multi-Energy Systems: An Energy Hub Based Method , 2021, IEEE Transactions on Power Systems.
[24] Yaowang Li,et al. Regional integrated energy system dispatch strategy considering advanced adiabatic compressed air energy storage device , 2021 .
[25] Guofeng Wang,et al. Event-triggered online energy flow control strategy for regional integrated energy system using Lyapunov optimization , 2021 .
[26] Di Wu,et al. Comparative study of optimization method and optimal operation strategy for multi-scenario integrated energy system , 2020, Energy.
[27] Janusz Bialek,et al. What does the GB power outage on 9 August 2019 tell us about the current state of decarbonised power systems? , 2020 .
[28] Lei Wu,et al. Evaluation of bi-directional cascading failure propagation in integrated electricity-natural gas system , 2020 .
[29] Dong Liu,et al. Optimal allocation of power supply systems in industrial parks considering multi-energy complementarity and demand response , 2020 .
[30] Tao Jiang,et al. Situation awareness and security risk mitigation for integrated energy systems with the inclusion of power‐to‐gas model , 2020, IET Renewable Power Generation.
[31] Chao Yan,et al. Risk assessment of integrated electricity and heat system with independent energy operators based on Stackelberg game , 2020 .
[32] Anan Zhang,et al. Risk Assessment of Offshore Micro Integrated Energy System Based on Fluid Mosaic Model , 2020, IEEE Access.
[33] Chenghong Gu,et al. Coordinated Risk Mitigation Strategy For Integrated Energy Systems Under Cyber-Attacks , 2020, IEEE Transactions on Power Systems.
[34] Abdulaziz S. Alsayyari,et al. Hybrid-cloud-based data processing for power system monitoring in smart grids , 2020 .
[35] Shimin Yi,et al. Data-Driven Event Detection of Power Systems Based on Unequal-Interval Reduction of PMU Data and Local Outlier Factor , 2020, IEEE Transactions on Smart Grid.
[36] Yongping Yang,et al. Thermodynamic and economic evaluation of a novel heat supply design using low-pressure feedwater in a cogeneration plant , 2020 .
[37] Costas J. Spanos,et al. A Digital Twin Approach for Fault Diagnosis in Distributed Photovoltaic Systems , 2020, IEEE Transactions on Power Electronics.
[38] Hongxun Hui,et al. 5G network-based Internet of Things for demand response in smart grid: A survey on application potential , 2020, Applied Energy.
[39] Gengyin Li,et al. Estimating the failure probability in an integrated energy system considering correlations among failure patterns , 2019, Energy.
[40] Sohag Kabir,et al. Applications of Bayesian networks and Petri nets in safety, reliability, and risk assessments: A review , 2019, Safety Science.
[41] Zhe He,et al. Reliability modeling for Integrated Community Energy System considering dynamic process of thermal loads , 2019, IET Energy Systems Integration.
[42] Yu Zhang,et al. Machine Learning-Based Fault Diagnosis for Single- and Multi-Faults in Induction Motors Using Measured Stator Currents and Vibration Signals , 2019, IEEE Transactions on Industry Applications.
[43] Md. Zakirul Alam Bhuiyan,et al. Review of static risk-based security assessment in power system , 2019, IET Cyper-Phys. Syst.: Theory & Appl..
[44] Salah Kamel,et al. Risk assessment of integrated electrical, natural gas and district heating systems considering solar thermal CHP plants and electric boilers , 2018, International Journal of Electrical Power & Energy Systems.
[45] Dongmei Zhao,et al. Research on Application of Cyber-Physical System in Fault Diagnosis of Power Grid , 2018, 2018 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC).
[46] Dusmanta Kumar Mohanta,et al. Impact assessment of reliability of phasor measurement unit on situational awareness using generalized stochastic Petri nets , 2017 .
[47] Zhaohong Bie,et al. Study on the Resilience of the Integrated Energy System , 2016 .
[48] Valerio Cozzani,et al. Dynamic risk management: a contemporary approach to process safety management , 2016 .
[49] Ali Reza Seifi,et al. An Integrated Steady-State Operation Assessment of Electrical, Natural Gas, and District Heating Networks , 2016, IEEE Transactions on Power Systems.
[50] Pierluigi Mancarella,et al. Modelling, assessment and Sankey diagrams of integrated electricity-heat-gas networks in multi-vector district energy systems , 2016 .
[51] Faisal Khan,et al. Methods and models in process safety and risk management: Past, present and future , 2015 .
[52] Faisal Khan,et al. Risk assessment of rare events , 2015 .
[53] Joao P. S. Catalao,et al. Multi-Period Integrated Framework of Generation, Transmission, and Natural Gas Grid Expansion Planning for Large-Scale Systems , 2015, IEEE Transactions on Power Systems.
[54] Michael Negnevitsky,et al. Risk Assessment for Power System Operation Planning With High Wind Power Penetration , 2015, IEEE Transactions on Power Systems.
[55] Carlos M. Correa-Posada,et al. Integrated Power and Natural Gas Model for Energy Adequacy in Short-Term Operation , 2015, IEEE Transactions on Power Systems.
[56] Michael Chertkov,et al. Cascading of Fluctuations in Interdependent Energy Infrastructures: Gas-Grid Coupling , 2014, ArXiv.
[57] Richard Carlson,et al. Pipeline to Reliability: Unraveling Gas and Electric Interdependencies Across the Eastern Interconnection , 2014, IEEE Power and Energy Magazine.
[58] Miao Li,et al. Optimal option of natural-gas district distributed energy systems for various buildings , 2014 .
[59] Nima Khakzad,et al. Safety analysis in process facilities: Comparison of fault tree and Bayesian network approaches , 2011, Reliab. Eng. Syst. Saf..
[60] Rahul Sharma,et al. Fault Detection in Transmission Networks of Power Systems: Part I Modelling , 2008, AUPEC 2008.
[61] Ruxu Du,et al. Model-based Fault Detection and Diagnosis of HVAC systems using Support Vector Machine method , 2007 .
[62] M. Baran,et al. Network reconfiguration in distribution systems for loss reduction and load balancing , 1989 .
[63] Mohammad Lutfi Othman,et al. LSTM Recurrent Neural Network Classifier for High Impedance Fault Detection in Solar PV Integrated Power System , 2021, IEEE Access.
[64] Yi Pan,et al. Analysis on Integrated Energy System Cascading Failures Considering Interaction of Coupled Heating and Power Networks , 2019, IEEE Access.
[65] Lingfeng Wang,et al. Operational Reliability Assessment for Gas-Electric Integrated Distribution Feeders , 2019, IEEE Transactions on Smart Grid.
[66] Yi Ding,et al. Modeling and Integration of Flexible Demand in Heat and Electricity Integrated Energy System , 2018, IEEE Transactions on Sustainable Energy.
[67] Peter Palensky,et al. A Framework for Incorporation of Infeed Uncertainty in Power System Risk-Based Security Assessment , 2018, IEEE Transactions on Power Systems.
[68] Audrius Bagdanavicius,et al. Combined analysis of electricity and heat networks , 2014 .
[69] Sarah J. Dunnett,et al. Event-tree analysis using binary decision diagrams , 2000, IEEE Trans. Reliab..
[70] Andrzej J. Osiadacz,et al. Method of steady-state simulation of a gas network , 1988 .