A framework for the resilience analysis of complex natural gas pipeline networks from a cyber-physical system perspective

被引:9
|
作者
Marino, Antonio [1 ]
Zio, Enrico [1 ,2 ]
机构
[1] Politecn Milan, Dipartimento Energia, Milan, Italy
[2] Mines Paristech, Paris, France
关键词
Resilience analysis; SCADA networks; Gas pipeline transmission networks; Complex Networks; Maximum Flow Algorithm; Thermal-Hydraulic simulation; SENSITIVITY-ANALYSIS; GLOBAL SENSITIVITY; MODEL; UNCERTAINTY; SIMULATION;
D O I
10.1016/j.cie.2021.107727
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The vulnerability of gas pipeline networks to physical and cyber-attacks calls for a resilience analysis based on models, capable of quantifying the network robustness and recovery from failures. This work proposes an original resilience analysis framework for a complex gas pipeline transmission network, considering the cybernetic interdependence of the physical gas pipeline network with the SCADA system. The maximum flow algorithm computes the gas network supply capacity and when a failure occurs, the pressure of the network nodes and the gas supply capacity change, leading to dissatisfaction of customer demands. The framework allows quantifing the value of resilience through specific performance metrics. The SCADA communication network, implemented in Network Simulator (R), provides the necessary information regarding the delay of data packets coming from the sensors located along the pipelines. The packet delay value allows to evaluate the actual time at which the SCADA system blocks the remote control valves, ready to keep the pipelines under pressure when a failure occurs. Important insights on the resilience model are obtained through a systematic sensitivity analysis (SA) framework, customized for gas pipeline transmission networks. Specifically, we investigate the influence of model inputs to the network robustness and recovery uncertainty. The effects of individual parameters and groups formed by inputs with similar functionalities provide useful information, such as to what extent the supervisory SCADA system interconnection affects the degradation and the recovery process of the physical gas pipeline network. The results of the case study confirm, as expected, that gas transmission networks are vulnerable to both cyber and physical failures, pointing at the need for systemic methods of analysis for managing the system resilience.
引用
收藏
页数:25
相关论文
共 50 条
  • [1] A Mathematic Framework for Analysis of Complex Cyber-Physical Power Systems
    Kolacinski, Richard M.
    Loparo, Kenneth A.
    2012 IEEE POWER AND ENERGY SOCIETY GENERAL MEETING, 2012,
  • [2] A Cyber-Physical Experimentation Platform for Resilience Analysis
    Thorpe, Jamie
    Fasano, Raymond
    Sahakian, Meghan Galiardi
    Gonzales, Amanda
    Hahn, Andrew
    Morris, Joshua
    Ortiz, Timothy
    Reinbolt, Hannah
    Vugrin, Eric D.
    SAT-CPS'22: PROCEEDINGS OF THE 2022 ACM WORKSHOP ON SECURE AND TRUSTWORTHY CYBER-PHYSICAL SYSTEMS, 2022, : 3 - 12
  • [3] Cyber resilience assessment and enhancement of cyber-physical systems: structural controllability perspective
    Azimi, Zahra
    Afshar, Ahmad
    INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE, 2024, 55 (06) : 1224 - 1242
  • [4] Resilience of Natural Gas Pipeline System: A Review and Outlook
    Yang, Zhaoming
    Xiang, Qi
    He, Yuxuan
    Peng, Shiliang
    Faber, Michael Havbro
    Zio, Enrico
    Zuo, Lili
    Su, Huai
    Zhang, Jinjun
    ENERGIES, 2023, 16 (17)
  • [5] Algorithm for optimal designing the cyber-physical system for measuring natural gas volume
    Matiko, Fedir
    Pistun, Yevhen
    Matiko, Halyna
    2022 IEEE 17TH INTERNATIONAL CONFERENCE ON COMPUTER SCIENCES AND INFORMATION TECHNOLOGIES (CSIT), 2022, : 543 - 546
  • [6] A Framework of Mining Trajectories from Untrustworthy Data in Cyber-Physical System
    Tang, Lu-An
    Yu, Xiao
    Gu, Quanquan
    Han, Jiawei
    Jiang, Guofei
    Leung, Alice
    La Porta, Thomas
    ACM TRANSACTIONS ON KNOWLEDGE DISCOVERY FROM DATA, 2015, 9 (03) : 16
  • [7] Evaluating Resilience of Water Distribution Networks to Operational Failures from Cyber-Physical Attacks
    Shin, Sangmin
    Lee, Seungyub
    Burian, Steven J.
    Judi, David R.
    McPherson, Timothy
    JOURNAL OF ENVIRONMENTAL ENGINEERING, 2020, 146 (03)
  • [8] Resilience analysis of cyber-physical systems: A review of models and methods
    Cassottana, Beatrice
    Roomi, Muhammad M.
    Mashima, Daisuke
    Sansavini, Giovanni
    RISK ANALYSIS, 2023, 43 (11) : 2359 - 2379
  • [9] Collaborative response to disruption propagation (CRDP) in cyber-physical systems and complex networks
    Nguyen, Win P. V.
    Nof, Shimon Y.
    DECISION SUPPORT SYSTEMS, 2019, 117 : 1 - 13
  • [10] Physical control framework and protocol design for cyber-physical control system
    Cai, Yi
    Qi, Deyu
    INTERNATIONAL JOURNAL OF DISTRIBUTED SENSOR NETWORKS, 2017, 13 (07):