[1]CUI Tiejun,WANG Chongxin,LI Shasha.System fault evolution direction based on topological safety entropy and an entropy gradient field[J].CAAI Transactions on Intelligent Systems,2026,21(3):776-782.[doi:10.11992/tis.202510010]
Copy

System fault evolution direction based on topological safety entropy and an entropy gradient field

References:
[1] 崔铁军. 空间故障网络理论与系统故障演化过程研究[J]. 安全与环境学报, 2020(4): 1255-1262 CUI Tiejun. Profound trace and exploration into the space fault network theory and the system fault evolution process[J]. Journal of safety and environment, 2020(4): 1255-1262
[2] 金智新, 王延生, 邓存宝, 等. 广义安全结构理论研究[J]. 中国安全科学学报, 2017, 27(5): 41-46 JIN Zhixin, WANG Yansheng, DENG Cunbao, et al. Research on generalized safety structure theory[J]. China safety science journal, 2017, 27(5): 41-46
[3] 崔铁军, 李莎莎. 系统故障演化过程熵及其受逻辑关系的影响研究[J]. 智能系统学报, 2024, 19(3): 749-756 CUI Tiejun, LI Shasha. Study on entropy of system fault evolution process and its influence on logical relationships[J]. CAAI transactions on intelligent systems, 2024, 19(3): 749-756
[4] 郭力萌, 金智新, 王延生, 等. 基于安全结构理论的系统外部扰动演化规律研究[J]. 中国安全生产科学技术, 2022, 18(5): 60-65 GUO Limeng, JIN Zhixin, WANG Yansheng, et al. Study on evolution law of system external disturbance based on safety structure theory[J]. Journal of safety science and technology, 2022, 18(5): 60-65
[5] 朱峻永, 杨东赞, 王昕, 等. 面向智能变电站运维的连锁故障态势感知研究[J]. 电力系统保护与控制, 2025, 53(16): 136-146 ZHU Junyong, YANG Dongzan, WANG Xin, et al. Research on cascading failure situation awareness for smart substation operation and maintenance[J]. Power system protection and control, 2025, 53(16): 136-146
[6] 刘万, 尹纯亚, 李凤婷, 等. 交流故障下光储弱电网电压波动传导路径及对频率变化影响分析[J]. 电网与清洁能源, 2025, 41(7): 107-115, 121 LIU Wan, YIN Chunya, LI Fengting, et al. An analysis of voltage fluctuation conduction paths and impacts on frequency change of photovoltaic-energy storage-weak grids under AC faults[J]. Power system and clean energy, 2025, 41(7): 107-115, 121
[7] 王坤, 陈良银, 胥林, 等. 软件定义广域网中多控制器故障下的路径可编程性恢复方法[J]. 四川大学学报(自然科学版), 2025, 62(4): 838-846 WANG Kun, CHEN Liangyin, XU Lin, et al. Path programmability recovery under multiple controller failures in software-defined WAN[J]. Journal of Sichuan University (natural science edition), 2025, 62(4): 838-846
[8] 程志鹏, 张斌, 陈郑淦哲, 等. 基于长元路径异构图神经网络的故障诊断方法 [J/OL]. 控制理论与应用: 1-9[2025-09-10]. https://link.cnki.net/urlid/44.1240.TP.20250424.1615.062. CHENG Zhipeng, ZHANG Bin, CHEN Zhengganzhe, et al. Fault diagnosis method based on long meta-path heterogeneous graph neural network [J/OL]. Control theory & applications: 1-9[2025-09-10]. https://link.cnki.net/urlid/44.1240.TP.20250424.1615.062.
[9] 张煜佳, 袁野, 周苏洋, 等. 基于动态图投影的大规模复杂配电网故障快速溯源方法[J]. 电力系统自动化, 2025, 49(13): 177-186 ZHANG Yujia, YUAN Ye, ZHOU Suyang, et al. Fast fault back-tracing method for large-scale complex distribution networks based on dynamic graph projection[J]. Automation of electric power systems, 2025, 49(13): 177-186
[10] 钱小毅, 王利鑫, 姜兴宇, 等. 基于交互监测与连通性模型的化工过程故障传播分析 [J/OL]. 化工学报: 1-14[2025-09-10]. https://link.cnki.net/urlid/11.1946.TQ.20250313.1152.002. QIAN Xiaoyi, WANG Lixin, JIANG Xingyu, et al. Fault propagation analysis of chemical process based on interactive monitoring and connectivity model [J/OL]. CIESC journal: 1-14[2025-09-10]. https://link.cnki.net/urlid/11.1946.TQ.20250313.1152.002.
[11] 谭帅, 王一帆, 姜庆超, 等. 基于不同故障传播路径差异化的故障诊断方法[J]. 自动化学报, 2025(1): 161-173 TAN Shuai, WANG Yifan, JIANG Qingchao, et al. Fault propagation path-aware network: a fault diagnosis method[J]. Acta automatica sinica, 2025(1): 161-173
[12] 金智新, 王延生, 邓存宝. 基于安全结构理论的安全事件内涵数学表达[J]. 中国安全科学学报, 2017, 27(10): 38-43 JIN Zhixin, WANG Yansheng, DENG Cunbao. Intension expressing of safety events based on safety structure theory[J]. China safety science journal, 2017, 27(10): 38-43
[13] 崔铁军, 李莎莎. 空间故障网络的柔性逻辑描述[J]. 智能系统学报, 2021, 16(3): 552-559 CUI Tiejun, LI Shasha. Flexible logic description of space fault network[J]. CAAI transactions on intelligent systems, 2021, 16(3): 552-559
[14] 李洪兴, 汪培庄. 概念在因素空间中的落影表现[J]. 烟台大学学报(自然科学与工程版), 1994(2): 15-22 LI Hongxing, WANG Peizhuang. Falling shadow representation of fuzzy concepts on factor spaccs[J]. Journal of Yantai University (natural science and engineering edition), 1994(2): 15-22
[15] ZHU Bin, WANG Xian. A cover-based framework for topological complexity in hyperspace dynamical systems[J]. Communications in nonlinear science and numerical simulation, 2026, 159: 109887
[16] FLORENTINO M. Relation between Filippov systems with zero topological entropy and Li–Yorke chaos[J]. Chaos, solitons & fractals, 2026, 207: 118067
[17] LUPATINI P, CARVALHO SILVA F, VAR?O R. Entropy for compact operators and results on entropy and specification[J]. Monatshefte für mathematik, 2026, 209(3): 497-511
[18] HALDER S, KIM C M, PERIWAL V. Topological entropy correlates with the predictive power of multiplexed ensemble reservoir computing[EB/OL]. (2026-02-07)[2026-03-01]. https://10.64898/2026.02.04.703839.
[19] TIAN Ruoyao, SUN Haorui, MEI Biao, et al. A heterogeneous graph neural network with spatial–temporal and operating condition-aware message passing mechanism for RUL prediction of aero-engines[J]. Advanced engineering informatics, 2026, 73: 104507
[20] LIANG Xiucheng, YAP W, BILJECKI F. Heterogeneous graph neural networks for building attribute prediction from hierarchical urban features and cross-view imagery[J]. ISPRS journal of photogrammetry and remote sensing, 2026, 234: 185-204
[21] PENG Jiangliang, LI Zhiyi, YANG Lianmei, et al. Dynamic diagnosis of an extreme precipitation event over the southern slope of Tianshan Mountains using multi-source observations[J]. Remote sensing, 2025, 17(9): 1521
[22] 李智. 智能变电站二次设备的GRU故障定位与连锁故障态势感知方法[D]. 成都: 西南交通大学, 2023. LI Zhi. Method on fault location of secondary equipment in smart substation based on GRU and situation awareness of cascading failure[D]. Chengdu: Southwest Jiaotong University, 2023.
[23] ERPYLEVA V, BALASHOV Y. Use of automated tools for analyzing the propagation of failures in aircraft system[J]. E3S web of conferences, 2023, 402: 02005
[24] AMIN M T. An integrated methodology for fault detection, root cause diagnosis, and propagation pathway analysis in chemical process systems[J]. Cleaner engineering and technology, 2021, 4: 100187
Similar References:

Memo

-

Last Update: 1900-01-01

Copyright © CAAI Transactions on Intelligent Systems