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李小庆
ShawChang Lee
讲师
讲师 硕士生导师
入职时间:2021-09-01
所在单位:电气与自动化工程学院---自动化系
学历:博士研究生毕业
办公地点:安徽省合肥市屯溪路193号合肥工业大学逸夫楼915室
在职信息:在职
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【1】 Li X, She K, Cheng J, et al. Dissipativity-based resilient reliable sampled-data asynchronous control for interval-valued fuzzy systems with semi-Markovian hybrid fault coefficients[J]. Nonlinear Dynamics, 2022, 107(3): 2215-2243.
【2】 Li X, She K, Cheng J, et al. Dissipativity-based synthesis for semi-Markovian systems with simultaneous probabilistic sensors and actuators faults: A modified event-triggered strategy[J]. ISA transactions, 2022, 128: 255-275.
【3】 Li X, She K, Shi K, et al. On event‐triggered guaranteed cost control for discrete‐time semi‐Markovian neural networks having communication delays and dual‐terminal probabilistic faults[J]. International Journal of Robust and Nonlinear Control, 2022, 32(16): 8804-8841.
【4】Li X, Nguang S K, She K, et al. Stochastic exponential synchronization for delayed neural networks with semi-Markovian switchings: Saturated heterogeneous sampling communication[J]. Nonlinear Analysis: Hybrid Systems, 2021, 41: 101028.
【5】 Li X, She K, Zhong S, et al. Extended robust global exponential stability for uncertain switched memristor-based neural networks with time-varying delays[J]. Applied Mathematics and Computation, 2018, 325: 271-290.
【6】Li X, Nguang S K, She K, et al. Resilient controller synthesis for Markovian jump systems with probabilistic faults and gain fluctuations under stochastic sampling operational mechanism[J]. Applied Mathematics and Computation, 2021, 392: 125623.
【7】Li X, She K, Zhong S, et al. Holistic adjustable delay interval method-based stability and generalized dissipativity analysis for delayed recurrent neural networks[J]. Neurocomputing, 2018, 275: 488-498.
【8】Sun W, Zhu M, Li X, et al. H∞ control for networked semi‐Markovian jump systems with generally incomplete transition probabilities and distributed delays[J]. Advanced Control for Applications: Engineering and Industrial Systems, 2023, 5(1): e118.
【9】 Li X, She K, Shi K, et al. HMM-based asynchronous synthesis for Interval type-2 fuzzy semi-Markovian jump systems with its applications: A bilateral looped functional methodology[J]. Expert Systems with Applications, 2024, 240: 122213.
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