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Huixia Liu
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2020 – today
- 2024
- [j19]Zhaohui Qin, Haoran Ren, Pei Zhao, Kaiyuan Wang, Huixia Liu, Chunbo Miao, Yanxiu Du, Junzhou Li, Liuji Wu, Zhen Chen:
Current computational tools for protein lysine acylation site prediction. Briefings Bioinform. 25(6) (2024) - 2023
- [j18]Huixia Liu, Yanxiang Feng, Junhong Li, Jianchao Luo:
Robust Petri Net Controllers for Flexible Manufacturing Systems With Multitype and Multiunit Unreliable Resources. IEEE Trans. Syst. Man Cybern. Syst. 53(3): 1431-1444 (2023) - 2021
- [j17]Lingling Li, Huixia Liu:
Video Stream Session Migration Method Using Deep Reinforcement Learning in Cloud Computing Environment. Wirel. Commun. Mob. Comput. 2021: 5579637:1-5579637:10 (2021) - [c11]Yuan Yao, Sikai Wu, Shuangyang Liu, Qingshuang Sun, Gang Yang, Yujiao Hu, Yu Zhang, Huixia Liu, Xinyu Tian:
Brief Industry Paper: Workload-Aware GPU Performance Estimation in the Airborne Embedded System. RTAS 2021: 417-420 - 2020
- [j16]Huixia Liu, Weimin Wu, Hongyong Yang:
Strong Controllable Siphon Basis-Based Robust Deadlock Control for Manufacturing Systems With Multiple Unreliable Resources. IEEE Access 8: 269-277 (2020) - [j15]Guanlong Deng, Qingtang Su, Zhiwang Zhang, Huixia Liu, Shuning Zhang, Tianhua Jiang:
A population-based iterated greedy algorithm for no-wait job shop scheduling with total flow time criterion. Eng. Appl. Artif. Intell. 88 (2020) - [j14]Yanxiang Feng, Keyi Xing, MengChu Zhou, Huixia Liu:
Liveness Analysis and Deadlock Control for Automated Manufacturing Systems With Multiple Resource Requirements. IEEE Trans. Syst. Man Cybern. Syst. 50(2): 525-538 (2020) - [j13]Yanxiang Feng, Keyi Xing, Mengchu Zhou, Xinnian Wang, Huixia Liu:
Robust Deadlock Prevention for Automated Manufacturing Systems With Unreliable Resources by Using General Petri Nets. IEEE Trans. Syst. Man Cybern. Syst. 50(10): 3515-3527 (2020)
2010 – 2019
- 2019
- [j12]Jianchao Luo, Zhiqiang Liu, MengChu Zhou, Keyi Xing, Xinnian Wang, Xiaoling Li, Huixia Liu:
Robust deadlock control of automated manufacturing systems with multiple unreliable resources. Inf. Sci. 479: 401-415 (2019) - [j11]Yanxiang Feng, Keyi Xing, Huixia Liu, Yunchao Wu:
Two-stage design method of robust deadlock control for automated manufacturing systems with a type of unreliable resources. Inf. Sci. 484: 286-301 (2019) - [j10]Yanxiang Feng, Keyi Xing, MengChu Zhou, Feng Tian, Huixia Liu:
Structural Liveness Analysis of Automated Manufacturing Systems Modeled by S4PRs. IEEE Trans Autom. Sci. Eng. 16(4): 1952-1959 (2019) - 2016
- [j9]Huixia Liu, Weimin Wu, Hongye Su, Zhenxing Zhang:
Design of optimal Petri-net controllers for a class of flexible manufacturing systems with key resources. Inf. Sci. 363: 221-234 (2016) - [j8]Huixia Liu, Chaofei Sha, Zongbao Shen, Liyin Li, Shuai Gao, Cong Li, Xianqing Sun, Xiao Wang:
Fabrication of Dish-Shaped Micro Parts by Laser Indirect Shocking Compound Process. Micromachines 7(6): 105 (2016) - [c10]Huixia Liu, Weimin Wu, Hongye Su, Hongyong Yang:
A polynomial complexity deadlock avoidance method for a class of flexible manufacturing systems. WODES 2016: 272-277 - 2015
- [j7]Huixia Liu, Jianwen Li, Zongbao Shen, Qing Qian, Hongfeng Zhang, Xiao Wang:
Experimental and Numerical Simulation Research on Micro-Gears Fabrication by Laser Shock Punching Process. Micromachines 6(8): 969-983 (2015) - [j6]Huixia Liu, Keyi Xing, Weimin Wu, MengChu Zhou, Hailin Zou:
Deadlock Prevention for Flexible Manufacturing Systems via Controllable Siphon Basis of Petri Nets. IEEE Trans. Syst. Man Cybern. Syst. 45(3): 519-529 (2015) - [c9]Huixia Liu, Weimin Wu:
Deadlock control policy for a class of automated manufacturing systems with key resources. ICNSC 2015: 486-491 - [c8]Ning Ran, Hongye Su, Weimin Wu, Shouguang Wang, Huixia Liu:
Optimal monitor-based supervisor sythesis for a class of Petri nets with unobservable transitions. ICNSC 2015: 498-502 - 2014
- [j5]Huixia Liu, Keyi Xing, MengChu Zhou, LiBin Han, Feng Wang:
Transition Cover-Based Design of Petri Net Controllers for Automated Manufacturing Systems. IEEE Trans. Syst. Man Cybern. Syst. 44(2): 196-208 (2014) - [c7]Huixia Liu, Weimin Wu:
An efficient deadlock prevention policy based on selective transition covers for flexible manufacturing systems. ICNSC 2014: 484-489 - 2012
- [c6]LiBin Han, Keyi Xing, Mengchu Zhou, Huixia Liu, Feng Wang:
Two-stage deadlock prevention policy based on resource-transition circuits. CASE 2012: 741-746 - [c5]Shaojian Song, Jinchuan Wu, Xiaofeng Lin, Huixia Liu:
Predictive Model of Production Index for Sugar Clarification Process by GDFNN. ISNN (2) 2012: 585-593 - 2011
- [j4]Keyi Xing, MengChu Zhou, Feng Wang, Huixia Liu, Feng Tian:
Resource-Transition Circuits and Siphons for Deadlock Control of Automated Manufacturing Systems. IEEE Trans. Syst. Man Cybern. Part A 41(1): 74-84 (2011) - 2010
- [c4]Feng Wang, Keyi Xing, Xiaoping Xu, Huixia Liu, Xiaojing Sun:
Research on identification algorithm of Hammerstein model. BIC-TA 2010: 80-85 - [c3]Xiaofeng Lin, Qianli Teng, Chunning Song, Shaojian Song, Huixia Liu:
PH Optimal Control in the Clarifying Process of Sugar Cane Juice Based on DHP. ICIC (1) 2010: 301-308 - [c2]Xiaofeng Lin, Heng Zhang, Huixia Liu, Chunning Song:
Optimal control for sucrose crystallization with heuristic dynamic programming. ICNSC 2010: 273-278
2000 – 2009
- 2009
- [j3]Zhidong Bai, Huixia Liu, Wing-Keung Wong:
On the Markowitz mean-variance analysis of self-financing portfolios. Risk Decis. Anal. 1(1): 35-42 (2009) - [j2]Keyi Xing, MengChu Zhou, Huixia Liu, Feng Tian:
Optimal Petri-Net-Based Polynomial-Complexity Deadlock-Avoidance Policies for Automated Manufacturing Systems. IEEE Trans. Syst. Man Cybern. Part A 39(1): 188-199 (2009) - [j1]Huixia Liu, Keyi Xing, Song Gao:
Comment on "On Siphon Computation for Deadlock Control in a Class of Petri Nets". IEEE Trans. Syst. Man Cybern. Part A 39(6): 1348-1350 (2009) - [c1]Xiaofeng Lin, Jiaran Yang, Huixia Liu, Shaojian Song, Chunning Song:
An improved method of DHP for optimal control in the clarifying process of sugar cane juice. IJCNN 2009: 1814-1819
Coauthor Index
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last updated on 2024-12-02 21:31 CET by the dblp team
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