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Conference Program of WCICA 2012

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<strong>Conference</strong> <strong>Program</strong> <strong>WCICA</strong> <strong>2012</strong><br />

Yan, Jiangang<br />

Institution department <strong>of</strong> command engineering<br />

502unit,NAEI<br />

◁ PFrC-78<br />

Study <strong>of</strong> An Improved Algorithm for Arterial Traffic Coordinated Control<br />

Considering The Effect <strong>of</strong> Turning-Traffic Flow, pp.2421–2425<br />

Liu, Shijie<br />

LIU, Xiao-He<br />

Liu, Jiuming<br />

Xie, Qiuyan<br />

Xu, Jian-min<br />

South China Univ. <strong>of</strong> Tech.<br />

First Aviation College <strong>of</strong> the Air Force in Xinyang,<br />

Henan Province<br />

South China Univ. <strong>of</strong> Tech.<br />

South China Univ. <strong>of</strong> Tech.<br />

South China Univ. <strong>of</strong> Tech.<br />

◁ PFrC-79<br />

Hybrid Load Forecasting Method Based on Fuzzy Support Vector Machine<br />

and Linear Extrapolation, pp.2431–2435<br />

Jiang, Xin<br />

Liu, Xiaohua<br />

Gao, Rong<br />

Ludong Univ.<br />

Ludong Univ.<br />

ludong Univ.<br />

◁ PFrC-80<br />

Study on On-ramp Control Strategy <strong>of</strong> Urban Freeway Based on Fuzzy<br />

Control, pp.2512–2516<br />

Wang, Shiming<br />

Xu, Jianmin<br />

Luo, Qiang<br />

South China Univ. <strong>of</strong> Tech.<br />

South China Univ. <strong>of</strong> Tech.<br />

South China Univ. <strong>of</strong> Tech.<br />

◁ PFrC-81<br />

The Solution <strong>of</strong> The Fuzzy Volterra Integral Equations <strong>of</strong> The Second<br />

Kind, pp.2556–2561<br />

Gong, Huarong<br />

Yantai Engineering Tech. College<br />

◁ PFrC-82<br />

Intelligence Fusion Based Control Strategy <strong>of</strong> Purifying System for<br />

Drinking Source Water, pp.2592–2596<br />

Wang, Jing<br />

Bi, Jianchao<br />

Chongqing College <strong>of</strong> Electronic Engineering<br />

Chongqing Univ.<br />

◁ PFrC-83<br />

Sliding Mode Control based on Particle Filter for Position Tracking System,<br />

pp.2597–2600<br />

DAI, Wen-zhan<br />

HE, Li Ming<br />

Yang, Aiping<br />

zhejiang Sci-Tech Univ.<br />

Zhejiang Sci-Tech Univ.<br />

Zhejiang Univ. <strong>of</strong> Finance & Economics<br />

◁ PFrC-84<br />

The aircraft flutter model parametric identification based on frequency<br />

domain global optimization algorithm, pp.2611–2617<br />

Yao, Jie<br />

jingdezhen ceramic insitute<br />

◁ PFrC-85<br />

PID Controller Parameters Optimization for the Main Steam Temperature<br />

System Based on Immune Algorithm-Particle Swarm Optimization,<br />

pp.2618–2623<br />

Yuan, GuiLi<br />

Zhu, Lei<br />

North China Electric Power Univ.<br />

North China Electric Power Univ.<br />

◁ PFrC-86<br />

Research on sampling period <strong>of</strong> discrete variable structure controller<br />

Based on the Two-wheeled self-balanced Vehicle, pp.2653–2656<br />

Meng, Xiang-zhong<br />

Liu, Xin-wen<br />

Li, Jing<br />

Air Defence Forces Acad.<br />

Air Defence Forces Acad.<br />

Zhengzhou Lighting Management Bureau<br />

Li, Da-yu<br />

SU, Yongzhen<br />

Air Defence Forces Acad.<br />

air defense Acad.<br />

◁ PFrC-87<br />

One Nearspace Hypersonic Aircraft Dynamic Surface Adative Backstepping<br />

Control Design Based on Nonlinear Neumatic/ Thrust Vectoring<br />

Composite Control, pp.2669–2673<br />

Dai, Shaowu department <strong>of</strong> automatic control engineering<br />

301unit,NAEI<br />

Chen, Jie<br />

Song, Chao<br />

department <strong>of</strong> automatic control engineering<br />

301unit,NAEI<br />

School <strong>of</strong> Automation Sci. & Electrical Engineering,<br />

Beijing Univ. <strong>of</strong> Aeronautics & Astronautics,<br />

◁ PFrC-88<br />

The Control Theory <strong>of</strong> Permanent Magnet Synchronous Motor Based<br />

on Anti-windup Control, pp.2801–2805<br />

Ma, Jingcong<br />

Zheng, Yang<br />

Dalian Maritime Univ., China<br />

Beijing Univ. <strong>of</strong> Tech.<br />

◁ PFrC-89<br />

Two-Degree-<strong>of</strong>-Freedom Control Scheme for Cascade Control Systems,<br />

pp.2812–2816<br />

Zhang, Jinggang<br />

Zhao, Zhicheng<br />

Taiyuan Univ. <strong>of</strong> Sci. & Tech.<br />

taiyuan Univ. <strong>of</strong> Sci. & Tech.<br />

◁ PFrC-90<br />

Research on the controller <strong>of</strong> Two-wheeled self-balanced Vehicle<br />

Based on the sensitivity analysis, pp.2833–2837<br />

Meng, Xiang-zhong<br />

Li, Yanzhao<br />

Liu, Xin-wen<br />

Xie, FangMing<br />

Wang, Qiang<br />

Air Defence Forces Acad.<br />

China Nuclear Power Engineering<br />

Co.,Ltd.,Zhengzhou Branch<br />

Air Defence Forces Acad.<br />

Air Defense Forces Acad.<br />

Air Defense Forces Acad.<br />

◁ PFrC-91<br />

Modified Backstepping Control for Time-Delay System <strong>of</strong> SVC ,<br />

pp.2861–2864<br />

Zhang, Rui<br />

Sun, Li-Ying<br />

Zhang, Bo-Qi<br />

Liaoning Univ. <strong>of</strong> Tech.<br />

Liaoning Univ. <strong>of</strong> Tech.<br />

Liaoning Univ. <strong>of</strong> Tech.<br />

◁ PFrC-92<br />

Recursive identification <strong>of</strong> parameters in the minimum variance control,<br />

pp.2870–2877<br />

Yao, Jie<br />

jingdezhen ceramic insitute<br />

◁ PFrC-93<br />

The Predictive Control for Nonlinear systems Based on Dynamic Approximate<br />

Hammerstein model, pp.2887–2890<br />

Hu, Zhiqiang<br />

Heilongjiang Univ.<br />

◁ PFrC-94<br />

Fault Diagnosis <strong>of</strong> Underwater Vehicle with Neural Network, pp.2931–<br />

2934<br />

WANG, Jianguo<br />

China Ship Development & Design Center<br />

◁ PFrC-95<br />

Design <strong>of</strong> FDI system for the nonlinear Control System, pp.2935–2938<br />

Zhou, Jing<br />

Zhu, Xun<br />

Jianghan Univ.<br />

jianghan Univ.<br />

62

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