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Yun-Chung Chu
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2020 – today
- 2023
- [i1]Hikaru Hoshino, T. John Koo, Yun-Chung Chu, Yoshihiko Susuki:
Model Predictive Control of Smart Districts Participating in Frequency Regulation Market: A Case Study of Using Heating Network Storage. CoRR abs/2305.07198 (2023)
2010 – 2019
- 2014
- [j11]Ajay Gautam, Yun-Chung Chu, Yeng Chai Soh:
Robust H∞ Receding Horizon Control for a Class of Coordinated Control Problems Involving Dynamically Decoupled Subsystems. IEEE Trans. Autom. Control. 59(1): 134-149 (2014) - 2013
- [c11]Ajay Gautam, Yeng Chai Soh, Yun-Chung Chu:
Set-based model predictive consensus under bounded additive disturbances. ACC 2013: 6157-6162 - 2012
- [j10]Ajay Gautam, Yun-Chung Chu, Yeng Chai Soh:
Optimized Dynamic Policy for Receding Horizon Control of Linear Time-Varying Systems With Bounded Disturbances. IEEE Trans. Autom. Control. 57(4): 973-988 (2012) - [j9]Kian Hoong Kwan, Ping Lam So, Yun-Chung Chu:
An Output Regulation-Based Unified Power Quality Conditioner With Kalman Filters. IEEE Trans. Ind. Electron. 59(11): 4248-4262 (2012) - 2010
- [c10]Mark S. K. Lau, Keck Voon Ling, Yun-Chung Chu, Arun Bhanu:
A general mathematical model of probabilistic ripple-carry adders. DATE 2010: 1100-1105 - [c9]Mark S. K. Lau, Keck Voon Ling, Yun-Chung Chu, Arun Bhanu:
Modeling of Probabilistic Ripple-Carry Adders. DELTA 2010: 201-206
2000 – 2009
- 2009
- [j8]Kian Hoong Kwan, Yun-Chung Chu, Ping Lam So:
Model-Based H∞ Control of a Unified Power Quality Conditioner. IEEE Trans. Ind. Electron. 56(7): 2493-2504 (2009) - [c8]Mark S. K. Lau, Keck Voon Ling, Yun-Chung Chu:
Energy-aware probabilistic multiplier: design and analysis. CASES 2009: 281-290 - [c7]Ajay Gautam, Yun-Chung Chu, Yeng Chai Soh:
Model predictive control of linear time-varying systems with bounded disturbances using a dynamic terminal policy. CDC 2009: 3999-4004 - 2008
- [c6]Ajay Gautam, Yeng Chai Soh, Yun-Chung Chu:
Robust predictive control of satellite formations. ICARCV 2008: 844-849 - 2005
- [j7]Wencheng Luo, Yun-Chung Chu, Keck Voon Ling:
Inverse optimal adaptive control for attitude tracking of spacecraft. IEEE Trans. Autom. Control. 50(11): 1639-1654 (2005) - 2004
- [c5]Wencheng Luo, Yun-Chung Chu, Keck Voon Ling:
H∞ tracking control of a rigid spacecraft. ACC 2004: 2681-2686 - 2003
- [j6]Yun-Chung Chu, Keith Glover, Ann P. Dowling:
Control of combustion oscillations via Hinfinity loop-shaping, µ-analysis and Integral Quadratic Constraints. Autom. 39(2): 219-231 (2003) - 2002
- [j5]Yun-Chung Chu:
Bounds of the incremental gain for discrete-time recurrent neural networks. IEEE Trans. Neural Networks 13(5): 1087-1098 (2002) - [c4]Yun-Chung Chu:
An online algorithm for the stability and regulation of discrete-time recurrent neural networks. ICARCV 2002: 1071-1076 - [c3]Wencheng Luo, Yun-Chung Chu:
Attitude control using the SDRE technique. ICARCV 2002: 1281-1286 - 2001
- [j4]Yun-Chung Chu:
Further results for systems with repeated scalar nonlinearities. IEEE Trans. Autom. Control. 46(12): 2031-2035 (2001) - [c2]Yun-Chung Chu:
Bounds of the incremental gain for discrete-time recurrent neural networks. CDC 2001: 2732-2737 - 2000
- [c1]Yun-Chung Chu:
Further results for systems with repeated scalar nonlinearities. CDC 2000: 280-285
1990 – 1999
- 1999
- [j3]Yun-Chung Chu, Keith Glover:
Bounds of the induced norm and model reduction errors for systems with repeated scalar nonlinearities. IEEE Trans. Autom. Control. 44(3): 471-483 (1999) - [j2]Yun-Chung Chu, Keith Glover:
Stabilization and performance synthesis for systems with repeated scalar nonlinearities. IEEE Trans. Autom. Control. 44(3): 484-496 (1999) - [j1]Yun-Chung Chu, Jie Huang:
A neural-network method for the nonlinear servomechanism problem. IEEE Trans. Neural Networks 10(6): 1412-1423 (1999) - 1998
- [p1]Yun-Chung Chu:
Estimating the dimensions of manifolds using delaunay diagrams. Algorithms and Architectures 1998: 425-456
Coauthor Index
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