1 |
V. S. K. Adi, and C. T. Chang , 2014, “Development of Flexible Designs for
PVFC Hybrid Power Systems,” Renewable Energy (accepted). |
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2 |
S. L. Cheng, C. T. Chang, and D. Jiang, 2014, “A Game-Theory Based Optimization
Strategy to Configure Inter-Plant Heat Integration Schemes,” Chem.
Eng. Sci, 118,60-73. |
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3 |
V. S. K. Adi, and C. T. Chang , 2014, “Flexibility Analyses and Their Applications
in SMDDS Designs,” Chapter 1 in Synthesis, Design and Resource Optimization in Batch Chemical Plants, Majozi, T. (Editor) CRC Press (accepted). |
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4 |
D. Jiang, and C. T. Chang , 2014, “An Algorithmic Approach to Generate
Timesharing Schemes for Multi-Period HEN Designs,” Chem. Eng. Res. Des. DOI: 10.1016/j.cherd.2014.04.011 (in press). |
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5 |
A. Kang, and C. T. Chang , 2014, “Automata Generated Test Plans for Fault
Diagnosis in Sequential Material- and Energy-Transfer Operations,” Chem.
Eng. Sci. 113, 101 - 115. |
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6 |
Y. C. Chiang,and C. T. Chang , 2014, “Single-Objective and Multiobjective
Designs for Hydrogen Networks with Fuel Cells,” Ind. Eng. Chem. Res. 53,6006 - 6020 (DOI: 10.1021/ie404068p). |
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7 |
E. Wibisono, V. S. K. Adi, and C. T. Chang , 2014, “A Model Based Approach
to Identify Optimal System Structures and Maintenance Policies for
Safety Interlocks with Time-Varying Failure Rates,” Ind. Eng. Chem. Res. 53, 4398 -
4412 (DOI: 10.1021/ie402902q). |
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8 |
J. H. Li, C. T. Chang , and D. Jiang, 2014, “Systematic Generation of Cyclic Operating Procedures Based on Timed Automata,” Chem. Eng. Res. Des. 92,
139 - 155. |
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9 |
D. Jiang, and C. T. Chang, 2013, “An Algorithmic Revamp Strategy for Improving Operational Flexibility of Multi-Contaminant Water Networks,”Chem.Eng. Sci. 102, 289 - 299. |
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10 |
V. S. K. Adi, and C. T. Chang, 2013, “A Mathematical Programming Formulation for Temporal Flexibility Analysis,”Comput. & Chem. Engng. 57, 151-158. |
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11 |
V. S. K. Adi, and C. T. Chang, 2013, “SMDDS Design Based on Temporal Flexibility Analysis,” Desalination 320, 96 - 104. |
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12 |
D. Jiang, and C. T. Chang, 2013, “A New Approach to Generate Flexible Multi-Period HEN Designs with Timesharing Mechanisms,” Ind. Eng. Chem. Res. 52, 3794 - 3804. |
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13 |
B. H. Li, Y. K. Liang, and C. T. Chang, 2013, “Manual design strategies for multi-contaminant water-using networks in batch processes,”Ind. Eng. Chem. Res., 52, 1970 - 1981. |
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14 |
C. F. Chen, K. J. Wu,
C. T. Chang, D. S. H. Wong, and S. S. Jang, 2013, “Generation and Verification of Optimal Dispatching Policies for Multi-Product Multi-Tool Semiconductor Manufacturing Processes,”Comput. & Chem. En-gng. 52, 112 - 121. |
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15 |
E. Sadeli, and
C. T. Chang, 2012, “Heuristic Approach to Incorporate Timesharing Schemes in Multi-Period HEN Designs,”Ind. Eng. Chem. Res. 51,7967 - 7987. |
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16 |
B. H. Li, and
C. T. Chang, 2012, “Judicious Generation of Alternative Water
Network Designs with Manual Evolution Strategy,”Chem. Eng. Res. Des. 90,1245 - 1261. |
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17 |
M. L. Yeh, and
C. T. Chang, 2012, “An Automata-Based Approach to Synthesize
Untimed Operating Procedures in Batch Chemical Processes,”Korean. J. Chem. Eng. 29, 583 - 594. |
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18 |
M. L. Yeh, and
C. T. Chang, 2012, “An Automata Based Method for Online
Synthesis of Emergency Response Procedures in Batch Processes,”Comput.&Chem. Engng. 38, 151 - 170. |
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19 |
S. Y. Huang, and
C. T. Chang, 2012, “An Improved Mathematical Programming
Model for Generating Optimal HEN Designs,”Ind. Eng. Chem. Res. 51,3508 - 3515. |
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20 |
V. S. K. Adi, and
C. T. Chang, 2011, “A
Two-Tier Search Strategy to Identify Nominal Operating Conditions for
Maximum Flexibility,”
Ind. Eng. Chem. Res.50,10707-10716 |
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21 |
M. L. Yeh, and
C. T. Chang, 2011, “An
Automaton-Based Approach to Evaluate and Improve Online Diagnostic
Schemes for Multi-Failure Scenarios in Batch Processes,” Chem. Eng. Res. Des.89.2652-2666. |
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22 |
B. H. Li, and
C. T. Chang, 2011, “Multi-Objective
Optimization of Water Using Networks with Multiple Contaminats,”
Ind. Eng. Chem. Res.
50, 5651-5660. |
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23 |
B. H. Li, and
C. T. Chang, 2011, “Efficient
Flexibility Assessment Procedure for Water Network Designs,”
Ind. Eng. Chem. Res.
50, 3763-3774. |
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24 |
B. H. Li, and
C. T. Chang, 2011, “A
Model-Based Search Strategy for Exhaustive Identification of Alternative
Water Network Designs,”
Ind. Eng. Chem. Res.
50, 3653-3659. |
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25 |
Y. H. Lee,
C. T. Chang, D. S. H.
Wong, and S. S. Jang, 2011,
“Petri-Net Based Scheduling Strategy for
Semiconductor Manufacturing Processes,”
Chem. Eng. Res. Des.
89, 291-300. |
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26 |
C. T. Chang and C.
Y. Chen, 2011, “Fault Diagnosis with Automata Generated Languages,”Comput. & Chem.
Engng. 35, 2, 329-341. |
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27 |
L. P. Chung and C.
T. Chang, 2011,
“Petri-Net Models for
Comprehensive Hazard Analysis of MOCVD Processes,” Comput. & Chem.
Engng. 35, 2,
356-371. |
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28 |
B. H. Li and C. T. Chang,
2011, “Heuristic
Evolution Strategies for Simplifying Water-Using Network with Multiple
Contaminants,”
Chem. Eng. Sci.
66, 558-562. |
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29 |
Y. C.
Liao, and
C. T. Chang, 2010,
“Design and Maintenance of Multichannel
Protective Systems,”
Ind. Eng. Chem.
Res. 49,
11421–11433. |
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30 |
V. S. K. Adi and C.
T. Chang, 2010, “A Sequential Approach to
Design Batch Distillation Processes for Homogeneous Azeotropic Systems,”
Ind. Eng. Chem.
Res. 49, 4308
- 4328. |
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31 |
B. H. Li and C. T. Chang, 2010, “Retrofitting Heat Exchanger
Networks Based on Simple Pinch Analysis,” Ind. Eng. Chem. Res.
49, 3967 - 3971. |
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32 |
Y. C. Chen, M. L. Yeh, C. L. Hong, and
C. T. Chang, 2010, “A
Petri-Net Based Approach To Configure On-Line Fault Diagnosis Systems
for Batch Processes,”Ind. Eng. Chem. Res.
49, 4249 - 4268. |
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33 |
E. Riyanto and C. T. Chang, 2010, “A Heuristic Revamp Strategy to
Improve Operational Flexibility ofWater Networks Based on Active
Constraints,” Chem. Eng. Sci. 65, 2758 - 2770. |
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34 |
J. Y. Chen and C. T. Chang, 2009, “Fault Diagnosis Strategies Based
on Qualitative Predictions of Symptom Evolution Behaviors,” J. Proc.
Cont. 19, 842 - 858. |
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35 |
C. T. Chang,
B. H. Li and C. W. Liou, 2009,“Development of A Generalized MINLP Model for
Assessing and Improving the Operational Flexibility of Water Network Designs,”
Ind. Eng. Chem. Res. 48, 3496–3504. |
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36 |
H. T. Chen, S. H. Hwang and C. T. Chang, 2009, “Interactive
Identification of Continuous-Time Hammerstein and Weiner Systems Using a
Two-Stage Estimation Algorithm,” Ind. Eng. Chem. Res. 48, 3, 1495 - 1510. |
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37 |
S. H. Hwang, H. T. Chen, and C. T. Chang, 2008, “An Exponentially
Weighted Moving Average Method for Identification and Monitoring of Stochastic
Systems,” Ind. Eng. Chem. Res. 47, 8239 - 8249. |
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38 |
J. Y. Chen and C. T. Chang, 2008, “Development of an Optimal
Sensor Placement Procedure Based on Fault Evolution Sequences,” Ind. Eng.
Chem. Res. 47, 7335 - 7346. |
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39 |
K. H. Liang and C. T. Chang, 2008, “A Simultaneous Optimization
Approach to Generate Design Specifications and Maintenance Policies for the
Multi-Layer Protective Systems in Chemical Processes,” Ind. Eng. Chem. Res.
47, 5543 - 5555. |
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40 |
H. G. Dong, C. Y. Lin and C. T. Chang, 2008, “Simultaneous
Optimization Approach for Integrated Water-Allocation and Heat-Exchange
Networks,” Chem. Eng. Sci. 63, 3664 - 3678. |
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41 |
T. H. Kuo and C. T. Chang, 2008, “Optimal Planning Strategy for
the Supply Chains of Light Aromatic Compounds in Petrochemical Industries,”
Comput. & Chem. Engng. 32, 6, 1147 - 1166. |
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42 |
T. H. Kuo and C. T. Chang, 2008, “Application of a Mathematic
Programming Model for Integrated Planning and Scheduling of Petroleum Supply
Networks,” Ind. Eng. Chem. Res. 47, 6, 1935 - 1954. |
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43 |
H. G. Dong, C. Y. Lin and C. T. Chang, 2008, “Simultaneous
Optimization Strategy for Synthesizing Heat Exchanger Networks with Multi-Stream
Mixers,” Chem. Eng. Res. Des. 86, 299 - 309. |
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44 |
B. H. Li and C. T. Chang, 2007, “A Simple and Efficient
Initialization Strategy for Optimizing Water-Using Network Designs,” Ind.
Eng. Chem. Res. 46, 25, 8781 - 8786. |
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45 |
J. Y. Chen and C. T. Chang, 2007, “Systematic Enumeration of Fuzzy
Diagnosis Rules for Identifying Multiple Faults in Chemical Processes,” Ind.
Eng. Chem. Res. 46, 11, 3635-3655. |
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46 |
J. W. Lai, C. T. Chang and S. H. Hwang, 2007, “Petri-Net Based
Binary Integer Programs for Automatic Synthesis of Batch Operating Procedures,”
Ind. Eng. Chem. Res. 46, 9, 2797-2813. |
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47 |
K. F. Cheng and C. T. Chang, 2007, “Integrated Water Network
Designs for Batch Processes,” Ind. Eng. Chem. Res. 46, 4,
1241-1253. |
 |
48 |
B. H. Li and C. T. Chang, 2006, “A Mathematical Programming Model
for Discontinuous Water Reuse System Design,” Ind. Eng. Chem. Res. 45,
14, 5027-5036. |
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49 |
C. T.
Chang and B.
H. Li, 2006, “Optimal Design of Wastewater Equalization Systems in Batch
Processes,” Comput.& Chem. Engng. 30, 5, 797-806. |
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50 |
J. W. Lai, H. H. Chou and C. T. Chang, 2006, “Petri-Net Based
Integer Programs for Synthesizing Optimal Material-Transfer Procedures in
Pipeline Networks,” Journal of the Chinese Institute of Engineers 29,
2, 337-346. |
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51 |
J. Y. Chen and C. T. Chang, 2006, “Fuzzy Diagnosis Method for
Control Systems with Coupled Feed Forward and Feedback Loops,” Chem. Eng.
Sci. 61, 3105-3128. |
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52 |
Y. F. Wang, H. H. Chou and C. T. Chang, 2005, “Generation of Batch
Operating Procedures for Multiple Material-Transfer Tasks with Petri Nets,”
Comput. & Chem. Engng. 29, 8, 1822-1836. |
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53 |
B. H. Li and C. T. Chang, 2005, “Improved Optimization Strategies
for Generating Practical Water Usage and Treatment Network Structures,” Ind.
Eng. Chem. Res. 44, 10, 3607-3618. |
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54 |
N. Balasubramanian, M. L. Yeh, C. T. Chang, and S. J. Chen, 2005,
“Hierarchical Petri Nets for Modeling Metabolic Phenotype in Prokaryotes,”
Ind. Eng. Chem. Res. 44, 7, 2218-2240. |
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55 |
H. H. Chou and C. T. Chang, 2005, “A Petri-Net Based Strategy to
Synthesize the Operating Procedures for Cleaning Pipeline Networks,” Ind.
Eng. Chem. Res. 44, 1, 114-123. |
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56 |
Y. F. Wang and C. T. Chang, 2004, “A Petri-Net Based Deductive
Reasoning Strategy for Fault Identification in Batch Processes,” Ind. Eng.
Chem. Res. 43, 11, 2704-2720. |
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57 |
S. N. Ju, C. L. Chen and C. T. Chang, 2004, “Constructing Fault
Trees for the Advanced Process Control Systems - An Application to the Cascade
Control Loops,” IEEE Trans. Reliability 53, 1, 43-60. |
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58 |
C. A. Lai, C. T. Chang, C. L. Ko and C. L. Chen, 2003, “The
Optimal Sensor Placement and Maintenance Strategies for Mass-Flow Networks,”
Ind. Eng. Chem. Res. 42, 4366-4375. |
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59 |
S. Y. Chang and C. T. Chang, 2003, “A Fuzzy-Logic Based Fault
Diagnosis Strategy for Process Control Loops,” Chem. Eng. Sci. 58,
3395-3411 |
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60 |
S. N. Ju, C. L. Chen and C. T. Chang, 2003, “Fault Tree Structures
of Override Control Systems,” Reliab. Eng. Sys. Saf. 81, 163-181. |
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61 |
Y. F. Wang and C. T. Chang, 2003, “A Hierarchical Approach to
Construct Petri Nets for Modeling Fault Propagation Mechanisms in Sequential
Operations,” Comput. & Chem. Engng. 27, 2, 259-280. |
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62 |
N. Balasubramanian, C. T. Chang and Y. F. Wang, 2002, “Petri-Net
Models for Risk Analysis of Hazardous Liquid Loading Operations,” Ind. Eng.
Chem. Res. 41, 4823-4836. |
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63 |
S. Y. Chang, C. R. Lin and C. T. Chang, 2002, “A Fuzzy Diagnosis
Approach Using Dynamic Fault Trees,” Chem. Eng. Sci. 57,
2971-2985. |
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64 |
C. T.
Chang, Y. S.
Lin and C. Georgakis, 2002, “A Simple Graphic Approach for Observer
Decomposition,” Journal of Process Control 12, 857-873. |
 |
65 |
Y. F. Wang, J. Y. Wu and C. T. Chang, 2002, “Automatic Hazard
Analysis of Batch Operations with Petri Nets,” Reliab. Eng. Sys. Saf.
76, 91-104. |
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66 |
M. J. Tsai and C. T. Chang, 2001, “Water Usage and Treatment
Design Using Genetic Algorithms,” Ind. Eng. Chem. Res. 40,
4874-4888. (NSC89-2214-E006-027) |
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67 |
C. T.
Chang, C. S.
Tsai and K. H. Chen, 2000, “Resilient Alarm Logic Design for Process Networks,”
Ind. Eng. Chem. Res. 39, 4974-4985. |
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68 |
C. S. Tsai, C. T. Chang, S. W. Yu and C. S. Kao, 2000, “Robust
Alarm Generation Strategy,” Comput. & Chem. Engng. 24, 743-748. |
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69 |
C. H. Huang, C. T. Chang, H. C. Ling and C. C. Chang, 1999, “A
Mathematical Programming Model for Water Usage and Treatment Design,” Ind.
Eng. Chem. Res. 38, 7, 2666-2679. |
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70 |
C. T.
Chang and J.
I. Hwang, 1998, “Simplification Techniques for EKF Computations in Fault
Diagnosis - Suboptimal Gains,” Chem. Eng. Sci. 53, 22, 3853-3862
(NSC85-2214-E006-015). |
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71 |
C. T.
Chang and J.
I. Hwang, 1998, “Simplification Techniques for EKF Computations in Fault
Diagnosis - Model Decomposition,” AIChE Journal 44, 6, 1392-1403.
(NSC85-2214-E006-015). |
 |
72 |
C. T.
Chang and J.
H. Hsia, 1998, “Operating Strategies for Charging Batch Reactors Under Multiple
Constraints,” Ind. Eng. Chem. Res. 37, 4, 1364-1371.
(NSC86-2214-E006-009) |
 |
73 |
C. S. Tsai and C. T. Chang, 1997, “Optimal Alarm Logic Design for
Mass Flow Networks,” AIChE Journal 43, 11, 3021-3030.
(NSC86-2214-E006-013) |
 |
74 |
D. H. Kuo, D. S. Hsu, C. T. Chang and D. H. Chen, 1997, “Prototype
for Integrated Hazard Analysis,” AIChE Journal 43, 6, 1494-1510.
(NSC83-0421-P006-005Z) |
 |
75 |
D. H. Kuo, D. S. Hsu and C. T. Chang, 1997, “A Prototype for
Integrating Automatic Fault Tree/Event Tree/HAZOP Analysis,” Comput. & Chem.
Engng. 21, Suppl., S923-S928. |
 |
76 |
C. T.
Chang and L.
C. Chen, 1997, “The Use of Mixers in Heat Recovery System Design,” Chem. Eng.
Sci. 52, 2, 183-194. (NSC-85-2214-E-006-027) |
 |
77 |
C. T.
Chang, H. C.
Hwang, K. S. Hwang and D. S. Hsu, 1997, “The Loop Identification and
Classification Algorithms for Digraph-Based Safety Analysis,” Comput. & Chem.
Engng. 21, 2, 223-239. (NSC-80-0402-E-006-02) |
 |
78 |
C. T.
Chang and J.
R. Hwang, 1996, “A Multi-Objective Programming Approach to Waste Minimization in
the Utility Systems of Chemical Processes,” Chem. Eng. Sci. 51,
16, 3951-3965. (NSC-83-0402-E-006-012) |
 |
79 |
C. S. Tsai and C. T. Chang, 1996, “Statistical Operating
Strategies for Charging the Batch Reactors,” AIChE Journal 42, 5,
1304-1318. |
 |
80 |
C. S. Tsai and C. T. Chang, 1996, “A Statistics Based Approach to
Enhancing Safety and Reliability of the Batch-Reactor Charging Operation,”
Comput. & Chem. Engng. 20, Suppl., S647-S652. |
 |
81 |
C. S. Tsai, C. T. Chang and C. S. Chen, 1996, “Fault Detection and
Diagnosis in Batch and Semi-Batch Processes Using Artificial Neural Networks,”
Chem. Eng. Comm. 143, 39-71. (NSC-82-0421-P-006-008Z) |
 |
82 |
C. T.
Chang and J.
W. Chen, 1995, “Implementation Issues Concerning the EKF-Based Fault Diagnosis
Techniques,” Chem. Eng. Sci. 50, 18, 2861-2882.
(NSC-84-2214-E-006-008) |
 |
83 |
C. S. Tsai and C. T. Chang, 1995, “Dynamic Process Diagnosis Via
Integrated Neural Networks,” Comput.& Chem. Eng.
19, Suppl., S747-S752. (NSC-82-0421-P-006-008Z) |
 |
84 |
C. T.
Chang, D. S.
Hsu and D. M. Hwang, 1994, “Studies on the Digraph-Based Approach for Fault-Tree
Synthesis. 2. The Trip Systems,” I&EC Research 33, 7, 1700-1707. |
 |
85 |
C. T.
Chang and K.
S. Hwang, 1994, “Studies on the Digraph-Based Approach for Fault-Tree Synthesis.
1. The Ratio-Control Systems,” I&EC Research 33, 6, 1520-1529. |
 |
86 |
C. T.
Chang, K. K.
Chu and J. R. Hwang, 1994, “Application of the Generalized Stream Structure in
HEN Synthesis,” Comput. & Chem. Engng. 18, 4, 345-368.
(NSC-81-0402-E-006-545) |
 |
87 |
C. T.
Chang, K. N.
Mah and C. S. Tsai, 1993, “A Simple Design Strategy for Fault Monitoring
Systems,” AIChE Journal 39, 7, 1146-1163. (NSC-81-0414-P-006-15B) |
 |
88 |
C. T.
Chang, C. S.
Tsai and T. T. Lin, 1993, “The Modified Differential Quadratures and Their
Applications,” Chem. Eng. Comm. 123, 135-164.
(NSC-79-0402-E-006-08) |
 |
89 |
C. T.
Chang and H.
C. Hwang, 1992, ”New Developments of the Digraph-Based Techniques for Fault-Tree
Synthesis,” I&EC Research 31, 6, 1490-1502. |
 |
90 |
C. T.
Chang, 1991,
“Letter to the Editor,” Comput. & Chem. Engng. 15, 12, 859. |
 |
91 |
J. R. Quan and C. T. Chang, 1989, ”New Insights in Solving
Distributed System Equations by the Quadrature Method - II. Numerical
Experiments,” Comput. & Chem. Engng. 13, 9, 1017-1024. |
 |
92 |
J. R. Quan and C. T. Chang, 1989, “New Insights in Solving
Distributed System Equations by the Quadrature Method - I. Analysis,” Comput.
& Chem. Engng. 13, 7, 779-788. |
 |
93 |
C. T.
Chang and J.
R. Quan, 1989, “A Unified Approach for Solving Nonlinear Differential Equations
in Process Engineering,” IchemE Symp. Ser., No.114, 177-186. |
 |
94 |
C. T.
Chang and T.
P. Yu, 1988, “Development of An Evolutionary Stream Merging Method in Heat
Exchanger Network Design,” IChemE Symp. Ser., No.109, 159-179. |
 |
95 |
C. T.
Chang and M.
A. F. Epstein, 1987, “Simulation Studies of A Feedback Control Strategy for
Batch Crystallizers,” AIChE Symposium Ser., No.253, Vol.83, 110-119. |
 |
96 |
C. T.
Chang and M.
A. F. Epstein, 1982, “Identification of Batch Crystallization Control Strategies
Using Characteristic Curves,” AIChE Symposium Ser., No.215, Vol.78,
68-75. |
 |
1 |
C. T. Chang, E. Wibisono, and V. S. K. Adi, June 15 - 18, 2014, “A Model
Based Approach to Optimize System Structures and Maintenance Policies for
Safety Interlocks with Time-Varying Failure Rates,” ESCAPE 24, Budapest,
Hungary. |
2 |
D. Jiang, F. Qian, W. L. Du, and C. T. Chang, June 15 - 18, 2014, ‘A Model-
Based Revamp Procedure for Improving Operational Flexibility of Multi-Contaminant
Water Networks,” ESCAPE 24, Budapest, Hungary. |
3 |
S. L. Cheng, and C. T. Chang, May 28 - 30, 2014, “A Sequential Design Strategy
for Heat Integration across Plant Boundaries with Nash-Equilibrium Constrained
Energy Trades,” ADCONIP 2014, Hiroshima, Japan. |
4 |
J. H. Li, and C. T. Chang, May 28 - 30, 2014, “Synthesis of Periodic Operation
Schedules with Timed Automata,” ADCONIP 2014, Hiroshima, Japan. |
5 |
J. Y. Chen, and C. T. Chang, October 19, 2013, “Fuzzy Fault Diagnosis with
Automata Generated Languages,” IWACIII 2013, Shanghai, China. |
6 |
V. S. K. Adi, and C. T. Chang, September 9 - 11, 2013, “A Mathematical Programming
Approach for Temporal Flexibility Analysis,” AC.CES2013, Aachen,
Germany. |
7 |
B. H. Li, Y. K. Liang, and C. T. Chang, July 15 - 19, 2012, “A Heuristic Design
Procedure for Batch Water-Using Networks with Multiple Contaminants,”
PSE2012, Singapore. |
8 |
V. S. K. Adi, and C. T. Chang, July 15 - 19, 2012, “Dynamic Flexibility Analysis
with Differential Quadratures,”
PSE2012, Singapore. |
9 |
M. L. Yeh, and C. T. Chang, October 16 - 21, 2011, “Automatic Generation
of Emergency Response Procedures for Batch Processes,” AIChE 2011 Annual
Meeting, Minneapolis, U.S.A.
|
10 |
E. Wibisono , and C. T. Chang, October 16 - 21, 2011, “Automatic Generation
of Optimal System Configurations and Maintenance Policies for Protective
Systems,” AIChE 2011 Annual Meeting, Minneapolis, U.S.A. |
11 |
B. H. Li, and C. T. Chang, May 8 - 11, 2011, “Evolution of Water-Using Networks
with Multiple Contaminants,” PRES'11, Florence, Italy. |
12 |
Y. C. Liao, K. H. Liang, E. Wibisono, and C. T. Chang, May 8 - 11, 2011, “A
Mathematical Programming Approach to Generate Optimal System Configurations
and Maintenance Policies of Multichannel Multilayer Protective Systems,”
ICheaP-10, Florence, Italy.
|
13 |
E. Sadeli, and C. T. Chang, October 5 - 8, 2010, “Optimal Engineering Designs
for Heat Exchangers in Multi-Period Processes,” APCChE-13, Taipei. |
14 |
M. L. Yeh, and C. T. Chang, October 5 - 8, 2010, “Automatic Generation of
Supervisory Controller for Batch Operations,” PCChE-13, Taipei. |
15 |
V. S. K. Adi, and C. T. Chang, October 5 - 8, 2010, “Stipulation of Nominal
Operating Conditions for Maximum Flexibility,” APCChE-13, Taipei. |
16 |
W. H. Wang, and C. T. Chang, October 5 - 8, 2010, “Inter-Plant Heat Integration
Based on Game Theory,” APCChE-13, Taipei. |
17 |
M. L. Yeh, and C. T. Chang, July 25 - 28, 2010, “An Automata-Based Approach
to Design Fault Diagnosis Systems for Batch hemical Processes” PSE ASIA
2010, Singapore. |
18 |
C. T. Chang, and E. Riyanto, June 6 - 9, 2010, “Revamp Heuristics for Improving
Operational Flexibility of Water Networks,” ESCAPE-20, Ischia, Naples,
Italy.
|
19 |
B. H. Li, and C. T. Chang, May 9 - 12, 2010, “Enumeration of Alternative
Water Network Designs with Mathematical Programming Models,” SCPPE-
2010, Hang Zhou, China. |
20 |
C. T. Chang, and J. Y. Chen, July 12-15, 2009, “Systematic Development of
Automata Generated Languages for Fault Diagnosis in Continuous Chemical
Processes,” ADCHEM 2009, Istanbul, Turkey.
|
21 |
V. S. K. Adi, and C. T. Chang, June 7 - 12, 2009, “Optimal Synthesis and
Scheduling Strategies for Batch Azeotropic Distillation Processes,” FOCAPD
2009, Breckenridge, Colorado, U.S.A. |
22 |
B. H. Li, and C. T. Chang, June 7 - 12, 2009, “A MINLP-Based Revamp Strategy
for Improving the Operational Flexibility of Water Networks,” FOCAPD
2009, Breckenridge, Colorado, U.S.A. |
23 |
C. T. Chang, and J. Y. Chen, December 2 - 3, 2008, “An Automaton BasedFault Diagnosis Strategy,” 15th Regional Symposium on Chemical Engineering(RSCE), Kuala Lumpur, Malaysia. |
24 |
C. T. Chang, November 20 - 22, 2008, “Studies on Automata Generated Diagnostic Languages,” 2008 Taiwan /Korea /Japan Chemical Engineering Confer-ence and the 55th Taiwan Institute of Chemical Engineers Annual Conference,Taipei City, R.O.C.< |
25 |
C. T. Chang, July 14, 2008, “Fault Diagnosis with Automata Generated Languages,”Process Systems Engineering - Recent Progress and New Applications,Taipei City, R.O.C. |
26 |
K. H. Liang, and C. T. Chang, November 4 - 9, 2007, “Optimal Design and Maintenance Strategy for Multi-Layer Protective Systems” AIChE 2007 Annual Meeting, Salt Lake City, U.S.A. |
27 |
H. G. Dong, C. T. Chang, and C. Y. Lin, November 4 - 9, 2007, “A SimultaneousOptimization Approach for Synthesizing IntegratedWater-Allocation and Neat-
Exchange Networks,” AIChE 2007 Annual Meeting, Salt Lake City, U.S.A. |
28 |
T. H. Kuo, and C. T. Chang, August 15 - 18, 2007, “Optimal Planning and Scheduling Strategy for Petroleum Supply Chains in Conversion Refineries,”
PSE ASIA 2007, Xi’an, China. |
29 |
C. H. Lin, C. T. Chang, and H. G. Dong, August 15 - 18, 2007, “Synthesis of
Integrated Water and Energy Systems,” PSE ASIA 2007, Xi’an, China. |
30 |
V. S. K. Adi, Y. H. Yang, C. T. Chang and C. S. Tsai, August 15 - 18, 2007,
“Automatic Synthesis of Optimal Material-Transfer Procedures and Schedules
in Batch Processes” PSE ASIA 2007, Xi’an, China. |
31 |
J. Y. Chen, and C. T. Chang, July 2 - 5, 2007, “Fault Diagnosis Methods Based
on Qualitative Predictions of Symptom Evolution Behaviors,” European Control
Conference 2007, Kos, Greece. |
32 |
J. W. Lai, and C. T. Chang, November 13 - November 17, 2006, “A Systematic
Approach to Synthesize Optimal Operating Procedures for Transferring Materials
in Batch Plants,” AIChE 2006 Annual Meeting, San Francisco, U.S.A. |
33 |
J. Y. Chen, and C. T. Chang, November 13 - November 17, 2006, “Automatic
Synthesis of Fuzzy Diagnosis Rules for Identifying Multiple Faults in Chemical
Processes,” AIChE 2006 Annual Meeting, San Francisco, U.S.A. |
34 |
K. F. Cheng, and C. T. Chang, November 13 - November 17, 2006, “Development
of a Mathematical Programming Model for Integrated Water Network
Design in Batch Processes,” AIChE 2006 Annual Meeting, San Francisco, U.S.A. |
35 |
D. H. Kuo, and C. T. Chang, October 30 - November 4, 2005, “Optimal Supply
Chain of Light Aromatic Compounds,” AIChE 2005 Annual Meeting, Cincinnati,
U.S.A. |
36 |
J. Y. Chen, and C. T. Chang, October 30 - November 4, 2005, “Fuzzy Diagnosis
Method for Process Systems with Coupled Loops ,” AIChE 2005 Annual
Meeting, Cincinnati, U.S.A. |
37 |
J. Y. Chen, and C. T. Chang, August 22 - 23, 2005, “Fuzzy Diagnosis Strategy
for Systems with Complex Dynamics,” AdCONIP'05, Seoul, Korea. |
38 |
C. T. Chang, and B. H. Li, August 18 - 19, 2005 “Design of Discontinuous
Water Reuse System,” PSE ASIA 2005, Seoul, Korea. |
39 |
C. T. Chang, H. S. Chou, and L. P. Chung, July 4 - 8, 2005, “Synthesis of
Operating Procedures for Cleaning Pipeline Networks Using Petri Nets,” 16th
IFAC World Congress (IFAC 2005), Prague, Czech Republic. |
40 |
C. S. Tsai, S. Y. Wang, C. T. Chang and S. H. Huang, January 5-10, 2004,
“Multi-Variate Run Rules,” PSE2003, Kunming, Yunnan, P. R. China. |
41 |
Y. F. Wang and C. T. Chang, September 3-5, 2003, “A Petri-Net Based Reasoning
Procedure for Fault Identification in Sequential Operations,” KES2003,
Oxford University, United Kingdom. |
42 |
Y. F. Wang and C. T. Chang, January 12-15, 2003, “Computer-Aided Hazard
Identification in Sequential Operations Using Petri Nets,” FOCAPO2003, Coral
Spring, Florida, U.S.A. |
43 |
N. Balasubramanian and C. T. Chang, December 4-6, 2002, “Modelling Metabolic
Phenotype with Petri Nets,” PSEASIA2002, Taipei, Taiwan, R.O.C. |
44 |
Y. F. Wang and C. T. Chang, December 4-6, 2002, “A Petri-Net Based Deductive
Reasoning Algorithm for Hazard Analysis of Batch Processes,” PSEA-
SIA2002, Taipei, Taiwan, R.O.C. |
45 |
Y. F.Wang and C. T. Chang, September 16-18, 2002, “Computer-Aided Hazard
Identification in Batch Processes Using Petri Nets,” KES2002, Crema, Italy. |
46 |
S. Y. Chang and C. T. Chang, September 16-18, 2002, “A Fuzzy-Logic Based
Fault Diagnosis Strategy for Process Control Loops,” KES2002, Crema, Italy. |
47 |
N. Balasubramanian and C. T. Chang, May 26-29, 2002, “Biochemical Reaction
Pathway Analysis Using Petri net,” ESCAPE-12, The Hague, The Netherlands. |
48 |
C. T. Chang and C. S. Tsai, September 6-8, 2001, “Intelligent Alarm Strategy
for Chemical Processes,” KES2001, Osaka/Nara, Japan. |
49 |
S. Y. Chang, C. R. Lin, C. T. Chang and S. W. Yu, June 7-8, 2001, “On-Line Fault Diagnosis Using Dynamic Fault Tree,” CHEMFAS-4, Jejudo Island,Korea. |
50 |
Y. F. Wang, J. Y. Wu and C. T. Chang, December 6-8, 2000, “The Use of Petri
Nets in the Development of Automatic Fault Tree Analysis Procedure for Batch Processes,” PSE Asia 2000, Kyoto, Japan. |
51 |
C. T. Chang and Y. S. Lin, June 14-16, 2000, “A Simple Method for Estimator
Decomposition,” ADCHEM 2000, Pisa, Italy. |
52 |
C. S. Tsai, C. T. Chang, S. W. Yu and C. S. Kao, July 16-21, 2000, “Robust
Alarm Generation Strategy Design,”PSE2000,Keystone,Colorado, U.S.A. |
53 |
C. T. Chang and C. S. Tsai, July 5-10, 1998, “Optimal Alarm Logic Design for
Process Networks,” FOCAPO'98, Snowbird, Utah, U.S.A. |
54 |
C. S. Tsai and C. T. Chang, March 8-12, 1998, “Optimal Plant-Wide Alarm
System Design,” AIChE National Meeting, paper 61h, New Orlean, U.S.A. |
55 |
C. T. Chang, C. S. Tsai and K. H. Chen, Dec. 16-18, 1997, “Development of Optimal Alarm Logic for Chemical Processes,” The 2nd Korea-Taiwan(ROC)-Singapore Symposium on Process Systems Engineering, Seoul, Korea. |
56 |
D. H. Kuo, D. S. Hsu and C. T. Chang, May 25-29, 1997, “A Prototype for Integrating Automatic Fault Tree/Event Tree/HAZOP Analysis,” Joint PSE'97/ESCAPE-
7 Symposium, Trondheim, Norway. |
57 |
C. T. Chang and J. I. Hwang, December 9-10, 1996, “Simplification Strategies
for On-Line EKF Computations in Fault Identification,” The 1st Taiwan(ROC)-
Korea-Singapore Symposium on Process Systems Engineering, Taipei, Taiwan,
R.O.C. |
58 |
C. S. Tsai and C. T. Chang, May 26 - 29, 1996, “A Statistics-Based Approach
to Enhancing Safety and Reliability of the Batch Reactor Charging Operation,”
6th European Symposium on Computer Aided Process Engineering (ESCAPE6),
Rhodes, Greece. |
59 |
C. T. Chang and L. C. Chen, March 3 - 6, 1996, “Incorporation of Stream Merging/Splitting Schemes in HEN Design,” APCCHE'96 Conference, Taipei,Taiwan. |
60 |
C. T. Chang and J. R. Hwang, July 30 - August 2, 1995, “Waste Minimization in the Utility Systems of Chemical Processes,” AIChE 1995 Summer National Meeting, Boston, U. S. A. (NSC-83-0402-E-006-012)
|
61 |
C. S. Tsai and C. T. Chang, June 11-14, 1995, “Dynamic Process Diagnosis Via
Integrated Neural Networks,” Fifth European Symposium on Computer Aided
Process Engineering (ESCAPE5), Bled, Slovenia. (NSC-82-0421-P-006-008Z) |
62 |
C. T. Chang, H. C. Hwang and D. M. Hwang, Feburary 15-19, 1993, “Fault-Tree Synthesis Techniques for Process Systems with Coupled Feedforward and Feedback Loops,” International Conference on Safety, Health and Loss Prevention in
the Oil, Chemical and Process Industries, Singapore. (NSC-80-0402-E-006-02) |
63 |
C. T. Chang and T. T. Lin, October 9-11, 1991, “Application of Differential
Quadratures in Solving Nonlinear Models Defined in Infinite or Semi-Infinite
Domains,” International Conference on Information and Systems (ICIS), Hangzhou,
China. (NSC-79-0402-E-006-08)
|
64 |
C. T. Chang and T. T. Lin, July 15-21, 1990, “New Developments in Solving
Nonlinear Problems by Differential and Integral Quadratures,” The 40th Cana-
dian Chemical Engineering Conference, Halifax, Nova Scotia, Canada. (NSC-
79-0402-E-006-08) |
65 |
C. T. Chang and J. R. Quan, September 25-28, 1989, “A Unified Approach
for Solving Nonlinear Differential Equations in Process Models,” Computer In-
tegrated Process Egineering (CIPE '89) conference, Leeds University, Leeds,
England. |
66 |
C. T. Chang and T. P. Yu, March, 1988, “An Evolutionary Stream Merging
Method in Heat Exchanger Network Design,” Understanding Process Integration
II conference, UMIST, Manchester, England. |
67 |
C. T. Chang and T. P. Yu, March, 1988, “Application of Stream Merging Techniques
in Heat Exchanger Network Design,” AIChE National Meeting, New
Orleans, U. S. A. |
68 |
C. T. Chang and M. A. F. Epstein, November, 1987, “A General Approach to
Feedback Control Stategies for Batch Crystallizers,” AIChE Annual Meeting,
New York, U. S. A. |
69 |
C. T. Chang and M. A. F. Epstein, April, 1986, “Theoretical Development of
the Feedback Control Strategy for Batch Crystallizers,” AIChE National Meet-
ing, New Orleans, U. S. A.
|
70 |
C. T. Chang and M. A. F. Epstein, November, 1981, “Interpretation of Batch
Crystallization Dynamics in Terms of Characteristic Curves,” AIChE Annual
Meeting, New Orleans, U. S. A. |
71 |
C. T. Chang and M. A. F. Epstein, October, 1981, “System Identification and
Control for Batch Cooling Crystallizers,” The Second World Congress of Chem-
ical Engineering, Montreal, Canada. |
72 |
C. T. Chang and M. A. F. Epstein, June, 1980, “Model Control Strategy for
Continuous Crystallizers,” AIChE National Meeting, Philadelphia, U. S. A. |