PLENARY
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High Performance Computing Project |
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Intelligence in Scientific Computing |
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The Need for Automated Formula Manipulation in Object-Oriented Continuous-System Modelling |
1 |
MATLAB AND SIMULATION
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What's New for MATLAB? |
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Efficient Data Storage Handling in MATLAB |
9 |
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MaTX: MATLAB-like Interpreter/Compiler for Scientific and Engineering Computation |
15 |
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The Ideas Behind Omola |
23 |
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Modelling of Power Systems in Omola for Transient Stability Studies |
30 |
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Real-time Systems Simulation |
CACSD ENVIRONMENTS I
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An Open Architecture Computer-Assisted Control Engineering |
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AnDeCS: A Concurrent Control Engineering Project |
37 |
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CACSD in an Object-Oriented Graphical Environment |
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A Distributed Computing Environment for Control System Analysis and Design |
47 |
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Control Engineering Environments in DB-Prolog |
55 |
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Integrating CACSD Packages and Control Libraries: Towards More Flexible and Versatile CACSD |
62 |
CONTROL SYSTEM DESIGN
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Phase-Space Control System Design |
68 |
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Linear Controller Design via Concex Optimization |
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Interactive Loop-Shaping Design of MIMO Controllers |
76 |
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Computer Aided Robust Control Design for Interval Control Systems |
82 |
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Integrated Design Environment for Process Control Systems |
90 |
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AP_LIN: A Tool Box for Approximate Linearization on Nonlinear Systems |
94 |
DOMAIN SPECIFIC SOFTWARE ARCHITECTURES (DSSA)
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Domain Specific Software Architectures: Government Needs and Expectations |
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DSSA Case Study: Flight Director Design and Development |
102 |
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Domain Specific Software Architectures for Intelligent Guidance, Navigation and Control |
110 |
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Domain Specific Software Architectures: Distributed Intelligent Control and Management |
117 |
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Domain Specific Software Architectures - Command and Control |
129 |
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Prototyping Technology (Paper not received) |
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Hybrid Control |
137 |
KNOWLEDGE-BASED CONTROL
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Knowledge-Based Control |
138 |
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A Matrix and Expert System Development Aid Language |
148 |
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Linearization Algorithms and Heuristics for Computer-Aided Control Engineering |
156 |
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Object-Oriented Chemical Process Modelling in Omola |
165 |
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PID Autotuners Design Using Machine Learning |
173 |
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Learning and Adaptation in Control Systems with Interactive Computer Graphics |
180 |
NUMERICS METHODS IN CACSD
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Frequency Response Computation Via Rational Interpolation |
188 |
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Sparse Matrix Applications in Computer-Aided Control System Design |
196 |
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An Autonomous System Control Theory: An Overview |
204 |
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A Netlib Library for the Systems and Controls Community |
211 |
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An Iteration Scheme for Dominant Singular Values |
215 |
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A New Technique for Solving High-Index Differential-Algebraic Equations |
218 |
CACSD ENVIRONMENTS II
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The Evolution of CACSD Tools - A Software Engineering Perspective |
225 |
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Casey: A Computer-Aided Engineering System |
232 |
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Software Standards in the Control Systems Community |
238 |
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BLOCKM - A Block Diagram Modelling Interface and its Applications |
242 |
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CTCAI - A Computer-Aided-Instruction Software Package for Classical Control Theory |
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Hypermedia in CACSD Education for Distributed Parameter Systems |
250 |
DISCRETE-EVENT AND REAL-TIME SYSTEMS
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Computer-Aided Modeling, Analysis and Design of Discrete Event Systems using Petri Nets |
255 |
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Discrete Event Modelling and Simulation in Omola |
262 |
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A Model for Visual Observation Under Uncertainty |
269 |
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How Well Can Data Temporal Consistency be Maintained? |
275 |
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Designing Databases in Real-Time Embedded Systems |
285 |
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Automatic Scheduling Challenges in Guidance, Navigation and Control |
293 |