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E-Book, Englisch, 432 Seiten, Web PDF

Novak Software for Computer Control

Proceedings of the Second IFAC/IFIP Symposium on Software for Computer Control, Prague, Czechoslovakia, 11-15 June 1979
1. Auflage 2014
ISBN: 978-1-4831-4638-6
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark

Proceedings of the Second IFAC/IFIP Symposium on Software for Computer Control, Prague, Czechoslovakia, 11-15 June 1979

E-Book, Englisch, 432 Seiten, Web PDF

ISBN: 978-1-4831-4638-6
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark



Software for Computer Control is a collection of papers and lectures presented at the Second IFAC/IFIP Symposium on Software for Computer Control, held in Prague, Czechoslovakia in June 1979. The symposium is organized with the hope of making vital contributions to the development of the computer sciences. The text focuses on the design and programming of process control systems used in various industrial processes and experiments. Topics covered include communication control in computer networks; program generators for process control applications; methods for the design of control software; presentations on software for microprocessors; real-time languages; algorithms for computer control; and applications of computer control in sciences. Computer scientists, systems analysts, programmers, and students of computer science will benefit from this book.

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1;Front Cover;1
2;Software for Computer Control;4
3;Copyrigh Page;5
4;Table of Contents;8
5;SECOND IFAC/IFIP SYMPOSIUM ON SOFTWARE FOR COMPUTER CONTROL;6
6;FOREWORD;13
7;CHAPTER 1. COMMUNICATION CONTROL IN COMPUTER NETWORKS;14
7.1;INTRODUCTION;14
7.2;THE CONTROL OF COMMUNICATION;15
7.3;COMMUNICATION FUNCTIONS;16
7.4;COMMUNICATION PROTOCOLS;19
7.5;NETWORK ARCHITECTURES;20
7.6;CONCLUSION;21
7.7;REFERENCES;21
8;CHAPTER 2. PROGRAM GENERATORS FOR PROCESS CONTROL APPLICATIONS;24
8.1;ABSTRACT;24
8.2;KEYWORDS;24
8.3;1. Introduction;24
8.4;2. Clarification of some terms;26
8.5;3. Structure and usage of FIBl anguages;27
8.6;4. Types of program generators;30
8.7;References;34
9;CHAPTER 3. MICROPROCESSOR HARDWARE AND SOFTWARE
;36
9.1;ABSTRACT;36
9.2;KEYWORDS;36
9.3;1. The dedication of process control systems
;36
9.4;2. The terms microprocessor and microprogramming;37
9.5;3. Function elements of microprocessor-based systems;40
9.6;4. The distribution of function elements onto chips;47
9.7;5. Hardware development;49
9.8;6. Software tools;50
9.9;7. Programming and software testing;53
9.10;8. Economical aspects;57
9.11;REFERENCES;59
10;CHAPTER 4. METHODS FOR THE DESIGN OFCONTROL SOFTWARE;64
10.1;Abstract;64
10.2;Keywords;64
10.3;INTRODUCTION;64
10.4;PROGRAMMING;64
10.5;STRUCTURED PROGRAMMING;65
10.6;REAL-TIME PROGRAMMING;66
10.7;SEQUENTIAL, MULTI- AND REAL-TIME PROGRAMMING;66
10.8;STRUCTURES FOR REAL-TIME PROGRAMMING;67
10.9;EXCEPTIONS;68
10.10;INPUT/OUTPUT;68
10.11;LARGE PROGRAMS;69
10.12;CONCLUSION;69
10.13;REFERENCES;70
11;CHAPTER 5. A SPEED-ORIENTED FLOATING-POINT SUBROUTINE PACKAGE FOR THE INTEL 8080 MICROPROCESSORS;72
11.1;Abstract;72
11.2;Keywords;72
11.3;FLOATING-POINT NUMBERS;72
11.4;EXECUTION SPEED;72
11.5;THE STANDARD THREE-BYTE FLOATING-POINT PACKAGE;75
11.6;CONCLUSIONS;75
11.7;REFERENCES;75
12;CHAPTER 6. A MICROPROCESSOR CONTROLLER FOR DECENTRALISED HIERARCHICAL CONTROL;76
12.1;Abstract.;76
12.2;Keywords;76
12.3;INTRODUCTION;76
12.4;CONTROL SYSTEM ORGANISATION;76
12.5;TRACKING CONTROL ALGORITHMS;77
12.6;SOFTWARE DEVELOPMENT FOR DECENTRALISED MULTIVARIABLE CONTROL;78
12.7;CONCEPTION OF A MICROPROCESSOR BASED CONTROL SYSTEM;80
12.8;CONCLUSION;81
12.9;REFERENCES;81
13;CHAPTER 7. UNIVERSAL SOFTWARE INTERFACES FOR DISTRIBUTED PROCESS CONTROL BY MICRO-COMPUTERS;82
13.1;Abstract;82
13.2;Keywords;82
13.3;INTRODUCTION;82
13.4;I / GENERAL FEATURES;82
13.5;II / ASSEMBLER SUB-ROUTINES SYSTEM;83
13.6;III / BASIC/FARANDOLE PRODUCTS;83
13.7;IV / PRACTICAL UTILIZATION;84
13.8;CONCLUSION;85
13.9;REFERENCES;85
14;CHAPTER 8. MICROCONT INTERPRETIVE CONTROL LANGUAGE BASED ON INTEL 8080;86
14.1;Abstract;86
14.2;Keywords;86
14.3;INTBQDUCTION;86
14.4;BUILDING BLOCKS AVAILABLE;87
14.5;DESIGN PROCEDURE;87
14.6;HIERARCHICAL SYSTEM;89
14.7;EXECUTIVE FACILITIES;89
14.8;PROGRAM GENERATING;89
14.9;CONCLUSIONS;89
14.10;REFERENCES;89
15;CHAPTER 9. A MULTIPROCESSOR MICROCOMPUTER FOR PROCESS CONTROL;92
15.1;Abstract;92
15.2;Keywords
;92
15.3;INTRODUCTION;92
15.4;SYSTEM ARCHITECTURE;92
15.5;HARDWARE ASPECTS;93
15.6;THE MICROMONITOR;94
15.7;REALIZATION;95
15.8;CONCLUSIONS;95
15.9;REFERENCES;95
16;CHAPTER 10. MPCS: A MICROCOMPUTER SYSTEM FOR PROCESS CONTROL;96
16.1;Abstract;96
16.2;Keywords
;96
16.3;INTRODUCTION;96
16.4;HARDWARE REQUIREMENTS;96
16.5;SOFTWARE REQUIREMENTS;96
16.6;SYSTEM SOFTWARE;97
16.7;PROCESS AND OPERATOR INTERFACE SOFTWARE;97
16.8;ALGORITHMS DEVELOPMENT SOFTWARE;98
16.9;APPLICATIONS;98
17;CHAPTER 11. ALGORITHMS FOR MICROCOMPUTER-BASED TWO-LEVEL CONTROLLERS;100
17.1;Abstract
;100
17.2;Keywords
;100
17.3;INTRODUCTION;100
17.4;GENERAL REMARKS ON MICROPROCESSOR IMPLEMENTATION OF MULTIVARIABLE CONTROLLERS;100
17.5;THE SPECIAL CASE OF A SINGLE-INPUT SINGLE OUTPUT CONTROLLER;101
17.6;THE IDENTIFICATION ALGORITHM;102
17.7;ADAPTIVE CONTROL ALGORITHM: EXPERIMENTAL RESULTS AND CONCLUSIONS;102
17.8;REFERENCES;103
18;CHAPTER 12. A BLOCK-DIAGRAM LANGUAGE TO IMPLEMENT CONTROLLERS IN A DISTRIBUTED COMPUTER CONTROL NETWORK;106
18.1;Abstract;106
18.2;Keywords
;106
18.3;INTRODUCTION;106
18.4;THE DISTRIBUTED COMPUTER CONTROL NETWORK;106
18.5;SOFTWARE AT SUPERVISORY LEVEL;107
18.6;EXAMPLE;109
18.7;REFERENCES;109
19;CHAPTER 13. AUTOMATION OF RAILWAY YARDS USING MINI AND MICROPROCESSORS;110
19.1;Abstract
;110
19.2;Keywords
;110
19.3;INTRODUCTION;110
19.4;SWITCH CONTROL ALGORITHM;110
19.5;DISCUSSION OP THE ALGORITHM;111
19.6;HARDWARE REQUIREMENTS;111
19.7;SOFTWARE REQUIREMENTS;111
19.8;CONCLUSION;112
20;CHAPTER 14. SOFTWARE PACKAGE FOR PROCESS CONTROL WITH MICROPROCESSORS;114
20.1;Abstract
;114
20.2;Keywords
;114
20.3;INTRODUCTION;114
20.4;PRINCIPLES. DEFINITIONS;114
20.5;CONCLUSION;117
20.6;REFERENCES;117
21;CHAPTER 15. MICROPROCESSOR BASED LOAD-FREQUENCY CONTROLLER FOR ELECTRIC POWER NETWORKS;118
21.1;Abstract
;118
21.2;Keywords
;118
21.3;INTRODUCTION;118
21.4;MAIN HARDWARE ASPECTS;118
21.5;SOFTWARE BLOCKS AND TASK SCHEDULING;119
21.6;DATA ACQUISITION;119
21.7;CONTROL TASKS;120
21.8;STATISTICAL TASKS;121
21.9;OPERATOR COMMAND UNIT;121
21.10;CONCLUSIONS;121
21.11;REFERENCES;121
22;CHAPTER 16. COMPUTER CONFIGURATION FOR THE DEVELOPMENT AND TESTING OF MICROPROCESSOR BASED CONTROL ALGORITHMS;122
22.1;Abstract
;122
22.2;Keywords
;122
22.3;INTRODUCTION;122
22.4;THE SYSTEM CONFIGURATION;122
22.5;PROCESSOR TO PROCESSOR DIGITAL DATA CHANNEL;123
22.6;THE MICROPROCESSOR ANALOGUE/DIGITAL INTERFACE;123
22.7;CONTROL PROGRAM STRUCTURE;124
22.8;CONCLUSIONS;125
22.9;REFERENCES;125
23;CHAPTER 17. DISCO: A DISTRIBUTED, SUPERVISORY AND CONTROL PROGRAM;128
23.1;Abstract
;128
23.2;Keywords
;128
23.3;INTRODUCTION;128
23.4;PROCESS CONTROL APPLICATION;128
23.5;DISTRIBUTED COMPUTER NETWORK;129
23.6;DISCO: OVERALL STRUCTURE AND DATA BASE;129
23.7;CONCLUSIONS;131
23.8;REFERENCES;131
23.9;ACKNOWLEDGEMENTS;131
24;CHAPTER 18. FLEXIBLE SIMULATION SYSTEM FOR CHEMICAL PLANTS - GLOBAL APPROACH
;132
24.1;Abstract;132
24.2;Keywords
;132
24.3;INTRODUCTION;132
24.4;THE SIMULATION MODEL AND THE CHEMICAL PROCESS FLOWSHEET;133
24.5;CALCULATION METHODS FOR SIMULATION PROBLEMS;133
24.6;THE GLOBAL SIMULATION SYSTEM "GLOSIS";134
24.7;EXAMPLE;134
24.8;CONCLUSION;135
24.9;REFERENCES;135
25;CHAPTER 18. SOFTWARE OF COMPUTER CONTROL SYSTEMS FOR DISPATCHING CENTRES OF SECOND LEVEL CONTROL OF THE CZECHOSLOVAK POWER SYSTEM;136
25.1;Abstract;136
25.2;Introduction;136
25.3;SOFTWARE;137
25.4;NETWORK CONFIGURATION;138
25.5;OUTPUT BALANCES;138
25.6;DISPATCHER;139
25.7;CONCLUSION;139
25.8;REFERENCES;140
26;CHAPTER 19. APPLICATION OF A MULTI VARIABLE SELFTUNING REGULATOR IN CONTROL OF A DOUBLE EFFECT EVAPORATOR;142
26.1;Abstract.;142
26.2;Keywords
;142
26.3;INTRODUCTION;142
26.4;CHOICE OF SYSTEM MODEL AND CONTROL CRITERION;142
26.5;THE ALGORITHM;142
26.6;EXPERIMENTAL APPARATUS;143
26.7;EXPERIMENTAL RESULTS;144
26.8;START-UP OF THE SELFTUNING ALGORITHM;144
26.9;CONCLUSION;145
26.10;ACKNOWLEDGMENT;145
26.11;REFERENCES;145
27;CHAPTER 20. COMPUTER CONTROL OF A PROTEIN FERMENTATION PROCESS
;146
27.1;Abstract
;146
27.2;Keywords
;146
27.3;INTRODUCTION;146
27.4;DESCRIPTION OF THE PROCESS;146
27.5;THE COMPUTER SYSTEM;148
27.6;THE STRUCTURE OF SOFTWARE;148
27.7;ADVANCED METHODS USED IN THE CALCULATION SOFTWARE;149
27.8;DISCUSSION;150
27.9;REFERENCES;150
28;CHAPTER 21. CONCEPTION OF A DISTRIBUTED APPLICATION IN PROCESS CONTROL – EXAMPLE OF AN ELECTROMECHANICAL CONVERTER CONTROLLED BY MICROPROCESSORS;152
28.1;Abstract
;152
28.2;Keywords
;152
28.3;INTRODUCTION;152
28.4;1. METHODOLOGY AND DESCRIPTION LANGUAGE;152
28.5;2. ANALYSIS OF THE PROBLEM;154
28.6;3. IMPLEMENTATION;155
28.7;4. CONCLUSION;157
28.8;REFERENCES;157
29;CHAPTER 22. AN INTERACTIVE SOFTWARE SYSTEM FOR THE AUTOMATIZATION OF PARIS –TV – BROADCASTING DISTRIBUTION CENTER;158
29.1;INTRODUCTION;158
29.2;AUTOMATA LINKING THE FUNCTIONS AND THE MODULES IN THE TASKS
;160
29.3;CONCLUSION;161
29.4;REFERENCES;161
30;CHAPTER 23. DESIGN AND IMPLEMENTATION OF PROCESS CONTROL SOFTWARE UNDER REALISTIC ENVIRONMENT CONDITIONS;162
30.1;Abstract
;162
30.2;Keywords
;162
30.3;INTRODUCTION;162
30.4;APPROACH;162
30.5;TOOLS;163
30.6;EXAMPLE;164
30.7;CONCLUSION;165
30.8;ACKNOWLEDGEMENTS;165
30.9;REFERENCES;165
31;CHAPTER 24. SIMULATIVE ANALYSIS AND TESTING OF COMPUTER CONTROL SYSTEMS
;168
31.1;Abstract;168
31.2;Keywords
;168
31.3;INTRODUCTION;168
31.4;REQUIREMENTS;168
31.5;MODEL;169
31.6;SIMULATION PROGRAM;169
31.7;RESULTS;171
31.8;CONCLUSIONS;172
31.9;REFERENCES;172
32;CHAPTER 25. PROCESS CONTROL ALGORITHMS FOR MICROPROCESSORS;174
32.1;Abstract
;174
32.2;Keywords
;174
32.3;INTRODUCTION;174
32.4;CONTROL ALGORITHMS FOK SISO PROCESSES;175
32.5;CONTROL ALGORITHMS FOR MIMO PROCESSES;176
32.6;HARDWARE/SOFTWARE REQUIREMENTS;177
32.7;CONCLUSIONS;177
32.8;REFERENCES;177
33;CHAPTER 26. MINICOMPUTER SOFTWARE FOR FAULT LOCATION CONTROL IN DIGITAL CIRCUITS;178
33.1;Abstract;178
33.2;Keywords;178
33.3;MODEL OP UNIT UNDER TEST
;179
33.4;SELECTIVE SIMULATION;179
33.5;FAULT LOCATION PROCEDURE;180
33.6;CONCLUSION;180
33.7;REFERENCES;181
34;CHAPTER 27. SOFTWARE CONTROL SYNCHRONIZATION PRIMITIVES FOR MASS SERVICE LIKE REALTIME SYSTEMS;182
34.1;Abstract;182
34.2;Keywords;182
34.3;INTRODUCTION;182
34.4;BASIC SYNCHRONIZATION CONSTRUCTS;183
34.5;MESSAGE BUFFERS;184
34.6;CONCLUSIONS;185
34.7;REFERENCES;185
35;CHAPTER 28. BUILDING A SIMULATION MODEL FOR REAL TIME SYSTEMS;186
35.1;INTRODUCTION;186
35.2;A) SYSTEM DESIGN METHODOLOGY;186
35.3;1) SIMULATION MODEL;186
35.4;2) CONSTRUCTION OF A SIMULATION;187
35.5;3) BUILDING NEW SIMULATIONS;188
35.6;CONCLUSION;188
35.7;APPENDIX OPERATING SYSTEM'S DIAGRAM;191
35.8;CHARECTERISTICS OF THE COMPUTER;191
35.9;CHARACTERISTICS OF THE OPERATING SYSTEM;191
35.10;BIBLIOGRAPHY;191
36;CHAPTER 29. TOWARDS THE STANDARDIZATION OF REAL-TIME OPERATING SYSTEM KERNELS;194
36.1;Key-words;194
36.2;Abstract;194
36.3;1 Introduction;194
36.4;2 The state of the art;195
36.5;3 The case of Real-time tasking;195
36.6;4 What should a standard Real-time tasking;196
36.7;5 Comparative analysis of proposed standard;197
36.8;6 First conclusions;199
36.9;7 Conclusion;200
36.10;Acknowlegements;200
36.11;Appendix 1;200
36.12;Appendix 2;200
36.13;References;201
37;CHAPTER 30. HIGH LEVEL LANGUAGE STRUCTURES FOR DISTRIBUTED REAL-TIME PROGRAMMING
;202
37.1;Abstract
;202
37.2;Keywords
;202
37.3;INTRODUCTION;202
37.4;AIMS;202
37.5;ORIGIN;202
37.6;CRITERIA;202
37.7;GLOBAL VARIABLES;205
37.8;PROGRAM CONSTRUCTION;205
37.9;STANDARD OBJECTS;205
37.10;EXAMPLES;206
37.11;IMPLEMENTATION;207
37.12;CONCLUSION;207
37.13;LITERATURE;207
38;CHAPTER 31. IMPLEMENTATION AND APPLICATIONS OF PARCS
;208
38.1;Abstract
;208
38.2;INTRODUCTION;208
38.3;THE PRODUCER CONSUMER EXAMPLE
;208
38.4;THE IMPLEMENTATION OF A DO-PARC KERNEL ON A MICROCOMPUTER;208
38.5;CONCLUSION;209
38.6;REFERENCES;209
38.7;THE GLOBAL DESCRIPTION OF A CONTROL SYSTEM FOR AN EXPERIMENT;209
38.8;A MESSAGE DISTRIBUTOR FOR A LABORATORY;209
38.9;REFERENCES;209
39;CHAPTER 31. AN AUTOMATICALLY GENERATED TRANSLATOR SYSTEM FROM A DESCRIPTION OF THE TARGET MACHINE;216
39.1;Abstract;216
39.2;Keywords;216
39.3;INTRODUCTION;216
39.4;THE INTERMEDIATE LANGUAGE IN THE TRANSLATION PROCESS;217
39.5;RELATION OF LANGUAGES AND MACHINES;217
39.6;THE MACHINE DESCRIPTION LANGUAGE;219
39.7;CONCLUSION;219
39.8;ACKNOWLEDGEMENT;219
39.9;REFERENCES;219
40;CHAPTER 32. IMPLEMENTATION OF A STANDARD LANGUAGE FOR REAL-TIME DISTRIBUTED PROCESS CONTROL;220
40.1;ABSTRACT;220
40.2;INTRODUCTION;220
40.3;THE INDUSTRIAL REAL-TIME BASIC STANDARD;220
40.4;THE HARWELL-PADUA IMPLEMENTATION(JRTB);221
40.5;CURRENT STATUS;222
40.6;CONCLUSIONS;222
40.7;REFERENCES;222
41;CHAPTER 33. INTERPRETIVE LANGUAGE FOR SEQUENCE CONTROL OF CHEMICAL PROCESSES;224
41.1;Abstract
;224
41.2;Keywords
;224
41.3;INTRODUCTION;224
41.4;BASIC REQUIREMENTS;224
41.5;LANGUAGE DESCRIPTION IN BNF NOTATION;225
41.6;INSTRUCTION FORMATS;226
41.7;SOME REMARKS CONCERNING PARTICULAR IMPLEMENTATION;227
41.8;CONCLUSIONS;227
41.9;REFERENCES;227
42;CHAPTER 34. ADAPTIVE SERVICE ALGORITHM IN REAL-TIME OPERATING SYSTEM FOR COMPUTER CONTROL;228
42.1;Abstracto;228
42.2;Keyword;228
42.3;INTRODUCTION;228
42.4;MODEL;228
42.5;ADAPTIVE SERVICE ALGORITHM;229
42.6;ASYMPTOTICAL PROPERTIES AND EXAMPLES;230
42.7;REFERENCES;231
43;CHAPTER 35. ALGORITHMS MODIFICATION IN PARAMETRIC OPERATING SYSTEM;232
43.1;Abstract;232
43.2;Keywodrs;232
43.3;INTRODUCTION;232
43.4;COMPUTER TUNING;232
43.5;METHODS OP ALGORITHM MODIFICATION;233
43.6;CONCLUSIONS;235
43.7;REFERENCES;235
44;CHAPTER 36. EXPERIENCES WITH DEDICATED REAL-TIME OPERATING SYSTEMS;236
44.1;Abstract
;236
44.2;Keywords
;236
44.3;1. INTRODUCTION;236
44.4;2. DESCRIPTION OF RTOS;236
44.5;3. RTOS FOR CHEMICAL PROCESS COMPUTER CONTROL;238
44.6;4. RTOS FOR A SOPHISTICATED DATA LOGGER;239
44.7;5. CONCLUSIONS;240
44.8;ACKNOWLEDGEMENT;240
44.9;REFERENCES.;240
45;CHAPTER 37. THE STRUCTURED DESIGN OF A TELEPHONE EXCHANGE SOFTWARE SYSTEM;242
45.1;Abstract
;242
45.2;Keywords
;242
45.3;INTRODUCTION;242
45.4;SYSTEM PRESENTATION AND ANALYSIS
;242
45.5;SYSTEM DESCRIPTION;243
45.6;CONCLUSION;244
45.7;REFERENCES;244
46;CHAPTER 38. THE VIRTUAL MACHINE (VM) AS A SYSTEM CONTROL PROGRAM FOR OS/VS1 AND ADAPTATION OF CONVERSATIONAL MONITOR SYSTEM (CMS) IN THE AVERAGE COMPUTER CENTRE;246
46.1;Abstract
;246
46.2;Keywords
;246
46.3;CONCEPTION OF THE VM/370 SYSTEM;246
46.4;PRACTICAL EXECUTING OF THE VM/370 SYSTEM;247
46.5;CMS AND ITS IMPLEMENTATION;247
46.6;TELEPROCESSING SYSTEMS IN OUR COMPUTER CENTRE;248
46.7;CONCLUSIONS;249
47;CHAPTER 39. SOFTWARE PACKAGE FOR COMPUTER-AIDED DESIGN OF OPTIMAL CONTROL SYSTEMS;254
47.1;Abstract
;254
47.2;Keywords ;254
47.3;INTRODUCTION;254
47.4;MATRIX EIGENSYSTEM SUBROUTINE EIGENV;254
47.5;SUBROUTINES FOR ANALYSIS AND DISCRETIZATION;256
47.6;DESIGN SUBROUTINES;256
47.7;PROBLEM ORIENTED ROUTINES;257
47.8;EXAMPLE;257
47.9;CONCUSION;257
47.10;REFERENCES;257
48;CHAPTER 40. INTERACTIVE PROGRAMS, SOFTWARE RELIABILITY AND OTHER PROBLEMS RELATED TO MAN AND SOFTWARE INTERFACE;258
48.1;Abstract
;258
48.2;Keywords
;258
48.3;INTRODUCTION;258
48.4;INTERACTIVE PROGRAMS;258
48.5;SOFTWARE QUALITY;259
48.6;SELECTING THE PROGRAMMING LANGUAGE;259
48.7;CONCLUSIONS;260
48.8;APPENDIX;260
48.9;REFERENCES;261
49;CHAPTER 41. A PROCESS COMPUTER PROGRAM PACKAGE FOR INTERACTIVE COMPUTER AIDED DESIGN OF MULTIVARIABLE CONTROL SYSTEMS;262
49.1;Abstract
;262
49.2;Keywords
;262
49.3;INTRODUCTION;262
49.4;MODEL REPRESENTATION;262
49.5;MULTIVARIABLE CONTROL ALGORITHMS;263
49.6;ON-LINE RESULTS;264
49.7;CONCLUSIONS;264
49.8;ACKNOWLEDGEMENT;264
49.9;REFERENCES;264
50;CHAPTER 42. KEDDC, A GENERAL PURPOSE CAD SOFTWARE SYSTEM FOR APPLICATION IN CONTROL ENGINEERING
;268
50.1;Abstract
;268
50.2;Keywords
;268
50.3;INTRODUCTION;268
50.4;CONCEPTION OF THE KEDDC-SYSTEM;268
50.5;METHODS;271
50.6;CONCLUSION;271
50.7;REFERENCES;271
51;CHAPTER 43. DATA PROCESSING AND INDUSTRIAL SOFTWARE DEVELOPMENT
;274
51.1;Abstract
;274
51.2;Keywords
;274
51.3;INTRODUCTION;274
51.4;EFFICIENCY INCREASE IN PREPARATION FOR USE BY UNIVERSAL SOFTWARE;274
51.5;PRINCIPLES OF COMPUTER-AIDED TECHNOLOGY OF SOFTWARE DEVELOPMENT
;276
51.6;REFERENCES;277
52;CHAPTER 44. MERCEDES – INTERACTIVE SOFTWARE PACKAGE FOR IDENTIFICATION AND EXPERIMENTAL CONTROL OF INDUSTRIAL PLANTS BY A PORTABLE PROCESS COMPUTER LABORATORY;278
52.1;Abstract
;278
52.2;Keywords
;278
52.3;INTRODUCTION;278
52.4;THE MERCEDES PROGRAM SYSTEM;278
52.5;RTP - REAL-TIME PROCESSCONTROLPROGRAM-PACKAGE;279
52.6;OLIP OFF-LINE IDENTIFICATION PROGRAM-PACKAGE;280
52.7;OCAD OFF-LINE CONTROLLER DESIGNING PROGRAM-PACKAGE;280
52.8;APPLICATIONS;281
52.9;CONCLUSIONS;281
52.10;REFERENCES;281
53;CHAPTER 45. AN INPUT-OUTPUT PACKAGE FOR MIMO NON-LINEAR CONTROL SYSTEMS;282
53.1;Abstract
;282
53.2;Keywords
;282
53.3;INTRODUCTION;282
53.4;SYSTEM STRUCTURES AND REPRESENTATIONS IN THE TIME DOMAIN;282
53.5;K-TIME SEQUENCE MATRICES AND ALGORITHMS IN THE TIME DOMAIN;283
53.6;GENERAL DESCRIPTION OF THE PACKAGE;284
53.7;CONCLUSIONS;285
53.8;REFERENCES;285
54;CHAPTER 46. INTEGRATED APPROACH TO THE PROCESS CONTROL SYSTEM DESIGN;292
54.1;Abstract
;292
54.2;Keywords
;292
54.3;INTRODUCTION;292
54.4;PARTLY EXPLICIT PROCESS MODELS AND CONTROL SYSTEM DESIGN;292
54.5;IMPLEMENTATION OF THE COMPUTER-AIDED DESIGN SYSTEM;294
54.6;COCCLUSIONS;295
54.7;REFERENCES;295
55;CHAPTER 47. COMPUTER-AIDED DESIGN FOR DISCRETE CONTROL SYSTEMS;296
55.1;Abstract;296
55.2;Keywords;296
55.3;INTRODUCTION;296
55.4;TOTAL CONCEPT OF THE "ELECTRIC" PROGRAM SYSTEM;296
55.5;PROBLEM-ORIENTED SUBSYSTEMS;297
55.6;CONCLUSION;298
55.7;REFERENCES;298
56;CHAPTER 48. ON THE DEVELOPMENT OF AN INTERACTIVE SYSTEM FOR THE LOGICAL DESIGN OF DISCRETE DEVICES;300
56.1;Abstract;300
56.2;Key words;300
56.3;REFERENCES;303
57;CHAPTER 49. COMPUTER-AIDED MODULE-LEVEL TEST GENERATION FOR DIGITAL DEVICES ON THE BASIS OF THEIR ALTERNATIVE-GRAPH-MODEL;304
57.1;Abstract
;304
57.2;Keywords
;304
57.3;INTRODUCTION;304
57.4;MODEL OF DIGITAL DEVICE;305
57.5;PATH ACTIVATION ON AG-MODEL;305
57.6;TEST GENERATION PROBLEM;306
57.7;MULTIPLE TEST GENERATION;306
57.8;EXAMPLE;307
57.9;CONCLUSIONS;307
57.10;REFERENCES;307
58;CHAPTER 50. THE CONVERSATIONAL SIMULATION SYSTEM OF TERMINAL COMPLEXES;308
58.1;Abstract
;308
58.2;Keywords
;308
58.3;INTRODUCTION;308
58.4;COMPONENTS OF THE CONVERSATIONAL SIMULATION SYSTEM;308
58.5;THE SUBSYSTEM OF THE INITIAL DATA PREPARATION FOR A SIMULATION PROCESS;308
58.6;THE SUBSYSTEM OF MODEL EXPERIMENT'S CONTROLLING;308
58.7;THE SUBSYSTEM OF AN ANALITICAL MODELING AND SIMULATION;309
58.8;ELEMENTS;309
58.9;THE SUBSYSTEM OF TAKING DECISIONS;309
58.10;PECULIARITIES OF THE CONVERSATIONAL SIMULATION SYSTEMS FUNCTIONING;309
58.11;CONCLUSION;310
58.12;ABREVIATIONS;310
58.13;REFERENCES;310
59;CHAPTER 51. COMPUTER AIDED DESIGN OF LINEAR SYSTEMS VIA L-A-S LANGUAGE;312
59.1;INTRODUCTION;312
59.2;GENERAL FEATURES;312
59.3;LANGUAGE DESCRIPTION;312
59.4;REFERENCES;315
60;CHAPTER 52. COMPUTERIZED EYE MOVEMENT RESEARCH;316
60.1;Abstract
;316
60.2;Keywords
;316
60.3;INTRODUCTION;316
60.4;REFERENCES;317
61;CHAPTER 53. ON CONTROL OF COMPUTER PACKAGES FOR DATA ANALYSIS;320
61.1;Abstract
;320
61.2;Keywords
;320
61.3;INTRODUCTION;320
61.4;TOWARDS MAN-MACHINE CONTROL;320
61.5;TOWARDS AI-CONTROL;321
61.6;GUHA-80 project;322
61.7;FILL-IN SPECIALIZATIONS OF THE CONCEPT;322
61.8;CHECK SPECIALIZATIONS OF THE CONCEPT C;322
61.9;REFERENCES;323
62;CHAPTER 54. COMPUTER MODELLING OF LARGE SYSTEMS IN THEIR BIOLOGICAL CONTEXT;324
62.1;Abstract
;324
62.2;Keywords;324
62.3;INTRODUCTION;324
62.4;BIOLOGICAL MOTIVATIONS;324
62.5;CELLULAR SYSTEMS;325
62.6;APPLICATIONS;326
62.7;CONCLUSION;326
62.8;REFERENCES;327
63;CHAPTER 55. EEG ALPHA ACTIVITY PROCESSING AND MODELLING;328
63.1;Abstract
;328
63.2;Keywords
;328
63.3;INTRODUCTION;328
63.4;A. OFF-LINE ALPHA ACTIVITY EVALUATION;328
63.5;B. ON-LINE ALPHA ACTIVITY EVALUATION;329
63.6;C. AN ALPHA AND NON-ALPHA ALTERNATION MODEL;329
63.7;REFERENCES;329
64;CHAPTER 56. COMPUTER PERFORMANCE OF DATA FILTERING;332
64.1;Abstract\
;332
64.2;Keywords
;332
64.3;INTRODUCTION;332
64.4;TISA PROGRAM SYSTEM;332
64.5;DATA HANDLING;333
64.6;STRUCTURE OF THE INITIAL DATA;333
64.7;CHOICE OF SUBMODELS;335
64.8;CONCLUSION;335
64.9;REFERENCES;335
65;CHAPTER 57. REAL-TIME CONTROLLED EXPERIMENTS IN PSYCHOLINGUISTIC RESEARCH;336
65.1;Abstract
;336
65.2;Keywords
;336
65.3;INTRODUCTION;336
65.4;PSYCHOLINGUISTIC EXPERIMENTATIONS ON READING PROCESSES;336
65.5;PSYCHOLINGUISTIC EXPERIMENTATIONON WRITING PROCESSES;338
65.6;CONCLUSIONS;339
65.7;REFERENCES;339
66;CHAPTER 58. SOME PROGRAMS FOR THE PROCESSING OF EEG DATA ON A SMALL GENERAL PURPOSE DIGITAL COMPUTER;340
66.1;Abstract
;340
66.2;Keywords
;340
66.3;INTRODUCTION;340
66.4;TECHNIQUES AND METHODS;340
66.5;PROCESSING APPROACH;341
66.6;RESULTS;342
66.7;CONCLUSIONS;342
66.8;REFERENCES;343
67;CHAPTER 59. SOFTWARE TOOLS OF A MICROPROCESSOR BASED CAMAC SYSTEM FOR LABORATORY AUTOMATION;344
67.1;Abstract;344
67.2;Keywords;344
67.3;1. INTRODUCTION;344
67.4;2. OPERATING SYSTEMS;344
67.5;3. SYSTEM CONFIGURATIONS;346
67.6;4. PROGRAMMING;346
67.7;5. INTERCONTROLLER COMMUNICATION;347
67.8;6. CONCLUSIONS;347
67.9;7. REFERENCES;347
68;CHAPTER 60. CONTROL OF LINEAR SYSTEMS VIA THE SERIAL CANONICAL FORM;348
68.1;Abstract
;348
68.2;Keywords;348
68.3;INTRODUCTION;348
68.4;TRANSFORMATION OF LINEAR SYSTEMS INTO THE SERIALCANONICAL FORM;348
68.5;SYNTHESIS OF LINEAR SYSTEMS WITH EQUIVALENT JORDAN FORM;349
68.6;CONCLUSIONS;350
68.7;REFERENCES;351
69;CHAPTER 61. ADAPTIVE OBSERVER IMPLEMENTATION USING A MICROCOMPUTER;352
69.1;Abstract
;352
69.2;Keywords;352
69.3;INTRODUCTION;352
69.4;BRIEF THEORY;352
69.5;STABILITY ANALYSIS;352
69.6;EXAMPLE OF IMPLEMENTATION;353
69.7;COMPUTATIONAL EFFORT FOR THE FILTER;353
69.8;CONCLUSIONS;354
69.9;REFERENCES;354
70;CHAPTER 62. ALGORITHMS FOR REAL TIME ESTIMATION OF THE STATE OF LARGE ELECTROENERGETICAL SYSTEMS;356
70.1;Abstract
;356
70.2;Keywords;356
70.3;INTRODUCTION;356
70.4;STATEMENT OF THE PROBLEM;356
70.5;ESTIMATION METHODS;357
70.6;COMPUTATIONAL ASPECTS OF THE ESTIMATION METHODS;358
70.7;CONCLUSIONS;359
70.8;REFERENCES;359
71;CHAPTER 63. ALGORITHMS FOR LARGE SCALE SYSTEM CONTROL DESIGN;362
71.1;Abstract;362
71.2;Keywords;362
71.3;INTRODUCTION;362
71.4;PROBLEM STATEMENT;362
71.5;SOLUTION - ALGORITHMS;363
71.6;CONCLUSION;365
71.7;REFERENCES;365
72;CHAPTER 64. AN APPLICATION OF AGGREGATION METHODS TO OPTIMAL CONTROL OF LARGE-SCALE DISCRETE DYNAMICAL SYSTEMS;366
72.1;Abstract;366
72.2;Keywords;366
72.3;INTRODUCTION;366
72.4;AGGREGATION;367
72.5;THE NEW GLOBAL SYSTEM;368
72.6;OPTIMIZATION APPLICATION TO LQ-PROBLEM;368
72.7;CONCLUSIONS;369
72.8;REFERENCES;369
73;CHAPTER 65. INTERACTIVE SIMULATION PROGRAMS SIMFOR AND SIMHYB WITH APPLICATION TO THE SOLUTION OF OPTIMIZATION PROBLEMS;370
73.1;Abstract
;370
73.2;Keywords
;370
73.3;DESIGN OBJECTIVES AND LIMITATIONS;370
73.4;REMARKABLE FEATURES OF SIMFOR;371
73.5;SPECIFIC FEATURES OF SIMHYB;372
73.6;APPLICATION TO OPTIMAL CONTROL;372
73.7;REFERENCES;373
74;CHAPTER 66. SUBOPTIMAL STRATEGIES FOR THE CONTROL OF A STOCHASTIC SYSTEM WITH CONSTANT BUT UNKNOWN PARAMETERS;374
74.1;Abstract.;374
74.2;Keywords.;374
74.3;INTRODUCTION;374
74.4;PROBLEM STATEMENT;374
74.5;A REVIEW OF THE KNOWN-PARAMETERCASE;376
74.6;SUBOPTIMAL CONTROL STRATEGIESFOR THE CASE OF UNKNOWNPARAMETERS;376
74.7;CONCLUSION;377
74.8;REFERENCES;377
75;CHAPTER 67. SOFTWARE PACKAGE FOR OPTIMIZATION AND NONLINEAR APPROXIMATION;378
75.1;Abstract;378
75.2;Keywords
;378
75.3;INTRODUCTION;378
75.4;TYPES OF PROBLEMS;378
75.5;INPUT LANGUAGE, COMPILER AND CONTROL PROGRAM;378
75.6;THE CLASSIFICATION OF MODULES;380
75.7;OPTIMIZATION METHODS;380
75.8;CONCLUSIONS;380
75.9;REFERENCES;381
76;CHAPTER 68. A SIMPLE ALGORITHM FOR AUTOMATIC OPTIMUM SETTING OF CONTROLLER PARAMETERS;384
76.1;Abstract
;384
76.2;Keywords
;384
76.3;INTRODUCTION;384
76.4;NEW PERFORMANCE CRITERION;385
76.5;IDENTIFYING THE STABILITY BOUNDARIES;385
76.6;APPLICABILITY AND CONVERGENCE CONDITIONS;385
76.7;SIMULATION ON A HYBRID COMPUTER;386
76.8;REFERENCES;387
77;CHAPTER 69. ON STABILIZATION OF OPTIMAL CONTROL OF DISCRETE-TIME SYSTEMS;388
77.1;Abstract
;388
77.2;Keywords
;388
77.3;INTRODUCTION;388
77.4;OPTIMAL CONTROL ALGORITHM;389
77.5;CHOICE OF So;389
77.6;CONCLUSION;391
77.7;REFERENCES;391
78;CHAPTER 70. SOME IMPROVEMENTS OF MONTE CARLO TOLERANCE SIMULATION;392
78.1;Abstract
;392
78.2;Keywords
;392
78.3;INTRODUCTION;392
78.4;MEMORY;392
78.5;SAMPLING;393
78.6;CONCLUSIONS;394
78.7;REFERENCES;394
79;CHAPTER 71. INTERACTIVE REAL-TIME PROGRAM PACKAGE FOR SELF-TUNING REGULATION;396
79.1;Abstract
;396
79.2;Keywords;396
79.3;INTRODUCTION;396
79.4;INTERACTIVE PROGRAM PACKAGE;396
79.5;INTERACTIVE PROGRAM PACKAGE;397
79.6;SELF-TUNING CONTROL SNAP;398
79.7;A REAL-TIME EXPERIMENT;398
79.8;ACKNOWLEDGEMENT;398
79.9;REFERENCES;398
80;CHAPTER 72. AN IN-LINE TIME OPTIMAL ALGORITHM FOR DIGITAL COMPUTER CONTROL;400
80.1;Abstract
;400
80.2;Keywords\
;400
80.3;INTRODUCTION;400
80.4;PROBLEM FORMULATION;400
80.5;LINEAR PROGRAMMING SOLUTION;401
80.6;IN-LINE CONTROL;402
80.7;EXPERIMENTAL RESULTS;403
80.8;CONCLUSIONS;403
80.9;REFERENCES;403
81;CHAPTER 73. SOFTWARE SYSTEM FOR DYNAMIC OPTIMIZATION STUDIES;404
81.1;Abstract.;404
81.2;Keywords;404
81.3;INTRODUCTION;404
81.4;FORMULATION OP THE PROBLEM;404
81.5;FORMULATION OP THE PROBLEM;404
81.6;OUTLINE OF THE METHOD;405
81.7;APPLICATION M D REZULTS;406
81.8;REFERENCES;407
82;CHAPTER 74. AN ALGORITHM FOR THE SOLUTION OF THE TWOBOUNDARY PROBLEM;408
82.1;Abstract
;408
82.2;Keywords;408
82.3;INTRODUCTION;408
82.4;THE VARIABLES TRANSFORMATION;408
82.5;A SOLUTION BY INTEGRATION IN INVERSE DIRECTION OF TIME;409
82.6;A SOLUTION BY INTEGRATION IN RIGHT DIRECTION OF TIME;410
82.7;CONCLUSION;411
83;CHAPTER 75. THE APPLICATION OF A FUZZY ALGORITHM TO THE CONTROL OF THE EXTRACTION PROCESS IN NUCLEAR FUEL REPROCESSING;412
83.1;Abstract;412
83.2;Keywords;412
83.3;INTRODUCTION;412
83.4;THE PROBLEM;413
83.5;THE METHOD;413
83.6;RESULTS;414
83.7;CONCLUSIONS;414
83.8;REFERENCES;415
84;CHAPTER 76. A NEW DUAL ALGORITHM FOR DIGITAL PROCESS CONTROL;416
84.1;Abstract
;416
84.2;Keywords
;416
84.3;INTRODUCTION;416
84.4;ALGORITHM DESCHIPTION;416
84.5;ALGORITHM EVALUATION;418
84.6;CONCLUSIONS;419
84.7;ACKNOWLEDGEMENTS;419
84.8;REFERENCES;419
85;CHAPTER 77. REVERSIBLE FINITE AUTOMATA WITH TIME REDUNDANCY;420
85.1;Abstract;420
85.2;Keywords;420
85.3;INTRODUCTION;420
85.4;DEFINITION OE REVERSIBLE FINITE AUTOMATON;421
85.5;AN ALGORITHM FOR FUNCTIONING THE ROLFA WITH TIME REDUNDANCY;422
85.6;AN EXAMPLE OF REALIZATION;423
85.7;CONCLUSION;423
85.8;REFERENCE;423
86;CHAPTER 78. INTERACTION ANALYSIS IN MULTIVARIABLE CONTROL SYSTEM DESIGN;424
86.1;Abstract
;424
86.2;Keywords
;424
86.3;INTRODUCTION;424
86.4;RELATIVE TRANSIENT RESPONSE FUNCTION;424
86.5;INTERACTION MATRICES;426
86.6;SUBSYSTEM EQUATIONS;427
86.7;EXAMPLE;427
86.8;CONCLUSION;428
86.9;ACKNOWLEDGEMENT;428
86.10;REFERENCES;428
87;CHAPTER 79. SOFTWARE FOR TASKS OF FORMING THE MONITORING AND CONTROL ALGORITHMS;430
87.1;Abstract;430
87.2;Keywords;430
87.3;INTRODUCTION;430
87.4;REFERENCES;433
88;CHAPTER 80. PANEL DISCUSSION ON THE INFLUENCE OF MICROPROCESSORS ON THE PROCESS CONTROL;434
89;AUTHOR INDEX;436



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