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Bibliographic Details
Main Author: Yu, Qiang (Author)
Format: Thesis/Dissertation Book
Language:English
Published: Aachen Shaker 2012
Series:Forschungsberichte elektrische Antriebstechnik und Aktorik 12
Subjects:
Finite-Elemente-Methode
Pumpe
Thermodynamische Eigenschaft
Elektromagnetische Eigenschaft
Verlustleistung
Abdichtung
Geschalteter Reluktanzantrieb
Hochschulschrift
Links:http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025682719&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
Physical Description:156 S. Ill., graph. Darst.
ISBN:9783844015096
Staff View

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Record in the Search Index

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adam_text IMAGE 1 CONTENTS 1 INTRODUCTION 1 1.1 BACKGROUND 1 1.2 OPERATIONAL PRINCIPLE O F SRMS 2 1.3 CONFIGURATION O F SRMS 4 1.3.1 T H E NUMBER O F PHASES AND POLES 4 1.3.2 THE CAN PARTITION 5 1.3.3 THE MATERIAL 5 1.4 OUTLINE AND CONTRIBUTIONS O F THE THESIS 6 2 GEOMETRY DESIGN O F AN ORDINARY S R M 9 2.1 INTRODUCTION 9 2.2 THE ESTIMATION PRINCIPLES 10 2.2.1 THE TEETH GEOMETRY 10 2.2.2 THE YOKE THICKNESS 12 2.2.3 THE WINDING PARAMETERS 13 2.2.4 CONTROL PARAMETERS 14 2.3 THE DESIGNED SRMS 17 2.4 ANALYSIS AND VERIFICATION BY F E METHOD 18 2.5 CONCLUSION 21 3 AN IMPROVED LUMPED PARAMETER THERMAL MODEL 2 3 3.1 INTRODUCTION 2 3 3.2 THE IMPROVEMENT BY COMPENSATION ELEMENTS 2 3 3.3 THE THERMAL NETWORK 2 4 3.3.1 THE HEAT SOURCE 2 5 3.3.2 THERMAL RESISTANCES BETWEEN COMPONENTS 2 5 3.3.3 THE COMPENSATION ELEMENTS 32 3.3.4 MODEL O F WINDINGS 3 5 3.3.5 THERMAL RESISTANCES AND COMPENSATION ELEMENTS FROM A COIL 3 6 3.3.6 THE MACHINE END PART 4 1 3.4 RESULTS AND DISCUSSION 4 1 3.4.1 THE THERMAL NETWORK WITH COMPENSATION 4 2 3.4.2 COMPARISON WITH F E METHOD 4 5 HTTP://D-NB.INFO/1027965407 IMAGE 2 3.5 SENSITIVITY ANALYSIS 4 6 3.5.1 THE FRAME CONVECTION 46 3.5.2 THE SLOT CONVECTION 47 3.5.3 THE COOLING LIQUID 47 3.5.4 THE WINDING UNCERTAINTY 48 3.6 CONCLUSION 4 9 4 LOSS ANALYSIS O F A CANNED S R M 51 4.1 INTRODUCTION 51 4.2 T H E CALCULATION PRINCIPLE O F IRON LOSS 52 4.3 MODEL O F IRON LOSS 53 4.3.1 EDDY CURRENT LOSS 53 4.3.2 HYSTERESIS LOSS 54 4.3.3 RESULTS AND DISCUSSION 5 6 4.4 CAN LOSS ANALYSIS 5 8 4.4.1 OVERVIEW 5 8 4.4.2 THE CAN LOSS FACTORS 59 4.5 CONCLUSION 6 5 5 T H E M M F MODELING FOR CONCENTRATED WINDINGS 67 5.1 INTRODUCTION 6 7 5.2 THE MODEL O F PHASE CURRENT 6 8 5.3 THE WINDING FUNCTION 7 0 5.4 MODEL O F ONE COIL (MODEL 1) 71 5.4.1 MODEL O F A SINGLE TURN 7 2 5.4.2 MODEL O F ALL TURNS IN A LAYER O F A COIL 7 4 5.4.3 MODEL O F ALL LAYERS IN A COIL 7 8 5.5 MODEL O F A COIL (MODEL 2) 7 9 5.6 THE COIL DISTRIBUTION 8 1 5.7 RESULTS AND DISCUSSION 85 5.8 THE M M F DISTRIBUTION FROM AXIAL DIRECTION 8 8 5.9 CONCLUSION 8 9 6 ANALYSIS O F MAGNETIC CIRCUITS WITH HIGHLY SATURATED REGIONS 9 1 6.1 INTRODUCTION 9 1 6.2 THE CALCULATION PRINCIPLE 91 IMAGE 3 6.3 THE AIR GAP RELUCTANCE 9 4 6.3.1 THE UNALIGNED AND NON-OVERLAPPING POSITIONS 9 4 6.3.2 THE PARTIAL OVERLAPPING POSITIONS 9 5 6.3.3 THE TOTAL OVERLAPPING AND ALIGNED POSITIONS 9 6 6.4 DISCRETIZING THE MACHINE 9 6 6.4.1 THE UNALIGNED AND NON-OVERLAPPING POSITIONS 9 7 6.4.2 THE PARTIAL OVERLAPPING POSITIONS 9 8 6.4.3 THE TOTAL OVERLAPPING AND ALIGNED POSITIONS 9 8 6.5 MANAGING THE SIZE O F ELEMENTS 9 9 6.5.1 THE NON-OVERLAPPING POSITIONS 9 9 6.5.2 THE PARTIAL OVERLAPPING POSITIONS 100 6.6 OTHER CONSIDERATIONS 101 6.6.1 THE SLOT LEAKAGE 101 6.6.2 THE MACHINE END PART 102 6.7 THE PROGRAM 102 6.8 RESULTS AND DISCUSSION 103 6.9 CONCLUSION 105 7 CAN LOSS REDUCTION METHODS 107 7.1 INTRODUCTION 107 7.2 LOSS REDUCTION BY MAKING CAVITIES IN THE TEETH 107 7.3 LOSS REDUCTION BY PHASE CURRENT WAVEFORM 109 7.3.1 T H E RATE O F DROPPING O F PHASE CURRENT 110 7.3.2 THE INTERACTION O F EDDY CURRENT FROM DIFFERENT PHASES 112 7.4 CONTROLLER ANALYSIS AND IMPROVEMENT 114 7.4.1 THE CURRENT WAVEFORM B Y WINDING INDUCTANCE 114 7.4.2 THE CONTROLLER DESIGN PRINCIPLES 117 7.4.3 LOSS ANALYSIS IN THE CONTROLLER 120 7.4.4 THE PROPOSED CONTROLLER 122 7.5 LOSS REDUCTION BY AXIAL SEPARATION 123 7.6 USING LONGER CANS 124 7.7 LOSS REDUCTION FROM THE WINDINGS 125 7.7.1 T H E WIRE DIAMETER 125 7.7.2 THE WIRE ARRANGEMENT 126 IMAGE 4 7.8 CONCLUSION 128 8 CONCLUSION AND FUTURE WORK 129 8.1 CONCLUSION 129 8.2 FUTURE WORK 131 REFERENCES 133 LIST O F SYMBOLS AND ACRONYMS 139 APPENDIX 143 A . L DISCRETIZING PHASE CURRENT INTO FOURIER SERIES 143 A.2 DISCRETIZING M M F WAVEFORM INTO FOURIER SERIES 145 A.3 SUM O F COILS AND PHASES 146 A.4 THE AIR GAP RELUCTANCES AT NON-OVERLAPPING POSITIONS 148 A.4.1 PATH 1 150 A.4.2 PATH 3 150 A.4.3 PATH 4 151 A.4.4 PATH 5, 6 AND 7 152 A.4.5 PATH 2 153 A.5 AIR GAP RELUCTANCES AT PARTIAL OVERLAPPING POSITIONS 153 A.5.1 PATH 1 153 A.5.2 PATH 2 154 A.5.3 PATH 3 AND 4 154 A.6 THE AIR GAP RELUCTANCES AT TOTAL OVERLAPPING POSITIONS 155
any_adam_object 1
author Yu, Qiang
author_facet Yu, Qiang
author_role aut
author_sort Yu, Qiang
author_variant q y qy
building Verbundindex
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621.6
dewey-hundreds 600 - Technology (Applied sciences)
dewey-ones 621 - Applied physics
dewey-raw 621.46
621.6
dewey-search 621.46
621.6
dewey-sort 3621.46
dewey-tens 620 - Engineering and allied operations
discipline Maschinenbau / Maschinenwesen
Elektrotechnik / Elektronik / Nachrichtentechnik
format Thesis
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isbn 9783844015096
language English
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physical 156 S. Ill., graph. Darst.
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publisher Shaker
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series Forschungsberichte elektrische Antriebstechnik und Aktorik
series2 Forschungsberichte elektrische Antriebstechnik und Aktorik
spellingShingle Yu, Qiang
Thermal and electromagnetic modeling of a canned switched reluctance machine
Forschungsberichte elektrische Antriebstechnik und Aktorik
Finite-Elemente-Methode (DE-588)4017233-8 gnd
Pumpe (DE-588)4047843-9 gnd
Thermodynamische Eigenschaft (DE-588)4126056-9 gnd
Elektromagnetische Eigenschaft (DE-588)4624011-1 gnd
Verlustleistung (DE-588)4187881-4 gnd
Abdichtung (DE-588)4000065-5 gnd
Geschalteter Reluktanzantrieb (DE-588)4177753-0 gnd
subject_GND (DE-588)4017233-8
(DE-588)4047843-9
(DE-588)4126056-9
(DE-588)4624011-1
(DE-588)4187881-4
(DE-588)4000065-5
(DE-588)4177753-0
(DE-588)4113937-9
title Thermal and electromagnetic modeling of a canned switched reluctance machine
title_auth Thermal and electromagnetic modeling of a canned switched reluctance machine
title_exact_search Thermal and electromagnetic modeling of a canned switched reluctance machine
title_full Thermal and electromagnetic modeling of a canned switched reluctance machine Qiang Yu
title_fullStr Thermal and electromagnetic modeling of a canned switched reluctance machine Qiang Yu
title_full_unstemmed Thermal and electromagnetic modeling of a canned switched reluctance machine Qiang Yu
title_short Thermal and electromagnetic modeling of a canned switched reluctance machine
title_sort thermal and electromagnetic modeling of a canned switched reluctance machine
topic Finite-Elemente-Methode (DE-588)4017233-8 gnd
Pumpe (DE-588)4047843-9 gnd
Thermodynamische Eigenschaft (DE-588)4126056-9 gnd
Elektromagnetische Eigenschaft (DE-588)4624011-1 gnd
Verlustleistung (DE-588)4187881-4 gnd
Abdichtung (DE-588)4000065-5 gnd
Geschalteter Reluktanzantrieb (DE-588)4177753-0 gnd
topic_facet Finite-Elemente-Methode
Pumpe
Thermodynamische Eigenschaft
Elektromagnetische Eigenschaft
Verlustleistung
Abdichtung
Geschalteter Reluktanzantrieb
Hochschulschrift
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025682719&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
volume_link (DE-604)BV021866100
work_keys_str_mv AT yuqiang thermalandelectromagneticmodelingofacannedswitchedreluctancemachine
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