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1 | (14) |
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1.1 Importance of Electrical Drives and Electrical Machines |
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1 | (1) |
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1.2 Key Components of the Electrical Drive System |
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2 | (2) |
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1.3 Notational Conventions |
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4 | (1) |
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1.3.1 Voltage and Current Conventions |
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4 | (1) |
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1.3.2 Mechanical Conventions |
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4 | (1) |
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1.4 Use of Building Blocks to Represent Equations |
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5 | (10) |
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1.4.1 Fixed Point Versus Floating Point Representation |
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7 | (1) |
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1.4.2 Use of Scaling for Fixed Point Formatted Numbers |
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8 | (1) |
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1.4.3 Continuous and Discrete Time Operational Issues |
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9 | (2) |
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1.4.4 Basic Control Block Library |
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11 | (4) |
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2 Drive Principles and Development |
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15 | (26) |
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2.1 Control of Electrical Drives |
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15 | (22) |
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16 | (1) |
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2.1.2 Use of a Speed Control Loop |
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17 | (3) |
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2.1.3 Torque Production Mechanism in Machines |
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20 | (4) |
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24 | (3) |
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2.1.5 Current Control for Electrical Drives |
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27 | (5) |
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2.1.6 Space Vector Modulation and Timing Issues |
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32 | (5) |
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2.2 Drive Development for Real-Time Control |
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37 | (4) |
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41 | (94) |
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3.1 Laboratory 1:1: Open-Loop Voltage Control |
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41 | (17) |
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42 | (5) |
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47 | (2) |
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49 | (5) |
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54 | (4) |
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3.2 Laboratory 1:2: Open-Loop Current Control |
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58 | (13) |
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59 | (1) |
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60 | (4) |
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64 | (4) |
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68 | (3) |
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3.3 Laboratory 1:3: FOC Sensored Control of PM |
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71 | (11) |
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71 | (4) |
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75 | (5) |
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80 | (2) |
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3.4 Laboratory 1:4: Use of SpinTAC Motion Control Suite |
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82 | (14) |
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84 | (4) |
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88 | (4) |
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92 | (4) |
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3.5 Laboratory 1:5: Voltage/Frequency and Speed Control of IM |
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96 | (12) |
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98 | (3) |
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101 | (4) |
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105 | (3) |
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3.6 Laboratory 1:6: FOC Sensored Control of IM |
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108 | (13) |
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110 | (5) |
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115 | (4) |
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119 | (2) |
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3.7 Laboratory 1:7: Dual Control of a IM and PM Machine |
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121 | (14) |
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122 | (6) |
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128 | (3) |
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131 | (4) |
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135 | (78) |
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4.1 Importance of Sensorless Control and Introduction to InstaSPIN-FOC |
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135 | (4) |
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4.2 Laboratory 2:1: FOC Sensorless Control of a PM Machine |
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139 | (17) |
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139 | (6) |
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145 | (7) |
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152 | (4) |
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4.3 Laboratory 2:2: PM FOC Sensorless Control with Motor Identification |
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156 | (25) |
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157 | (7) |
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164 | (6) |
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170 | (11) |
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4.4 Laboratory 2:3: PM FOC Sensorless Control with Field Weakening |
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181 | (11) |
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184 | (3) |
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187 | (5) |
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4.5 Laboratory 2:4: Commissioning a PM Drive for Sensorless Operation |
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192 | (12) |
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4.5.1 Lab 2:4: Voltage Controller, Phase C |
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194 | (7) |
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201 | (3) |
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4.6 Laboratory 2:5: Dual Control of Two PM Machines |
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204 | (9) |
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205 | (5) |
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210 | (3) |
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213 | (76) |
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5.1 Introduction to Sensorless Control for Induction Machines |
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213 | (3) |
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5.2 Laboratory 3:1: FOC Sensorless Control of a IM Machine |
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216 | (16) |
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216 | (5) |
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221 | (7) |
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228 | (4) |
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5.3 Laboratory 3:2: IM FOC Sensorless Control with Motor Identification |
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232 | (25) |
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232 | (8) |
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240 | (6) |
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246 | (11) |
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5.4 Laboratory 3:3: Efficient FOC Drive Operation of Induction Machines |
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257 | (9) |
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259 | (2) |
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261 | (5) |
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5.5 Laboratory 3:4: Commissioning a IM Drive for Sensorless Operation |
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266 | (12) |
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5.5.1 Lab 3:4: Voltage Controller, Phase C |
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267 | (7) |
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274 | (4) |
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5.6 Laboratory 3:5: Dual Control of IM and PM Machine |
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278 | (11) |
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279 | (5) |
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284 | (5) |
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6 VisSim Based Case Studies |
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289 | (82) |
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6.1 Case Study V1: Helicopter Drive |
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289 | (24) |
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6.1.1 Case Study V1a: Helicopter Drive: Commissioning, Phase C |
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291 | (7) |
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6.1.2 Case Study V1a: Helicopter Drive: Commissioning, Phase C+ |
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298 | (2) |
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6.1.3 Case Study V1b: Helicopter Drive: Sensorless Operation, Phase C |
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300 | (5) |
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6.1.4 Case Study V1b: Helicopter Drive: Sensorless Operation, Phase C+ |
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305 | (8) |
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6.2 Case Study V2: CoMoCo Drive |
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313 | (35) |
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6.2.1 Case Study V2a: CoMoCo Drive: Commissioning, Phase C |
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315 | (6) |
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6.2.2 Case Study V2a: CoMoCo: Commissioning, Phase C+ |
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321 | (3) |
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6.2.3 Case Study V2b: CoMoCo Drive: Sensorless Operation, Phase C |
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324 | (6) |
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6.2.4 Case Study V2b: CoMoCo Drive: Sensorless Operation, Phase C+ |
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330 | (8) |
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6.2.5 Case Study V2c: CoMoCo Drive: PFC+boost, Introduction |
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338 | (3) |
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6.2.6 Case Study V2c: CoMoCo Drive: PFC+boost, Phase C |
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341 | (5) |
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6.2.7 Case Study V2c: CoMoCo Drive: PFC+boost, Phase C+ |
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346 | (2) |
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6.3 Case Study V3: e-Traction Drive |
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348 | (23) |
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6.3.1 Case Study 3a: e-Traction Drive: Commissioning, Phase C |
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350 | (7) |
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6.3.2 Case Study V3a: e-Traction Drive: Commissioning, Phase C+ |
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357 | (2) |
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6.3.3 Case Study V3b: e-Traction Drive: Sensorless Operation, Phase C |
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359 | (6) |
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6.3.4 Case Study 3b: e-Traction Drive: Sensorless Operation, Phase C+ |
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365 | (6) |
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7 PLECS Based PIL Case Studies |
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371 | |
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7.1 Case Study P1: e-Traction Converter with Marathon IM Motor |
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373 | (11) |
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7.1.1 Case Study P1a: e-Traction Converter with Marathon IM Motor: PIL Drive Commissioning |
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376 | (5) |
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7.1.2 Case Study P1b: e-Traction Converter with Marathon IM Motor: PIL Drive Operation |
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381 | (3) |
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7.2 Case Study P2: Motor Identification Using InstaSPIN and PIL Technology |
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384 | (11) |
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7.2.1 Case Study P2a: Motor Identification Using InstaSPIN and PIL Technology: PIL Drive Commissioning |
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387 | (2) |
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7.2.2 Case Study P2b: Motor Identification Using InstaSPIN and PIL Technology: PIL Drive Operation |
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389 | (3) |
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7.2.3 Case Study P2c: Motor Identification Using InstaSPIN and PIL Technology: `Normal Drive' Operation |
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392 | (3) |
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7.3 Case Study P3: e-Traction Converter with Single-Phase IM Motor |
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395 | |
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7.3.1 Case Study P3a: e-Traction Converter with Single Phase IM Motor: PIL Drive Commissioning |
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400 | (2) |
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7.3.2 Case Study P1b: e-Traction Converter with Single Phase Induction Motor: PIL Drive Operation |
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402 | |
Erratum |
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1 | (404) |
References |
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405 | (2) |
Abbreviations |
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407 | (2) |
List of symbols |
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409 | (2) |
List of indices |
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411 | (2) |
Index |
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413 | |