Page 406 - Renewable Energy Devices and System with Simulations in MATLAB and ANSYS
P. 406
Index
A configurations, 334
isolated DC/DC converters
AC converter modules, 385 configurations, 337
AC/DC converters, see Bidirectional AC/DC converters DAB topology, 339
Active zero state PWM (AZSPWM), 73 SRC topology, 339
Alkaline fuel cells (AFCs), 294 voltage-fed and current-fed FB converter, 338
Anholt 400 MW wind farm, 9 non-isolated DC/DC converters
Annual energy production (AEP), 283–284 Cuk and Sepic/Luo converters, 335–336
ANSYS Maxwell software, 203 HB converter, 335–336
®
ANSYS RMxprt module, 203 three-level neutral point clamped bidirectional
®
Aquamarine, 269 DC/DC converter, 337
Autothermal reformers, 294 two-phase interleaved bidirectional converter,
Azura device, 269 336–337
requirement, 334
B Bidirectional DC/DC module, 387
BMS, see Battery management systems
Balance of system (BOS), 147–148 Bypass mode, 369, 372
Battery energy storage (BES) system
compressed air, 324
electric vehicle charging station C
MATLAB /Simulink model, 343–344 Cage rotor induction generators (CRIGs), 210
®
®
schematics, 343 characteristics, 222
simulation results, 343, 345 circuit model and performance, 223–225
flow batteries, 324–325 control, 225–226
flywheels, 324 generic control structure, 222–223
lead-acid batteries, 323 speed and torque, 222
lithium-ion batteries, 323–324 stator frequency, 213
load leveling/energy time shifting 3G transmission drives with 6/8 pole
simulation results, 343, 347 machines, 221
Simulink model, 343, 346 CEC generator, see Current energy conversion
®
modeling and test setups, 324 generator
battery lifetime, 325–326 Cell balancing systems, 332–333
electrical models, 325 Compressed air energy storage (CAES)
equivalent circuit models, 325–326 systems, 324
mathematical models, 325 Concentrated photovoltaic (CPV) technology
open-circuit voltage vs. SOC, 326–327 description, 28
physical/electrochemical models, 325 high-concentration PV technology, 28
reduced-order models, 325 low-concentration PV technology, 28–29
V–I characteristics model, 326 principle of, 29
multiphysics and multidomain simulations, 343, structure, 18
347–348 Concentrated solar power (CSP) technology, 6, 8
NiMH batteries, 324 advantages, 30
pumped hydro energy storage system, 324 description, 18, 29
sodium sulfur (NaS) batteries, 323 disadvantages, 30
Battery management systems (BMS) grid integration, 34
block diagram, 331 large-scale integration, 37–38
centralized, 330 line focusing systems
distributed, 330–331 linear Fresnel reflector, 31–32
modular/master–slave, 330 parabolic trough, 31
Battery power mode, 367, 369–370 point focusing systems
Bidirectional AC/DC converters parabolic dish reflector, 32–33
boost-type converters, 333–334 solar towers, 31–32
buck–boost converter, 333, 335 stability, 34
buck-type converters, 333, 335 and storage, 33–34
multilevel converter, 333, 336 transient stability analysis
Bidirectional DC/AC module, 385–386 electrical power, 36
Bidirectional DC/DC converters inertial response, 35–36
applications, 334 mechanical power, 36–37
393

