000 | 08672nam a2200973 i 4500 | ||
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001 | 7853773 | ||
003 | IEEE | ||
005 | 20220712205944.0 | ||
006 | m o d | ||
007 | cr |n||||||||| | ||
008 | 170308s2017 mau ob 001 eng d | ||
010 | _z 2016038240 (print) | ||
020 |
_a9781118755877 _qelectronic |
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020 |
_z9781118679036 _qcloth |
||
024 | 7 |
_a10.1002/9781118755877 _2doi |
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035 | _a(CaBNVSL)mat07853773 | ||
035 | _a(IDAMS)0b00006485bd20ff | ||
040 |
_aCaBNVSL _beng _erda _cCaBNVSL _dCaBNVSL |
||
050 | 4 |
_aTK1087 _b.P43 2017eb |
|
082 | 0 | 0 |
_a621.31/244011 _223 |
100 | 1 |
_aPetrone, Giovanni, _eauthor. _929048 |
|
245 | 1 | 0 |
_aPhotovoltaic sources modeling / _cGiovanni Petrone, University of Salerno, Italy, Carlos Andr�aes Ramos-Paja, Universidad Nacional de Colombia, Giovanni Spagnuolo, University of Salerno, Italy. |
264 | 1 |
_aChichester, West Sussex, United Kingdom : _bJohn Wiley & Sons, Inc., _c[2017] |
|
264 | 2 |
_a[Piscataqay, New Jersey] : _bIEEE Xplore, _c[2017] |
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300 | _a1 PDF (208 pages). | ||
336 |
_atext _2rdacontent |
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337 |
_aelectronic _2isbdmedia |
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338 |
_aonline resource _2rdacarrier |
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490 | 1 | _aWiley - IEEE | |
504 | _aIncludes bibliographical references and index. | ||
505 | 0 | _a-- Acknowledgements xi -- Introduction xiii -- Tables of Symbols and Acronyms xv -- 1 PV Models 1 -- 1.1 Introduction 1 -- 1.2 Modeling: Granularity and Accuracy 1 -- 1.3 The Double-diode Model 2 -- 1.4 The Single-diode Model 4 -- 1.4.1 Effect of the SDM Parameters on the I / V Curve 5 -- 1.5 Models of PV Array for Circuit Simulator 6 -- 1.5.1 The Single-diode Model based on the Lambert W-function 10 -- 1.6 PV Dynamic Models 11 -- 1.7 PV Small-signal Models and Dynamic-resistance Modelling 14 -- References 17 -- 2 Single-diode Model Parameter Identification 21 -- 2.1 Introduction 21 -- 2.2 PV Parameter Identification from Datasheet Information 21 -- 2.2.1 Exact Numerical Methods 21 -- 2.2.2 Approximate Explicit Solution for Calculating SDM Parameters 24 -- 2.2.3 Validation of the Approximate Explicit Solution 27 -- 2.3 Single-diode Model Simplification 30 -- 2.3.1 Five-parameter versus Four-parameter Simplification 32 -- 2.3.2 Explicit Equations for Calculating the Four SDM Parameters 34 -- 2.4 Improved Models for Amorphous and Organic PV Technologies 37 -- 2.4.1 Modified SDM for Amorphous PV Cells 37 -- 2.4.2 Five-parameter Calculation for Amorphous Silicon PV Panels 38 -- 2.4.3 Modified Model for Organic PV Cells 40 -- References 43 -- 3 PV Simulation under Homogeneous Conditions 45 -- 3.1 Introduction 45 -- 3.2 Irradiance- and Temperature-dependence of the PV Model 45 -- 3.2.1 Direct Effects of Irradiance and Temperature 45 -- 3.2.2 Equations for (3z(BTranslating(3y(B SDM Parameters 49 -- 3.2.3 Iterative Procedure proposed by Villalva et al. 51 -- 3.2.4 Modified PV Model proposed by Lo Brano et al. 52 -- 3.2.5 Translating Equations proposed by Marion et al. 53 -- 3.2.6 Modified Translational Equation proposed by Picault et al. 53 -- 3.2.7 PV Electrical Model proposed by King et al. 56 -- 3.2.8 Using the King Equation for Estimating the SDM Parameter Drift 59 -- 3.3 Simplified PV Models for Long-term Simulations 61 -- 3.3.1 King Equations for Long-term Simulations 63 -- 3.3.2 Performance Prediction Model based on the Fill Factor 68. | |
505 | 8 | _a3.3.3 PV Modeling based on Artificial Neural Networks 69 -- 3.4 Real-time Simulation of PV Arrays 71 -- 3.4.1 Simplified Models including the Power Conversion Stage 72 -- 3.5 Summary of PV Models 75 -- References 77 -- 4 PV Arrays in Non-homogeneous Conditions 81 -- 4.1 Mismatching Effects: Sources and Consequences 81 -- 4.1.1 Manufacturing Tolerances 81 -- 4.1.2 Aging 82 -- 4.1.3 Soiling and Snow 83 -- 4.1.4 Shadowing 83 -- 4.1.5 Module Temperature 86 -- 4.2 Bypass Diode Failure 87 -- 4.3 Hot spots and Bypass Diodes 89 -- 4.4 Effect of Aging Failures and Malfunctioning on the PV Energy Yield 90 -- References 94 -- 5 Models of PV Arrays under Non-homogeneous Conditions 97 -- 5.1 The use of the Lambert W-Function 98 -- 5.2 Application Examples 102 -- 5.2.1 The Entire I / V Curve of a Mismatched PV String 102 -- 5.2.2 The Operating Point of a Mismatched PV String 104 -- 5.3 Guess Solution by Inflection-point Detection 106 -- 5.4 Real-time Simulation of Mismatched PV Arrays 108 -- 5.5 Estimation of the Energy Production of Mismatched PV Arrays 109 -- References 111 -- 6 PV array Modeling at Cell Level under Non-homogeneous Conditions 113 -- 6.1 PV Cell Modeling at Negative Voltage Values 113 -- 6.1.1 The Bishop Term 113 -- 6.1.2 Silicon Cells Type and Reverse Behavior 115 -- 6.2 Cell and Subcell Modeling: Occurrence of Hot Spots 116 -- 6.2.1 Cell Modeling 117 -- 6.3 Simulation Example 121 -- 6.4 Subcell PV Model 123 -- 6.5 Concluding Remarks on PV String Modeling 124 -- References 124 -- 7 Modeling the PV Power Conversion Chain 127 -- 7.1 Introduction 127 -- 7.2 Review of Basic Concepts for Modeling Power Converters 129 -- 7.2.1 Steady-state Analysis 132 -- 7.2.1.1 Steady-state Values 133 -- 7.2.1.2 Ripple Magnitudes 133 -- 7.2.2 Converter Dynamics Analysis 134 -- 7.3 Effects of the Converter in the Power Conversion Chain 136 -- 7.3.1 Steady-state Model of the Power Conversion Chain 136 -- 7.3.2 Analysis and Simulation using the Steady-state Model 139 -- 7.3.3 Voltage Ripple at the Generator Terminals 143. | |
505 | 8 | _a7.3.4 I / V Curve of the Power Conversion Chain 148 -- 7.4 Modelling the Dynamics of the Power Conversion Chain 151 -- 7.5 Additional Examples 159 -- 7.5.1 MIU based on a Buck Converter 159 -- 7.5.2 MIU based on a Buck / Boost Converter 161 -- 7.6 Summary 162 -- References 163 -- 8 Control of the Power Conversion Chain 165 -- 8.1 Introduction 165 -- 8.2 Linear Controller 166 -- 8.3 Sliding-mode Controller 172 -- 8.3.1 Inductor Current Control 173 -- 8.3.2 Capacitor Current Control 179 -- 8.4 Summary 183 -- References 184 -- Index 000. | |
506 | _aRestricted to subscribers or individual electronic text purchasers. | ||
520 |
_a"The book provides the reader with an overview of the models that can be used for simulating a PV (photovoltaic) generator at different levels of granularity, from cell to system level, in uniform as well as in mismatched conditions. It provides a thorough comparison among the models. The book is divided into 9 chapters: Introduction, PV models, Single Diode Model (SDM) parameters identification, PV simulation under homogeneous conditions, PV arrays under non-homogeneous conditions, Models of PV arrays under non-homogeneous conditions, PV array modeling at cell level under non-homogeneous conditions, Modeling the PV power conversion chain, Control of the power conversion chain. Graphs, diagrams and calculations are included to enhance the written material and show examples."-- _cProvided by publisher. |
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530 | _aAlso available in print. | ||
538 | _aMode of access: World Wide Web | ||
588 | _aDescription based on PDF viewed 03/08/2017. | ||
650 | 0 |
_aPhotovoltaic power generation _xMathematical models. _929049 |
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655 | 0 |
_aElectronic books. _93294 |
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695 | _aAdaptation models | ||
695 | _aAging | ||
695 | _aAnalytical models | ||
695 | _aAvalanche breakdown | ||
695 | _aBandwidth | ||
695 | _aBiological system modeling | ||
695 | _aBreakdown voltage | ||
695 | _aCapacitors | ||
695 | _aComplexity theory | ||
695 | _aComputational modeling | ||
695 | _aEquivalent circuits | ||
695 | _aGain | ||
695 | _aGenerators | ||
695 | _aInductors | ||
695 | _aIntegrated circuit modeling | ||
695 | _aJacobian matrices | ||
695 | _aMOSFET | ||
695 | _aMathematical model | ||
695 | _aNumerical models | ||
695 | _aPhotonic band gap | ||
695 | _aPhotovoltaic systems | ||
695 | _aPoles and zeros | ||
695 | _aPower conversion | ||
695 | _aProduction | ||
695 | _aResistance | ||
695 | _aShadow mapping | ||
695 | _aShort-circuit currents | ||
695 | _aSnow | ||
695 | _aStability criteria | ||
695 | _aSurface contamination | ||
695 | _aSwitches | ||
695 | _aTemperature | ||
695 | _aTemperature dependence | ||
695 | _aTemperature measurement | ||
695 | _aTopology | ||
695 | _aVoltage control | ||
700 | 1 |
_aRamos-Paja, Carlos Andr�aes, _eauthor. _929050 |
|
700 | 1 |
_aSpagnuolo, Giovanni, _eauthor. _929051 |
|
710 | 2 |
_aIEEE Xplore (Online Service), _edistributor. _929052 |
|
710 | 2 |
_aWiley, _epublisher. _929053 |
|
830 | 0 |
_aWiley - IEEE _97628 |
|
856 | 4 | 2 |
_3Abstract with links to resource _uhttps://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=7853773 |
942 | _cEBK | ||
999 |
_c74495 _d74495 |