SPICE for Power Electronics and Electric Power, 3/e (Hardcover)
暫譯: 電力電子與電力系統的SPICE,第三版(精裝本)

Muhammad H. Rashid

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<內容簡介>

Power electronics can be a difficult course for students to understand and for professors to teach. Simplifying the process for both, SPICE for Power Electronics and Electric Power, Third Edition illustrates methods of integrating industry standard SPICE software for design verification and as a theoretical laboratory bench.

Helpful PSpice Software and Program Files Available for Download

Based on the author Muhammad H. Rashid’s considerable experience merging design content and SPICE into a power electronics course, this vastly improved and updated edition focuses on helping readers integrate the SPICE simulator with a minimum amount of time and effort. Giving users a better understanding of the operation of a power electronics circuit, the author explores the transient behavior of current and voltage waveforms for each and every circuit element at every stage. The book also includes examples of all types of power converters, as well as circuits with linear and nonlinear inductors.

New in this edition:

* Student learning outcomes (SLOs) listed at the start of each chapter

* Changes to run on OrCAD version 9.2

* Added VPRINT1 and IPRINT1 commands and examples

* Notes that identify important concepts

* Examples illustrating EVALUE, GVALUE, ETABLE, GTABLE, ELAPLACE, GLAPLACE, EFREQ, and GFREQ

* Mathematical relations for expected outcomes, where appropriate

* The Fourier series of the output voltages for rectifiers and inverters

* PSpice simulations of DC link inverters and AC voltage controllers with PWM control

This book demonstrates techniques of executing power conversions and ensuring the quality of the output waveforms rather than the accurate modeling of power semiconductor devices. This approach benefits students, enabling them to compare classroom results obtained with simple switch models of devices. In addition, a new chapter covers multi-level converters.

Assuming no prior knowledge of SPICE or PSpice simulation, the text provides detailed step-by-step instructions on how to draw a schematic of a circuit, execute simulations, and view or plot the output results. It also includes suggestions for laboratory experiments and design problems that can be used for student homework assignments.

<章節目錄>

Introduction

Descriptions of SPICE

Types of SPICE

Types of Analysis

Limitations of PSpice

Descriptions of Simulation Software Tools

PSpice Platform

PSpice Schematics versus OrCAD Capture

SPICE Resources

Circuit Descriptions

Input Files

Nodes

Element Values

Circuit Elements

Element Models

Sources

Output Variables

Types of Analysis

PSpice Output Commands

Format of Circuit Files

Format of Output Files

Examples of PSpice Simulations

PSpice Schematics

Importing Microsim Schematics in OrCAD Capture

Defining Output Variables

DC Sweep and Transient Analysis

AC Analysis

Output Markers

Noise Analysis

Voltage and Current Sources

Sources Modeling

Independent Sources

Dependent Sources

Behavioral Device Modeling

Passive Elements

Modeling of Elements

Operating Temperature

RLC Elements

Magnetic Elements and Transformers

Lossless Transmission Lines

Switches

Dot Commands

Models

Types of Output

Operating Temperature and End of Circuit

Options

DC Analysis

AC Analysis

Noise Analysis

Transient Analysis

Fourier Analysis

Monte Carlo Analysis

Sensitivity and Worst-Case Analysis

Diode Rectifiers

Diode Model

Diode Statement

Diode Characteristics

Diode Parameters

Diode Rectifiers

Laboratory Experiments

DC–DC Converters

DC Switch Chopper

BJT SPICE Model

BJT Parameters

Examples of BJT DC–DC Converters

MOSFET Choppers

MOSFET Parameters

Examples of MOSFET DC–DC Converters

IGBT Model

Examples of IGBT DC-DC Converters

Laboratory Experiment

Pulse-Width–Modulated Inverters

Voltage-Source Inverters

Current-Source Inverters

DC Link Inverters

Laboratory Experiments

Resonant-Pulse Inverters

Resonant-Pulse Inverters

Zero-Current Switching Converters

Zero-Voltage Switching Converter

Laboratory Experiments

Controlled Rectifiers

AC Thyristor Model

Controlled Rectifiers

Examples of Controlled Rectifiers

Switched Thyristor DC Model

GTO Thyristor Model

Example of Forced-Commutated Rectifiers

Laboratory Experiments

AC Voltage Controllers

AC Thyristor Model

Phase-Controlled AC Voltage Controllers

Examples of Phase-Controlled AC Voltage Controllers

AC Voltage Controllers with PWM Control

Cycloconverters

Laboratory Experiments

Control Applications

Op-Amp Circuits

Control Systems

Signal Conditioning Circuits

Closed-Loop Current Control

Characteristics of Electrical Motors

DC Motor Characteristics

Induction Motor Characteristics

Simulation Errors, Convergence Problems, and Other Difficulties

Large Circuits

Running Multiple Circuits

Large Outputs

Long Transient Runs

Convergence

Analysis Accuracy

Negative Component Values

Power-Switching Circuits

Floating Nodes

Nodes with Fewer than Two Connections

Voltage Source and Inductor Loops

Running PSpice Files on SPICE

Running SPICE Files on PSpice

Using Earlier Version of Schematics

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內容簡介

電力電子學對於學生來說可能是一門難以理解的課程,對於教授來說也不易教學。《電力電子學與電力》第三版簡化了這一過程,展示了如何整合行業標準的SPICE軟體進行設計驗證及作為理論實驗平台。

有用的PSpice軟體和程式檔案可供下載

基於作者Muhammad H. Rashid在將設計內容與SPICE合併到電力電子課程中的豐富經驗,這一大幅改進和更新的版本專注於幫助讀者以最少的時間和精力整合SPICE模擬器。作者探討了每個電路元件在每個階段的電流和電壓波形的瞬態行為,幫助用戶更好地理解電力電子電路的運作。書中還包括各類型的電力轉換器的範例,以及具有線性和非線性電感的電路範例。

本版新增內容:

* 每章開頭列出學生學習成果(SLOs)

* 變更以適用於OrCAD版本9.2

* 新增VPRINT1和IPRINT1命令及範例

* 標註重要概念的註解

* 說明EVALUE、GVALUE、ETABLE、GTABLE、ELAPLACE、GLAPLACE、EFREQ和GFREQ的範例

* 在適當的地方提供預期結果的數學關係

* 整流器和逆變器輸出電壓的傅立葉級數

* 具有PWM控制的直流鏈逆變器和交流電壓控制器的PSpice模擬

本書展示了執行電力轉換和確保輸出波形質量的技術,而非準確建模電力半導體設備。這種方法使學生能夠比較使用簡單開關模型獲得的課堂結果。此外,新增章節涵蓋多級轉換器。

假設讀者對SPICE或PSpice模擬沒有先前知識,文本提供了詳細的逐步指導,說明如何繪製電路原理圖、執行模擬以及查看或繪製輸出結果。還包括實驗室實驗和設計問題的建議,可用於學生的作業。

章節目錄

引言

SPICE的描述

SPICE的類型

分析類型

PSpice的限制

模擬軟體工具的描述

PSpice平台

PSpice原理圖與OrCAD Capture的比較

SPICE資源

電路描述

輸入檔案

節點

元件值

電路元件

元件模型

輸出變數

分析類型

PSpice輸出命令

電路檔案格式

輸出檔案格式

PSpice模擬範例

PSpice原理圖

在OrCAD Capture中導入Microsim原理圖

定義輸出變數

直流掃描和瞬態分析

交流分析

輸出標記

噪聲分析

電壓和電流源

源建模

獨立源

依賴源

行為裝置建模

被動元件

元件建模

工作溫度

RLC元件

磁性元件和變壓器

無損傳輸線

開關

點命令

模型

輸出類型

工作溫度和電路結束

選項

直流分析

交流分析

噪聲分析

瞬態分析

傅立葉分析

蒙地卡羅分析

靈敏度和最壞情況分析

二極體整流器

二極體模型

二極體語句

二極體特性

二極體參數

二極體整流器

實驗室實驗

直流-直流轉換器

直流開關斷路器

BJT PSpice模型

BJT參數

BJT直流-直流轉換器範例

MOSFET斷路器

MOSFET參數

MOSFET直流-直流轉換器範例

IGBT模型

IGBT直流-直流轉換器範例

實驗室實驗

脈衝寬度調變逆變器

電壓源逆變器

電流源逆變器

直流鏈逆變器

實驗室實驗

共振脈衝逆變器

共振脈衝逆變器

零電流開關轉換器

零電壓開關轉換器

實驗室實驗

受控整流器

交流晶閘管模型

受控整流器

受控整流器範例

開關晶閘管直流模型

GTO晶閘管模型

強迫換流整流器範例

實驗室實驗

交流電壓控制器

交流晶閘管模型

相位控制的交流電壓控制器

相位控制的交流電壓控制器範例

具有PWM控制的交流電壓控制器

循環變換器

實驗室實驗

控制應用

運算放大器電路

控制系統

信號調理電路

閉環電流控制

電動機特性

直流電動機特性

感應電動機特性

模擬錯誤、收斂問題及其他困難

大型電路

運行多個電路

大型輸出

長時間瞬態運行

收斂

分析準確性

負元件值

功率開關電路

浮動節點

連接少於兩個的節點

電壓源和電感迴路

在SPICE上運行PSpice檔案

在PSpice上運行SPICE檔案

使用早期版本的原理圖

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