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首页 > 工程科学软件 > 电力系统分析 > ETAP PowerStation V 5.0
ETAP PowerStation V 5.0
产品编号:XK04267
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出 版 商: 版  本:
语  言: 授权期限:
上架时间: 2008/7/28 更新时间: 2008/3/4
交货方式: 配货周期: 7-15
   
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PowerStation(ETAP) 电力系统分析软件
ETAP PowerStation是由Operation Technology Inc.所设计的Windows应用软件。ETAP是Electrical Transient Analysis Program电力瞬时分析软件的简称。本软件已获得ISO 9001认证,及合乎一般电厂U.S. Title 10 CFR 50、ANSI/IEEE及核能电厂U.S. Title 10 CFR 21标准。我们的客户:ABB、Duke Power Co.、Tennessee Valley Authority、ARCO、Du Pont、Dow Chemical Co.等世界级的电力公司、顾问公司的厂商及电机技师等,在台湾的使用者为工研院、益鼎工程、台湾科技大学、台北科大、云林科大、长庚大学等等,全世界接近3,000套。ETAP PowerStation是一个单线图设计工具,让使用者拥有直觉式的思考设计,为全世界独一无二采用虚拟实境(Virtual Reality)设计的电力系统分析软件,并具极高度的兼容性,非常容易使用,适合公司企业、政府机构、研究单位、教育单位、等高阶使用者使用。适用于微软的Windows 9598和NT,本软件使得传统复杂的电力系统分析作业,成为很容易使用的设计工具,并提供了完整的开放式数据库功能,让您的设计更自动化 。ETAP PowerStation是一套纯32位的计算机辅助软件,特别设计来与Microsoft Office兼容产品一起工作,容易使用的图型界面、并可以和其它软件连结。PowerStation主要功能:可达2,000Bus,短路电流(Short Circuit)、负载潮流(Load Flow)、马达起动(Motor Starting)、瞬时稳定分析(Transient Stability)、谐波分析(Harmonic Analysis)、接地系统设计(Ground Grid Design)、最佳化电力路径(Optimal Power Flow)、直流系统分析(DC System)、设备保护协调(ETAPStar)、电厂并联启动运转(Generator Start-Up)、电厂管理自动化(PowerStation Manager System[PSMS])等等。
ETAP 是Electrical Transient Analysis Program电力瞬时分析软件的简称。本软件已获得ISO 9001认证,及合乎一般电厂U.S. Title 10 CFR 50,ANSI/IEEE,及核能电厂U.S. Title 10 CFR 21标准。我们的客户:ABB,Duke Power Co. Tennessee Valley Authority,ARCO,Du Pont,Dow Chemical Co等世界级的大厂,在台湾的使用者为台电,台机社,中鼎,益鼎,富台,吉兴,台塑,南亚,核能所,工研院,台科大,北科大,云科大,长庚大学,勤益科大,南台科大等等,全世界接近5000套。

 

实际应用范例及其相关连结:
1.电力系统分析软件实习
2电机系所操作技术手册
3.北科大电机系电力系统分析实习软件
4.台科大电机系86学年度实务专题
5.2004第25届电力工程研讨会
6.台电公司七二九停电事故调查报告
7.澎湖地区八一三停电事故调查报告
8.
核三厂供电系统过电压与过电流保护研究
华邦电子公司力行厂区供电系统过电压与过电流保护研究

关于风力发电:
因为风力发电是未来的能源之一,ETAP PSMS已成功的风力发电农场
且 2005 年中将有完整的风力发电模块


V5.0模块涵盖以下
设计分析模块
Arc Flash IEEE 1584
Battery Sizing & Discharge
Cable Pulling
Control System Diagram
Data Exchange (DataX)
DC Load Flow
DC Short-Circuit
Device Coordination/Selectivity (STAR)
Electrical Data Processing (e-DPP)
ETAP e-DPP Interface
Generator Start-Up
Geographic Information System (GIS)
Ground Grid Systems
Harmonics
High Voltage DC Systems
Load Flow
Motor Acceleration
Optimal Capacitor Placement
Optimal Power Flow
Panel Systems
Parameter Estimation
Reliability Assessment Short-Circuit ANSI/IEC
SmartPlant Electrical Interface
Transformer Sizing
Transient Stability
Transmission Line - Sag & Tension
Unbalanced Load Flow
Underground Raceway Systems
User-Defined Dynamic Models

实时系统模块
Real-Time Systems
Advanced Monitoring
Real-Time Simulation
Event Playback
Intelligent Load Shedding
Supervisory & Advisory Control

各模块详细内容
Design & Protection
Short-Circuit
ANSI/IEEE & IEC Standards
Transient Fault Analysis (IEC 61363)
Integrates with Arc Flash (NFPA 70E-2000)
Integrates with Device Coordination
Automatic Device Evaluation

Arc Flash
IEEE 1584-2002 Method
NFPA 70E-2000 & 2004 Methods
Cubic Box & Open Air Calculations
Integrated with ANSI &
IEC Short-Circuit Modules
Integrated with Star Device Coordination

Load Flow
Power Flow
Demand Load
Voltage Drop
Power Factor Correction
Automatic Device Evaluation
Automatic Temperature Correction
Real & Reactive Power Losses

Motor Acceleration
Dynamic Motor Acceleration
Voltage Flicker
Static Motor Starting
Load Transitioning
Motor Dynamic Models
Various Starting Devices

Ground Grid Systems
IEEE 80 Method
IEEE 665 Method
Finite Element Method
Rod & Conductors in Any 3-D Direction
Rod & Conductor Optimization

Harmonics
Harmonic Load Flow
Harmonic Frequency Scan
Filter Design & Sizing
Inter-Harmonic Filter Modeling
Automatically Evaluate Harmonic Limits

Panel Systems
Panel Design & Analysis
1-Phase & 3-Phase
ANSI & IEC Standards
NEC Load Factors
Intelligent Panel Calculations
Automatic Update of Upstream Panels

Device Coordination/Selectivity (Star)
Graphically Adjustable Device Settings
Sequence-of-Operation
Embedded Analysis Modules
Verified & Validated Device Libraries
Multi-Function & Multi-Level Relays
Built-In Interface with Relay Hardware
Display Actual Relay Transient Response
User-Definable Device Library Database

Data Exchange
DataX
Import/Export Data
Data Synchronization
Automatic Diagram Generator
Intelligent Error Checking
GIS Map Interface
Real-Time Data Exchange
Transmission & Distribution
Unbalanced Load Flow
Unbalanced Power Flow
Phase & Sequence Voltage & Current
Voltage & Current Unbalance Factors
Demand Load Transmission Line Coupling
Voltage Drop Transmission Line Coupling
Power Factor Correction
Automatic Device Evaluation
Automatic Temperature Correction
Real & Reactive Power Losses

Optimal Power Flow
Multiple Objectives Simultaneously
Interior Point Method
Minimize Power Losses
Active Power Optimization
Reactive Power Optimization
Infeasibility Handling

Optimal Capacitor Placement
Optimal Location & Bank Size
Minimize Installation & Operation Costs
Individual Source or Average Energy Cost
Voltage and/or Power Factor Objectives
Minimum, Maximum, & Average Loading
Branch Capacity Release & Cost Savings
Review Capacitor Impact on the System
Capacitor Control Method

Reliability Assessment
System Reliability
Customer Oriented Indices
Energy (Cost) Indices
Sensitivity Analysis
Single & Double Contingency

Transmission Line
Overhead Line Parameters & Coupling
Sag/Tension vs. Temperature
Conductor Ampacity vs. Temperature
Calculate Long-Line Constants

High Voltage DC Systems
Detailed Converter Modeling
Composite AC/DC Inverter/AC Systems
Combined Transformer Model
Automatic Harmonic Spectrum Calculation
Built-In Control Systems
Easy-To-Use Dynamic Modes

Transformer Tap Optimization
MVA Sizing including Unit Transformers
Optimize Unit Transformer Turns Ratio
Considers System Voltage Variation
Considers Generation Station
Auxiliary Load
Generator Reactive Capacity vs. Voltage

GIS Map
View GIS Maps in ETAP
Display Analysis Results on GIS Map
Synchronize GIS Data to ETAP Projects
GUI Database Mapping
View Modifications & Accept/Reject Actions
Use GIS Map Tools
Map Attributes of GIS to ETAP Elements
Consistency Checks for Data Synchronization
Real-Time Systems
Advanced Monitoring
Continuous Real-Time Monitoring
On Demand Data Retrieval
State Estimator & Load Distributor
Data Reconciliation &
Consistency Check
Bad Data Detection & Correction
Alarm Management & Processing
Energy Cost Monitoring

Real-Time Simulation
Real-Time Simulation
Predict System Behavior
Perform "What If" Operating Scenarios
Simulate Archived Offline Data
Built-In Training Tool for Engineers & Operators

Event Playback
Replay Archived Data at Different Speeds
Improve Operator Knowledge
Improve System Operation
Investigate Cause & Effect
Explore Alternative Actions
Replay "What if" Scenarios

Supervisory & Advisory Control
Advisory and/or Automatic Control
Shared Decision Making Process
Chain of Logic Controls & Action Validations
Steady-State Optimization Control
Energy Cost Assessment
Online Control & Automation

Intelligent Load Shedding
Optimize Load Preservation
Reduce Downtime for Critical Loads
User-Defined "Teaching" of Neural Network
Automatic "Training" of Neural Network
User-Defined Load Priority Tables (LPT)
Load Shedding Scheme Redundancy with Backup Contingencies
Simulate Various Disturbances & Display the Results
Simulate & Test ILS Recommendations
Robust Calculation Methods

DC Systems
Load Flow
Integrated AC & DC Systems
Voltage Drop
Power Losses
IEEE 946 Standard
Battery Auto-Activation

Short-Circuit
Integrated AC & DC Systems
IEEE 946 Standard
Calculate Total Fault Current
Calculate Current Rising Time

Battery Sizing & Discharge
Battery Sizing
Battery Discharge Simulation
Load Diversity Factor
Voltage Drop & Loss Consideration
Class 1E DC Power &
Control System Models

Control System Diagram
Simulation-of-Operation Sequence
Pickup & Dropout Voltage Calculation
Automatic Alerts
Burden & Inrush Modes
Controlled Contacts
Integrated with Battery Discharge Calculation
Dynamics & Stability
Transient Stability
Unlimited Events & Actions
Short Time & Long Time Simulation
Variable Simulation Time
Comprehensive Exciter/Governor Models
Automatic Load Shedding
Relay & User-Defined Actions

Parameter Estimation
Machine Equivalent Circuits
Single Cage Models with Deep-Bar Effects
Auto-Update Machine Editor
Automatically Recalculate Machine Characteristics

Generator Start-Up
Cold-State Generator Starting
Load Generators Prior to
Synchronous Speed
Frequency-Dependent Machine Models
Frequency-Dependent Network Models
An Expansion to the
Transient Stability Module
Utilizes User-Defined Dynamic Models

User-Defined Dynamic Models
Library of Pre-Built Models
Customize Existing UDM Models
Wide Variety of Blocks for Building Models
Import Simulink Models
Various Model Testing Methods
Real-Time Compiling & Linking of Models

Cable Systems
Underground Raceway Systems
Neher-McGrath Method
IEC 287 Method
Steady-State Temperature
Ampacity Optimization
Automatic Cable Sizing
Transient Temperature

Cable Pulling
Integrated with One-Line Diagram Cables
Integrated with Underground
Raceways Cables
Pull Multiple Cables
Allow Any Pull Geometry
Full ETAP Cable Library Integration
Display 3-D Pulling Path Geometry

Cable Ampacity
Duct Banks
Direct Buried
Trays
Conduit in Air
Air Drops
ICEA & NEC Methods

Cable Sizing
Optimal & Alternative Sizes
Ampacity & Voltage Drop Options
Sized Based on Any One-Line Element

Data Interface
E-DPP Interface
Map e-DPP Equipment to ETAP Elements
Integration with ETAP Projects
Use ETAP Library Data
Use ETAP Analysis Tools

SmartPlant Electrical Interface
Integration with ETAP Projects
Use ETAP Library Data
Use ETAP Analysis Tools
Map SmartPlant Electrical Equipment
to ETAP Elements

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