P1110/D06-2018

Draft Guide for Synchronous Generator Modeling Practices and Parameter Verification with Applications in Power System Stability Analyses


 

 

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标准号
P1110/D06-2018
发布日期
2018年12月01日
实施日期
2019年02月14日
废止日期
中国标准分类号
/
国际标准分类号
/
发布单位
IEEE - The Institute of Electrical and Electronics Engineers@ Inc.
引用标准
91
适用范围
This guide contains instructions for modeling synchronous machines in direct- and quadrature-axis equivalent circuits@ along with the basic transient and subtransient reactance/time-constants model in view of stability studies. It discusses assumptions made in using various models and presents the fundamental equations and concepts involved in generator/system interfacing. The manner in which generator saturation is treated in network studies@ both in the initialization process as well as during large or small disturbance stability analysis procedures is addressed. Approaches for improving the accuracy of field and excitation system quantities are identified and conversion factors are given for transferring field parameters from one base to another for correct generator/excitation system interface modeling. Parameter determination and translation from equivalent-circuits to operational impedances or vice-versa is covered. Data analysis methods for obtaining these parameters using measurements from field tests or finite-element computations are explained and illustrated with a wide range of generator and test data. However@ this guide refers to applicable standards (such as IEEE Std 115) or contract specification for scheduling such tests. Also@ this guide does not attempt to recommend specific procedures for machine representation in non-standard or atypical cases such as generator tripping and overspeed operation or models for harmonics or unbalanced operation. Purpose The modeling of synchronous machines for stability studies and analyses is subject to continuing review and possible improvements. The guide addresses both parameter identification for static and dynamic stability analyses while accounting for generator saturation. Emphasis is placed on discussing various aspects of Synchronous Generator/Power System interactions in steady and dynamic operation modes.




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