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First, based on double-fed induction generator fundamental equation, the equivalent circuit and internal power relationship are analyzed in this dissertation, which establishes the theoretical base for study.

本文首先从双馈感应发电机的基本原理出发,分析了其等效电路和功率平衡关系,为双馈感应风力发电系统的研究奠定了理论基础。

Facilitates the addition of individual or equivalent units, along with their step-up transformers, to the power flow case

IPLAN风力发电场程序模拟单独或者成组的风力发电机的常规参量,并且辅助用户通过在数据采集中心的具体设置得到一

The model and parameter accuracy are essential for excitation system modelling and parameter idenfication, and the criteria of testing the vadlity is given too.

模型和参数的精度是发电机励磁系统建模和参数辨识的关键,本文提出评判基于现场测试得出的数学模型和参数正确性的方法。

Based on the characters of the PSO,a framework for the parameter estimation of synchronous generators is presented.

根据粒子群游算法的特点,提出了一种同步发电机参数辨识的计算框架。

The construction of the generators is of drip-proof, salient pole rotating field self excitation and constant voltage type.

建造该发电机是滴灌防爆,凸极旋转场自我激励和不断电压型。

The construction of the generators is of drip-proof salient pole rotating field self excitation constant voltage type.

建造该发电机是滴灌防爆,凸极旋转场自我激励和不断电压型。

The three working pattern of he rotating-rectifier influence on the main generator excitation voltage.

文中详细说明了旋转整流器的三种工作模态,及旋转整流器对主发电机励磁电压的影响。

Limit induced bifurcation by generator excitation voltage limit was studied, the critical limit was presented and a mechanism of LIB was proposed.

研究由于发电机励磁电压限制导致的极限诱导分岔,发现临界限值的存在并提出一种极限诱导分岔的机理解释。

This paper makes a approach to it and its application on excitation system .

本文对二阶自抗扰控制器进行了探讨,并将其应用于发电机励磁系统。

Excitation control of synchronous generator is one of the most economic and effective control measures in power systems.

同步发电机励磁控制是电力系统最经济和有效的控制手段之一,是一个非常活跃的研究领域。

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