نتایج جستجو برای: ژنراتور القایی تغذیه دوبل dfig
تعداد نتایج: 21776 فیلتر نتایج به سال:
The crowbar protection is commonly used for wind turbines with a doubly-fed induction generator (DFIG) to enhance the low-voltage ride-through capability of the wind turbines. Thus, the fault-current characteristics of DFIG with the crowbar protection under symmetricand asymmetric-fault states are studied in this paper. Firstly, a DFIG dynamic model in the stator stationary reference frame is d...
This paper presents the particle swarm optimization (PSO) for reactive power and voltage control (Volt/Var Control) in distribution system considering DFIG wind farm. In this paper, the reactive power output of DFIG wind farm has been considered as the control variables in the Volt/Var Control scheme by considering the reactive power compensation capability of DFIG. The minimization of total sy...
The grid codes now require doubly fed induction generator (DFIG) wind turbines having the “low voltage ride-through (LVRT)” capability. However, a traditional DFIG with a partially rated back-to-back converter has inherent difficulties to ride through the grid faults, especially for the unbalanced grid faults. Modifications to the traditional DFIG configuration for ride-through have become nece...
as one of the most promising distributed generation (dg) sources, wind power technology has been widely developed in recent years. doubly fed induction generator (dfig) is currently employed as one of the most common topologies for wind turbine generators (wtgs). this generator operates as a synchronous/asynchronous hybrid generators. therefore, it is necessary to power engineers find understan...
Abstract— This paper presents the modeling and control back stepping of Double-Fed Induction Generator (DFIG) integrated into a wind energy system. The goal is to apply this technique to control independently the active and reactive power generated by DFIG. Finally, the system performance was tested and compared by simulation in terms of following instructions and robustness with respect to par...
مهم ترین نیازهای حفاظتی برای ریزشبکه های متصل به شبکه تشخیص شرایط جزیره و حفاظت برای مقابله با شرایط جزیره است. در این مقاله یک روش جدید برای تشخیص شرایط جزیره برای یک ریزشبکه استاندارد مجهز به منابع تولیدی انرژی نو مختلف شامل توربین بادی با ژنراتـور القـایی از دو سو تغذیه (dfig ، chp) و سلول هـای فتوولتائیک ارائه شده است. در این روش سیستم های کنترلی dfig، chp و سلول های فتوولتائیک مدل سازی شده...
In this paper steady state characteristic of a variable speed Doubly fed induction generator (DFIG) is investigated. Torque and speed is used as design parameters for DFIG. From mathematical model it is found that on increase of rotor injection voltage and resistance, the torque speed response is shifted from over synchronous to sub synchronous range. The stability of DFIG operation is entirely...
Doubly fed induction generators (DFIG) based wind turbine is an emerging technology, which becomes increasingly popular due to its various advantages over fixed speed generator systems. A DFIG based wind turbine has an ability to generate maximum power with varying and adjustable speed, ability to control active and reactive power by the integration of electronic power converters, low power rat...
In recent years, the doubly fed induction generators (DFIGs) are used in modern wind power plants. These generators have a large impact on the stability of power system. In this paper, we examine the stability of DFIG wind turbines with static synchronous compensator (STATCOM). Optimal tuning of STATCOM control Parameters is very important in order to proper Performance of STATCOM as a stabiliz...
This paper aims to explore a viable solution for a doubly-fed induction generator (DFIG)-based wind farm to meet the reactive support requirement of the low voltage ride-through (LVRT) grid code with safe grid-connected operation during asymmetrical grid faults. First, the control scheme for the DFIG-based wind energy conversion system (WECS) is designed. Then, the controllability issue is anal...
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