A Static VAR Compensator Model for Improved Ride-Through Capability of Wind Farms

Author:

Akhmatov Vladislav1,Søbrink Kent1

Affiliation:

1. Eltra, Transmission System Operator of Western Denmark, Fjordvejen 1-11, DK-7000 Fredericia, Denmark

Abstract

Dynamic reactive compensation is associated with reactive power and voltage control of induction generator based wind turbines. With regard to wind power, application areas of dynamic reactive compensation can be improvement of the power quality and the voltage stability, the control of the reactive power exchange between the wind farm and the power grid in the wind farm connection point as well as improvement of the ride-through capability of the wind farm. This article presents a model of a Static VAR Compensator (SVC) with dynamic generic control that is a kind of dynamic reactive compensation devices. The term “generic” implies that the model is general and must cover a variety of the SVC units and their specific controls from different manufacturers. The SVC model with dynamic generic control is implemented by Eltra in the simulation tool Powerfactory and validated from the SVC model in the tool PSCAD/EMTDC. Implementation in the tool Powerfactory makes it possible to apply the SVC model with dynamic generic control in investigations of power system stability with regard to establishment of large wind farms without restrictions on the model size of the power grid.

Publisher

SAGE Publications

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference11 articles.

1. Control design and dynamic performance analysis of a wind turbine-induction generator unit

2. Modelling and transient stability of large wind farms

3. Cai L. (2004). Robust coordinated control of FACTS devices in large power systems, Logos Verlag Berlin, 10243 Berlin, 172 p., in Part 2.

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