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グリッド形成型風車とは?

グリッド形成風力タービン, also known as voltage source 風力タービン in the wind power industry, are a new type of wind turbine that operates with voltage source characteristics and can actively provide support to the power grid.

Wind Turbine Shell from Our Factory

1. 特徴

1.1 The core feature of grid-forming 風力タービン lies in simulating the rotor motion equation of synchronous generators, presenting voltage source control and self-synchronization grid characteristics externally, and being able to control the output voltage (amplitude and phase), actively support the stability of grid frequency and voltage, and provide inertia and damping support to the system, allowing for island operation.

1.2 They are suitable for weak grid environments with a high proportion of new energy access. Grid-forming wind turbines can transform wind turbines frompassively following the grid” に “actively building the grid”, providing key technical support for the stable operation of new power systems.

2.Technical characteristics and functions of grid-forming wind turbines

2.1 Grid-forming wind turbines mainly rely on grid-forming technology to achieve grid connection. Grid-forming technology is a control strategy that provides stable support to the power system by autonomously establishing voltage and frequency references.

For grid-forming 風力タービン, 簡単に言えば, the converter connected to the grid imitates the operation mode of synchronous generators, and through control algorithms, simulates the inertia, damping, and voltage source characteristics of synchronous generators.

2.2 The wind turbine can be regarded as a local controlledvoltage source/main power source”.

During grid connection, it does not rely on a phase-locked loop to track the grid phase, but instead uses control algorithm strategies (such as virtual synchronous machine control, 等) to complete grid connection through a power synchronization loop that simulates the electrical transient of synchronous generators.

2.3 In the traditional power generation field, synchronous generators have huge rotational inertia and strong current overload capacity, which can effectively deal with disturbances in frequency (active power) and voltage (reactive power) in the power system.

Traditional synchronous generator control technology is already very mature. The grid-forming technology for wind power is to apply some theories of synchronous generators to wind turbine units and “パッケージ” them into the operation mode of synchronous generators.

3. Functions Of Grid-forming Wind Turbines

3.1 The converter of grid-forming 風力タービン has the characteristics of strong transient overcurrent capacity support, strong inertia and damping capacity, high reactive current support (up to more than 3 times the rated current), and fast dynamic response speed (up to within 20ms). The dynamic support indicators are higher than those of grid-following wind turbines.

3.2 After grid-forming 風力タービン are connected to the grid, they can effectively solve the problems of transient overvoltage disconnection, reduced system inertia, and wide-frequency oscillation caused by the high proportion of new energy grid connection, enhance the stability of the units themselves, and improve the operating environment of large-scale grid-following new energy generation units in adjacent wind farms, thereby overall improving the transmission capacity of wind power new energy.

4. Significance of Developing Grid-forming Wind Turbines

4.1 With the development of the power generation industry and policy guidance, by the end of December 2024, the cumulative installed capacity of power generation in China was approximately 3.35 billion kilowatts.

その中で, the installed capacity of new energy power generation, のような 風力, reached 1.45 billion kilowatts, を説明する 42.8% of the national power generation installed capacity, exceeding the installed capacity of thermal power for the first time. The power system presents thedual highcharacteristics of a high proportion of renewable energy and a high proportion of power electronic equipment.

4.2 As an important part of new energy power generation, with the continuous increase in the penetration rate of new energy in the system, concentrated areas of new energy power generation are prone to problems such as reduced short-circuit ratio, wide-frequency oscillation, insufficient frequency regulation capacity, reduced system inertia, and transient overvoltage disconnection.

4.3 対照的に, grid-forming control technology can take on the responsibility of constructing system voltage and frequency, transforming frompassive adaptation” に “active support and autonomous operation”, and overall ensuring grid-friendly connection and grid safety.

サプライヤー

洛陽豊洋重工業株式会社, 株式会社,1998年に設立された鉄道鋳造部品のメーカーです。当社の工場面積は72,600㎡です。, 以上の 300 従業員, 32 技術者, 含む 5 シニアエンジニア, 11 アシスタントエンジニア, そして 16 当社の生産能力は 30,000 年間トン. 現在, 私たちは主に鋳物を生産しています, 機械加工, 機関車の組立て, 鉄道車両, 高速鉄道, 鉱山機械,風力,等.
当社はCRRCに鉄道部品を供給しています。(以上を含む 20 CRRCの支店および子会社),Gemacエンジニアリングマシナリー,サニーグループ, 中信重工業,等. 当社の製品はロシアに輸出されています, 米国, ドイツ, アルゼンチン, 日本, フランス, 南アフリカ,イタリアをはじめとする世界中の国.

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