Wind farm black start
US-2024151208-A1 · May 9, 2024 · US
US12506344B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12506344-B2 |
| Application number | US-202218074793-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 5, 2022 |
| Priority date | Dec 6, 2021 |
| Publication date | Dec 23, 2025 |
| Grant date | Dec 23, 2025 |
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A method for operating a wind farm having a string (S1-S3) of wind turbines (100-100d) which are electrically connectable with each other and a grid (510, 550) via power connections (Cab-Cd) is disclosed. Each wind turbine includes a rotor (106) with rotor blades (108), and a power conversion system (118, 210, 238) mechanically connected with the rotor (106). The method includes disconnecting the string (S1-S3) from the grid (510, 550), and identifying a primary wind turbine (100a, 100c) of the disconnected string (S1-S3) which is electrically connectable with at least one secondary wind turbine (100b-10d) of the disconnected string (S1-S3). The power conversion system (118, 210, 238) of the primary wind turbine (100a, 100c) includes a reactive power capability (RPC) that at least matches a reactive power (RP) of a cluster (C1, C11, C12) to be formed by electrically connecting the primary wind turbine (100a, 100c) with the at least one secondary wind turbine (100b-100d) of the disconnected string (S1-S3).
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The invention claimed is: 1 . A method for operating a wind farm that includes a string of wind turbines electrically connectable with each other and connectable with a grid via power connections, each of the wind turbines having a rotor with rotor blades, and a power conversion system mechanically connected with the rotor, the method comprising: disconnecting the string from the grid; and identifying at least two primary wind turbines of the disconnected string for separate respective clusters, each of the at least two primary wind turbines electrically connectable with at least one respective secondary wind turbine of the disconnected string; wherein the power conversion system of each of the at least two primary wind turbines has a reactive power capability (RPC) that at least matches a reactive power (RP) of the respective cluster that is formed by electrically connecting each of the at least two primary wind turbines with the at least one respective secondary wind turbine in the respective cluster of the disconnected string, wherein the formed clusters are disconnected from each other, and wherein the at least two primary wind turbines are operated in an island operating mode so that the reactive power (RP) of the respective cluster is met by the power conversion system of the respective primary wind turbine. 2 . The method of claim 1 , further comprising: searching for the at least two primary wind turbines and a power connection between the at least two primary wind turbines and the at least one respective secondary wind turbine; assigning the at least two primary wind turbines and as many as possible of the remaining wind turbines of the disconnected string as additional respective secondary wind turbines to the cluster so that the reactive power capability (RPC) of each of the identified at least two primary wind turbines at least matches the reactive power (RP) of the additional respective secondary wind turbines and the respective power connections between the wind turbines of the cluster; electrically connecting the identified at least two primary wind turbines with the at least one respective secondary wind turbine of the disconnected string via the respective power connections to form the cluster of the disconnected string; and operating the identified at least two primary wind turbines in the island operating mode so that the reactive power (RP) of the cluster of wind turbines is met by the power conversion system of the identified at least two primary wind turbines. 3 . The method of claim 1 , wherein the wind turbine in the disconnected string with the largest reactive power capability (RPC) is identified as one or the at least two primary wind turbines for the cluster. 4 . The method of claim 1 , wherein at least one of the at least two primary wind turbines is operated in a grid forming operating mode to establish a stable local grid within the cluster of the wind turbines. 5 . The method of claim 1 , wherein the at least one respective secondary wind turbine is, after forming the cluster, operated in an idling operating mode or a stand still operating mode. 6 . The method of claim 1 , wherein the string is disconnected from the grid after detecting a loss of the grid. 7 . The method of claim 6 , after further detecting a recovery of the grid, further comprising connecting the string with the grid. 8 . The method of claim 1 , wherein the wind farm includes a plurality of the strings of wind turbines, each of the strings separately connectable with a point of common coupling of the wind farm to the grid, and wherein the method is performed independently for each of the strings of wind turbines. 9 . A wind farm, comprising: a string of wind turbines that are electrically connectable with each other and a grid, each of the wind turbines comprising a rotor with rotor blades, and a power conversion system mechanically connected with the rotor; a control system communicatively coupled with the power conversion system of each of the wind turbines, the control system configured to perform the following; disconnecting the string from the grid; and identify at least two primary wind turbines of the disconnected string for separate respective clusters, each of the at least two primary wind turbines electrically connectable with at least one respective secondary wind turbine of the disconnected string; wherein the power conversion system of each of the at least two primary wind turbines has a reactive power capability (RPC) that at least matches a reactive power (RP) of the respective cluster that is formed by electrically connecting each of the at least two primary wind turbines with at least one respective secondary wind turbine in the respective cluster of the disconnected string, wherein the formed clusters are disconnected from each other, and wherein the at least two primary wind turbines are operated in an island operating mode so that the reactive power (RP) of the respective cluster is met by the power conversion system of the respective primary wind turbine. 10 . The wind farm of claim 9 , wherein the control system is further configured to perform the following: search for the at least two primary wind turbines and a power connection between the at least two primary wind turbines and the at least one respective secondary wind turbine; assign the at least two primary wind turbines and as many as possible of the remaining wind turbines of the disconnected string as additional respective secondary wind turbines to the cluster so that the reactive power capability (RPC) of each of the identified at least two primary wind turbines at least matches the reactive power (RP) of the additional respective secondary wind turbines and the respective power connections between the wind turbines of the cluster; electrically connect the identified at least two primary wind turbines with the at least one respective secondary wind turbine of the disconnected string via the respective power connections to form the cluster of the disconnected string; and operate the identified at least two primary wind turbines in the island operating mode so that the reactive power (RP) of the cluster of wind turbines is met by the power conversion system of the at least two primary wind turbines. 11 . The wind farm of claim 9 , comprising a plurality of the strings of wind turbines, wherein the control system is configured to control each of the strings independently of each other. 12 . The wind farm of claim 9 , wherein the control system comprises a wind farm controller communicatively coupled to a wind turbine controller for each power conversion system, the wind farm controller operable as a primary controller configured to disconnect the string from the grid and identify the at least two primary wind turbines, wherein the wind turbine controllers are operable as a secondary controllers configured to control the at least two primary wind turbines in the island operating mode.
Wind energy · CPC title
controlling wind farms · CPC title
being internal to power sources or power generation plants · CPC title
Wind turbines with rotation axis in wind direction · CPC title
the wind motor being part of a wind farm · CPC title
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