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system of at least two distributed wind turbines, wind turbine comprising at least one intersection point using priority, and device driver of one intersection point of a wind turbine in a data communication network
system of at least two distributed wind turbines, wind turbine comprising at least one intersection point using priority, and device driver of one intersection point of a wind turbine in a data communication network
AT LEAST TWO DISTRIBUTED WIND TURBINE SYSTEM, WIND TURBINE UNDERSTANDING AT LEAST A POINT OF INTERIOR, USE OF PRIORITY, AND A DEVICE DRIVER OF A DUAL LONG TURBINE TURBINE. The invention relates to a system of at least two distributed wind turbines, wherein said at least two wind turbines communicate via a data communication network, said data communication network communicates monitoring and control data (MCD) to and from said at least two wind turbines (WT), said data communication network communicates energy control related data (PCRD) to and from said at least two wind turbines (W) (PCRD) have higher transmission priority than a subset of said monitoring and control data (MCD), and where said transmission priority is defined relative to a protocol. In accordance with the present invention, a data communication network is understood as a network communicating data with respect to a distributed wind turbine system. According to one embodiment of the invention, the data communication network is a SCADA network system (SCADA: Data Acquisition and Supervision Systems). A SCADA system is a category of process control software application programs, potentially real-time data collection from remote locations to control equipment and conditions, and the associated network.
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