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Integrated control system and method for controlling mode, synchronization, power factor, and utility outage ride through for micropower generation systems

机译:用于控制微发电系统的模式,同步,功率因数和公用事业中断的集成控制系统和方法

摘要

An integrated system for comprehensive control of an electric power generation system utilizes state machine control having particularly defined control states and permitted control state transitions. In this way, accurate, dependable and safe control of the electric power generation system is provided. Several of these control states may be utilized in conjunction with a utility outage ride-through technique that compensates for a utility outage by predictably controlling the system to bring the system off-line and to bring the system back on-line when the utility returns. Furthermore, a line synchronization technique synchronizes the generated power with the power on the grid when coming back on-line. The line synchronization technique limits the rate of synchronization to permit undesired transient voltages. The line synchronization technique operates in either a stand-alone mode wherein the line frequency is synthesized or in a connected mode which sensed the grid frequency and synchronizes the generated power to this senses grid frequency. The system also includes power factor control via the line synchronization technique or via an alternative power factor control technique. The result is an integrated system providing a high degree of control for an electric power generation system.
机译:用于发电系统的综合控制的集成系统利用状态机控制,该状态机控制具有特别定义的控制状态和允许的控制状态转换。以这种方式,提供了对发电系统的精确,可靠和安全的控制。这些控制状态中的几种可以与公用事业中断穿越技术结合使用,该技术通过可预测地控制系统以使系统脱机并在公用事业返回时使系统重新联机来补偿公用事业中断。此外,当回到在线状态时,线同步技术将产生的功率与电网上的功率同步。线路同步技术限制了同步速率,以允许不期望的瞬态电压。线路同步技术以独立模式(其中线路频率是合成的)或在连接模式下运行(该模式感测电网频率并将所产生的功率与此感测电网频率同步)进行操作。该系统还包括通过线路同步技术或通过替代功率因数控制技术进行的功率因数控制。结果是提供了对发电系统的高度控制的集成系统。

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