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Reactive Power Control for Multiple Synchronous Generators Connected in Parallel

机译:多台并联同步发电机的无功控制

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This work addresses the common problem of distributing reactive power among multiple synchronous generators in power plants. Multiple synchronous generators within the same power generation facility are often utilized to feed a power transmission line. Individually controlling each generator may not be adequate for proper distribution of reactive load among multiple generators. Some possible issues of such a strategy include the generation of circulating currents, a low power factor, or generators running at the limit of their capabilities. The focus of this work is on the design of a supervisory control strategy for interconnected synchronous generators in power plants with the aim of avoiding those issues. The design is facilitated by constructing a new modified power factor that is smooth and monotonically decreasing as a function of reactive power and provides a clear indication of whether the reactive power is leading or lagging. The proposed strategy is implemented in cascade with the existing Automatic Voltage Regulators widely employed to provide voltage output stability. The effectiveness of the proposed strategy is discussed by providing experimental results comparing the reactive load distribution before and after the deployment of such a strategy in a large power plant.
机译:这项工作解决了电厂中多个同步发电机之间分配无功功率的普遍问题。同一发电设施内的多个同步发电机通常用于为输电线路供电。单独控制每个发电机可能不足以在多个发电机之间适当分配无功负载。这种策略的一些可能问题包括循环电流的产生,低功率因数或发电机在其能力极限下运行。这项工作的重点是针对发电厂中互连的同步发电机的监督控制策略的设计,目的是避免这些问题。通过构建一个新的改进的功率因数来简化设计,该功率因数根据无功功率而平滑且单调降低,并提供无功功率是超前还是滞后的清晰指示。所提出的策略是与广泛用于提供电压输出稳定性的现有自动电压调节器级联实施的。通过提供实验结果来比较所提议策略的有效性,该实验结果比较了在大型电厂中部署该策略之前和之后的无功负载分布。

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