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Steady-State Stability of Industrial Distributed Generation Sources in Terms of Optimization of Their Active and Reactive Power Loading

机译:从有功功率和无功功率优化的角度看工业分布式发电源的稳态稳定性

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One of the main requirements for industrial sources of distributed generation in normal condition is their optimal operation. The optimization criteria are determined by the operating conditions of the plant including the availability of waste energy and natural sources of fuel. Another requirement for power sources is the preservation of a given stock of static stability for active power. In the implementation of optimization measures, constantly changing load on generators active and reactive power that entails a change in maximum electromagnetic power of the machine. This article describes the algorithm of limitations on the static stability of synchronous generators in determining the optimal active and reactive power of its own sources of distributed generation in the power supply system of the industrial enterprise of iron works. The stability analysis was carried out with the help of the original software by the example of an industrial power supply system of a complex configuration with its own power stations having primary engines of various kinds. Based on the results of the analysis of static stability of synchronous generators by the method of sequential weighting, it is concluded that optimal conditions are permissible under the condition of stable operation under different conditions of communication with the electric power system.
机译:正常情况下,分布式发电的工业来源的主要要求之一是其最佳运行。优化标准取决于工厂的运行条件,包括废物能源和天然燃料的可用性。对电源的另一个要求是为有功功率保留给定的静态稳定性。在实施优化措施时,不断改变发电机的有功功率和无功功率的负载,这将改变机器的最大电磁功率。本文介绍了在钢铁厂工业企业的供电系统中,同步发电机静态稳定性的局限性算法,用于确定其自身分布式电源的最优有功和无功功率。稳定性分析是在原始软件的帮助下,以一个复杂配置的工业电源系统为例的,该系统具有自己的具有多种主引擎的发电站。基于顺序加权法分析同步发电机静态稳定性的结果,得出在与电力系统通信的不同条件下稳定运行的条件下,最佳条件是允许的。

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