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Isochronous load sharing principles for an islanded system with steam and gas turbine generators

机译:具有蒸汽和燃气轮机发电机的孤岛系统的等时负荷均分原理

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A liquefied natural gas facility in the United States is being expanded to allow liquefaction of natural gas and export of liquefied natural gas while keeping intact the existing import facilities. This means adding more loads and steam-based generation to the existing gas turbine generator portfolio. The upgraded system will feature six gas turbine generators and two steam turbine generators in an islanded plant with no grid connection. This paper reveals the fundamentals of how the plant performs isochronous load sharing in an islanded power system with various makes and sizes of generators (steam and gas turbines). The paper details the decentralized generation control system interface methodology with automatic speed governors and voltage regulators. It also presents some topics that are crucial for industrial power systems, especially in islanded configurations, as well as the transient simulations performed in a controlled lab environment to analyze system stability and help finalize the generator modes of operation.
机译:美国的液化天然气设施正在扩建,以允许液化天然气和出口液化天然气,同时保持现有的进口设施完好无损。这意味着在现有的燃气轮发电机组中增加更多的负荷和基于蒸汽的发电。升级后的系统将在无电网的孤岛电厂中配备6台燃气轮机发电机和2台蒸汽轮机发电机。本文揭示了工厂如何在具有不同品牌和尺寸的发电机(蒸汽和燃气轮机)的孤岛电力系统中执行等时负荷分配的基本原理。本文详细介绍了带有自动调速器和电压调节器的分散式发电控制系统接口方法。它还提出了一些对工业电力系统至关重要的主题,尤其是在孤岛配置中,以及在受控实验室环境中进行的瞬态仿真,以分析系统稳定性并最终确定发电机的运行模式。

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