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Island Operations of Parallel Synchronous Generators - Simulators Case Study for Large Power Plants

机译:并联同步发电机的孤岛运行 - 大型发电厂的模拟器案例研究

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Abstract: While increasing integration of renewable energy sources (RES), which are unregulated and difficult to predict, a large system of nuclear power plants must provide balancing peaks in the production of renewable energy. It is also important to simulate the rapid changes in the power of individual NPP units, and for these regimes to train operators of nuclear units. Therefore the paper is aimed to Island Operations of More Parallel Electric Synchronous Generators Connected to One Substation of Power Grid. For the control of rapid and poorly predicted power peaks / deviations it is also necessary to use large Nuclear Power Plants. These control requirements are not yet required to NPP and therefore NPP Simulators can not be used for these purposes. Firstly, there are described the results of the Case Study: Engineering and Training Simulators for Large Conventional and Nuclear Power Plants. Initially there are presented the simulations of different island operations of power plant turbine generators connected to one substation into the power grid on the example of the Power and Heating Plant with six parallel operating synchronous generators. Generally the Power/Performance K-Factor (KF) are defined for the TD Systems. K-Factor characterizes the electrical properties of the systems. On the simulator the instructor chosen size distribution system (i.e., KF) in which generators are electrically connected. For different island operations (whose electrical "hardness" depends on the size of KF) will be shown the results of the simulations on the Dispatcher Training Simulator (DTS) used for the training of parallel operations of two or more power turbine generators / blocks. The simulation models are created in MATLAB - SIMULINK. Secondly, a similar multi-block island mode will be also analyzed for a large Nuclear Power Plants.
机译:摘要: 在增加可再生能源(RES)的整合的同时,可再生能源(RES)不受监管且难以预测,大型核电站系统必须为可再生能源的生产提供平衡的峰值。模拟单个核电厂机组功率的快速变化以及这些制度培训核电机组操作员也很重要。因此,本文旨在研究连接到电网变电站的更多并联同步发电机的孤岛运行。为了控制快速和预测不良的功率峰值/偏差,还需要使用大型核电站。NPP还不需要这些控制要求,因此NPP模拟器不能用于这些目的。首先,描述了案例研究的结果:大型常规和核电站的工程和培训模拟器。首先,以具有六个并联运行同步发电机的发电厂和供热厂为例,介绍了连接到一个变电站并入电网的发电厂涡轮发电机的不同孤岛运行的模拟。通常,功率/性能 K 因子 (KF) 是为 T&D 系统定义的。K因子表征系统的电气特性。在模拟器上,讲师选择了发电机电气连接的尺寸分配系统(即 KF)。对于不同的岛屿操作(其电气“硬度”取决于 KF 的大小)将显示调度员训练模拟器 (DTS) 上的模拟结果,该模拟器用于训练两个或多个动力涡轮发电机/块的并联操作。仿真模型是在 MATLAB - SIMULINK 中创建的。其次,还将分析大型核电站的类似多块岛模式。

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    《ifac papersonline》 |2016年第27期|164-169|共6页
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    P. Neuman;

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  • 正文语种 英语
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