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The Optimization of Siemens Turbine Synchronization Strategy

机译:西门子汽轮机同步策略的优化

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摘要

The Siemens half speed turbine technology has been used in nuclear plants. When the turbine synchronizes to the grid at idling, the active power increases slowly. This will cause a reverse power generating to the unit or the generator low power at positive direction. And in synchronization to the grid with house load, the initial load has a large fluctuation. The power disturbance at synchronization will bring a transient shock to the unit, and it is no good for the coordination between reactor and turbine. This paper improves the strategy of synchronization for the Siemens turbine control system, modifies the match of speed setpoint and load setpoint in synchronization. The active power will leave 0 MW quickly at idling synchronization, and it can avoid the reverse power and low power at positive direction. The controller output won't have a step change in synchronization with the house load, so the active power will not fluctuate greatly. This optimized scheme can reduce the power disturbance effectively for the turbine of the nuclear plant in synchronization.
机译:西门子半速涡轮机技术已被用于核植物。当涡轮机同步到空转时的网格时,有功功率会缓慢增加。这将导致在正方向上产生对单元或发电机低功率的反向电力。并且与具有房屋负载的网格同步,初始负载有大波动。同步的电力干扰将对该单元带来瞬态震动,并且对于反应器和涡轮机之间的协调并不有利。本文提高了西门子汽轮机控制系统的同步策略,修改了同步速度设定点和负载设定点的匹配。有效电源将在空转同步时快速留出0 MW,并且可以避免正方向上的反向电源和低功率。控制器输出不会与房屋负载同步同步,因此有功功率不会大大波动。该优化方案可以在同步中为核电站的涡轮机有效地降低功率扰动。

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