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Application of kinetic energy storage systems to power systems operation.

机译:动能存储系统在电力系统运行中的应用。

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This thesis analyzes some potential applications of kinetic energy (KE) storage systems in power systems operation. The goal was to take advantage of the KE stored in the existing rotating machines in a power system such as synchronous generators and motors by "borrowing" some of the stored KE when electricity prices are high and "returning" this energy to the rotating masses when the prices are down. As shown in this thesis, this operation can be performed from the control center by optimally scheduling the set points of the generators under automatic generation control (AGC) over a given time horizon. This coordination of KE was also tested with other types of rotating machines, namely synchronous and asynchronous flywheels.; The specific impact of this optimum coordination of KE storage has been tested from the perspective of power systems economics and security by investigating the method's potential to reduce the marginal price of electricity and to alleviate network congestion. In addition, this thesis examines the potential of KE storage systems to produce fast (10-30 second) reserve to be used during primary frequency regulation following the forced outage of a generating unit.
机译:本文分析了动能(KE)存储系统在电力系统运行中的一些潜在应用。目的是通过在电价高时“借入”一些存储的KE,并在当电价高时将其“返还”到旋转的质量中,从而利用存储在电力系统中现有旋转机械中的KE,例如同步发电机和电动机。价格下降了。如本论文所示,可以通过在给定的时间范围内在自动发电控制(AGC)下优化调度发电机的设定点,从控制中心执行此操作。 KE的这种协调性也已用其他类型的旋转机械(即同步和异步飞轮)进行了测试。通过研究该方法降低电力边际电价和缓解网络拥堵的潜力,已从电力系统的经济性和安全性角度测试了这种KE存储最佳协调的特定影响。另外,本文研究了KE存储系统产生快速(10-30秒)储备的潜力,该储备将在发电机组被迫中断后在一次频率调节期间使用。

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