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New algorithm for the loss of excitation function

机译:励磁函数丢失的新算法

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摘要

Loss of field is one of the incidents that threats synchronous generators and power systems. After the excitation is lost, rotor current decays at a rate determined by the field circuit time constant. The internal generator voltage will decay at the same rate. Then the machine behaves as an asynchronous generator and draws a high quantity of reactive power from the network. The active power output will intensely oscillate and excessive current will traverse through stator windings. In this paper two protection methods are considered. The first one is based on conventional impedance method which consists of offset Mho relay for the fast detection of loss of field in synchronous generators. The second one is based on the measurement of the three phase reactive power output of the machine, and monitors the direction and magnitude of leading reactive power at the generator output terminal. It mainly aims to develop algorithms for the conventional impedance method and the reactive power method. The comparison of these two methods is also carried out to find out the method in which quick tripping results can be obtained. A two machine system is used in case studies and is modeled using MATLAB simulink.
机译:损失是威胁同步发电机和电力系统的事件之一。在激励丢失之后,转子电流以由场电路时间常数确定的速率衰减。内部发电机电压将以相同的速率衰减。然后,机器的行为作为异步发电机并从网络中汲取大量的无功功率。有源功率输出将强烈振荡,电流过大的电流将穿过定子绕组。在本文中,考虑了两种保护方法。第一个基于传统的阻抗方法,该阻抗方法包括偏移MHO继电器,用于快速检测同步发电机中的场的损失。第二个基于机器的三相无功功率输出的测量,并监视发电机输出端子处的前导电力的方向和大小。它主要旨在为传统阻抗方法和无功功率方法开发算法。还执行了这两种方法的比较,以找出可以获得快速跳闸结果的方法。在案例研究中使用两种机器系统,并使用MATLAB Simulink进行建模。

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