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Out-of-Step Protection Based on Equal Area Criterion

机译:基于均等面积准则的失步保护

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This paper proposes a novel self-tuning and response-based method for estimation of a single generator instability after large disturbances in multimachine power systems. The proposed method takes advantage of the equal-area criterion and least-squares method. The instability is determined by monitoring the cumulative acceleration and deceleration areas in the power–angle plane. These areas are continuously computed in order to determine whether or not the rotor angle reaches the unstable equilibrium point (UEP). A real-time curve-fitting algorithm based on the least-squares method is suggested to estimate the UEP. The generator rotor angle is calculated readily using three-phase voltages and currents taken at the generator terminal, and no further information such as fault clearing instant is required. The algorithm is independent upon changes in network parameters and only needs locally measured quantities. Self-tuning and response-based operation are the main advantages of the proposed algorithm over the other existing algorithms. The performance of the proposed algorithm and its independence from the network configuration are successfully validated and compared with that of impedance-based out-of-step protection relays.
机译:本文提出了一种基于自整定和响应的新颖方法,用于估计多机电力系统中的大干扰后的单台发电机不稳定性。所提出的方法利用了等面积准则和最小二乘法。通过监视功率角平面中的累积加速和减速区域来确定不稳定性。连续计算这些面积,以确定转子角度是否达到不稳定平衡点(UEP)。提出了一种基于最小二乘法的实时曲线拟合算法来估计UEP。发电机转子角使用发电机端子上的三相电压和电流即可轻松计算出,不需要其他信息(例如,清除故障瞬间)。该算法与网络参数的变化无关,并且仅需要本地测量的数量。自整定和基于响应的操作是该算法相对于其他现有算法的主要优点。该算法的性能及其与网络配置的独立性已得到成功验证,并与基于阻抗的失步保护继电器进行了比较。

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