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New M-robust algorithm for the calculation of the negative sequence current of a synchronous generator

机译:新的M鲁棒算法,用于计算同步发电机的负序电流

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摘要

A novel algorithm for the calculation of the negative sequence current of a synchronous generator is presented in this paper. The algorithm is based on the M-robust methodology of signal processing for the estimation of the rotor endangerment of a synchronous generator during unbalanced conditions. This paper, in light of state-of-the-art methods, presents a novel M-robust algorithm and its application in a system of synchronous generator protection. Under real operating conditions, in which a generator may be in the asymmetrical regime, it is possible that a rotor negative sequence current persists longer than it is allowed to. This current may lead to serious permanent damage to the rotor of the synchronous generator and catastrophic consequences for the synchronous generator, which is the most important component in the process of power generation. As a result, it is important to have algorithms and devices that can prevent operation in dangerous regimes to avoid both serious damage and high financial losses for power-generation utilities. Notably, regarding the unallowable rotor negative sequence current, unbalanced conditions caused by open-circuit faults are more critical than those caused by short-circuit faults because the negative sequence current is lower in the first case, and therefore, detection is more difficult, making it impossible to realise another efficient backup rotor protection function for these types of faults.
机译:提出了一种计算同步发电机负序电流的新算法。该算法基于信号处理的M-鲁棒方法,用于估计不平衡条件下同步发电机的转子危害。鉴于最新方法,本文提出了一种新颖的M-鲁棒算法及其在同步发电机保护系统中的应用。在发电机可能处于非对称状态的实际运行条件下,转子负序电流的持续时间可能会比允许的持续时间更长。该电流可能会严重损坏同步发电机的转子,并对同步发电机造成灾难性后果,而同步发电机是发电过程中最重要的组成部分。因此,重要的是要有能够防止在危险情况下运行的算法和设备,以避免对发电公司造成严重损害和高额财务损失。值得注意的是,对于不允许的转子负序电流,由开路故障引起的不平衡状况比由短路故障引起的不平衡状况更为严重,因为在第一种情况下负序电流较低,因此检测更加困难,从而使得对于这些类型的故障,不可能实现另一种有效的备用转子保护功能。

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