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首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >Optimal Coordination of Overcurrent Relays Using Mixed Integer Linear Programming
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Optimal Coordination of Overcurrent Relays Using Mixed Integer Linear Programming

机译:基于混合整数线性规划的过流继电器最优协调

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In distribution systems, the coordination and selectivity of protections are essential for improving reliability and security indicators. In these systems, the overcurrent relays are widely used. During a fault, the heat dissipation is high. Therefore, it is important that the relays act quickly. The problem of coordination is linear, since their pickup currents are known. In this paper, a methodology for an optimal coordination of non-directional overcurrent relays, in radial systems using MILP (Mixed-Integer Linear Programming) is proposed. Its main objective is getting the TDSs (Time Dial Setting) to minimize the operating times of relays, keeping the selectivity. Discrete values of TDS were considered. Thus, the problem becomes discrete and can be solved through MILP. For each relay were considered a range of possible fault currents levels. The proposed methodology was applied successfully in a radial test-system containing five relays.
机译:在配电系统中,保护的协调性和选择性对于提高可靠性和安全性指标至关重要。在这些系统中,过电流继电器被广泛使用。在故障期间,散热很高。因此,继电器必须迅速动作。协调问题是线性的,因为已知它们的拾取电流。本文提出了一种在径向系统中使用MILP(混合整数线性规划)的无方向过流继电器的最佳协调方法。其主要目的是获得TDS(时间拨号设置),以最大程度地减少继电器的工作时间,并保持选择性。 TDS的离散值被考虑。因此,问题变得离散,可以通过MILP解决。对于每个继电器,都考虑了可能的故障电流水平范围。所提出的方法已成功应用于包含五个继电器的径向测试系统中。

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