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Static Voltage Stability Margin Calculation and Characteristics of Very Large Urban Power Grid

机译:大型城市电网的静态电压稳定裕度计算和特性

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With the large-capacity DC transmission and various types of power electronic equipment widely used in power systems, the voltage stability problem has once again been closely watched. Voltage stability can be divided into static, transient and dynamic stability. The static voltage stability accident, Generally speaking, the grid load is slowly increased, causing the load terminal bus voltage to slowly drop. Near the critical value, any small disturbance will cause an irreversible sudden drop in the load bus voltage, this is a voltage collapse. The article first analyzes the static voltage stability margin index and related technical standards. Comparative analysis of several static voltage stability margin calculation methods. Second, take the planning grid of a very large city as an example. Using PSS/E software to simulate the static voltage stability margin of the system under various conditions. Analysis of the static voltage stability margin characteristics of the urban power grid. And the reactive power compensation optimization scheme is proposed for the weak voltage link.
机译:随着大容量直流输电和电力系统中广泛使用的各种类型的电力电子设备,电压稳定性问题再次受到密切关注。电压稳定性可分为静态,瞬态和动态稳定性。静态电压稳定事故,通常来说,电网负载缓慢增加,导致负载端子总线电压缓慢下降。接近临界值时,任何小的干扰都将导致负载总线电压不可逆转的突然下降,这就是电压崩溃。本文首先分析了静态电压稳定裕度指标及相关技术标准。几种静态电压稳定裕度计算方法的比较分析。其次,以一个非常大的城市的规划网格为例。使用PSS / E软件模拟各种条件下系统的静态电压稳定裕度。城市电网静态电压稳定裕度特性分析。针对弱电压环节,提出了无功补偿优化方案。

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