小弱集决定了电网中的大网络级联
Yang Yang1, Takashi Nishikawa2,3, Adilson E Motter1,3
1Department of Physics and Astronomy, Northwestern University, Evanston, IL 60208, USA.
概括
通过北美电网的新模型更好地了解复杂系统的级联故障. 一个小的中央网络集是脆弱的, 附近的故障会导致大布.
科学领域:
- 复杂系统分析
- 网络科学
- 电网工程
背景情况:
- 了解复杂系统中的级联故障是由于缺乏能够处理可变条件的现实的大规模建模而受到限制的.
- 连续性故障对电网等关键基础设施构成重大风险.
研究的目的:
- 在不同条件下识别和分析北美电网中容易发生连续故障的组件.
- 开发和展示适用于各种级联网络的脆弱性分析方法.
主要方法:
- 使用北美电网的大规模建模和分析.
- 识别,量化和分析容易发生级联故障的网络组件.
- 评估初始故障对级联启动和传播的影响.
主要成果:
- 一个小的,以拓为中心的网络组件被确定为易受连续故障的影响.
- 发现大级流是不成比例地更有可能从附近的故障启动.
- 该研究量化了不同条件下的特定网络组件的脆弱性.
结论:
- 这些发现提供了对电网级联故障的起源和原因的关键见解.
- 已识别的脆弱网络组件对于改进电网设计和运营策略具有重要意义.
- 已证明的脆弱性分析方法可以转移到其他复杂的,容易级的系统中.
相关概念视频
Zones of Protection
830
In power systems, the entire setup is divided into protective zones to isolate faults and protect the rest of the network. These zones include generators, transformers, buses, transmission lines, distribution lines, and motors. Each zone can be visualized as a separate room in a house, with each room protected by its own circuit breaker.
Protective zones are defined by closed dashed lines, containing one or more components. A key characteristic of these zones is the strategic placement of...
Protective zones are defined by closed dashed lines, containing one or more components. A key characteristic of these zones is the strategic placement of...
830
The Power Flow Problem and Solution
893
Power flow problem analysis is fundamental for determining real and reactive power flows in network components, such as transmission lines, transformers, and loads. The power system's single-line diagram provides data on the bus, transmission line, and transformer. Each bus k in the system is characterized by four key variables: voltage magnitude Vk, phase angle δk, real power Pk, and reactive power Qk. Two of these four variables are inputs, while the power flow program computes...
893
Fast Decoupled and DC Powerflow
776
The fast decoupled power flow method addresses contingencies in power system operations, such as generator outages or transmission line failures. This method provides quick power flow solutions, essential for real-time system adjustments. Fast decoupled power flow algorithms simplify the Jacobian matrix by neglecting certain elements, leading to two sets of decoupled equations:
776
Power System Three-Phase Short Circuits
585
Determining the subtransient fault current in a power system involves representing transformers by their leakage reactances, transmission lines by their equivalent series reactances, and synchronous machines as constant voltage sources behind their subtransient reactances. In this analysis, certain elements are excluded, such as winding resistances, series resistances, shunt admittances, delta-Y phase shifts, armature resistance, saturation, saliency, non-rotating impedance loads, and small...
585
Multimachine Stability
587
Multimachine stability analysis is crucial for understanding the dynamics and stability of power systems with multiple synchronous machines. The objective is to solve the swing equations for a network of M machines connected to an N-bus power system.
In analyzing the system, the nodal equations represent the relationship between bus voltages, machine voltages, and machine currents. The nodal equation is given by:
In analyzing the system, the nodal equations represent the relationship between bus voltages, machine voltages, and machine currents. The nodal equation is given by:
587
Control of Power Flow
703
There are several methods to control power flow in power systems:
703


