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相关概念视频

Power System Three-Phase Short Circuits01:21

Power System Three-Phase Short Circuits

149
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...
149
Three-Phase Short Circuit—Unloaded Synchronous Machine01:21

Three-Phase Short Circuit—Unloaded Synchronous Machine

235
Conducting a three-phase short circuit test on an unloaded synchronous machine helps understand its impact on the system. The AC fault current's oscillogram, with the DC offset removed, reveals that the waveform amplitude decreases from an initially high value to a steady-state level for one phase of the machine.
This behavior occurs due to the magnetic flux produced by the short-circuit armature currents. Initially, these currents follow high-reluctance paths but eventually shift to...
235
Bus Impedance Matrix01:24

Bus Impedance Matrix

175
Calculating subtransient fault currents for three-phase faults in an N-bus power system involves using the positive-sequence network. When a three-phase short circuit occurs at a specific bus, the analysis uses the superposition method to evaluate two separate circuits.
In the first circuit, all machine voltage sources are short-circuited, leaving only the prefault voltage source at the fault location. The positive-sequence bus impedance matrix can be determined by solving the nodal equations,...
175
Series R—L Circuit Transients01:22

Series R—L Circuit Transients

152
In a series resistor-inductor (R-L) circuit, closing the switch at the start of the time period simulates a three-phase short circuit, a fault condition where all three phases of an unloaded synchronous machine are short-circuited. When there is no fault impedance and no initial current, the initial voltage is determined by the phase angle of the source voltage.
Using Kirchhoff's Voltage Law (KVL) to analyze this circuit helps determine the total asymmetrical fault current, which consists...
152
Circuit Breaker and Fuse Selection01:23

Circuit Breaker and Fuse Selection

146
A circuit breaker is a device engineered to interrupt fault currents and sometimes reclose automatically. When a fault current is detected, the breaker separates the electrical contacts, which generates an arc. This arc is extinguished by methods such as elongation, cooling, or splitting, depending on the breaker's design. Breakers are categorized based on the voltage they operate at and the medium used for arc extinction, such as air, oil, SF6 gas, or vacuum.
In high-voltage systems,...
146
Fault Types01:18

Fault Types

127
When analyzing a single line-to-ground fault from phase A to ground at a three-phase bus, it is important to consider the fault impedance. This impedance is zero for a bolted fault, equal to the arc impedance for an arcing fault, and represents the total fault impedance for a transmission-line insulator flashover. To derive sequence and phase currents, fault conditions are translated from the phase domain to the sequence domain.
For line-to-line faults occurring between phases B and C, the...
127

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相关实验视频

Updated: Sep 11, 2025

Author Spotlight: Simulation and Analysis of the Temperature Rise of Ring Main Unit Equipment
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Author Spotlight: Simulation and Analysis of the Temperature Rise of Ring Main Unit Equipment

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使用短路电流测量计算故障电流模型参数的智能技术.

R A Mahmoud1, O P Malik2, W M Fayek3

  • 1Misr University for Science and Technology (MUST), College of Engineering Science & Technology, Department of Electrical Power and Machines Engineering (PME), 6th of October City, Giza, Egypt. ragab.mahmoud@must.edu.eg.

Scientific reports
|August 11, 2025
PubMed
概括

一个新的策略准确地估计了电力系统保护和自动化故障电流模型参数. 这种方法提高了关键功能的可靠性和速度,例如故障位置和继电器设置.

关键词:
CT 和度 CT 和度衰变时间常数的时间常数.缺陷电流模型的模型断层开始角度的断层开始角度故障定位器的故障定位器故障记录仪的故障记录仪动力系统的角度是什么?

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科学领域:

  • 电气工程 电气工程
  • 电力系统分析 分析 分析

背景情况:

  • 精确的故障电流模型参数对于电力系统保护和自动化至关重要.
  • 准确的参数对于保护继电器设置,故障检测,CT和补偿和故障中断控制至关重要.

研究的目的:

  • 通过使用短路电流数据来计算故障电流模型参数的新策略.
  • 在数字保护继电器,故障定位器和CT补偿器中实现多种功能的高效实现.

主要方法:

  • 使用短路电流数据来估计故障开始角度,衰变时间常数,电源系统角度和最大对称的交流故障电流.
  • 采用差异概念用于精确的数学公式来评估故障电流模型参数.
  • 模拟使用ATP的电力系统,并在MATLAB©中处理算法进行验证.

主要成果:

  • 开发的方法证明了高可行性,可靠性,准确性和速度在估计故障电流参数.
  • 该算法显示了对系统参数变化的稳定性,并且对不同的故障和操作条件具有免疫力.
  • 该方法可以通过精确的故障电流模型参数计算,在电力系统中实现多个计算机应用.

结论:

  • 拟议的策略提供了一种可靠和准确的方法来估计故障电流参数.
  • 这种方法是多功能,适用于离线或实时,在各种系统条件下强大.
  • 精确的故障电流参数可提高电力系统保护和自动化应用中的性能.