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相关概念视频

Pilot and Numeric Relaying01:21

Pilot and Numeric Relaying

135
Pilot relaying is a type of differential protection used in power systems. It compares electrical quantities at the terminals of equipment via a communication channel instead of direct relay interconnection. This method is essential for transmission lines where the terminals are far apart, typically up to 80 km for lines with 69 to 115 kV ratings. Four types of communication channels are used for pilot relaying:
135
Differential Relays01:20

Differential Relays

262
Differential relays are used to protect generators, buses, and transformers by comparing electrical quantities at different points. When a fault occurs, the difference in current between the two points triggers the relay to operate, opening the circuit breaker. Under normal conditions, the current entering (i1) and leaving (i2) a generator are equal. When a fault occurs, however, these currents become unequal, and the difference current flows in the relay operating coil, causing the relay to...
262
Reclosers and Fuses01:26

Reclosers and Fuses

163
Automatic circuit reclosers enhance the protection of distribution circuits by interrupting and auto-reclosing an AC circuit according to a preset sequence. They effectively manage temporary faults on overhead distribution lines, often caused by tree limbs or wildlife, by briefly disrupting service to improve overall reliability. However, contact with reclosers or energized broken conductors on the ground can pose serious hazards.
A comprehensive protection scheme for radial distribution...
163
Directional Relays01:25

Directional Relays

197
Directional relays, essential for managing unidirectional fault currents, enhance the safety and efficiency of power systems. On power lines equipped with directional relays, faults downstream (to the right) of the current transformer typically cause the fault current to lag the bus voltage by approximately 90 degrees, known as the forward direction. In contrast, upstream (left-side) faults may result in the fault current leading the bus voltage by nearly 90 degrees, termed the reverse...
197
Line Protection with Impedance Relays01:27

Line Protection with Impedance Relays

135
Coordinating time-delay overcurrent relays in complex radial systems and directional overcurrent relays in multi-source transmission loops can be challenging. Impedance relays address these issues by responding to the voltage-to-current ratio, specifically measuring the apparent impedance of a line. These relays become more sensitive during faults as current increases and voltage decreases, thereby reducing the apparent impedance.
Under normal conditions, low load currents keep the measured...
135
Overcurrent Relays01:26

Overcurrent Relays

166
Overcurrent relays, crucial for circuit protection, are connected to the secondary current of a current transformer. There are two primary types of overcurrent relays: instantaneous and time-delay.
Instantaneous overcurrent relays activate immediately when the input current exceeds a predetermined value, known as the pickup current, instantly energizing the circuit breaker trip coil. This rapid response is vital for addressing severe faults quickly.
Time-delay overcurrent relays, on the other...
166

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相关实验视频

Updated: Sep 13, 2025

Large Scale Energy Efficient Sensor Network Routing Using a Quantum Processor Unit
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一个基于模糊的继电器安全算法,用于无线传感器网络.

Nan-I Wu1, Tung-Huang Feng2, Min-Shiang Hwang2,3

  • 1Department of Information Management, Lunghwa University of Science and Technology, Taoyuan 33306, Taiwan.

Sensors (Basel, Switzerland)
|July 30, 2025
PubMed
概括

这项研究引入了无线传感器网络的新型安全选择机制. 该算法减少了数据包的再传输,通过隔离恶意节点来提高网络安全性和寿命.

关键词:
模糊关系规则 模糊关系规则继电器选择算法 继电器选择算法禁忌算法 禁忌算法无线传感器网络是一个无线传感器网络.

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科学领域:

  • 计算机科学 计算机科学
  • 网络工程 网络工程
  • 数据科学数据科学数据科学

背景情况:

  • 无线传感器网络 (WSN) 产生了对分析至关重要的大数据.
  • 继电器选择算法优化了资源使用和网络寿命.
  • 现有的模糊推理系统在相同的输出值下扎,导致效率低下.

研究的目的:

  • 为WSNs提出一个新的中继选择机制.
  • 为了解决当前方法的低效性,当模糊系统产生相同的输出时.
  • 加强网络安全并延长运营寿命.

主要方法:

  • 开发一种禁忌安全选择机制算法.
  • 将该机制集成到用于继电器选择的模糊推理系统中.
  • 专注于降低数据包转发的概率.

主要成果:

  • 拟议的算法有效地减少了数据包的再传输.
  • 它成功地隔离了网络中的破坏性或恶意节点.
  • 在整体网络安全和寿命方面有明显的改善.

结论:

  • 禁用安全选择机制为WSN中继选择提供了一个强大的解决方案.
  • 这种方法显著提高了网络安全性,并延长了其运行寿命.
  • 它为相同的模糊输出提供了比随机或排序方法更有效的替代方案.