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相关概念视频

Fast Decoupled and DC Powerflow01:24

Fast Decoupled and DC Powerflow

139
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:
139
Distribution Reliability and Automation01:25

Distribution Reliability and Automation

94
Distribution reliability in electrical power systems is critical for ensuring an uninterrupted power supply to consumers at minimal cost. According to IEEE Standard Terms, reliability is the probability that a device will function without failure over a specified time period or amount of usage. For electric power distribution, this translates to maintaining continuous power supply and addressing customer concerns over power outages. Several indices, as defined by IEEE Standard 1366-2012, are...
94
Power System Distribution01:25

Power System Distribution

219
Power system distribution involves delivering electrical energy from power plants to consumers through a network of transmission and distribution systems. The process begins at power plants, where energy from coal, gas, nuclear, water, and wind is converted into electrical energy. These plants use three-phase generators, typically rated between 50 to 1300 MVA, with terminal voltages ranging from a few kV to 20 kV, depending on the size and age of the units.
The transmission system is designed...
219
The Power Flow Problem and Solution01:26

The Power Flow Problem and Solution

144
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...
144
Control of Power Flow01:30

Control of Power Flow

246
There are several methods to control power flow in power systems:
246
Primary Distribution01:28

Primary Distribution

84
Primary distribution systems deliver electrical power from substations to consumers through various voltage classes, with 15-kV class voltages being predominant among U.S. utilities. Older 2.5- and 5-kV classes are being replaced by 15-kV primaries, while higher 25- to 34.5-kV classes are used in high-density urban areas and rural regions with long feeders. Three-phase, four-wire multigrounded systems are widely employed for balanced power delivery, using the neutral wire as a grounding point.
84

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一种基于准对立的法医调查算法,用于优化分布式发电系统中的分布式发电位置和尺寸.

Binaya Kumar Malika1,2, Vivekananda Pattanaik3,2, Subhasis Panda2,4

  • 1Department of Electrical Engineering, Bhubaneswar Engineering College, Bhubaneswar, India.

Scientific reports
|May 12, 2025
PubMed
概括

一个新的准对立的基于法医调查 (QOFBI) 算法优化了分布式发电机 (DG) 的放置和大小. 这种方法显著减少了功率损耗,并改善了配电系统中的电压稳定性.

关键词:
活动功率损失 (APL)分布式生成 (DG) 是指分布式生成.配送系统规划 配送系统规划微电网就是一个微电网.多目标优化多目标优化几乎对立的基于法医学的调查 (QOFBI)电压偏差 (VD) 是指电压的偏差.电压稳定性指数 (VSI) 是电压稳定性的指数.

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科学领域:

  • 电气工程 电气工程
  • 电力系统工程 电力系统工程
  • 优化算法 优化算法

背景情况:

  • 分布式发电机 (DG) 的最佳位置和尺寸对于高效的辐射和微电网配电系统至关重要.
  • 关键的运营目标包括尽量减少实际功率损失,减少电压偏差,提高电压稳定性.

研究的目的:

  • 提出一种基于准对立的法医调查 (QOFBI) 的新算法,以优化总局的位置和大小.
  • 通过最大限度地减少功率损失和电压偏差,同时提高电压稳定性,解决配电系统的运行挑战.

主要方法:

  • 开发了一种基于法医学的准对立调查 (QOFBI) 算法,这是一个进化的元优化技术.
  • 采用基于权重因子的多目标配方与动态计算的最佳权重因子.
  • 在IEEE 33总线和IEEE 69总线分布系统上进行了广泛的模拟.

主要成果:

  • 与现有方法相比,QOFBI算法表现出卓越的性能,更快的融合和更低的复杂性.
  • 实现了94.44%的有效功率损耗显著减少.
  • 在各种操作场景和功率因子条件中验证了强大的性能.

结论:

  • QOFBI算法是现代配送系统中GD优化的一个非常有效的工具.
  • 拟议的方法提高了运营效率和系统可靠性.
  • 动态权重因子确保了多个目标的平衡优化方法.