搜索资源列表
IEEE
- ieee 标准测试系统原始数据--14 30 57 118节点-ieee standard test system, the raw data 14 30 57 118
power-flow
- 电网内的多个风电场风速往往因为其地理位置的远近而有着不同程度的相关性,采用Nataf 逆变换技术即可建立不同风电场之间具有相关性的风速分布样本空间,进而得到具有相关性的风 电场出力。在仿真过程中考虑风速的不确定性,将每个风电场出力视为一个负的满足威布尔随机 分布的负荷,根据历史数据,用方差—协方差矩阵描述不同风电场相关系数,建立最优潮流模型。 最后,在风电接入改进IEEE 30及IEEE 118节点系统中应用蒙特卡洛仿真计算,定量研究随着风 电场之间相关性的增强,最优潮流结果
matlab
- MATLAB implementation of compressive sensing example as described in R. Baraniuk, Compressive Sensing, IEEE Signal Processing Magazine, [118], July 2007.-MATLAB implementation of compressive sensing example as described in R. Baraniuk, Comp
IEEE_118buses
- the IEEE Bus systems built in pscad software , the included model is 118 ieee buses test system. IEEE bus systems are used by researchers to implement new ideas and concepts. This technical note describes the details of the IEEE 118-bus system. The s
IEEE4,14,30,57,118,300
- 包含多IEEE标准系统的潮流计算程序,采用牛顿拉夫逊法,文件包括六个典型算例以及五个m文件(Power flow calculation program containing multi IEEE standard system)
Partitioning
- 利用Kernel Kmeans对IEEE118节点电网进行分区(Based on Kernel Kmeans, partition the IEEE118 bus power grid)
IEEE 118 Bus_modified
- IEEE 118 Bus System - DIgSILENT
IEEE 118 bus system
- IEEE 118 bus system designed in PSCAD
