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Description: observable distribution grid are investigated. A distribution
grid is observable if the state of the grid can be fully determined.
For the simulations, the modified 34-bus IEEE test feeder is used.
The measurements needed for the state estimation are generated
by the ladder iterative technique. Two methods for the state
estimation are analyzed: Weighted Least Squares and Extended
Kalman Filter. Both estimators try to find the most probable
state based on the available measurements. The result is that
the Kalman filter mostly needs less iterations and calculation
time. The disadvantage of the Kalman filter is that it needs some
foreknowlegde about the state.
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Size: 253952 |
Author: chowzaisun |
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Description: this a pscad file
-this is a pscad file
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Size: 414720 |
Author: fazel |
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Description: IEEE 34 bus system no wind-IEEE 34 bus system no wind
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Size: 26624 |
Author: hung |
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Description: IEEE 34 bus sytem with wind
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Size: 31744 |
Author: hung |
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Description: 优秀论文配套源码。分布式电源的接入使得配电系统从放射状无源网络变为分布有中小型电源的有源网络。带来了使单向流动的电流方向具有了不确定性等等问题,使得配电系统的控制和管理变得更加复杂。但同时,分布式电源又具有提高电网可靠性,绿色节能,等等优点,所以为更好的利用分布式电源为人类造福,我们必须对其进行研究与分析。
本文采取通过利用仿真软件Matlab编写计算潮流程序模拟分布式电源接入配电网的模型进行潮流计算的方法对分布式电源的稳态影响进行探索与分析。
选取了34节点的配电网网络模型,通过对单个以及多个分布式电源的接入位置以及容量的不同情况对34节点配电网的网损以及节点电压状况进行了分析。
-The distributed generation access to distribution system makes passive radial distribution network to active medium-sized power distribution network. It brings uncertainty to one-way direction power flow, etc., and it makes the control and management of the distribution system more complicated. Otherwise, it can bring a lot of benefits, such as more reliable, and it is green power. The distributed generation should be better known , so we can benefits more.
So the program called Matlab was used to compile a program to solve the power flow problem. By this program, we can text which factor can influence the distributed generation’s access to the distribution system.
The IEEE 34 Node model was chosen to be discussed how different factors can influence the power quality. This article analyzes distributed generation’s influence to the distribution system of energy lost and voltage level.
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Size: 520192 |
Author: NBB |
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Description: ieee 34 bus data to run in power flow studies
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Size: 2048 |
Author: salas2 |
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Description: PSCAD34个节点的电力系统仿真模型,含继电保护,供参考。--PSCAD34 node power system simulation models, including the relay, for reference.
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Size: 26624 |
Author: xueren |
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Description: A load flow solution based on Newton-Raphson method represented. The program has been tested on IEEE 34-bus power system.
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Size: 7168 |
Author: Farhad |
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Description: IEEE bus feeder 34 model for PSCAD SOFTWARE-IEEE bus feeder 34 model for PSCAD SOFTWARE....
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Size: 12288 |
Author: xxxddd |
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Description: IEEE 34 bus in PSCAD-IEEE 34 bus
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Size: 1150976 |
Author: jenson |
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Description: IEEE34-no-wind,是IEEE的34节点标准的模型。-IEEE34-no-wind, the IEEE 34 node standard model.
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Size: 160768 |
Author: 戚航 |
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Description: IEEEPES Meeting IEEE34 Bus PSCAD Modelling,IEEE 34节点的PSCAD建模仿真。-PSCAD modeling, IEEEPES Meeting IEEE34 Bus PSCAD Modelling, IEEE 34 node simulation.
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Size: 219136 |
Author: 戚航 |
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Description: Ieee 34 bus for power system BY PSCAD
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Size: 26624 |
Author: haran nadimi |
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Description: ieee 34 bus distribution system with two wind generator-ieee 34 bus distribution system with two wind generator
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Size: 38912 |
Author: behruz |
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Description: ieee 34 bus distribution system
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Size: 31744 |
Author: behruz |
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Description: it is a IEEE 34 bus system simulation in pscad file. the loads generators and lines are good fitting by data. it is easy for tun and i hope help you
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Size: 6144 |
Author: babak |
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Description: this is an example model for IEEE 34 bus system
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Size: 519168 |
Author: johnyDCA |
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Description: PSCAD is needed to run the simulation files.
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Size: 141312 |
Author: ARTHM |
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Description: 34 bus ieee design
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Size: 76800 |
Author: nima |
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Description: ieee 34 bus system on PSCAD
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Size: 618496 |
Author: qasim787 |
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