Real-time simulation of a medium scale distribution network: Decoupling method for multi-CPU computation

Author(s):  
Alexandre Teninge ◽  
Yvon Besanger ◽  
Frederic Colas ◽  
Hicham Fakham ◽  
Xavier Guillaud
2014 ◽  
Vol 548-549 ◽  
pp. 1800-1803 ◽  
Author(s):  
Gen Yuan Zhang

Hydraulic simulation models of water pipe networks (WPN) are routinely used for operational investigations and network design purposes. However, their full potential is often never realized because in the majority of cases, they have been calibrated with data collected manually from the field during a single historic time period and reflects the network operational conditions that were prevalent at that time. They were then applied as part of a reactive investigation. An urban water distribution network real time simulation system based on EPANET system using OPC (object linking and Embedding for Process control) communication was built in this paper. In order to make real-time simulation of water distribution network, the real-time data was collected every 15 minutes, the real time data were received and sent into water distribution network simulation model by OPC communication of EPANET system. The real-time data included total head of reservoir, flow rate, pressure, pump operation information. The real-time simulation system can give timely warning of changes for normal network operation, providing capacity to minimize customer impact and comparing the simulation results with the real-time data collected. The real time simulation system of urban water pipe network solved the problem of data input and user interaction compare to traditional network model. It offers a way for the development of intelligent water network.


2014 ◽  
Vol 602-605 ◽  
pp. 2824-2827
Author(s):  
Wen Li Xu ◽  
Wei Bao ◽  
Ju Bo Wang ◽  
Pan Zhang

Puts forward a kind of new harmonic study bases on photovoltaic merged into the distribution network through real-time simulation method: Build a model and control model in RTDS real time simulation system, by adding LCL filter, optimizing of filter parameters, analyzing harmonics of the data. At last analyzes the experimental results by using harmonic analysis module in MATLAB.


1997 ◽  
Vol 21 (1-2) ◽  
pp. S1111-S1115
Author(s):  
P Lundstrøm

Sign in / Sign up

Export Citation Format

Share Document