DocumentCode :
112579
Title :
A Scalable Data-Driven Monitoring Approach for Distribution Systems
Author :
Ferdowsi, Mohsen ; Benigni, Andrea ; Lowen, Artur ; Zargar, Behzad ; Monti, Antonello ; Ponci, Ferdinanda
Author_Institution :
Inst. for Autom. of Complex Power Syst., RWTH Aachen Univ., Aachen, Germany
Volume :
64
Issue :
5
fYear :
2015
fDate :
May-15
Firstpage :
1300
Lastpage :
1313
Abstract :
This paper introduces a new data-driven bottom-up monitoring approach for distribution systems. In this approach, local estimations of the subsections into which the system is split are performed independently, thus leading to a scalable architecture. The monitoring approach is focused only on the estimation of voltage magnitude rather than the complete state of the system. This reduces the measurement requirements significantly, thus addressing economical and technical concerns for existing systems, while staying open to accommodating further incremental improvements in the available data and data quality. The estimation of each section is realized via an artificial neural network (ANN), for which a set of parameterizations is available to cope with different operating conditions. The estimation convergence is achieved even with relatively few measurements, although accuracy varies depending on the available measurements. At the Medium Voltage (MV) level, where reconfiguration is common, a configuration identification unit chooses the right ANN, the one trained for the actual network configuration. The estimation process is computationally simple and can be executed on low-cost hardware, as demonstrated in this paper by the implementation on a BeagleBone Black board. To demonstrate the concept, a prototype and a laboratory setup have been developed. The experimental test results are presented both for an Low Voltage distribution system and an MV distribution system.
Keywords :
distribution networks; estimation theory; neural nets; BeagleBone Black board; artificial neural network; data-driven bottom-up monitoring; estimation convergence; estimation process; low voltage distribution system; medium voltage distribution system; Accuracy; Artificial neural networks; Current measurement; Estimation; Monitoring; Switches; Voltage measurement; Artificial neural networks (ANNs); hierarchical systems; power distribution; power system monitoring; state estimation; state estimation.;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2015.2398991
Filename :
7066896
Link To Document :
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