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A direct approach for distribution system load flow solutions

IEEE Transactions on Power Delivery · 2003 · Vol. 18(3) · pp. 882–887
Jen‐Hao Teng

Abstract

A direct approach for unbalanced three-phase distribution load flow solutions is proposed in this paper. The special topological characteristics of distribution networks have been fully utilized to make the direct solution possible. Two developed matrices-the bus-injection to branch-current matrix and the branch-current to bus-voltage matrix-and a simple matrix multiplication are used to obtain load flow solutions. Due to the distinctive solution techniques of the proposed method, the time-consuming LU decomposition and forward/backward substitution of the Jacobian matrix or Y admittance matrix required in the traditional load flow methods are no longer necessary. Therefore, the proposed method is robust and time-efficient. Test results demonstrate the validity of the proposed method. The proposed method shows great potential to be used in distribution automation applications.

Optimal Power Flow DistributionMicrogrid Control and OptimizationPower System Optimization and StabilityJacobian matrix and determinantAdmittance parametersAdmittanceMatrix (chemical analysis)Flow (mathematics)Control theory (sociology)Computer scienceVoltageMathematical optimizationMatrix decomposition
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References
Distribution system power flow analysis-a rigid approach
IEEE Transactions on Power Delivery · 1991 · 501 citations
A three-phase power flow method for real-time distribution system analysis
IEEE Transactions on Power Systems · 1995 · 858 citations
Radial distribution test feeders
IEEE Transactions on Power Systems · 1991 · 1,886 citations
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