Measurement-Based Dynamic Load Modeling Using the Vector Fitting Technique

Eleftherios O. Kontis, Theofilos A. Papadopoulos, Andreas I. Chrysochos, Grigoris K. Papagiannis

IEEE Transactions on Power Systems · 2017 · 87 citations · 39 references

Concepts

Abstract

Accurate load modeling is essential for power system stability analysis and control. This topic has regained interest, due to the high penetration of new types of loads and the increased availability of measurements in extended power grids. In this paper, an aggregated load model based on measurement data is formulated for dynamic simulations of large power systems. The proposed model employs variable-order transfer functions, enabling the accurate simulation of complex load dynamics. A complete methodology for the automatic derivation of the minimum-required model order is proposed with the model parameters calculated via a robust multisignal identification procedure. For this purpose, the vector fitting method is introduced as a technique for measurement-based load modeling. Several simulations are performed using the NEPLAN software to investigate the accuracy and the generalization capabilities of the proposed model. The model performance is thoroughly compared with other conventional load models, also using measurements recorded on a laboratory-scale microgrid.

References

39