Publication result detail

Comparison of multipath and two-port network modeling approaches for creating power line model

MLÝNEK, P.; KOUTNÝ, M.; MIŠUREC, J.

Original Title

Comparison of multipath and two-port network modeling approaches for creating power line model

English Title

Comparison of multipath and two-port network modeling approaches for creating power line model

Type

Paper in proceedings (conference paper)

Original Abstract

This paper brings an overview of two possible approaches for modeling power line. There is theoretically described multipath model and two-port network model and these models are compared with measurement. The comparison of modeling approaches is demonstrated too. And finally the hybrid model is described.

English abstract

This paper brings an overview of two possible approaches for modeling power line. There is theoretically described multipath model and two-port network model and these models are compared with measurement. The comparison of modeling approaches is demonstrated too. And finally the hybrid model is described.

Keywords

power line, multipath propagation, two-port network, comparison, measurement, hybrid model

Key words in English

power line, multipath propagation, two-port network, comparison, measurement, hybrid model

Authors

MLÝNEK, P.; KOUTNÝ, M.; MIŠUREC, J.

RIV year

2013

Released

17.10.2012

ISBN

978-1-61804-131-9

Book

Latest Trends in Circuits, Automatic Control and Signal Processing - Proceedings of the 3rd International conference on Circuits, Systems, Control, Signals

Pages from

95

Pages to

98

Pages count

4

BibTex

@inproceedings{BUT94574,
  author="Petr {Mlýnek} and Martin {Koutný} and Jiří {Mišurec}",
  title="Comparison of multipath and two-port network modeling approaches for creating power line model",
  booktitle="Latest Trends in Circuits, Automatic Control and Signal Processing - Proceedings of the 3rd International conference on Circuits, Systems, Control, Signals",
  year="2012",
  pages="95--98",
  isbn="978-1-61804-131-9"
}