A deterministic frequency-domain model for the indoor power line transfer function
- 5 July 2006
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Journal on Selected Areas in Communications
- Vol. 24 (7) , 1304-1316
- https://doi.org/10.1109/jsac.2006.874428
Abstract
The characterization of the transfer function of the power line (PL) channel is a nontrivial task that requires a truly interdisciplinary approach. Until recently, a common attribute and limitation of existing models for the PL channel transfer function lay in the phenomenological or statistical approach usually followed. This approach allows one to describe the channel only partially, e.g., as dominated by multipath-like effects, and prevents one from unveiling special properties of it. Multiconductor transmission line (MTL) theory was recently found by the authors to be a useful and accurate tool in modeling the PL transfer function while, at the same time, taking into account the wiring and grounding practices mandated by several regulatory bodies for commercial and residential premises. Crossing several layers of abstraction and following a bottom-up approach, complex circuit-level models originating from MTL theory can be manipulated and represented in terms of cascaded two-port networks (2PNs), thus allowing one to compute a priori and in a deterministic fashion the transfer function of any PL link. In the present contribution, we present additional analysis and data that validate the accuracy of the MTL approach and further justify its use in the PL channel context. Moreover, we also describe in detail the methodology to follow for modeling both grounded and ungrounded PL links in a unified framework. A consequence of the validity of the proposed modeling is that it can facilitate the process of standardization of the PL transfer function, an important step toward the availability of a commonly agreed upon (set of) channel transfer functions.Keywords
This publication has 13 references indexed in Scilit:
- A Novel Approach to the Modeling of the Indoor Power Line Channel—Part II: Transfer Function and Its PropertiesIEEE Transactions on Power Delivery, 2005
- A Novel Approach to the Modeling of the Indoor Power Line Channel Part I: Circuit Analysis and Companion ModelIEEE Transactions on Power Delivery, 2005
- Modeling of Transfer Characteristics for the Broadband Power Line Communication ChannelIEEE Transactions on Power Delivery, 2004
- Analysis of Reflection of Signal Transmitted in Low-Voltage Powerline With Complex WaveletIEEE Transactions on Power Delivery, 2004
- Coding and modulation for a horrible channelIEEE Communications Magazine, 2003
- Broadband is power: internet access through the power line networkIEEE Communications Magazine, 2003
- In‐building power lines as high‐speed communication channels: channel characterization and a test channel ensembleInternational Journal of Communication Systems, 2003
- Power line local area networkingIEEE Communications Magazine, 2003
- A multipath model for the powerline channelIEEE Transactions on Communications, 2002
- A SPICE model for multiconductor transmission lines excited by an incident electromagnetic fieldIEEE Transactions on Electromagnetic Compatibility, 1994