학술논문

Quantifying Interference in WiLD Networks using Topography Data and Realistic Antenna Patterns
Document Type
Conference
Source
2019 IEEE Wireless Communications and Networking Conference (WCNC) Wireless Communications and Networking Conference (WCNC), 2019 IEEE. :1-6 Apr, 2019
Subject
Communication, Networking and Broadcast Technologies
Interference
Mathematical model
Wireless fidelity
Antennas
Data models
Surfaces
Topology
Directional antennas
802.11
Wi-Fi
Simulation
Measurement
Language
ISSN
1558-2612
Abstract
Avoiding possible interference is a key aspect to maximize the performance in Wi-Fi based Long Distance networks. In this paper we quantify self-induced interference based on data derived from our testbed and match the findings against simulations. By enhancing current simulation models with two key elements we significantly reduce the deviation between testbed and simulation: the usage of detailed antenna patterns compared to the cone model and propagation modeling enhanced by license-free topography data. Based on the gathered data we discuss several possible optimization approaches such as physical separation of local radios, tuning the sensitivity of the transmitter and using centralized compared to distributed channel assignment algorithms. While our testbed is based on 5 GHz Wi-Fi, we briefly discuss the possible impact of our results to other frequency bands.