Derivation of a fast, approximating 802.11p simulation model. Bieker, L., Krajzewicz, D., Röckl, M., & Capelle, H. In Intelligent Transport Systems Telecommunications (ITST2010), November, 2010.
Paper abstract bibtex 6 downloads This paper gives an overview of the development of a fast, approximating model of vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2X) communication. Large-scale traffic simulations need to be fast, and the lack of supporting this feature by common communication simulators makes the development of a new one necessary. In a vehicular system, packet error rate can be significant; hence models that consider error characteristics are desirable. Our work considers communication models that approximate the radio propagation characteristics in a realistic way without compromising simulation speed.
@inproceedings{Bieker2010,
author = {Laura Bieker and Daniel Krajzewicz and Matthias R\"ockl and Hans Capelle},
booktitle = {Intelligent Transport Systems Telecommunications (ITST2010)},
title = {Derivation of a fast, approximating 802.11p simulation model},
year = {2010},
month = {November},
abstract = {This paper gives an overview of the development of a fast, approximating
model of vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2X)
communication. Large-scale traffic simulations need to be fast, and
the lack of supporting this feature by common communication simulators
makes the development of a new one necessary. In a vehicular system,
packet error rate can be significant; hence models that consider
error characteristics are desirable. Our work considers communication
models that approximate the radio propagation characteristics in
a realistic way without compromising simulation speed.},
groups = {used, Pre-Drive C2X, communication models, own (DLR), TS, IMEC, assigned2groups},
keywords = {V2X communication, Traffic simulation, Radio Propagation, Packet Error Rate},
owner = {Daniel},
timestamp = {2011.12.02},
url = {http://elib.dlr.de/66094/}
}
Downloads: 6
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