IEEE 802.11p Transmission Using GNURadio
نویسندگان
چکیده
In this work we present an implementation of a fully functional IEEE 802.11p transmitter in software-defined radio. We describe the rapid-prototyping methodology that was used to implement the frame-encoder within the open-source GNU Software Radio (GNURadio) platform [1]. The encoder generates OFDM frames in digital complex base-band representation and uses the USRP2 [2] as digital-to-analog front-end for up-conversion and final transmission. Since the actual encoding process involves a large number of complex steps we split the development approach into three sequential stages. First, a reference-encoder in a high-level language (MATLAB) is derived from the IEEE standard documents. Second, the individual blocks of the MATLAB encoding chain are progressively ported to GNURadio, cross-checking with the reference after each step. Finally, standard compliance is verified by conducting comparative over-the-air measurements with an early prototype of a commercial 11p transceiver. Initial measurement results indicate that the fidelity of the resulting GNURadio implementation is on par with non-software-defined radio industry solutions and capable of generating truly standard-compliant OFDM frames. The encoder presented here has been released under GPLv3 and is also capable of encoding frames according to the 11a and 11g amendments, thus making it a valuable building block for upcoming software-defined radio projects.
منابع مشابه
Performance Evaluation of Multiple-Antenna IEEE 802.11p Transceivers Using an FPGA-based MIMO Vehicular Channel Emulator
The IEEE 802.11p standard has been optimized for low-delay small-bandwidth wireless communications to provide vehicular safety services. However, IEEE 802.11p transceivers can considerably improve their robustness by incorporating MIMO transmission methods. Moreover, multiple antennas can also be used to increase the data transfer rate of IEEE 802.11p transceivers, a requirement necessary to im...
متن کاملEffects of Transmission Queue Size, Buffer and Scheduling Mechanisms on the IEEE 802.11p Beaconing Performance
The IEEE 802.11p Wireless Access in Vehicular Environment (WAVE) protocol is specified to be used in a Vehicular Ad-Hoc Network, or VANET. This paper provides an analysis of the 802.11p performance when used for the exchange of beacons. Beacons are used to enable vehicles to establish a cooperative awareness from which many vehicular applications can draw their inputs. In particular, this paper...
متن کاملVehicular Grouping Access Strategy for Supporting Raodway Planning in IEEE 802.11p Wireless Vehicular Networks
Wireless access vehicle environment (WAVE) architecture of intelligent transportation system has been standardized in IEEE 802.11p standard and it is going to be widely deployed in many roadway environments in order to provide convenient services. However, the IEEE 802.11p contention-based medium access control protocol would significantly downgrade transmission efficiency between road side uni...
متن کاملOpen Source Software-Defined Radio: A survey on GNUradio and its applications
This report analyzes the feasibility of using a Software Defined Radio solution for research purposes. We focused on the open source GNUradio project and studied its suitability for reproducing and analyzing some widespread wireless protocols, such as IEEE 802.11, Bluetooth, IEEE 802.15.4, and GSM. We found that the use of GNUradio with the Universal Software Radio Peripheral can help researche...
متن کاملVehicular Ad-hoc Networks
Modern day’s vehicles require advanced communication system on board to enable passengers benefit the most from available services. IEEE 802.11p is the new extension of IEEE 802.11 standards; especially proposed for the high vehicular environment. The WAVE documentation represents enhancements to the Media Access Control (MAC) and Physical (PHY) layer of IEEE 802.11 standards to work efficientl...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2010