activity
20162022
most citedAn OMNeT++ based Framework for Mobility-aware Routing in Mobile Robotic Networks

3 citations · 7 across the 5 of their papers we have counts for

collaborators

5 papers

cs.RO20221 cited

AuNa: Modularly Integrated Simulation Framework for Cooperative Autonomous Navigation

Harun Teper, Anggera Bayuwindra, Raphael Riebl +3

In the near future, the development of autonomous driving will get more complex as the vehicles will not only rely on their own sensors but also communicate with other vehicles and…

cs.NI2021

DRaGon: Mining Latent Radio Channel Information from Geographical Data Leveraging Deep Learning

Benjamin Sliwa, Melina Geis, Caner Bektas +3

Radio channel modeling is one of the most fundamental aspects in the process of designing, optimizing, and simulating wireless communication networks. In this field, long-establish…

cs.NI20162 cited

IEEE 802.11p-based Packet Broadcast in Radio Channels with Hidden Stations and Congestion Control

Yunpeng Zang, Bernhard Walke, Guido Hiertz +1

The Decentralized Congestion Control (DCC) algorithms specified in ETSI ITS standards [1] address the IEEE 802.11p MAC and provide reliability of periodic broadcast messages at hig…

cs.NI20161 cited

CSMA-based Packet Broadcast in Radio Channels with Hidden Stations

Yunpeng Zang, Bernhard Walke, Guido Hiertz +1

Carrier Sense Multiple Access (CSMA) MAC protocols are known to suffer from the hidden station (HS) problem. The complete mathematical analysis of CSMA networks with HSs is still a…

cs.NI20163 cited

An OMNeT++ based Framework for Mobility-aware Routing in Mobile Robotic Networks

Benjamin Sliwa, Christoph Ide, Christian Wietfeld

In this paper, we propose a cross-layer extension for the INETMANET framework of OMNeT++, which utilizes mobility control knowledge to enhance the forwarding of routing messages. T…