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Mausezahn (German pronunciation: [ˈmaʊ̯zəˌʦaːn], German for "mouse tooth") is a fast network traffic generator written in C which allows the user to craft nearly every possible and "impossible" packet. Since version 0.31 Mausezahn is open source in terms of the GPLv2.
A packet generation model is a traffic generation model of the packet flows or data sources in a packet-switched network. For example, a web traffic model is a model of the data that is sent or received by a user's web-browser. These models are useful during the development of telecommunication technologies, in view to analyse the performance ...
The network performance under maximum throughput conditions can be analyzed by network traffic measurement in a testbed network, using a network traffic generator such as iperf. The traffic generator sends dummy packets, often with a unique packet identifier, making it possible to keep track of the packet delivery in the network using a network ...
The Data Plane Development Kit (DPDK) is an open source software project managed by the Linux Foundation. It provides a set of data plane libraries and network interface controller polling-mode drivers for offloading TCP packet processing from the operating system kernel to processes running in user space .
The generation of cover traffic—artificial packets designed to obfuscate real data flows—further increases data transmission volumes and energy usage. Some analyses suggest that this overhead could be up to ten times greater than that of traditional internet traffic.
Network traffic simulation usually follows the following four steps: [1] [2] Modelling the system as a dynamic stochastic (i.e. random) process; Generation of the realizations of this stochastic process; Measurement of Simulation data; Analysis of output data
It also supports TCP connections using SSL, intense traffic generation, HTTP(S) GET/POST requests, and panel generation. It is available for Windows, Mac, and Linux. It is licensed GNU General Public License v2 and is free software. [1]
After collecting the information it will send back the raw data encapsulated in an SNMP protocol. MRTG records this data in a log on the client along with previously recorded data for the device. The software then creates an HTML document from the logs, containing a list of graphs detailing traffic for the selected devices in the server.