The notion of transmitting the data in wireless medium (like radio waves) is an outdated concept that has passed several decades of development. In this network, the deployed wireless simulator devices are equipped with in-built radio transceivers to transmit data from one node to another by sharing the radio spectrum. Though it may be an old idea, still it is an evergreen developing research domain.
This page principal emphasizes recent wireless Simulator network research areas and their supporting simulation tools!!!
Nowadays, research scholars are looking forward to efficient approaches and algorithms for efficient radio spectrum sharing. As a result, it makes all the occurrences of communication avail the best quality of service (QoS).
Similarly, there are many operations involved in the networking model to enhance wireless communication. And the major mechanisms involved in wireless networking are radio propagation, node object modeling, architectural designing, and MAC & PHY layers modeling. We support you in all these primary and other operations of wireless networking. Further, we also guide you in handpicking suitable simulators based on your project requirements.
For any research area of wireless simulation, the research issues are identified based on the research gap (i.e., something unknown or known but completely figured out). By the by, these issues are found out by conducting an in-depth survey on recent research papers. Our research team not only identifies the research issues but is also adept to frame suitable solutions for all issues. Below, we have given you primary research holes in wireless networking and communication.
Basically, the wireless network models will establish communication through OSI layers. Here, each layer has certain responsibilities to make communication possible in networks. For your information, here we have given you the core function of every layer. Our research team has framed several research ideas related to the issues of the OSI layers. s.
In communication systems, the analysis of real networks is challenging in real implementation. So, the network simulation tools make this process easy by reproducing the original network performance and behaviour. Also, it enables to implementation of all engineering approaches for effective network communication.
Specifically, future technologies like smart transportation and smart cities are turning out to be the turning point of smart data sensing and utilization on using network simulation. In order to support you in every aspect of wireless simulator, we have raised our skills in the following,
Next, we can see the features of wireless simulator. Since, these features while designing, developing, and simulating wireless models. Here, we have presented you with how these features enhance the performance of wireless models. In fact, our developers knew all the smart ways to improve the features themselves to achieve maximum performance of the wireless models.
We hope that you are clear about the importance and characteristics of wireless simulator. Now, we can see about the wireless simulators that are enriched in libraries, modules, and toolboxes to develop customized wireless network models. The extraordinary network emulation and simulation tools are LTESim (5G / LTE /Wi-Fi), NS2, Omnet++, Cooja (WSN/IoT), Glomosim, etc. Based on the needs of the project and research area, we need to select the simulator. Our developers will surely assist you to choose the appropriate tool for your handpicked project topic. For your reference, here we have given the roles of some promising simulators.
In addition, we have given you the advantage of using a wireless simulator. Since it describes how this simulator helps you to save development time and also it figures out how it minimizes the manual effort in implementing real-time applications. All these features motivate you to develop any kind of application of wireless simulators.
As mentioned earlier, network simulators are used to simplify the process of designing and assessing network environs without the presence of physical network components and real-world platforms. Further, these simulators will effectively perform the network simulation with respect to OSI models and TCP standards.
In specific, simulation is used to examine each phase of the networking and communication models such as design, analysis, and testing. Moreover, it is also used to estimate the performance of the wireless network model topology, protocol, device, architecture, etc. On the whole, it is the low-cost approach to assess scalable network capabilities.
Due to its handful of benefits, it widely spreads in other emerging application areas related to network simulation. For instance: IoT logistics, urban modelling, smart manufacturing, virtual reality, augmented reality, electronics, etc.
Our default constraint in research service is to provide up-to-date research areas for the benefit of scholars. So, we frequently update the list of the latest research areas of wireless simulator. In order to gain updates on recent areas, we regularly upgrade our skills on the latest developments by interacting with global experts in this field. So, we ensure you that our research areas are exclusive to others.
On the whole, if you are looking for more details about wireless simulation, wireless simulator, research areas, and project topics then approach us. Our experts will let you understand all basic and futuristic wireless domains.
Technology | Ph.D | MS | M.Tech |
---|---|---|---|
NS2 | 75 | 117 | 95 |
NS3 | 98 | 119 | 206 |
OMNET++ | 103 | 95 | 87 |
OPNET | 36 | 64 | 89 |
QULANET | 30 | 76 | 60 |
MININET | 71 | 62 | 74 |
MATLAB | 96 | 185 | 180 |
LTESIM | 38 | 32 | 16 |
COOJA SIMULATOR | 35 | 67 | 28 |
CONTIKI OS | 42 | 36 | 29 |
GNS3 | 35 | 89 | 14 |
NETSIM | 35 | 11 | 21 |
EVE-NG | 4 | 8 | 9 |
TRANS | 9 | 5 | 4 |
PEERSIM | 8 | 8 | 12 |
GLOMOSIM | 6 | 10 | 6 |
RTOOL | 13 | 15 | 8 |
KATHARA SHADOW | 9 | 8 | 9 |
VNX and VNUML | 8 | 7 | 8 |
WISTAR | 9 | 9 | 8 |
CNET | 6 | 8 | 4 |
ESCAPE | 8 | 7 | 9 |
NETMIRAGE | 7 | 11 | 7 |
BOSON NETSIM | 6 | 8 | 9 |
VIRL | 9 | 9 | 8 |
CISCO PACKET TRACER | 7 | 7 | 10 |
SWAN | 9 | 19 | 5 |
JAVASIM | 40 | 68 | 69 |
SSFNET | 7 | 9 | 8 |
TOSSIM | 5 | 7 | 4 |
PSIM | 7 | 8 | 6 |
PETRI NET | 4 | 6 | 4 |
ONESIM | 5 | 10 | 5 |
OPTISYSTEM | 32 | 64 | 24 |
DIVERT | 4 | 9 | 8 |
TINY OS | 19 | 27 | 17 |
TRANS | 7 | 8 | 6 |
OPENPANA | 8 | 9 | 9 |
SECURE CRT | 7 | 8 | 7 |
EXTENDSIM | 6 | 7 | 5 |
CONSELF | 7 | 19 | 6 |
ARENA | 5 | 12 | 9 |
VENSIM | 8 | 10 | 7 |
MARIONNET | 5 | 7 | 9 |
NETKIT | 6 | 8 | 7 |
GEOIP | 9 | 17 | 8 |
REAL | 7 | 5 | 5 |
NEST | 5 | 10 | 9 |
PTOLEMY | 7 | 8 | 4 |