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Mobile ad hoc Networks commonly called MANET are a setup in which mobile devices form a network by themselves without the need for infrastructural support that exists like the base stations. Mobile ad hoc network projects do not need the infrastructural support that is existing in current networking systems (as in the case of the single-hop cellular network model). Hence the need to have wired communication is totally removed. 

  • Wireless connections are established readily among the mobile devices in a MANET system
  • It is well defined as an autonomous system consisting of different nodes which are wirelessly linked where the communication is modeled by the network on the grounds of an arbitrary graph of communication 

This is a brief note on research in Mobile ad hoc networks which is provided by a team of experts who gained user experience in guiding recent projects in the field. Let us first start with the challenges existing in MANET systems.

Top 5 Research Challenges in Mobile Ad Hoc Network Projects

WHAT ARE THE MAJOR CHALLENGES OF MOBILE ADHOC NETWORKS?

 The topology of mobile ad hoc networks is dynamic and is subject to changes within the environment. This is one of the significant challenges for the researchers to overcome while designing Mobile ad hoc network projects. There are also other major challenges of the network which are listed below.

  • Mobility issues
  • Limited bandwidth
  • Constraint posed by the consumption of battery power
  • Combined large networks using various tools
  • Multihop

These challenges can be solved by implementing advanced and customized protocols in some cases. Still a lot of other existing problems in Mobile ad hoc network projects require intense research into the subject.

For instance, they are all different cases or situations in which the MANET systems have to be deployed. Such circumstances include the following.

  • In cases, where infrastructure is needed for the functioning (by the standard mobile IP)
    • Routing and DNS may not be designed for mobility
    • Foreign and the home agent in any network that is fixed
  • In situations, where infrastructure is not available
    • In areas prone to disasters
    • Remote areas
    • Immediate meetings places where the cost of infrastructure cannot be met
  • In applications, where the major point of discussion is routing
    • When there is no router that is available as default
    • Forwarding is done or can be done by each node

Our experts and engineers have been working with world-class researchers in order to overcome the above challenges. As a result, we have come up with many novel techniques for the same.          

You can connect with our experts at any time and get the details of the methods and techniques that we have used to solve the research problems in Mobile ad hoc network projects. Now let us have a detailed look at the criteria used for designing MANET.

MOBILE AD HOC NETWORK DESIGN CRITERIA

The designing of mobile ad hoc networks is based on the following criteria.

  • The architecture of the network
  • Application areas
  • Middleware designs (for network service applications)
  • Platforms for mobile software based on the hybrid network (development of application and distributed computing)
  • Designing protocols
  • Infrastructures related to wireless access

We are here to provide you with all the requirements essential for your MANET systems design. Our technical team who is very much experienced in providing research assistance for MANET research is here ready to guide you effectively to succeed in your research objective. We will give you technical details starting from the very basics too. Not only in the technical aspects but also in literature-related points our team is here to support you. Now let us see about the types of ad hoc networks

TYPES OF ADHOC NETWORKS

The mobile ad hoc networks are various types depending on their specific applications of it.

  • Ad hoc networks in Navy
  • Deploying ad hoc networks for disaster rescue
  • Internet based MANET or iMANET
  • MANET of robots
  • Ad-hoc Network based on smartphones or SPANs
  • Networks of street light
  • UAV MANET in air force
  • Tactical Networks for army

There are also many other different types of MANET under development today. You can also choose to do your projects in any advanced applications where established infrastructure cannot be guaranteed. 

In many aspects of daily life and various other applications associated with adverse conditions mobile ad hoc networks have the potential to be used. Now let us know about the major issues of MANET.

MAJOR ISSUES OF MANET

Mobile ad hoc network projects have many issues associated with which can be solved readily by in-depth research. The following are some of the major issues in MANET.

  • Issues of survivability
    • Scalability issues
    • Autonomy 
    • Storage load distribution
    • Device heterogeneity
    • Control load distribution
    • Robustness
  • Issues of critical usage
    • Accuracy of data
    • Timeliness
  • Issues related to consumption of resources
    • Cost of implementation
    • Consumption of energy
    • Consumption of bandwidth
  • Issues of security
    • Authentication
    • Privacy concerns
    • Issues of confidentiality
    • Non-repudiation

This issue as mentioned above may not be new to you. And of course, the methods being used to rectify these problems are all too familiar to you as a researcher. 

Our engineers gained expertise in solving research problems associated with MANET. We also oversee the implementation of ad hoc networks and so we are capable enough to render guidance on implementation and project execution. Let us now see in detail the problems that arise out of traditional algorithms used for Routing.

PROBLEMS OF TRADITIONAL ROUTING ALGORITHMS

Routing techniques are not completely problem-free. There are many ways in which the process demands improvement. The following are the problems of conventional routing algorithms.

  • Constraints in the mobile system performance
    • Updating routing tables happen regularly which demands energy that has no contribution to the user data transmission
    • Realization of sleep mode is difficult
    • Routing data exchange cause use bandwidth limitation
    • Asymmetric links that is transmission can be specific to a particular direction (quality of transmission)
  • Dynamic topology
    • Variations in the quality of connections and participants

For these purposes, advanced techniques are employed in MANET systems so that the above problems can be overcome quickly.  The methods of routing are also wide-ranging which are specific to the objectives and systems. We have delivered projects in all these aspects of routing. So you can directly connect with us and get your queries solved. Now let us see about the different types of routing.

TYPES OF ROUTING IN MANET 

Having a brief idea of the working of different types of routing is more important to a researcher. The following are the different types of routing. 

  • Routing with dynamic address
    • DART or Dynamic Address Routing
  • Geographical routing
    • Reactive routing (On-demand)
      • DSR or Dynamic Source Routing
      • AODV or Ad-hoc On-demand Distant Vector
    • Flat Proactive Routing
      • DSDV or Destination – sequenced Distance Vector (table-driven)
      • Link state Fish – Eye Routing (OLSR, GSR)
  • Hybrid schemes
    • Safari 
      • Responsive nearer
      • Long-distance – proactive
    • SHARP
      • Zone Routing 
        • Near – proactive
        • Long-distance – reactive

Connect with us and get more ideas on the working of different routing techniques. You can make favourable choices on the routing methods based on the aim for which you are designing your MANET systems.

As we are in the field of working with the researchers in MANET, we have experienced people with us who can support your entire research. Now let us look into the research areas in Mobile ad hoc network projects. 

RESEARCH AREAS IN MANET

The following are the major areas of research in MANET. 

  • Wireless networks that are smart (using artificial intelligence and Machine learning)
  • Ad-hoc Network based on AI
  • Optical Fiber Communication
  • Machine learning
  • Protocols for application layer
  • Cognitive networking
  • Communication through sensing (co-operative, compressive)
  • Real-world applications (experiences and deployments)
  • Optical networks (free – space)
  • Internet of things applications
  • Gateways and infrastructure (IoT)
  • Experimental systems (testbed and measurements)
  • Terahertz networks
  • mmWave networks
  • 5G technology (Networks)
  • Design of protocol based on Machine Learning and AI
  • WSNs and MANET applications
  • Controlling topology and Clustering
  • Connectivity and coverage
  • Communication (cognitive and co-operative)
  • Social sensing (crowd-sourced, cloud, and participatory)
  • Management and modeling mobility
  • Protocols, algorithms, and architecture for energy efficiency
  • Flying ad hoc networks
  • Services based on location
  • Networking and computing
  • MIMO technologies (multi-radio and multi-channel)
  • Delay tolerant networking (opportunistic)
  • Robotic networks
  • Sensor systems and networks (robustness, stability, and scalability)
  • Drones, UAV, and UVV systems enabled by sensors
  • Networks and devices that are wearable (human-centric)
  • Middleware and operating systems (along with network components)
  • Management of resources (quality of service)
  • Privacy and security concerns in all layers (physical layers too)
  • Applications like transportation, smart grid, and healthcare
  • Communications using visible light

We currently support research in all the above fields and our team is ready to render you guidance on all novel ideas that you come up with. Now, let us see in detail the processes involved in the selection of gateway in ad hoc networks.

GATEWAY SELECTION IN MANET

Among the multiple gateways that are discovered the best gateway is selected based on certain parameters. There are different schemes or approaches for the selection of gateway which can be detailed as below.

  • Selection based on route
    • Hop count between gateway and source node is an important metric for selection of gateway using this method
    • Other features like channel data rate and node mobility are also considered
  • Selection based on gateway
    • Parameters like the speed of gateway mobility and strength of the signal are used in this selection method
    • The power that is left or remaining is also considered
    • The following parameters related to the gateway are taken into account
      • Utilization of gateway
      • Gateway interface queue length
      • The number of neighbors has to be minimum
  • Hybrid method of selection of gateway
    • This method combines the above two ways
    • All the parameters mentioned for the above two methods are used in combination for the hybrid gateway selection method (queue length and hop count)

Our experts will guide you on the ways to choose the optimal gateway. We have been working for many years with customers from all around the world who are from different domains. We guided them in doing a project and also in the implementation of them. 

So you can get any kind of research guidance for mobile ad hoc network projects. We will be on your side even after the successful completion of your project so that we can aid you in execution and practical implementation. Now let us see about the tools for MANET simulation.

Implementing Mobile Ad Hoc Network Projects

PROJECT SIMULATION TOOLS FOR MANET

Many factors have to be considered for choosing the simulation tool of your choice. You can use different types of simulators based on various factors associated with your project demands. The simulation tools are mainly applicable for analyzing the performance of your project even before implementing it in real-time. The following are the most common tools for MANET simulation.

  • QualNet
  • OPNET
  • NS2
  • OMNET ++
  • NS3
  • J – SIM
  • SWAN

The bandwidth of any network is more important for network simulation. This decides the range covered and the organization of packets based on the size. Two other factors are involved in the selection of simulation tools.

  • Packet is the emitted data in the network (based on the protocol)
  • Cost on data transfer is defined as the cost met in the emission of one byte (in the network)
  • The following are the situations in which the cost calculations are to be made 
  • Ad hoc models that are free to use as they do not involve any established infrastructure
  • Quantity of data transferred
  • Data transfer limit when reached increases the cost of operation.

So to conclude on the cost-related matters, we suggest that you talk with our experts. Reach us for interesting mobile ad hoc network projects. We will provide you with the instances in which we met with some of the issues that you are facing and you can easily connect them with your situation and decide upon the solutions. So contact us at any time without hesitation.

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