PARAMETER OPTIMIZATION FOR INDOOR COMMUNICATION NETWORK USING CSP TECHNIQ
| Author(s) | : | Jyoti, Tarun Dalal |
| Institution | : | Mtech Student CSE Deptt., CBS Group Of Institutions, Jhajjar, Haryana, India |
| Published In | : | Vol. 2, Issue 5 — May 2015 |
| Page No. | : | 286-294 |
| Domain | : | Engineering |
| Type | : | Research Paper |
| ISSN (Online) | : | 2348-4470 |
| ISSN (Print) | : | 2348-6406 |
Indoor communication Network is an ad-hoc network that is limited to a small area such as a room or thebuilding. It is an open standard for wireless connectivity. In such network, the communication strength depends on thepropagation type used in the network. There are number of such propagation methods to provide effective communicationover the network. To achieve the effective communication, an effective propagation must be selected for thecommunication. This propagation method deals with the channel selection, channel sensing and to perform the effectivecommunication over the network. There are number of constraints that affect the communication over a network. Toachieve the effective output from the network, it is required to define network under defined constraints. These allconstraint depends on type of network, its topology and the type of communication performed in that network. Thepresented work is focused on the communication analysis for an indoor mobile network. These propagation methods alsoaffected from different network, environmental and communication parameters. The presented work is to perform theparametric analysis under density, distance and energy constraints so that effective communication will be drawn, also toreduce the BER in a noisy channel. The work is performed on three different models, they are: ray-leigh indoorpropagation model, friis model ,log distance shadowing model. The work is to define a constraint specification approachfor the optimization of communication in indoor communication network.
Jyoti, Tarun Dalal, “PARAMETER OPTIMIZATION FOR INDOOR COMMUNICATION NETWORK USING CSP TECHNIQ”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 2, Issue 5, pp. 286-294, May 2015.








