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Indoor Wireless Network Coverage Area Optimization
Author(s) -
Amitkumar Dudhat,
Hardjanto Nusantoro,
Angelia Efrida Purba
Publication year - 2022
Publication title -
international journal of cyber and it service management/international journal of cyber and it service management
Language(s) - English
Resource type - Journals
eISSN - 2808-554X
pISSN - 2797-1325
DOI - 10.34306/ijcitsm.v2i1.86
Subject(s) - multipath propagation , computer science , fading , context (archaeology) , wireless network , wireless , radio propagation , floor plan , interference (communication) , network topology , network planning and design , topology (electrical circuits) , electronic engineering , computer network , telecommunications , channel (broadcasting) , engineering , electrical engineering , geography , archaeology , engineering drawing
The presence of interference has a significant impact on wireless network connections indoors. Because of the effects of multipath propagation, such as reflection, refraction, and scattering of radio waves by the structure of the building, the sent signal can usually be received in free space or via more than one pathway, and the consequence might be a phenomenon known as multipath fading. For different results, propagation models have been identified, which provide the propagation features of the initial evaluation. There are two types of wireless propagation models: empirical and theoretical models that deal with coverage, overlapping channels, and wireless network performance. The planning system was set out using a practical and theoretical approach. Furthermore, this comparison may aid in determining the accuracy of survey measures in the context of indoor wireless monitoring and provide an estimate of the breadth and performance of wireless networks in the form of a new topology with contour presentation. Layout plan optimization The typical RSSI of a Wi-Fi system ranges from -40 dBm to -55 Dbm, with a power of 17-18 Dbm, and is applied to channels 1 through 11 non-overlapping in the design of networks with multiple APs that are nearby. The new topology represents the optimization outcomes, accompanied by a contour display and dispersed over the region.

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