Performance evaluation study of an indoor IEEE 802.11g
Mohammed Boulmalf, Tamer Rabie, Khaled Shuaib, Abderrahmane Lakas, Hesham El‐Sayed
Abstract
Mohammed Boulmalf, Tamer Rabie, Khaled Shuaib, Abderrahmane Lakas, Hesham El‐Sayed
Abstract
Wireless Local Area Networks (WLANs) based on IEEE 802.11a/b/g standards are growing rapidly. WLANs can provide the benefits of network connectivity without the restrictions of being tied to a location or restricted by wires. Despite this convenience of mobility, the performance of a WLAN must be addressed carefully before it can be adopted and deployed in any environment. In this paper, we address the impact of various key parameters on the actual performance of IEEE 802.11g. A series of controlled experiments are carried out to assess the performance of IEEE 802.11g in the presence of interferences, and to find the maximum throughput under realistic conditions.
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Wireless Local Area Networks (WLANs) based on IEEE 802.11a/b/g standards are growing rapidly. WLANs can provide the benefits of network connectivity without the restrictions of being tied to a location or restricted by wires. Despite this convenience of mobility, the performance of a WLAN must be addressed carefully before it can be adopted and deployed in any environment. In this paper, we address the impact of various key parameters on the actual performance of IEEE 802.11g. A series of controlled experiments are carried out to assess the performance of IEEE 802.11g in the presence of interferences, and to find the maximum throughput under realistic conditions.
Key concepts: IEEE 802.11u, IEEE 802, IEEE 802.11w-2009, IEEE 802.11b-1999, IEEE 802.11, Inter-Access Point Protocol, Computer network, Computer science