UnChannelize the Channels in WLAN
نویسندگان
چکیده
IEEE 802.11-based WLANs use a simple, fixed channelization structure, which divides the available spectrum into a set of channels of equal bandwidth. We argue that the fixed channelization has severely constrained the total capacity and fairness of WLANs. Our argument stems from recent measurements of WLANs in real world [4], [2], [3], which show significant spatial and temporal variations in user and traffic load. More specifically, user populations served by different access points (APs) in a WLAN fluctuate considerably over time, and are extremely unbalanced. Certain APs become hotspots while others remain unused. The fixed channel structure offers very limited flexibility in handling such variations. We propose a radically new channelization structure. Our scheme dynamically creates the appropriate number of channels to accommodate all interfering APs, and adjusts the channel bandwidth (channel-width) depending on the instantaneous traffic loads at the AP and its the neighboring APs. The dynamic channelization is enabled by recent advances in radio technologies, such as cognitive radios, which make it possible to reconfigure the key operating parameters of radios, including center-frequency, bandwidth, and power, with a very low time overhead [5]. The structure of the paper is as follows: The next section presents a motivating example, and Section III describes the system design for creating dynamic channels. We conduct the simulations using real-world traces. Our results, presented in Section IV, show that our dynamic scheme significantly increases network capacity and improves per-client fairness.
منابع مشابه
Dual-Band Evanescent-Mode Substrate Integrated Waveguide Band-pass Filter for WLAN Applications
A new multi-layer substrate integrated waveguide (SIW) structure is developed to design dual-band evanescent-mode band-pass filters (BPFs). Two independent series LC circuits are implemented by incorporating metallic irises in the different layers of the structure. The combination of the metallic irises with capacitive-plates is embedded inside the SIW to independently excite two evane...
متن کاملModeling Throughput Performance in 802.11 WLAN
This paper presents a mathematical framework for maximizing throughput in Wireless Local Area Network (WLAN) channels using key system design parameters such as packet length and transmission rate. We study the tradeoff between the throughput and choice of some design variables through extensive computer simulation. We observe from the simulation results that the design parameters are highly si...
متن کاملA Channel Preemption Model for Heterogeneous WLAN-embedded Cellular Networks
This paper presents a channel preemption model for vertical handoff in heterogeneous WLAN (wireless LAN) embedded cellular networks. The novelty of this paper is right in that a newly initiated mobile node (MN) outside the WLAN coverage can preempt the channels occupied by an MN inside the WLAN coverage when the cellular channels are completely used up. The channel preempted MN is forced to swi...
متن کاملAn efficient non-repudiation billing protocol in heterogeneous 3G-WLAN networks
The wireless communication with delivering variety of services to users is growing rapidly in recent years. The third generation of cellular networks (3G), and local wireless networks (WLAN) are the two widely used technologies in wireless networks. 3G networks have the capability of covering a vast area; while, WLAN networks provide higher transmission rates with less coverage. Since the two n...
متن کاملAdaptive Frequency Hopping for Bluetooth Robust to Co-channel Interference
In this paper, we consider the mitigation of cochannel interference in Bluetooth by means of adaptive frequency hopping (FH). Prior to sending packets, the proposed scheme classifies whether the next FH channel is in use by other signals or not. It also periodically classifies channels occupied by the WLAN signal to change the hopping frequency. For fast classification of busy channels, it divi...
متن کامل