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  4. Scheduling methods for multi-user optical wireless asymmetrically-clipped OFDM
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Category: Electronics Packaging Manufacturing
By MTech Projects
MTech Projects
06.Apr
Hits: 1

Scheduling methods for multi-user optical wireless asymmetrically-clipped OFDM

PROJECT TITLE :

Scheduling methods for multi-user optical wireless asymmetrically-clipped OFDM

ABSTRACT:

Diffuse optical wireless (DOW) systems have the advantage that they do not require point-to-point siting so one transmitter can communicate with several receivers. In this paper, we investigate multiple access scheduling methods for downlink orthogonal frequency division multiplexing (OFDM) in diffuse optical wire- less networks. Unlike the radio frequency (RF) channel, the DOW channel has low-pass filter characteristics and so requires different scheduling methods than those developed for the RF channel. Multi-user diversity orthogonal frequency division multiple access (OFDMA) systems nominate a cluster of subcarriers with the largest signal-to-noise-ratio for transmission. However, in a DOW channel, most users would choose the lowest frequency clusters of subcarriers. To remedy this problem, we make two proposals. The first is to use a variable cluster size across the subcarriers; the lower frequency clusters will have fewer subcarriers while the higher frequency clusters will have more subcarriers. This will equalize the capacity of the clusters. The second proposal is to randomize a user's cluster selection from a group of clusters satisfying a minimum threshold. Through simulation it is shown that combining these strategies can increase the throughput while ensuring a fair distribution of the available spectrum.

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Previous article: eMCCA: An enhanced mesh coordinated channel access mechanism for IEEE 802.11s wireless mesh networks eMCCA: An enhanced mesh coordinated channel access mechanism for IEEE 802.11s wireless mesh networks Next article: Clustering strategy based on graph method and power control for frequency resource management in femtocell and macrocell overlaid system Clustering strategy based on graph method and power control for frequency resource management in femtocell and macrocell overlaid system
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