Performance of Joint Spectrum Sensing and MAC Algorithms for Multichannel Opportunistic Spectrum Access Ad Hoc Networks
arXiv:0910.4704 · doi:10.1109/TMC.2010.255
Abstract
We present an analytical framework to assess the link layer throughput of multichannel Opportunistic Spectrum Access (OSA) ad hoc networks. Specifically, we focus on analyzing various combinations of collaborative spectrum sensing and Medium Access Control (MAC) protocol abstractions. We decompose collaborative spectrum sensing into layers, parametrize each layer, classify existing solutions, and propose a new protocol called Truncated Time Division Multiple Access (TTDMA) that supports efficient distribution of sensing results in "k out of N" fusion rule. In case of multichannel MAC protocols we evaluate two main approaches of control channel design with (i) dedicated and (ii) hopping channel. We propose to augment these protocols with options of handling secondary user (SU) connections preempted by primary user (PU) by (i) connection buffering until PU departure and (ii) connection switching to a vacant PU channel. By comparing and optimizing different design combinations we show that (i) it is generally better to buffer preempted SU connections than to switch them to PU vacant channels and (ii) TTDMA is a promising design option for collaborative spectrum sensing process when k does not change over time.
43 pages, 14 figures. Includes a concluding discussion on the validity of the analytical model in P. Pawelczak, S. Pollin, H-S. W. So, A. Bahai, R.V. Prasad, R. Hekmat, Performance Analysis of Multichannel Medium Access Control Algorithms for Opportunistic Spectrum Access, IEEE Transactions on Vehicular Technology, vol. 58, no. 6, pp. 3014-3031, Jul. 2009
References in corpus (1)
Cited by in corpus (5)
- When Channel Bonding is Beneficial for Opportunistic Spectrum Access Networks
- Joint Cooperative Spectrum Sensing and MAC Protocol Design for Multi-channel Cognitive Radio Networks
- Analysis Framework for Opportunistic Spectrum OFDMA and its Application to the IEEE 802.22 Standard
- Throughput and Collision Analysis of Multi-Channel Multi-Stage Spectrum Sensing Algorithms
- General analytical framework for cooperative sensing and access trade-off optimization