Power Allocation in Cognitive Radio in Energy Constrained Wireless Ad Hoc Networks

Author:

Acharya Tamaghna1,Maity Santi P.1

Affiliation:

1. Bengal Engineering and Science University, India

Abstract

The acute scarcity of radio frequency spectrum has inspired to think of a new communication technology where the devices are expected to be able to sense and adapt to their spectral environment, thereby appearing as cognitive radios (CR) who can share opportunistically the bands assigned to primary users (PUs). At the same time, low cost, increased coverage, enhanced capacity, infrastructure-less configuration, and so forth, become the essence of future wireless networks. Although the two research fields came up independently, in due time it is observed that CR has a promising future and has excellent applications in wireless networks. To this aim, this chapter explores some scope of integration in CR and ad hoc networks (called here CRAHNETs) in some specific design perspective. First, a brief literature review on CR power allocation and energy aware routing in wireless ad hoc networks (WANETs) is done that highlights the importance for the scope of their integration. Then, power allocation in CRAHNETs with extended network lifetime is considered as an example problem. More specifically, the design problem is: given a set of paths (routes) between a pair of source (S) and destination (D) nodes in CRAHNETs, how to allocate optimal power to the source and relay nodes such that outage probability for data transmission is minimized and network lifetime is enhanced, while meeting the limits of total transmit power of CRs and interference threshold to PU simultaneously. A solution for the stated problem is proposed along with performance evaluation. A few related research problems are mentioned as future research directions.

Publisher

IGI Global

Reference58 articles.

1. ECTC: Energy effiCient topology control algorithm for wireless sensor networks

2. Ahmad, A., & Assaad, M. (2010). Joint resource optimization and relay selection in cooperative cellular networks with imperfect channel knowledge. In Proceedings of Int. Workshop on Signal Processing Advances in Wireless Communication (pp.1-5). Marrakech, Morocco: IEEE.

3. Interference-limited resource allocation for cognitive radio in orthogonal frequency-division multiplexing networks

4. Capacity and delay in mobile cognitive networks with random way-point mobility model

5. Bansal, G., Hassan, Z., Hossain, J., & Bhargava, V. K. (2010). Subcarrier and power adaptation for multiuser OFDM-based cognitive radio systems. In Proceedings of National Conference on Communication (pp. 1–5). Chennai, India: IEEE.

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