Title :
Performance analysis of amplify-and-forward cognitive relay networks under transmit power constraint and interference power constraint
Author :
Ting Feng ; Xiaoxiao Zhang ; Wanbin Tang ; Jianquan Wang ; Yantao Guo
Author_Institution :
Nat. Key Lab. of Sci. & Technol. on Commun., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Cooperative relaying technology has been proved to be one of the most promising techniques to improve the throughput of CR networks. In this paper, cognitive relay networks with amplify-and-forward (AF) protocol in a spectrumsharing scenario have been considered. Compared with previous studies, we further consider the transmit power constraint on secondary source node (SS). Namely, we impose both transmit power constraint and interference power constraint on SS and secondary relay node (SR). As well we obtain the exact outage probability which works as the performance measurement of CR networks. To analyze the influential factors for system performance, the closed form expression of outage probability needs to be derived. However, it is mathematical intractable. Hence, an approximate approach is adopted as a solution. Finally, Monte-Carlo simulations are conducted to verify the accuracy of our approximation, the error sources of our analytical results are discussed as well.
Keywords :
Monte Carlo methods; amplify and forward communication; approximation theory; cognitive radio; cooperative communication; probability; protocols; radio spectrum management; radiofrequency interference; relay networks (telecommunication); AF protocol; CR network; Monte-Carlo simulation; SR node; SS node; amplify-and-forward cognitive relay network; amplify-and-forward protocol; approximation approach; closed form expression; cooperative relaying technology; error source; exact outage probability; interference power constraint; mathematical analysis; secondary relay node; secondary source node; spectrum-sharing scenario; transmit power constraint; Analytical models; Approximation methods; Closed-form solutions; Interference; Protocols; Relay networks (telecommunications);
Conference_Titel :
Telecommunication Networks and Applications Conference (ATNAC), 2014 Australasian
Conference_Location :
Southbank, VIC
DOI :
10.1109/ATNAC.2014.7020876