Ergodic capacity of dual-hop fixed gain relaying systems over mixed multipath/shadowing channels
The ergodic capacity of dual-hop fixed gain wireless communication systems is investigated under mixed fading environment. In such environment, the wireless links of relaying system undergo mixed multipath/shadowing fading conditions, where one link is subject to the Nakagami-m fading, the other lin...
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Published in | 2014 Sixth International Conference on Wireless Communications and Signal Processing (WCSP) pp. 1 - 6 |
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Main Author | |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.10.2014
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Subjects | |
Online Access | Get full text |
DOI | 10.1109/WCSP.2014.6992159 |
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Abstract | The ergodic capacity of dual-hop fixed gain wireless communication systems is investigated under mixed fading environment. In such environment, the wireless links of relaying system undergo mixed multipath/shadowing fading conditions, where one link is subject to the Nakagami-m fading, the other link is subject to the composite Nakagami-lognormal fading which is approximated by using mixture gamma fading model. Novel closed-form expressions of the ergodic capacity for the considered system are derived, including the exact capacity expression and the capacity bounds. Numerical and simulation results are shown and discussed to verify the accuracy of the analytical results under different scenarios, such as varying average signal-to-noise ratio, fading parameters per hop, the gain constant and the location of relaying node. |
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AbstractList | The ergodic capacity of dual-hop fixed gain wireless communication systems is investigated under mixed fading environment. In such environment, the wireless links of relaying system undergo mixed multipath/shadowing fading conditions, where one link is subject to the Nakagami-m fading, the other link is subject to the composite Nakagami-lognormal fading which is approximated by using mixture gamma fading model. Novel closed-form expressions of the ergodic capacity for the considered system are derived, including the exact capacity expression and the capacity bounds. Numerical and simulation results are shown and discussed to verify the accuracy of the analytical results under different scenarios, such as varying average signal-to-noise ratio, fading parameters per hop, the gain constant and the location of relaying node. |
Author | Weijun Cheng |
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Snippet | The ergodic capacity of dual-hop fixed gain wireless communication systems is investigated under mixed fading environment. In such environment, the wireless... |
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SubjectTerms | Approximation methods Closed-form solutions Dual-hop relaying ergodic capacity Fading fixed gain relays Mixture Gamma distribution Nakagami-lognormal fading channels Relays Shadow mapping Signal to noise ratio Upper bound |
Title | Ergodic capacity of dual-hop fixed gain relaying systems over mixed multipath/shadowing channels |
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