[HTML][HTML] Enhancement of multicast security with opportunistic relaying technique over κ-μ shadowed fading channels

A Alam, MZI Sarkar - Journal of Computer and Communications, 2022 - scirp.org
Journal of Computer and Communications, 2022scirp.org
The effects of scatterers, fluctuation parameter and propagation clusters significantly affect
the performance of κ-μ shadowed fading channel. On the other hand, opportunistic relaying
is an efficient technique to improve the performance of fading channels reducing the effects
of aforementioned parameters. Motivated by these issues, in this paper, a secure wireless
multicasting scenario through κ-μ shadowed fading channel is considered in the presence of
multiple eavesdroppers with opportunistic relaying. The main purpose of this paper is to …
The effects of scatterers, fluctuation parameter and propagation clusters significantly affect the performance of κ-μ shadowed fading channel. On the other hand, opportunistic relaying is an efficient technique to improve the performance of fading channels reducing the effects of aforementioned parameters. Motivated by these issues, in this paper, a secure wireless multicasting scenario through κ-μ shadowed fading channel is considered in the presence of multiple eavesdroppers with opportunistic relaying. The main purpose of this paper is to ensure the security level in wireless multicasting compensating the loss of security due to the effects of power ratio between dominant and scattered waves, fluctuation parameter, and the number of propagation clusters, multicast users and eavesdroppers, by opportunistic relaying technique. The closed-form analytical expressions are derived for the probability of non-zero secrecy multicast capacity (PNSMC) and the secure outage probability for multicasting (SOPM) to understand the insight of the effects of above parameters. The results show that the loss of security in multicasting through κ-μ shadowed fading channel can be significantly enhanced using opportunistic relaying technique by compensating the effects of scatterers, fluctuation parameter, and the number of propagation clusters, multicast users and eavesdroppers.
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