Fuzzy logic based handover authentication in 5g telecommunication heterogeneous networks
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Abstract
Introducing new technologies into 5G networks with the goal of
newlineimproving network densification considerably increases the number of
newlinesecurity holes in those networks. The effectiveness of mobility management
newlinedepends on safe and dependable handoffs. This is due to the fact that handoffs
newlineare more important in cells with limited space. Due to the introduction of
newlineadditional wireless components like hotspots, the overall security of the 5G
newlinenetwork is being compromised.
newlineHowever, due to their distinct network topologies, integrating 5G and
newlineLTE networks would be technically challenging and expensive. Bilinear
newlinepairing approaches, which often demand a lot of processing power, are
newlineimpractical for usage with 5G networks because of their high latency
newlinerequirements.
newlineAlthough there has been a lot of research on the topic of user access
newlinesecurity in the academic community in recent years, no foolproof method of
newlineauthentication has been discovered as of yet. Lack of consideration for the
newlinepossibility of an untrustworthy relay node during user authentication at the
newlineground station. If the satellite relay node suspects that a packet is being sent
newlinewith malicious purpose, it may refuse to forward it and may even launch
newlineattempts to steal the session key. Should the satellite relay node establish
newlinemalevolent intent, it may take these measures.
newline