Secure Routing with Power Optimization for Ad-hoc Networks
Hui-Ming Wang, Yan Zhang, Derrick Wing Kwan Ng, and Moon Ho Lee

TL;DR
This paper proposes a joint secure routing and power optimization method for multi-hop ad-hoc networks with eavesdroppers, improving secrecy and connection reliability through optimal power control and routing algorithms, including jamming strategies.
Contribution
It introduces a globally optimal solution for secure routing and power optimization, incorporating friendly jamming and suboptimal algorithms with lower complexity.
Findings
Optimal power control and routing significantly enhance secrecy performance.
Jamming further improves security in the network.
Trade-offs exist between number of hops and power for optimal security.
Abstract
In this paper, we consider the problem of joint secure routing and transmit power optimization for a multi-hop ad-hoc network under the existence of randomly distributed eavesdroppers following a Poisson point process (PPP). Secrecy messages are delivered from a source to a destination through a multi-hop route connected by multiple legitimate relays in the network. Our goal is to minimize the end-to-end connection outage probability (COP) under the constraint of a secrecy outage probability (SOP) threshold, by optimizing the routing path and the transmit power of each hop jointly. We show that the globally optimal solution could be obtained by a two-step procedure where the optimal transmit power has a closed-form and the optimal routing path can be found by Dijkstra's algorithm. Then a friendly jammer with multiple antennas is applied to enhance the secrecy performance further, and…
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Taxonomy
TopicsWireless Communication Security Techniques · Cooperative Communication and Network Coding · Advanced MIMO Systems Optimization
