Deploy-As-You-Go Wireless Relay Placement: An Optimal Sequential Decision Approach using the Multi-Relay Channel Model
Arpan Chattopadhyay, Abhishek Sinha, Marceau Coupechoux, Anurag Kumar

TL;DR
This paper develops an optimal sequential decision approach for deploying relay nodes along a line to maximize communication rates, considering unknown distances and path-loss effects, using information theory and Markov decision processes.
Contribution
It introduces a novel optimal relay deployment strategy based on a multi-relay channel model and Markov decision processes, addressing unknown distances and path-loss effects.
Findings
Relays cluster near the source at low attenuation
Relays are uniformly placed at high attenuation
Path-loss effects can be mitigated with enough relays
Abstract
We use information theoretic achievable rate formulas for the multi-relay channel to study the problem of as-you-go deployment of relay nodes. The achievable rate formulas are for full-duplex radios at the relays and for decode-and-forward relaying. Deployment is done along the straight line joining a source node and a sink node at an unknown distance from the source. The problem is for a deployment agent to walk from the source to the sink, deploying relays as he walks, given that the distance to the sink is exponentially distributed with known mean. As a precursor, we apply the multi-relay channel achievable rate formula to obtain the optimal power allocation to relays placed along a line, at fixed locations. This permits us to obtain the optimal placement of a given number of nodes when the distance between the source and sink is given. Numerical work suggests that, at low…
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Taxonomy
TopicsCooperative Communication and Network Coding · Energy Harvesting in Wireless Networks · Mobile Ad Hoc Networks
