Relay Assisted F/TDMA Ad Hoc Networks: Node Classification, Power Allocation and Relaying Strategies
Semih Serbetli, Aylin Yener

TL;DR
This paper analyzes relay-assisted F/TDMA ad hoc networks, optimizing power allocation and relaying strategies to maximize sum capacity, and demonstrates that hybrid strategies outperform single-strategy approaches.
Contribution
It introduces optimal power allocation policies for multiple relay strategies and shows hybrid relaying strategies yield higher sum capacity than pure strategies.
Findings
NDF outperforms RDF for a given relay power.
CF provides higher sum capacity than AF.
Hybrid relaying strategies outperform single-strategy approaches.
Abstract
This paper considers the design of relay assisted F/TDMA ad hoc networks with multiple relay nodes each of which assists the transmission of a predefined subset of source nodes to their respective destinations. Considering the sum capacity as the performance metric, we solve the problem of optimally allocating the total power of each relay node between the transmissions it is assisting. We consider four different relay transmission strategies, namely regenerative decode-and-forward (RDF), nonregenerative decode-and-forward (NDF), amplify-and-forward (AF) and compress-and-forward (CF). We first obtain the optimum power allocation policies for the relay nodes that employ a uniform relaying strategy for all nodes. We show that the optimum power allocation for the RDF and NDF cases are modified water-filling solutions. We observe that for a given relay transmit power, NDF always outperforms…
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Taxonomy
TopicsCooperative Communication and Network Coding · Advanced MIMO Systems Optimization · Mobile Ad Hoc Networks
