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Cooperative Strategies for the Half-Duplex Gaussian Parallel Relay Channel: Simultaneous Relaying versus Successive Relaying (2008)
| Content Provider | CiteSeerX |
|---|---|
| Author | Rezaei, Seyed Saeed Changiz Khandani, Amir K. Gharan, Shahab Oveis |
| Abstract | This study investigates the problem of communication for a network composed of two half-duplex parallel relays with additive white Gaussian noise. Two protocols, i.e., Simultaneous and Successive relaying, associated with two possible relay orderings are proposed. The simultaneous relaying protocol is based on Dynamic Decode and Forward (DDF) scheme. For the successive relaying protocol: (i) a Non-Cooperative scheme based on the Dirty Paper Coding (DPC), and (ii) a Cooperative scheme based on the Block Markov Encoding (BME) are considered. Furthermore, the composite scheme of employing BME at one relay and DPC at another always achieves a better rate when compared to the Cooperative scheme. A “Simultaneous-Successive Relaying based on Dirty paper coding scheme ” (SSRD) is also proposed. The optimum ordering of the relays and hence the capacity of the half-duplex Gaussian parallel relay channel in the low and high signal-to-noise ratio (SNR) scenarios is derived. In the low SNR scenario, it is revealed that under certain conditions for the channel coefficients, the ratio of the achievable rate of the simultaneous relaying based on DDF to the cut-set bound tends to be 1. On the other hand, as SNR goes to infinity, it is proved that successive relaying, based on the DPC, asymptotically achieves the capacity of the network. |
| File Format | |
| Publisher Date | 2008-01-01 |
| Access Restriction | Open |
| Subject Keyword | Versus Successive Relaying High Signal-to-noise Ratio Optimum Ordering Composite Scheme Block Markov Encoding Simultaneous Relaying Successive Relaying Half-duplex Parallel Relay Dirty Paper Coding Simultaneous Relaying Protocol Cooperative Strategy Certain Condition Dirty Paper Additive White Gaussian Noise Dynamic Decode Half-duplex Gaussian Parallel Relay Channel Simultaneous-successive Relaying Cut-set Bound Non-cooperative Scheme Low Snr Scenario Successive Relaying Protocol Cooperative Scheme Possible Relay Ordering Channel Coefficient Achievable Rate |
| Content Type | Text |