Blocklength-Limited Performance of Relaying under Quasi-Static Rayleigh Channels
arXiv:1602.02924 · doi:10.1109/TWC.2016.2542245
Abstract
In this paper, the blocklength-limited performance of a relaying system is studied, where channels are assumed to experience quasi-static Rayleigh fading while at the same time only the average channel state information (CSI) is available at the source. Both the physical-layer performance (blocklength-limited throughput) and the link-layer performance (effective capacity) of the relaying system are investigated. We propose a simple system operation by introducing a factor based on which we weight the average CSI and let the source determine the coding rate accordingly. In particular, we prove that both the blocklength-limited throughput and the effective capacity are quasi-concave in the weight factor. Through numerical investigations, we show the appropriateness of our theoretical model. In addition, we observe that relaying is more efficient than direct transmission. Moreover, this performance advantage of relaying under the average CSI scenario is more significant than under the perfect CSI scenario. Finally, the speed of convergence (between the blocklength-limited performance and the performance in the Shannon capacity regime) in relaying system is faster in comparison to the direct transmission under both the average CSI scenario and the perfect CSI scenario.
12 figures, submitted to IEEE Transactions on Wireless Communications
References in corpus (1)
Cited by in corpus (16)
- Distributed Federated Learning for Ultra-Reliable Low-Latency Vehicular Communications
- Cross-layer Design for Mission-Critical IoT in Mobile Edge Computing Systems
- Cooperative NOMA-Based User Pairing for URLLC: A Max-Min Fairness Approach
- A Tutorial on Ultra-Reliable and Low-Latency Communications in 6G: Integrating Domain Knowledge into Deep Learning
- Short-Packet Two-Way Amplify-and-Forward Relaying
- Fairness for Freshness: Optimal Age of Information Based OFDMA Scheduling with Minimal Knowledge
- Ultra-Reliable Short-Packet Communications: Half-Duplex or Full-Duplex Relaying?
- Ultra-Reliable Short Message Cooperative Relaying Protocols under Nakagami-m Fading
- Wireless Powered Communications with Finite Battery and Finite Blocklength
- Leveraging Linear Quadratic Regulator Cost and Energy Consumption for Ultra-Reliable and Low-Latency IoT Control Systems
- Transmission Energy Minimization for Heterogeneous Low-Latency NOMA Downlink
- Relay Selection and Resource Allocation for Ultra-Reliable Uplink Transmission in Smart Factory Scenarios
- Energy-Efficient Non-Orthogonal Transmission under Reliability and Finite Blocklength Constraints
- Improving Network Availability of Ultra-Reliable and Low-Latency Communications with Multi-Connectivity
- Zero Forcing Detection For Short Packet Transmission Under Channel Estimation Errors
- On the Performance of Ultra-Reliable Decode and Forward Relaying Under the Finite Blocklength