Achievable Rate Derivations and Further Simulation Results for "Physical-Layer Multicasting by Stochastic Transmit Beamforming and Alamouti Space-Time Coding"
Xiaoxiao Wu, Wing-Kin Ma, and Anthony Man-Cho So

TL;DR
This paper provides detailed derivations of achievable rate functions and additional simulation results for physical-layer multicasting schemes using stochastic beamforming and Alamouti coding, supporting the main manuscript.
Contribution
It offers comprehensive derivations and extended simulations for multicast schemes, enhancing understanding of their performance and viability.
Findings
Derivations clarify achievable rate functions
Simulations verify scheme viability
Supports main manuscript conclusions
Abstract
This is a companion technical report of the main manuscript "Physical-Layer Multicasting by Stochastic Transmit Beamforming and Alamouti Space-Time Coding". The report serves to give detailed derivations of the achievable rate functions encountered in the main manuscript, which are too long to be included in the latter. In addition, more simulation results are presented to verify the viability of the multicast schemes developed in the main manuscript.
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Taxonomy
TopicsAdvanced Wireless Communication Techniques · Advanced MIMO Systems Optimization · Cooperative Communication and Network Coding
