Ergodic Capacity of High Throughput Satellite Systems With Mixed FSO-RF Transmission

05/13/2021
by   Kong Huaicong, et al.
0

We study a high throughput satellite system, where the feeder link uses free-space optical (FSO) and the user link uses radio frequency (RF) communication. In particular, we first propose a transmit diversity using Alamouti space time block coding to mitigate the atmospheric turbulence in the feeder link. Then, based on the concept of average virtual signal-to-interference-plus-noise ratio and one-bit feedback, we propose a beamforming algorithm for the user link to maximize the ergodic capacity (EC). Moreover, by assuming that the FSO links follow the Malaga distribution whereas RF links undergo the shadowed-Rician fading, we derive a closed-form EC expression of the considered system. Finally, numerical simulations validate the accuracy of our theoretical analysis, and show that the proposed schemes can achieve higher capacity compared with the reference schemes.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
05/28/2020

Performance of Multibeam Very High Throughput Satellite Systems Based on FSO Feeder Links with HPA Nonlinearity

Due to recent advances in laser satellite communications technology, fre...
research
10/24/2020

Stochastic Analysis of Cooperative Satellite-UAV Communications

In this paper, a dual-hop cooperative satellite-unmanned aerial vehicle ...
research
10/29/2019

DeepWiFi: Cognitive WiFi with Deep Learning

We present the DeepWiFi protocol, which hardens the baseline WiFi (IEEE ...
research
03/27/2020

A PHY Layer Security Analysis of a Hybrid High Throughput Satellite with an Optical Feeder Link

Hybrid terrestrial-satellite (HTS) communication systems have gained a t...
research
09/01/2019

Performance Analysis of Multiuser FSO/RF Network Under Non-Equal Priority with P-Persistence Protocol

This paper presents and analyzes a novel multiuser network based on hybr...
research
03/15/2020

On the Computation and Approximation of Outage Probability in Satellite Networks with Smart Gateway Diversity

The utilization of extremely high frequency (EHF) bands can achieve very...

Please sign up or login with your details

Forgot password? Click here to reset