Optical Feeder Links for Very High Throughput Satellites - System Perspectives (original) (raw)

Transmission analysis for OFDM signals over hybrid RF-optical high-throughput satellite

Optics express, 2018

In this paper, a theoretical investigation of the performance of a communication scenario where a geostationary-orbit satellite provides radio-frequency broadband access to the users through orthogonal-frequency-division multiplexing technology and has an optical feeder link is presented. The interface between the radio frequency and the optical parts is achieved by using radio-on-fiber technology for optical-electro and electro-optical conversion onboard and no further signal processing is required. The proposed scheme has significant potential, but presents limitations related to the noise. The noise in both forward and reverse links is described, and the system performance for an example scenario with 1280 MHz bandwidth for QPSK, 16QAM, and 64QAM subcarrier modulation is estimated. The obtained results show that under certain conditions regarding link budget and components choice, the proposed solution is feasible.

Investigation of a low level optical downlink for small satellites

2018

Optical communication systems have been tested and successfully used on large and medium sized satellites. The purpose of this assignment is to investigate if a low level optical downlink can be achieved, using commercial off the shelf elements and modest requirements, and to provide a conceptual design of the satellite and ground segment. The results are compared to a radio downlink of similar mass and cost.

Design and Evaluation of 10-Gbps Inter-satellite Optical Wireless Communication Link for Improved Performance

Journal of Optical Communications, 2017

Inter-satellite optical wireless communication (IsOWC) systems can be chosen over existing microwave satellite systems for deploying in space in the future due to their high bandwidth, small size, light weight, low power and low cost. However, the IsOWC system suffers from various attenuations due to weather conditions, turbulence or scintillations which limit its performance and decreases its availability. So, in order to improve the performance, IsOWC system using directly modulated laser source is proposed in this work. The system is designed and evaluated to be suitable for high data rate transmissions up to 10 Gbps. The performance of the system is investigated in order to reduce the cost and complexity of link and improving the quality of information signal. Further the proposed IsOWC system is analysed using BER analyser, power meter and oscilloscope Visualizer.

Challenging Issues in Inter-Satellite Optical Wireless Systems (IsOWC) and its Mitigation Techniques

Inter-satellite optical wireless communication system (IsOWC), one of the important applications of FSO (Free Space Optics) technology, will be deployed in space in the near future because of providing power efficient and high bandwidth allocation facilities unlike present microwave satellite systems. In this paper, we have deliberated a presentation of different challenging issues in achieving a prolonged inter satellite link for an IsOWC system under different situations and conditions. This work is also emphasized on the suggested techniques to combat with the degrading factors to put into practice of high speed IsOWC system with minimum BER. Index Terms— Inter-satellite optical wireless system (IsOWC), BER, SNR.