paper-with-me

홈 › Papers

When to Crossover from Earth to Space for Lower Latency Data Communications?

2022-03-01 · Aizaz U. Chaudhry, Halim Yanikomeroglu

For data communications over long distances, optical wireless satellite networks (OWSNs) can offer lower latency than optical fiber terrestrial networks (OFTNs). However, when is it beneficial to switch or crossover from an OFTN to an OWSN for lower latency data communications? In this work, we introduce a crossover function that enables to find the crossover distance, i.e., a distance between two points on the surface of the Earth beyond which switching or crossing over from an OFTN to an OWSN for data communications between these points is useful in terms of latency. Numerical results reveal that a higher refractive index of optical fiber (or $i$) in an OFTN and a lower altitude of satellites (or $h$) in an OWSN result in a shorter crossover distance. To account for the variation in the end-to-end propagation distance that occurs over the OWSN, we examine the crossover function in four different scenarios. Numerical results indicate that the crossover distance varies with the end-to-end propagation distance over an OWSN and is different for different scenarios. We calculate the average crossover distance over all scenarios for different $h$ and $i$ and use it to evaluate the simulation results. Furthermore, for a comparative analysis of OFTNs and OWSNs in terms of latency, we study three different OFTNs having different refractive indices and three different OWSNs having different satellite altitudes in three different scenarios for long-distance inter-continental data communications, including connections between New York and Dublin, Sao Paulo and London, and Toronto and Sydney.

📄 PDF Abstract BibTeX arXiv:2203.00154

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

On Crossover Distance for Optical Wireless Satellite Networks and Optical Fiber Terrestrial Networks

2022-06-06 · Aizaz U. Chaudhry, Halim Yanikomeroglu

Optical wireless satellite networks (OWSNs) can provide lower latency data communications compared to optical fiber terrestrial networks (OFTNs). The crossover function enables to calculate the crossover distance for an …

On the Impact of Crossover in Many-Objective Optimization: A Runtime Analysis of NSGA-III

2026-05-11 · Andre Opris arxiv

In recent years, a theoretical understanding has rapidly advanced regarding how popular multi-objective evolutionary algorithms (MOEAs) can optimize many-objective problems. However, the benefits of using crossover in ma…

EarthSight: A Distributed Framework for Low-Latency Satellite Intelligence

2025-11-13 · Ansel Kaplan Erol, Seungjun Lee, Divya Mahajan arxiv

Low-latency delivery of satellite imagery is essential for time-critical applications such as disaster response, intelligence, and infrastructure monitoring. However, traditional pipelines rely on downlinking all capture…

Optical Wireless Satellite Networks versus Optical Fiber Terrestrial Networks: The Latency Perspective

2021-06-14 · Aizaz U. Chaudhry, Halim Yanikomeroglu

Formed by using laser inter-satellite links (LISLs) among satellites in upcoming low Earth orbit and very low Earth orbit satellite constellations, optical wireless satellite networks (OWSNs), also known as free-space op…

An Edge AI Solution for Space Object Detection

2025-05-08 · Wenxuan Zhang, Peng Hu

Effective Edge AI for space object detection (SOD) tasks that can facilitate real-time collision assessment and avoidance is essential with the increasing space assets in near-Earth orbits. In SOD, low Earth orbit (LEO) …

Deep LearningObjectobject-detectionObject Detection