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3篇 您的检索式:作者名="Ruolin Xing"
    题名 作者 年代 出处 被引量
1Assessing oil spill risk in the Chinese Bohai Sea:A case study for both ship and platform related oil spills 显示文摘Liu Xin Meng Ruolin Xing Qianguo 2015Ocean and Coastal Management2015,108,:1
2From Earth to Space:A First Deployment of 5G Core Network on Satellite显示文摘Recent developments in the aerospace industry have led to a dramatic reduction in the manufacturing and launch costs of low Earth orbit satellites.The new trend enables the paradigm shift of satelliteterrestrial integrated networks with global coverage.In particular,the integration of 5G communication systems and satellites has the potential to restructure nextgeneration mobile networks.By leveraging the network function virtualization and network slicing,the satellite 5G core networks will facilitate the coordination and management of network functions in satellite-terrestrial integrated networks.We are the first to deploy a 5G core network on a real-world satellite to investigate its feasibility.We conducted experiments to validate the satellite 5G core network functions.The validated procedures include registration and session setup procedures.The results show that the satellite 5G core network can function normally and generate correct signaling.Ruolin Xing Xiao Ma Ao Zhou Schahram Dustdar Shangguang Wang 2023China Communications2023,20,4:1
3The First Verification Test of Space-Ground Collaborative Intelligence via Cloud-Native Satellites显示文摘Recent advancements in satellite technologies and the declining cost of access to space have led to the emergence of large satellite constellations in Low Earth Orbit(LEO).However,these constellations often rely on bent-pipe architecture,resulting in high communication costs.Existing onboard inference architectures suffer from limitations in terms of low accuracy and inflexibility in the deployment and management of in-orbit applications.To address these challenges,we propose a cloud-native-based satellite design specifically tailored for Earth Observation tasks,enabling diverse computing paradigms.In this work,we present a case study of a satellite-ground collaborative inference system deployed in the Tiansuan constellation,demonstrating a remarkable 50%accuracy improvement and a substantial 90%data reduction.Our work sheds light on in-orbit energy,where in-orbit computing accounts for 17%of the total onboard energy consumption.Our approach represents a significant advancement of cloud-native satellite,aiming to enhance the accuracy of in-orbit computing while simultaneously reducing communication cost.Wang Shangguang Zhang Qiyang Xing Ruolin Qi Fei Xu Mengwei 2024China Communications2024,21,4:0
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