TY - JOUR
T1 - Low Earth Orbit Satellite Security and Reliability
T2 - Issues, Solutions, and the Road Ahead
AU - Yue, Pingyue
AU - An, Jianping
AU - Zhang, Jiankang
AU - Ye, Jia
AU - Pan, Gaofeng
AU - Wang, Shuai
AU - Xiao, Pei
AU - Hanzo, Lajos
N1 - Publisher Copyright:
© 1998-2012 IEEE.
PY - 2023
Y1 - 2023
N2 - Low Earth Orbit (LEO) satellites undergo a period of rapid development driven by ever-increasing user demands, reduced costs, and technological progress. Since there is a lack of literature on the security and reliability issues of LEO Satellite Communication Systems (SCSs), we aim to fill this knowledge gap. Specifically, we critically appraise the inherent characteristics of LEO SCSs and elaborate on their security and reliability requirements. In light of this, we further discuss their vulnerabilities, including potential security attacks launched against them and reliability risks, followed by outlining the associated lessons learned. Subsequently, we discuss the corresponding security and reliability enhancement solutions, unveil a range of trade-offs, and summarize the lessons gleaned. Furthermore, we shed light on several promising future research directions for enhancing the security and reliability of LEO SCSs, such as integrated sensing and communication, computer vision aided communications, as well as challenges brought about by mega-constellation and commercialization. Finally, we summarize the lessons inferred and crystallize the take-away messages in our design guidelines.
AB - Low Earth Orbit (LEO) satellites undergo a period of rapid development driven by ever-increasing user demands, reduced costs, and technological progress. Since there is a lack of literature on the security and reliability issues of LEO Satellite Communication Systems (SCSs), we aim to fill this knowledge gap. Specifically, we critically appraise the inherent characteristics of LEO SCSs and elaborate on their security and reliability requirements. In light of this, we further discuss their vulnerabilities, including potential security attacks launched against them and reliability risks, followed by outlining the associated lessons learned. Subsequently, we discuss the corresponding security and reliability enhancement solutions, unveil a range of trade-offs, and summarize the lessons gleaned. Furthermore, we shed light on several promising future research directions for enhancing the security and reliability of LEO SCSs, such as integrated sensing and communication, computer vision aided communications, as well as challenges brought about by mega-constellation and commercialization. Finally, we summarize the lessons inferred and crystallize the take-away messages in our design guidelines.
KW - LEO satellite communication systems
KW - design guidelines
KW - reliability enhancement solutions
KW - reliability risks
KW - security attack detection
KW - security attack mitigation
KW - security attack prevention
KW - security attacks
KW - security enhancement solutions
UR - http://www.scopus.com/inward/record.url?scp=85166761977&partnerID=8YFLogxK
U2 - 10.1109/COMST.2023.3296160
DO - 10.1109/COMST.2023.3296160
M3 - Article
AN - SCOPUS:85166761977
SN - 1553-877X
VL - 25
SP - 1604
EP - 1652
JO - IEEE Communications Surveys and Tutorials
JF - IEEE Communications Surveys and Tutorials
IS - 3
ER -