Most recent satellite network research has focused on providing routing services without considering security. In this paper, for the sake of better global coverage, we introduce a novel triple-layered satellite netwo...Most recent satellite network research has focused on providing routing services without considering security. In this paper, for the sake of better global coverage, we introduce a novel triple-layered satellite network architecture including Geostationary Earth Orbit (GEO), Highly Elliptical Orbit (HEO), and Low Earth Orbit (LEO) satellite layers, which provides the near-global coverage with 24 hour uninterrupted over the areas varying from 75° S to 90° N. On the basis of the hierarchical architecture, we propose a QoS-guaranteed secure multicast routing protocol (QGSMRP) for satellite IP networks using the logical location concept to isolate the mobility of LEO and HEO satellites. In QGSMRP, we employ the asymmetric cryptography to secure the control messages via the pairwise key pre-distribution, and present a least cost tree (LCT) strategy to construct the multicast tree under the condition that the QoS constraints are guaranteed, aiming to minimize the tree cost. Simulation results show that the performance benefits of the proposed QGSMRP in terms of the end-to-end tree delay, the tree cost, and the failure ratio of multicasting connections by comparison with the conventional shortest path tree (SPT) strategy.展开更多
Mobile IP is one of the key technologies to implement mobile computing. But its security still needs furtherresearch. After an introduction to mobile IP, IPSec and the threat to mobile IP security,an IPSec-based mobil...Mobile IP is one of the key technologies to implement mobile computing. But its security still needs furtherresearch. After an introduction to mobile IP, IPSec and the threat to mobile IP security,an IPSec-based mobile IP se-curity architecture is presented in the article. This architecture combines IPSec and some other secure measures withmobile IP so as to give mobile IP stronger security. In the article this architecture is discussed in detail and a methodis proposed to traverse firewall using IKE.展开更多
文摘Most recent satellite network research has focused on providing routing services without considering security. In this paper, for the sake of better global coverage, we introduce a novel triple-layered satellite network architecture including Geostationary Earth Orbit (GEO), Highly Elliptical Orbit (HEO), and Low Earth Orbit (LEO) satellite layers, which provides the near-global coverage with 24 hour uninterrupted over the areas varying from 75° S to 90° N. On the basis of the hierarchical architecture, we propose a QoS-guaranteed secure multicast routing protocol (QGSMRP) for satellite IP networks using the logical location concept to isolate the mobility of LEO and HEO satellites. In QGSMRP, we employ the asymmetric cryptography to secure the control messages via the pairwise key pre-distribution, and present a least cost tree (LCT) strategy to construct the multicast tree under the condition that the QoS constraints are guaranteed, aiming to minimize the tree cost. Simulation results show that the performance benefits of the proposed QGSMRP in terms of the end-to-end tree delay, the tree cost, and the failure ratio of multicasting connections by comparison with the conventional shortest path tree (SPT) strategy.
文摘Mobile IP is one of the key technologies to implement mobile computing. But its security still needs furtherresearch. After an introduction to mobile IP, IPSec and the threat to mobile IP security,an IPSec-based mobile IP se-curity architecture is presented in the article. This architecture combines IPSec and some other secure measures withmobile IP so as to give mobile IP stronger security. In the article this architecture is discussed in detail and a methodis proposed to traverse firewall using IKE.