基于时延的多层卫星网络业务分配技术

Y. Kawamoto, Hiroki Nishiyama, N. Kato, N. Yoshimura, N. Kadowaki
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引用次数: 11

摘要

近年来,非地球静止轨道(NGEO)卫星网络成为研究热点。由于它们提供了许多特性,例如广泛的覆盖范围、抗灾性和高效的功耗,因此它们被认为是提供全球通信服务的良好候选。此外,多层卫星网络(MLSNs)是由多层NGEO卫星网络组成的,由于其通过绕过业务量从底层到上层来实现良好的负载分配而备受关注。但是,由于在MLSNs中,上层的每颗卫星通常覆盖下层的一颗以上卫星,因此有可能在上层的一颗卫星上存在交通拥塞。本文主要研究两层网络中的流量控制问题,特别是如何在两层网络中分配数据包流以使网络的传输延迟最小化。仿真结果验证了我们对网络时延分析的正确性。
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A delay-based traffic distribution technique for Multi-Layered Satellite Networks
Recently, Non-Geostationary Earth Orbit (NGEO) satellite networks have gained research attention. Since they offer many features, e.g., extensive coverage, disaster-resistance, and efficient power consumption, they are considered as a good candidate for providing global communication services. Moreover, Multi-Layered Satellite Networks (MLSNs), which consist of layered NGEO satellite networks, have attracted much attention since they achieve excellent load distribution through bypassing traffic from the lower layer to upper layer. However, there is a possibility that traffic congestion may exist at a satellite on the upper layer because each satellite on the upper layer usually covers more than one satellite on lower layers in MLSNs. In this paper, we focus on traffic control in two-layered networks, especially on distributing the packet flow between the two layers in order to minimize the transfer delay of the network. Simulation results demonstrate the correctness of our analyses about delay in the network.
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