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Extending satellite service availability through energy efficient cooperation

机译:通过节能合作扩大卫星服务的可用性

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In this paper, we address the design of a cooperative protocol for a hybrid satellite/terrestrial emergency system. We want to perform energy savings compared to the case where all the terrestrial relay nodes are forwarding satellite messages to ground receivers. This is done via the selection of relevant relay nodes. The parameterization of the protocol phases has been done through simulations and takes into account the duration of the selection process, the number of selected nodes, and the signaling overhead. The selection process based on a node identifier (ID) appears to provide greater energy savings compared to the selection process based on the signal to interference and noise ratio (SINR). The solutions have been implemented in the real case scenario of forest fire that has been thoroughly documented by the US administration. According to the scenario parameters, 100% of the masked nodes are reached after cooperation.
机译:在本文中,我们着眼于混合卫星/地面应急系统的协作协议的设计。与所有地面中继节点都将卫星消息转发到地面接收器的情况相比,我们希望实现节能。这是通过选择相关的中继节点来完成的。协议阶段的参数化已通过仿真完成,并考虑了选择过程的持续时间,所选节点的数量以及信令开销。与基于信号干扰和噪声比(SINR)的选择过程相比,基于节点标识符(ID)的选择过程似乎可以提供更大的节能效果。该解决方案已在美国政府已充分记录的真实森林火灾案例中实施。根据场景参数,合作后达到100%的被屏蔽节点。

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