首页> 外文期刊>Wireless communications & mobile computing >Transmit Power Allocation with Connectivity Probability for Multi-QoS in Cluster Flight Spacecraft Network
【24h】

Transmit Power Allocation with Connectivity Probability for Multi-QoS in Cluster Flight Spacecraft Network

机译:通过集群飞行航天器网络中的多QoS发送功率分配

获取原文

摘要

In this paper, we investigate the transmit power allocation problem to minimize the average packet error rate at the access point in the cluster flight spacecraft network, which adopts the CSMA/CA channel access mechanism. First, the node mobility, nodal distance distribution, and probabilistic adjacency matrix were formulated for cluster flight spacecraft network based on twin-satellite mode. Then, the optimization-theoretic model described the optimized transmit power allocation strategy and its implementation algorithm was proposed. And the problem of minimizing the packet error rate of the cluster flight spacecraft network system can be converted into maximizing the expectation of the binary probabilistic adjacency matrix, i.e., maximizing the sum of the nondiagonal elements in the probabilistic adjacency matrix. Due to discreteness of nodal distance distribution, Monte Carlo method was applied to solve the transmit power allocation problem. Yet importantly, the influence of node transmit power on the QoS performance of cluster flight spacecraft network was simulated and analyzed under the assumption of finite overall network transmit power and low traffic load. Finally, the results show that the pocket error rate increases with the provided traffic load, but the pocket error rate hardly changes with the same traffic load in different sequential time slots of any orbital hyperperiod or in the same time slot of different orbital hyperperiods, and by maximizing the sum of the nondiagonal elements in the probabilistic adjacency matrix, the pocket error rate minimum is achieved for a given total network transmit power at any time slot for cluster flight spacecraft network.
机译:在本文中,我们研究了传输功率分配问题,以最小化集群飞行航天器网络中接入点的平均分组错误率,采用CSMA / CA通道访问机制。首先,基于双卫星模式的集群飞行航天器网络配制了节点移动性,节点距离分布和概率邻接矩阵。然后,提出了优化 - 理论模型来描述优化的发射功率分配策略及其实现算法。最小化集群飞行航天器网络系统的分组错误率的问题可以转换为最大化二进制概率邻接矩阵的期望,即,最大化概率邻接矩阵中的非透明元素的总和。由于节点距离分布的离散性,应用了蒙特卡罗方法来解决传输功率分配问题。重要的是,在有限整体网络发射功率和低交通负荷的假设下,模拟和分析了节点发射功率对集群飞行航天器网络的QoS性能的影响。最后,结果表明,由于提供的业务负荷,凹口错误率随着所提供的交通负荷而增加,但由于任何轨道高端的不同顺序时隙或在不同轨道高端的同一时隙中,口袋错误率几乎没有变化。通过最大化概率邻接矩阵中的非衔接元件的总和,对于集群飞行航天器网络的任何时隙,对于给定的总网络发射功率来实现凹口误差率最小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号