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An efficient real-time method for improving intrinsic delay of capacity allocation in interactive GEO Satellite networks

机译:一种改进交互式GEO卫星网络中容量分配固有延迟的有效实时方法

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摘要

An interactive satellite network consists of a hub, a geostationary Earth orbit (GEO) satellite, and a group of terminals. Terminals in need of capacity send a capacity request (CR) message to the hub and the hub then makes a capacity-allocation schedule according to the CR and broadcasts that schedule to the terminals. Thus, it takes the round-trip time plus the scheduling time for a terminal to receive a response from the hub. Due to such intrinsic delay between capacity request and capacity allocation, it is difficult to promptly transmit user data via interactive channels of GEO satellites. The preferred solution to this problem is to have a prediction-based resource-allocation policy and to have as short a period of scheduling time as possible. As a solution to use such policies, we mathematically formulate a resource-allocation problem as a nonlinear integer programming problem considering uncertain future traffic conditions and we develop a real-time heuristic solution algorithm. Computational complexity analysis and extensive simulation results demonstrate the excellent performance of the proposed method on computational efficiency and heuristic solution quality.
机译:交互式卫星网络包括一个枢纽,一个地球静止地球轨道(GEO)卫星和一组终端。需要容量的终端将容量请求(CR)消息发送到集线器,然后集线器根据CR制定容量分配时间表,并将该时间表广播给终端。因此,终端要从集线器接收响应需要往返时间加上调度时间。由于在容量请求和容量分配之间存在这种固有的延迟,因此难以通过GEO卫星的交互式通道迅速发送用户数据。此问题的首选解决方案是具有基于预测的资源分配策略,并具有尽可能短的调度时间。作为使用此类策略的解决方案,我们在数学上将资源分配问题公式化为考虑到不确定的未来交通状况的非线性整数规划问题,并开发了一种实时启发式求解算法。计算复杂度分析和广泛的仿真结果证明了该方法在计算效率和启发式解决方案质量方面的出色性能。

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