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Optimal Topology Design of High Altitude Platform Based Maritime Broadband Communication Networks

机译:基于高空平台的海上宽带通信网络的拓扑优化设计

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To satisfy the increasing demand for various types of coastal wireless communication, the pursuit of fully functional and low cost means of maritime broadband communication is imminent. High Altitude Platform (HAP) based maritime communication is a promising solution to improve the quality of coverage on the sea. In this paper, we present Integrated HAP-Sea-Land Network (IHSL) architecture for maritime broadband communication. And then we focus on the problem of Optimal Topology Design (OTD) which is an important issue for the IHSL network deployment in practice. We formulate the OTD problem as a generic integer linear programming (ILP) model with the objective of minimizing the total deployment cost subject to coverage, reliability, and topology constraints of the network. The linear programming solver Gurobi is applied to solve the ILP model. A series of case studies are conducted to validate the optimization framework and demonstrated the solvability and scalability of the ILP model. The simulation results show the significant performance benefits of IHSL in terms of cost and reliability under 1-coverage and 2-coverage. The proposed optimization framework is expected to provide a guideline for the IHSL network deployment in practice.
机译:为了满足对各种类型的海岸无线通信的不断增长的需求,迫切需要寻求功能齐全且低成本的海上宽带通信手段。基于高海拔平台(HAP)的海上通信是提高海上覆盖质量的有前途的解决方案。在本文中,我们提出了用于海事宽带通信的集成HAP-海陆网络(IHSL)体系结构。然后,我们将重点放在最佳拓扑设计(OTD)问题上,这是实际IHSL网络部署中的重要问题。我们将OTD问题公式化为通用整数线性规划(ILP)模型,目的是在网络覆盖,可靠性和拓扑约束的情况下,将总部署成本降至最低。线性规划求解器Gurobi用于求解ILP模型。进行了一系列案例研究,以验证优化框架并证明了ILP模型的可解性和可伸缩性。仿真结果显示了IHSL在1覆盖和2覆盖下的成本和可靠性方面的显着性能优势。拟议的优化框架有望为实践中的IHSL网络部署提供指导。

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