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Robust Channel Allocation with Heterogeneous Requirements for Wireless Mesh Backbone Networks

机译:无线网状骨干网具有异构需求的强大信道分配

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摘要

When multiple mobile sensors and actuators share a common wireless mesh backbone network of defence systems, the channel allocation mechanism must guarantee the heterogeneous link requirements under conditions of uncertainty. In this paper, a robust channel allocation mechanism is proposed by exploiting partially overlapped channels for directional multi-channel wireless mesh networks. The approach relies on a chance-constrained optimization problem, in which the objective is to minimize the spectrum usage of the network, and the constraints are the signal-to-interference-plus-noise ratio requirements of links with uncertainty. We convert the proposed integer non-linear optimization problem into a mixed-integer convex problem by using efficient transition and approximation. The optimal channel allocation is obtained by solving the proposed optimization problem which adapts to the heterogeneous link and robustness requirements. The simulation results show that the proposed method ensures the heterogeneous link requirements under uncertain conditions while minimizing the spectrum usage of the network.
机译:当多个移动传感器和执行器共享一个防御系统的公共无线网状骨干网时,信道分配机制必须保证在不确定条件下的异构链路需求。本文通过为定向多信道无线网状网络开发部分重叠的信道,提出了一种健壮的信道分配机制。该方法依赖于机会约束的优化问题,其目的是使网络的频谱使用最小化,而约束条件是具有不确定性的链路的信噪比加噪声比要求。通过使用有效的转移和逼近,我们将提出的整数非线性优化问题转换为混合整数凸问题。通过解决所提出的优化问题来获得最佳信道分配,该优化问题适合于异构链路和鲁棒性要求。仿真结果表明,所提出的方法能够在不确定条件下确保异构链路的需求,同时最大程度地减少网络的频谱使用。

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