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Transmission Power Control for Opportunistic QoS Provision in Wireless Networks

机译:无线网络中机会QoS的传输功率控制

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This paper proposes an automatic control framework to address the problem of distributed and opportunistic transmission power control in wireless communication networks. The proposed framework allows high flexibility on the quality of service (QoS) provision by exploiting the link quality variation. It associates a standard target tracking algorithm with a dynamic target QoS determined by a linear quadratic regulator (LQR) controller that induces an opportunistic behavior. Strict QoS requirements can also be fulfilled by choosing appropriately the weighting parameters of the LQR synthesis. To prevent performance degradation due to measurement uncertainties, robust solutions are developed. The proposed mixed ${cal H}_{2}/{cal H}_{infty}$ distributed power control combines the optimal ${cal H}_{2}$ control and the robust ${cal H}_{infty}$ control to obtain trade-off solutions. All developed algorithms present low computational complexity, and the mixed ${cal H}_{2}/{cal H}_{infty}$ distributed power control can operate as the pure ${cal H}_{2}$ control if the robust constraint is relaxed according to the choice of a single parameter. The performance of proposed algorithms is assessed through computer simulations.
机译:本文提出了一种自动控制框架,以解决无线通信网络中的分布式和机会传输功率控制问题。所提出的框架通过利用链路质量变化而在服务质量(QoS)提供方面具有高度的灵活性。它将标准目标跟踪算法与由线性二次调节器(LQR)控制器确定的动态目标QoS相关联,该线性二次调节器会引发机会行为。通过适当选择LQR合成的加权参数,也可以满足严格的QoS要求。为了防止由于测量不确定性而导致性能下降,开发了可靠的解决方案。提议的混合$ {cal H} _ {2} / {cal H} _ {infty} $分布式电源控制将最优$ {cal H} _ {2} $控制和可靠的$ {cal H} _ {infty } $控制权衡以获得解决方案。所有已开发的算法都具有较低的计算复杂度,并且如果满足以下条件,则混合的$ {cal H} _ {2} / {cal H} _ {infty} $分布式功率控制可以用作纯$ {cal H} _ {2} $控制鲁棒约束根据单个参数的选择而放松。通过计算机仿真评估了所提出算法的性能。

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