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Power Allocation Based on Proportional-Integral Controller in Femtocell Networks With Consideration of Maximum Power Constraint

机译:考虑最大功率约束的毫微微小区网络中基于比例积分控制器的功率分配

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摘要

In this paper, a two-tier uplink femtocell network operating in orthogonal frequency-division multiple access is investigated. Femtocell base stations endowed with cognitive capacity can sense the void spectrum of macrocell. We aim at an energy-saving scheme of power allocation for femtocell users. The new idea that performance of Femtocell networks can be analyzed using control theory is proposed in this paper. A simple and novel power control algorithm is designed based on the virtual Proportional-Integral (PI) controller. When considering the maximum power constraints, different from the proof of the convergence via standard interference functions, we establish a linear system with state saturation (maximum power constraint) for femtocell networks, and the power's convergence is verified in theory with iterative linear matrix inequality algorithm. Two introduced control parameters not only guarantee the stability of power control algorithm, but also can adjust the transient response and save energy. Numerical results illustrate the convergence performance and advantages of the PI algorithm.
机译:本文研究了在正交频分多址下工作的两层上行毫微微小区网络。具有认知能力的毫微微小区基站可以感知宏小区的空频谱。我们的目标是为毫微微小区用户分配功率的节能方案。本文提出了一种新的思想,即可以使用控制理论来分析Femtocell网络的性能。基于虚拟比例积分(PI)控制器设计了一种简单新颖的功率控制算法。在考虑最大功率约束时,不同于通过标准干扰函数进行收敛的证明,我们为毫微微小区网络建立了一个状态饱和(最大功率约束)的线性系统,并使用迭代线性矩阵不等式算法从理论上验证了功率的收敛性。引入的两个控制参数不仅保证了功率控制算法的稳定性,而且可以调节瞬态响应并节省能量。数值结果说明了PI算法的收敛性能和优势。

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