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Tradeoff Analysis of Delay-Power-CSIT Quality of Dynamic Backpressure Algorithm for Energy Efficient OFDM Systems

机译:节能OFDM系统动态背压算法的延迟功率-CSIT质量折衷分析

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In this paper, we analyze the fundamental power-delay tradeoff in point-to-point OFDM systems under imperfect channel state information quality and nonideal circuit power. We consider the dynamic backpressure (DBP) algorithm, where the transmitter determines the rate and power control actions based on the instantaneous channel state information (CSIT) and the queue state information (QSI). We exploit a general fluid queue dynamics using a continuous time dynamic equation. Using the sample-path approach and renewal theory, we decompose the average delay in terms of multiple unfinished works along a sample path, and derive an upper bound on the average delay under the DBP power control, which is asymptotically accurate at small delay regime. We show that despite imperfect CSIT quality and nonideal circuit power, the average power $(P)$ of the DBP policy scales with delay $(D)$ as $P={cal O}(D exp(1/D))$ at small delay regime. While the impacts of CSIT quality and circuit power appears as the coefficients of the scaling law, they may be significant in some operating regimes.
机译:在本文中,我们分析了在不完善的信道状态信息质量和非理想电路功率的情况下,点对点OFDM系统中的基本功率延迟权衡。我们考虑动态背压(DBP)算法,其中发射机根据瞬时信道状态信息(CSIT)和队列状态信息(QSI)确定速率和功率控制动作。我们使用连续时间动态方程来开发一般的流体队列动力学。使用样本路径方法和更新理论,我们沿着样本路径分解了多个未完成作品的平均延迟,并得出了DBP功率控制下平均延迟的上限,该延迟在小延迟状态下渐近准确。我们显示,尽管CSIT质量不理想且电路功率不理想,但DBP策略的平均功率$(P)$会随着延迟$(D)$缩放为$ P = {cal O}(D exp(1 / D))$在小延迟制度。虽然CSIT质量和电路功率的影响显示为缩放定律的系数,但它们在某些工作状态下可能很重要。

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