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Closed Loop Power Control Using Third Order Quadratic Approximator

机译:使用三阶二次逼近器的闭环功率控制

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In this paper we introduce a novel bit error rate (BER) feedback transmit power control (TPC) system using a first-time third order quadratic approximation of the power-time curve. This approximation improves the power efficiency of a dual-rate TPC algorithm in terms of reduced total transmit power by smoothing transmit power transients during adaptive iterations. We show that the third order approximator outperforms linear and second order approximators in terms of transmit power savings, sensitivities, error magnitude, and better tracking performance in following reference desired power curves. For the approximator, we determine operational bounds for stability, and demonstrate algorithm behavior using critical valued inputs. In addition we demonstrate value in using a dynamic, rather than static, performance benchmark for quality of service approximation (obtained used scaled maximum acceptable BER), and provide heuristic estimates for the input parameters for the dynamic benchmark.
机译:在本文中,我们介绍了一种使用功率时间曲线的第一次三阶二次逼近的新型误码率(BER)反馈发射功率控制(TPC)系统。通过降低自适应迭代过程中的发射功率瞬变,该近似值在降低总发射功率方面提高了双速率TPC算法的功率效率。我们证明,在遵循参考所需功率曲线方面,三阶逼近器在发射功率节省,灵敏度,误差幅度和更好的跟踪性能方面优于线性和二阶逼近器。对于逼近器,我们确定稳定性的操作范围,并使用临界值输入演示算法行为。此外,我们展示了使用动态而非静态性能基准进行服务质量估算(获得的使用比例缩放后的最大可接受BER)的价值,并为动态基准的输入参数提供了启发式估计。

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