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Theoretical basis, principles of design and experimental study of the prototype of 'perfect' AFCS transmitting signals without coding

机译:“完美” AFCS无需编码即可传输信号的原型的理论基础,设计原理和实验研究

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The paper presents an overview of design methodology and results of experiments with a Prototype of highly efficient optimal adaptive feedback communication systems (AFCS), transmitting low frequency analog signals without coding. The paper emphasizes the role of the forward transmitter saturation as the factor that blocked implementation of theoretical results of pioneer (1960-1970s) and later research on FCS. Deepened analysis of the role of statistical fitting condition in adequate formulation and solution of AFCS optimization task is given. Solution of the task - optimal transmission/reception algorithms is presented in the form useful for elaboration of the hardware/software Prototype. A notable particularity of the Prototype is absence of the encoding/decoding units, whose functions are realized by the adaptive pulse amplitude modulator (PAM) of the forward transmitter (FT) and estimating/controlling algorithm in the receiver of base station (BS). Experiments confirm that the Prototype transmits signals from FT to BS "perfectly": with the bit rate equal to the capacity of the system, and with limit energy [J/bif] and spectral [bps/Hz] efficiency. Another, not less important and confirmed experimentally, particularity of AFCS is its capability to adjust parameters of FT and BS to the characteristics of scenario of application and maintain the ideal regime of transmission including spectral-energy efficiency. AFCS adjustment can be made using BS estimates of mean square error (MSE). The concluding part of the paper contains discussion of the presented results, stressing capability of AFCS to solve problems appearing in development of dense wireless networks.
机译:本文介绍了一种高效能最佳自适应反馈通信系统(AFCS)的原型设计方法和实验结果,该系统无需编码即可传输低频模拟信号。本文强调了正向发射机饱和的作用,它是阻碍先锋理论(1960-1970年代)和后来的FCS研究成果的实施的因素。深入分析了统计拟合条件在AFCS优化任务的充分制定和解决中的作用。任务的解决方案-以有助于阐述硬件/软件原型的形式提供了最佳的发送/接收算法。原型的显着特点是缺少编码/解码单元,其功能由前向发射机(FT)的自适应脉冲幅度调制器(PAM)和基站(BS)接收机中的估计/控制算法来实现。实验证实,原型能够“完美”地将信号从FT传输到BS:其比特率等于系统的容量,并且具有极限能量[J / bif]和频谱[bps / Hz]的效率。 AFCS的另一个同样重要且经过实验证实的特性是,AFCS能够根据应用场景的特点调整FT和BS参数,并保持包括光谱能量效率在内的理想传输方式。可以使用BS均方误差(MSE)估计值来进行AFCS调整。本文的最后部分包含了对所提出的结果的讨论,强调了AFCS解决密集无线网络发展中出现的问题的能力。

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