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Optimization of channel capacity in magnetic communication systems subjected to total power constraint

机译:受总功率约束的磁通信系统中信道容量的优化

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This paper considers formulation and optimization of channel capacity of magnetic communication systems through various types of mediums, subjected to an overall power constraint. Following a parametric investigation of the induced electromotive force, the optimal operating frequency is derived. Maximization of channel capacity is obtained by a modified “Water filling” algorithm with upper-frequency limit, which provides the optimized power allocation along the spectrum. The results are compared to constant power spectral densities with optimized bandwidth, symmetric or asymmetric around the optimal frequency. It is shown that for a given system, the bandwidth and its spectral location, are the dominant parameters which determine the channel capacity, whereas the exact shape of the power distribution within the bandwidth is less significant. Also, an upper-frequency limit is required to prevent overestimation of capacity in dielectric media conditions and short range. Resonance circuits are compared to circuits without capacitors, showing similar results regarding capacity but with narrower bandwidth for the resonance circuits.
机译:本文考虑了受各种功率约束的磁通信系统通过各种类型的介质的信道容量的制定和优化。在对感应电动势进行参数研究之后,得出了最佳工作频率。通过修改的具有上限频率的“注水”算法可获得最大的信道容量,该算法可提供沿频谱的优化功率分配。将结果与具有最佳带宽的恒定功率谱密度(在最佳频率附近对称或不对称)进行比较。结果表明,对于给定的系统,带宽及其频谱位置是决定信道容量的主要参数,而带宽内功率分布的确切形状则不太重要。而且,需要一个上限频率来防止在介电介质条件和短距离内高估容量。将谐振电路与没有电容器的电路进行了比较,显示出相似的电容结果,但谐振电路的带宽较窄。

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