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Direct Antenna Modulation (DAM) for Enhanced Capacity Performance of Near-Field Communication (NFC) Link

机译:直接天线调制(DAM)以增强近场通信(NFC)链路的容量性能

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Shannon's theorem suggests that the capacity of a wireless link is determined by both the power received and the bandwidth of the system. However, in a conventional setup of an inductively coupled near-field communication (NFC) link, there is a trade-off between the power coupled through and the bandwidth. Direct antenna modulation (DAM) is a feasible scheme to mitigate this dilemma. With DAM utilized in a NFC link, the power and bandwidth product limit in a high Q system can be circumvented because the non-linear/time-varying nature of the operation allows high speed modulations decoupled from the charging and discharging process of the high-Q resonator. In this paper, the theory of NFC link with DAM on the transmitter is presented and validated with an experimental setup. Improvement in reception of the high-speed modulation information is observed in the experiment, implying that a superior capacity performance of a NFC link is achieved through DAM versus the traditional scheme.
机译:香农定理表明,无线链路的容量取决于接收到的功率和系统的带宽。但是,在感应耦合近场通信(NFC)链路的常规设置中,在耦合通过的功率与带宽之间要进行权衡。直接天线调制(DAM)是缓解这一难题的可行方案。通过在NFC链路中使用DAM,可以规避高Q系统中的功率和带宽乘积限制,因为操作的非线性/时变性质允许将高速调制与高噪声系统的充电和放电过程解耦Q谐振器。在本文中,提出了NFC与DAM在发射机上链接的理论,并通过实验装置对其进行了验证。在实验中观察到高速调制信息接收的改善,这意味着与传统方案相比,通过DAM实现了NFC链路的出色容量性能。

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