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The antenna spacetime system theory of wireless communications

机译:无线通信天线时空系统理论

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A general deterministic spacetime system theory of antennas suitable for the analysis and design of wireless communication links is rigorously developed using the recently introduced antenna current Green's function formalism. We provide the first complete derivation of the antenna spatio-temporal response to a delta source using only electromagnetic Green's functions, effectively eliminating all field and current distributions in the final expressions. While the theory works well in both space and time, it puts into sharper focus how the spatio-temporal structure of electromagnetic processes imposes restrictions on the signal processing capabilities of antenna systems by constraining the allowable mathematical form of the effective impulse response of the global wireless communication link. It is shown that the antenna current Green's functions of both the receive and transmit terminals, plus the propagation environment Green's functions, are the only quantities needed to obtain the single input-single output link response function in closed form. One of the results deduced from the theory is that an exact impulse response cannot be ascribed to an arbitrary antenna in general, but may be approximated for many applications. The theory can be deployed for future antenna systems research to boost up spectral efficiency (without increasing physical bandwidth) by directly incorporating electromagnetic knowledge into the design of the communication system's signal processing functions.
机译:使用最近引入的天线电流绿色的功能形式主义,严格开发了适用于无线通信链路的分析和设计的天线的一般确定性空间系统理论。我们只使用电磁绿色函数提供对Delta源的第一个完整的衍生天线时空响应,有效地消除了最终表达式中的所有字段和当前分布。虽然该理论在空间和时间均良好运行,但它更加赘述了电磁过程的时空结构如何通过约束全局无线的有效脉冲响应的允许数学形式对天线系统的信号处理能力产生限制通信链接。结果表明,天线电流绿色的接收和发送终端的功能以及传播环境绿色的功能,是在封闭形式中获得单个输入单输出链路响应函数所需的唯一数量。从理论推断的结果之一是,一般来说,精确的脉冲响应不能归因于任意天线,但可以近似用于许多应用程序。该理论可以部署用于未来的天线系统,通过直接将电磁知识直接结合到通信系统的信号处理功能的设计中,提高光谱效率(不增加物理带宽)。

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