论文标题
天线尺寸约束的可实现速度:香农遇到Chu和Bode
Achievable Rate with Antenna Size Constraint: Shannon meets Chu and Bode
论文作者
论文摘要
使用CHU和BODE/FANO理论的想法,我们表征了单输入单输出无线通信通道的最大可实现率,这是对接收器天线大小的限制。通过使用无线电通信系统的电路理论多层模型,我们得出了紧凑型天线的信息理论限制。我们首先描述了其反射系数的物理可实现条件下的等效Chu天线电路。这样的设计使我们随后可以计算给定天线尺寸的可实现速率,从而为系统性能提供了物理界限,我们将其与标准尺寸不可约合的香农容量相比。我们还确定了有效的信噪比(SNR),这在很大程度上取决于天线的大小,并且体验了明显的有限尺寸性能降解,在这种情况下,只能达到香农容量的一部分。我们进一步确定了最佳信号带宽,这表明在窄带和宽带场景中,阻抗匹配都是必不可少的。我们还检查了在干扰存在下可实现的速度,这表明大小约束在干扰限制的情况下并不重要。最后,我们的数值结果是可实现的速率作为天线大小的函数和SNR的功能,揭示了无线电系统物理一致设计的新见解。
Using ideas from Chu and Bode/Fano theories, we characterize the maximum achievable rate over the single-input single-output wireless communication channels under a restriction on the antenna size at the receiver. By employing circuit-theoretic multiport models for radio communication systems, we derive the information-theoretic limits of compact antennas. We first describe an equivalent Chu's antenna circuit under the physical realizability conditions of its reflection coefficient. Such a design allows us to subsequently compute the achievable rate for a given receive antenna size thereby providing a physical bound on the system performance that we compare to the standard size-unconstrained Shannon capacity. We also determine the effective signal-to-noise ratio (SNR) which strongly depends on the antenna size and experiences an apparent finite-size performance degradation where only a fraction of Shannon capacity can be achieved. We further determine the optimal signaling bandwidth which shows that impedance matching is essential in both narrowband and broadband scenarios. We also examine the achievable rate in presence of interference showing that the size constraint is immaterial in interference-limited scenarios. Finally, our numerical results of the derived achievable rate as function of the antenna size and the SNR reveal new insights for the physically consistent design of radio systems.