Narrow sheet design with shielding metal walls of two-dimensional communication

K. Nakase, N. Kobayashi, H. Fukuda, A. Miyata, T. Tsukagoshi
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Abstract

In a sheet design of the two-dimensional communication (2DC) system, it is desirable to add shielding metal walls to the edges of the sheet in order to suppress electromagnetic (EM) radiation. Then, the sheet medium has the cutoff frequency similar to a rectangular waveguide, which can be determined from the width of the sheet. If the carrier frequency is less than the cutoff frequency, the power cannot be transmitted through the sheet. This paper proposes a new narrow 2DC sheet with the cutoff frequency lower than a conventional 2DC sheet with metal walls. Actually, the lower cutoff frequency can be obtained by forming a special metal pattern near the shielded walls. This can make the sheet width wider equivalently (electrical length longer). Then EM wave can propagate through a narrower sheet. Measurements using fabricated prototypes clearly show the advantage of the proposed structure.
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窄小的薄板设计带有屏蔽金属壁的二维通信
在二维通信(2DC)系统的薄板设计中,为了抑制电磁辐射,需要在薄板边缘添加屏蔽金属壁。然后,薄片介质具有与矩形波导相似的截止频率,该截止频率可以由薄片的宽度确定。如果载波频率小于截止频率,则无法通过该片传输功率。本文提出了一种新型窄2DC片材,其截止频率低于传统金属壁2DC片材。实际上,通过在屏蔽壁附近形成特殊的金属图案可以获得较低的截止频率。这可以使纸张宽度变宽(电气长度变长)。然后,电磁波可以通过更窄的薄片传播。使用制造原型的测量清楚地显示了所提出结构的优势。
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