4.7 Article

Design and Measurement of a Subarray Element Reconfigurable Intelligent Surface

期刊

IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION
卷 71, 期 10, 页码 8040-8047

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TAP.2023.3306450

关键词

Reflection; Power demand; Relays; Radio frequency; Surface waves; Gratings; Resonators; Arrays; PIN diodes; prototypes; reconfigurable intelligent surfaces (RISs); switches

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The article introduces a reconfigurable intelligent surface (RIS) technology that improves coverage holes in non-line-of-sight environments. By proposing a subarray element type RIS and employing an efficient array arrangement and design method, it achieves low power consumption and reduces the number of control elements.
A reconfigurable intelligent surface (RIS), which can electrically control the direction of radio wave reflections other than specular reflection, is expected to improve the area to coverage holes in non-line-of-sight (NLOS) environments. An RIS is produced by arranging reflective elements with control elements in an array. Because no amplifiers or other devices are used, it can be achieved with lower power consumption and cost than other methods, such as relays. However, because a large area of the RIS is required for area improvement, the number of control elements increases, and power consumption and cost may not decrease. Therefore, in this article, we propose a subarray element type RIS in which two reflective elements are controlled by a single control component to achieve low power consumption. We show that a staggered arrangement is an efficient arrangement of reflective elements that can suppress the reduction of the reflection angle range by subarraying and that a specific design method for a subarray element. We show the measurement results of a prototype based on this design and demonstrate that the number of control elements in the RIS can be reduced by 25% compared with the conventional design without degrading the high-frequency characteristics.

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