Awan Wahaj Abbas, Ali Esraa Mousa, Alzaidi Mohammed S, Elkamchouchi Dalia H, Alsunaydih Fahad N, Alsaleem Fahd, Alhassoon Khaled
Department of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, South Korea.
Faculty of Aviation Sciences, Amman Arab University, Amman 11953, Jordan.
Heliyon. 2023 Sep 9;9(9):e19985. doi: 10.1016/j.heliyon.2023.e19985. eCollection 2023 Sep.
The research paper discusses the detailed designing of a compact, simple, and low-profile antenna that provides several desirable features. The antenna is engineered by using a substrate material called Roger 6002, and its dimensions are 12 mm × 6 mm × 1.52 mm. The single antenna element achieves a wideband frequency coverage of 24-30.2 GHz and a high gain of 9 dBi. To enhance the antenna's capabilities, a two-port multiple-input multiple-output (MIMO) configuration is employed by adding a second antenna element orthogonal to the first one. Although the operational band remains the same, the isolation between the two elements is found to be unsatisfactory. A C-shaped decoupling structure is established to address this issue, which effectively improves the isolation. Including the parasitic patch enhances the isolation from -18 dB to -29 dB. An antenna hardware sample is built and tested to validate the recommended work, and the outcomes are compared to the predicted results obtained from the software. The experimental and simulated data exhibit close agreement, confirming the accuracy of the design. Additionally, this outstanding performance in bandwidth and isolation compares with existing literature, presented in the form of a table. Various MIMO parameters are also examined, and it is found that they fall within acceptable ranges. The antenna demonstrates an Envelope Correlation Coefficient (ECC) of approximately 0.005 and a Diversity Gain (DG) of around 9.99 dB. The recommended antenna design is highly suitable for future miniature devices used in Internet of Things (IoT) applications.
该研究论文讨论了一种紧凑、简单且低剖面天线的详细设计,该天线具有多种理想特性。该天线采用一种名为Roger 6002的基板材料制造,其尺寸为12毫米×6毫米×1.52毫米。单个天线单元实现了24 - 30.2吉赫兹的宽带频率覆盖和9 dBi的高增益。为了增强天线的性能,通过添加一个与第一个天线正交的第二天线单元采用了双端口多输入多输出(MIMO)配置。尽管工作频段保持不变,但发现两个单元之间的隔离度不理想。建立了一种C形去耦结构来解决这个问题,这有效地提高了隔离度。包括寄生贴片将隔离度从 - 18 dB提高到 - 29 dB。构建并测试了一个天线硬件样本以验证所推荐的工作,并将结果与从软件获得的预测结果进行比较。实验数据和模拟数据显示出密切的一致性,证实了设计的准确性。此外,以表格形式呈现了该天线在带宽和隔离方面与现有文献相比的出色性能。还研究了各种MIMO参数,发现它们都在可接受的范围内。该天线的包络相关系数(ECC)约为0.005,分集增益(DG)约为9.99 dB。所推荐的天线设计非常适合用于物联网(IoT)应用的未来微型设备。