IEEE Trans Biomed Circuits Syst. 2019 Dec;13(6):1583-1592. doi: 10.1109/TBCAS.2019.2953989. Epub 2019 Nov 18.
A dual-band dual-polarized wearable array is proposed, based on a miniaturized innovating button radiator topology. The diameter of the rigid button is only 19.5 mm (0.29 λ at 4.5 GHz), which optimizes the users' comfort, and makes it the smallest up to date in literature. The operational bands are 4.50-4.61 GHz and 5.04-5.50 GHz. The antenna thus covers the 4.5-4.6 unlicensed future 5th generation (5G) communication band for the internet of things (IoT), and the 5.1-5.5 GHz wireless local area network (WLAN) band, respectively. Two orthogonal linear polarizations are obtained in each band. A low mutual coupling between the button antenna elements (below -18 dB) and between the two ports within each element (below -20 dB) is achieved, guaranteeing a good diversity performance. The envelope correlation coefficient (ECC) and the specific absorption rate (SAR) performance are also analyzed. In order to demonstrate the robustness of the button antenna and to mimic realistic situations, a more complicated asymmetrical ground plane model of the button antenna is studied for the first time. A prototype of a two-element button array has been fabricated. The measurement results match well with the simulations. A 10-element button array is studied within the context of a 3-D channel model, taking into account the button element's radiation pattern. A high achievable spectral efficiency (SE) is obtained.
提出了一种基于小型化创新纽扣辐射器拓扑结构的双频双极化可穿戴阵列。刚性纽扣的直径仅为 19.5 毫米(在 4.5GHz 时为 0.29λ),优化了用户的舒适度,使其成为迄今为止文献中最小的。工作频段为 4.50-4.61GHz 和 5.04-5.50GHz。因此,天线覆盖了 4.5-4.6 未授权的未来第五代(5G)物联网通信频段和 5.1-5.5GHz 无线局域网(WLAN)频段。在每个频段中都获得了两个正交的线极化。实现了纽扣天线元件之间(低于-18dB)和每个元件内两个端口之间(低于-20dB)的低互耦合,保证了良好的分集性能。还分析了包络相关系数(ECC)和比吸收率(SAR)性能。为了展示纽扣天线的鲁棒性并模拟实际情况,首次研究了纽扣天线更复杂的不对称接地平面模型。已经制造了一个由两个元件组成的纽扣阵列原型。测量结果与模拟结果吻合良好。在 3-D 信道模型的背景下研究了 10 个纽扣元件的阵列,考虑了纽扣元件的辐射模式。获得了较高的可实现谱效率(SE)。