Design of MIMO Antenna Isolation Structure by Material Distribution Method Optimization

Shun‐Hui Zhu, Xue‐Song Yang, Jian Wang, Bingzhong Wang
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Abstract

Material distribution method, which is a topology optimization algorithm, is used to design the isolation structure in a MIMO antenna. This topology optimization algorithm has the advantage of high topology optimization ability. It is utilized to optimize the impedance matching, port-to-port isolation and polarization of the MIMO antenna. The optimized antenna is verified by HFSS simulation. At the anticipated operation frequency of 5.8 GHz, the return loss is -25 dB, and the mutual coupling between the two ports is -30 dB. That means, in the case of center-to-center distance of $\pmb{\sim 0.39}\ \lambda_{0}$, a reduction of more than 17 dB in mutual coupling is achieved. Besides, the relative cross-polarization ratio is 18 dB. We can see this method can be applied in the optimization of MIMO antennas.
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材料分布优化MIMO天线隔离结构设计
材料分布法是一种拓扑优化算法,用于MIMO天线的隔离结构设计。该拓扑优化算法具有拓扑优化能力强的优点。该算法用于优化MIMO天线的阻抗匹配、端口对端口隔离和极化。通过HFSS仿真对优化后的天线进行了验证。在预期工作频率为5.8 GHz时,回波损耗为-25 dB,两个端口之间的互耦为-30 dB。这意味着,在中心到中心距离为$\pmb{\sim 0.39}\ \lambda_{0}$的情况下,实现了17 dB以上的相互耦合降低。相对交叉极化比为18 dB。由此可见,该方法可以应用于MIMO天线的优化。
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