期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Wireless Secure Communication Based on Code Domain Space-Time Modulated Metasurface 被引量:2
1
作者 Xinyu Fang Xuezhi Zheng +2 位作者 Mengmeng Li Zhiyu Li Dazhi Ding 《Electromagnetic Science》 2024年第4期64-74,共11页
The emergence of space-time modulated metasurface(STMM)as a novel platform for signal modulation holds significant promise for wireless secure communication,particularly within modern information technologies such as ... The emergence of space-time modulated metasurface(STMM)as a novel platform for signal modulation holds significant promise for wireless secure communication,particularly within modern information technologies such as Internet of things and the 5th generation and beyond.While previous secure communication methods based on STMM have primarily focused on ensuring information security within both the time and frequency domains,in this study,we introduce a novel code domain modulation scheme in STMM to facilitate wireless secure communications,which is difficult to be detected in both time and frequency domains.The core concept involves synthesizing a smart modulation waveform by using a new code domain so that both secure information transmission and mitigation of jamming are realized.To achieve this,we build a Q-dimensional signal space that has a minimum overlap with the jamming signal space and where orthogonal or quasi-orthogonal basis functions are used for information transmission.Furthermore,this methodology can be readily extended to other abstract signal domains.To exemplify this approach,we implement an STMM and utilize it to transmit the logos of our universities accurately,while eavesdroppers are unable to acquire any useful information through direct identification from the constellation diagrams.This showcases the effectiveness of the proposed secure communication system. 展开更多
关键词 Code domain metasurface space-time modulation Secure communication Signal space
原文传递
基于异步时空编码超表面的调零天线设计方法
2
作者 谷紫洋 余时涧 +3 位作者 卞小贝 帅征 安康 关东方 《移动通信》 2025年第4期75-82,共8页
提出了一种基于异步时空编码超表面的调零天线设计方法,旨在解决传统调零天线硬件复杂度高、功耗大以及动态调谐能力有限等问题。通过建立异步时空编码的数学模型,优化单元调制频率分布与时序策略,实现在干扰方向上的高精度零陷控制。... 提出了一种基于异步时空编码超表面的调零天线设计方法,旨在解决传统调零天线硬件复杂度高、功耗大以及动态调谐能力有限等问题。通过建立异步时空编码的数学模型,优化单元调制频率分布与时序策略,实现在干扰方向上的高精度零陷控制。与传统调零天线相比,所提方案无需复杂射频链路,仅通过数字编码即可完成动态波束赋形和阵列方向图综合,兼具低硬件复杂度与高环境适应性的优势;与仅使用空间/时空编码的超表面调零天线相比,所提方案对谐波能量的抑制能力更强。仿真结果表明,编码序列长度对调零天线波束成形性能有显著影响。在不同准则下,方向图综合性能存在差异,其中最小距离准则在干扰抑制与主瓣保持方面具有显著优势,其零陷深度可达-45dB,与理想幅相情况下的波束成形效果接近。研究成果为下一代6G无线通信、雷达抗干扰系统提供了高效可靠的调零天线编码解决方案。 展开更多
关键词 编码超表面 异步时空调制 波束成形 调零天线 阵列方向图综合
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部