非合作接收机空间处理的带宽不变性研究

A. Shaw, M. Jamali, N. Wilkins
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引用次数: 5

摘要

随着城市和战场场景中的现代电磁环境变得越来越密集,系统设计师倾向于采用宽带解决方案。扩频设计不仅允许增加同信道利用率,而且它们本身也更安全,降低了非合作接收器拦截的可能性。这部分是由于为了将信息带宽调制成更宽的传输带宽而必须应用的代码。此外,非合作接收机必须应对噪声增加、灵敏度降低和信号处理资源需求增加等问题。由于传统的高分辨率技术依赖于基于单色假设的相位测量,因此对于必须执行发射器地理定位或其他形式的空间处理的接收器来说,问题进一步加剧。本文将讨论一些现有的方法,建议对抗非合作接收机的宽带宽空间处理及其局限性。本文将介绍一种基于双线性变换的新方法来克服这些局限性。它将展示仿真结果,证明该技术的优势
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward Bandwidth Invariance of Spatial Processing in the Non-Cooperative Receiver
As the modern electro-magnetic environment in urban and battlefield scenarios becomes increasingly denser, system designers tend to gravitate toward wide bandwidth solutions. Not only do spread spectrum designs permit increased co-channel utilization, they also tend to be inherently more secure, decreasing the probability of intercept by non-cooperative receivers. This is in part due to the code that must be applied in order to modulate the information bandwidth into a much wider transmitted bandwidth. In addition the non-cooperative receiver must contend with issues of increased noise, decreased sensitivity, and increased signal processing resource requirements among others. The problem is further exacerbated for receivers that must perform emitter geo-location or other forms of spatial processing, since the conventional high-resolution techniques rely on phase measurements based on the monochromatic assumption. This paper will discuss some of the existing methods suggested to contend with wide bandwidth spatial processing for noncooperative receivers and their limitations. It will introduce a new method based on the bilinear transformation that overcomes some of these limitations. It will present simulation results that demonstrate the advantage of this technique
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