This paper presents a self-contained factorization for the Vandermonde matrices associated with true-time delay based wideband analog multi-beam beamforming using antenna arrays. The proposed factorization contains sparse and orthogonal matrices. Novel self-recursive radix-2 algorithms for Vandermonde matrices associated with true time delay based delay-sum filterbanks are presented to reduce the circuit complexity of multi-beam analog beamforming systems. The proposed algorithms for Vandermonde matrices by a vector attain $\mathcal{O}(N \log N)$ delay-amplifier circuit counts. Error bounds for the Vandermode matrices associated with true-time delay are established and then analyzed for numerical stability. The potential for real-world circuit implementation of the proposed algorithms will be shown through signal flow graphs that are the starting point for high-frequency analog circuit realizations.
翻译:本文介绍了与使用天线阵列进行基于实时延迟的宽频模拟多波束波束成型相关的Vandermonde矩阵的自足因子化。 拟议的因子化包含稀薄和正方形矩阵。 Vandermonde矩阵与基于真正时间延迟的延迟和过滤过滤库相关的新颖自补弧二算法将降低多波束模拟波形成型系统的电路复杂性。 Vandermonde矩阵中由矢量制成的拟议因子算法将达到$\mathcal{O}(N\log N)$的延迟放大器路路数。 与真实时间延迟相关的Vandermode矩阵的错误界限将建立起来,并随后分析其数字稳定性。 拟议的算法的实际电路系实施的可能性将通过作为高频模拟电路实现的起点的信号流图来显示。