Implementations of cyclic cross-ambiguity functions in FPGAs for large scale signals

David Marquez, Juan Valera, Angel Camelo, C. Aceros, M. Jimenez, D. Rodríguez
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引用次数: 2

Abstract

This work presents theoretical formulations and algorithm development techniques for implementing the cross-ambiguity function on field programmable gate arrays (FPGA). Signal algebra operator techniques are utilized to formulate the cross-ambiguity function as a composition of cyclic mappings over finite dimensional Hilbert spaces. These formulations of linear operator compositions are proven to be essential to effect large scale FPGA implementations. Results are presented for Virtex 5 implementations of cross-ambiguity function operations using high order numeric sequences of up to 16384 samples in length. These results are being used in the development of a modeling framework for the study of MIMO radar waveform diversity design.
大规模信号的fpga循环交叉模糊函数实现
这项工作提出了在现场可编程门阵列(FPGA)上实现交叉模糊函数的理论公式和算法开发技术。利用信号代数算子技术将交叉模糊函数表述为有限维希尔伯特空间上循环映射的组合。这些线性算子组合的公式被证明是影响大规模FPGA实现的必要条件。结果表明,Virtex 5实现的交叉模糊函数操作使用高阶数字序列的长度高达16384个样本。这些结果正在用于开发用于研究MIMO雷达波形分集设计的建模框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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