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Realization of subspace-based digital beamformer using CORDIC algorithm based on software defined radio architecture

机译:基于软件定义无线电架构的CORDIC算法实现基于子空间的数字波束形成器

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The reconfigurable multi-function matrix operation (MFMO) module circuits including eigen-value and eigen-vector decomposition (EVD), QR factorization (QRF), linear system solver (LLS), and matrix multiplier (MM) for the software defined radio and cognitive applications are designed using coordinate rotations digital computer (CORIDC) algorithm. The processing time for each scalable N×N MFMO module circuit implemented on the field programmable gate array (FPGA) is formulated. A unitary-ESPRIT (Estimating Signal Parameter via Rotational Invariance Techniques) subspace digital beamformer realized with a set of software-driven MFMO module circuits is used as an example to demonstrate the hardware reconfiguration capability. Based on the requirements of the processing time and the logic resource of the subspace digital beamformer, the proposed MFMO module circuits can be reconfigured via the reconfiguration controller (RC).
机译:可重新配置的多功能矩阵运算(MFMO)模块电路,包括用于软件定义的无线电和无线电的特征值和特征向量分解(EVD),QR分解(QRF),线性系统求解器(LLS)和矩阵乘法器(MM)。认知应用程序是使用坐标旋转数字计算机(CORIDC)算法设计的。制定了在现场可编程门阵列(FPGA)上实现的每个可扩展Nƒ-NMFMF模块电路的处理时间。以通过一组软件驱动的MFMO模块电路实现的单一ESPRIT(通过旋转不变技术估计信号参数)子空间数字波束形成器为例,演示了硬件重新配置功能。根据子空间数字波束形成器的处理时间和逻辑资源的要求,可以通过重新配置控制器(RC)对所建议的MFMO模块电路进行重新配置。

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