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An Efficient Hardware Design of the Flexible 2-D System for Space/Spatial-Frequency Signal Analysis

机译:用于空间/空频信号分析的灵活二维系统的高效硬件设计

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An efficient multiple clock cycle implementation (MCI) of a flexible system for space/spatial-frequency signal analysis is proposed. It is designed by extending the 1-D MCI architecture to the 2-D case. The proposed system can implement various (almost all commonly used) 2-D space/spatial-frequency distributions (S/SFDs) based on the 2-D short-time Fourier transform (STFT) elements. The designed system is very flexible, since it allows the implemented S/SFDs to take different numbers of clock cycles and to share functional kernel, known as the STFT-to-SM gateway, , within their execution. These are major advantages of the MCI approach, that enable one to optimize critical design performances such as hardware complexity, energy consumption, and cost. The proposed approach is verified by a real-time design of the field-programmable gate array chip that is capable of performing 2-D S/SFDs in real time
机译:提出了一种用于空间/空间频率信号分析的灵活系统的高效多时钟周期实现(MCI)。它是通过将1-D MCI体系结构扩展到2-D情况而设计的。所提出的系统可以基于二维短时傅立叶变换(STFT)元素实现各种(几乎所有常用的)二维空间/空间频率分布(S / SFD)。设计的系统非常灵活,因为它允许已实现的S / SFD在执行过程中采用不同数量的时钟周期并共享功能内核,即STFT到SM网关。这些是MCI方法的主要优势,使人们能够优化关键的设计性能,例如硬件复杂性,能耗和成本。通过现场可编程门阵列芯片的实时设计验证了该方法,该芯片能够实时执行2-D S / SFD

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