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An efficient smart system for time-frequency analysis based on the cross-terms-free Wigner distribution signal representation

机译:一种高效的智能系统,用于基于无型无串的Wigner分布信号表示的时频分析

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This paper outlines the development of an efficient multi-cycle, signal adaptive hardware design of a system for time-frequency (TF) signal analysis, suitable for real-time implementation on an integrated chip. The proposed design allows the implemented system to take variable number of clock (CLK) cycles (the only necessary ones regarding the high auto-terms quality) in different TF points within the execution. In this way, the proposed design optimizes execution time of the implemented system, producing a pure cross-terms-free Wigner distribution (WD) signal representation. Additionally, the proposed multi-cycle design optimizes both critical design performances, related to the complexity of the hardware, and the CLK cycle time. The design has been verified by a field-programmable gate array (FPGA) circuit design, suitable of performing processing of nonstationary signals in real-time.
机译:本文概述了一种高效的多周期,用于时频(TF)信号分析系统的信号自适应硬件设计,适用于集成芯片上的实时实现。所提出的设计允许实现的系统采取可变数量的时钟(CLK)周期(唯一必要的时钟)在执行中的不同TF点中的关于高自动术语质量的唯一必要的时钟。以这种方式,所提出的设计优化了所实现系统的执行时间,产生纯的无级无序的Wigner分布(WD)信号表示。另外,所提出的多循环设计优化了与硬件的复杂性和CLK循环时间相关的关键设计性能。该设计已由现场可编程门阵列(FPGA)电路设计验证,适用于实时执行非间断信号的处理。

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