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An FPGA-based frequency response analyzer for multisine and stepped sine measurements on stationary and time-varying impedance

机译:基于FPGA的频率响应分析仪,用于对固定和时变阻抗进行多正弦和步进正弦测量

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We report the development of a field programmable gate array (FPGA) based frequency response analyzer (FRA) for impedance frequency response function (FRF) measurements using periodic excitations, i.e. sine waves and multisines. The stepped sine measurement uses two dedicated hardware-built digital embedded multiplier blocks to extract the phase and quadrature components of the output signal. The multisine FRF measurements compute the fast Fourier transform (FFT) of the input/output signals. In this paper, we describe its design, implementation and performance evaluation, performing electrical impedance spectroscopy (EIS) measurements on phantoms. The stepped sine accuracy is 1.21% at 1 kΩ (1%), the precision is 35 mΩ and the total harmonic distortion plus noise (THD+N) is -120 dB. As for the multisine impedance FRF measurements, the magnitude and phase precision are, respectively, 0.23 Ω at 48.828 kHz and 0.021 deg at 8.087 MHz when measuring a resistor 505 Ω (1%). The magnitude accuracy is 0.55% at 8.087 MHz while the phase accuracy is 0.17 deg at 6.54 MHz. In all, the stepped sine signal-to-noise ratio (SNR) is 84 dB and 65 dB at frequencies below and above 1 MHz respectively. The SNR for the multisine FRF measurements is above 65 dB (30 kHz-10 MHz). The FRA bandwidth is 610.4 mHz-12.5 MHz and the maximum FRF measurement rate exciting with multisines starting at 30 kHz is 200 spectra s~(-1). Based on its technical specifications and versatility, the FRA presented can be used in many applications, e.g. for getting insight quickly into the instantaneous impedance FRF of the time-varying impedance under test.
机译:我们报告了基于现场可编程门阵列(FPGA)的频率响应分析仪(FRA)的开发情况,该分析仪使用周期激励(即正弦波和多正弦波)来测量阻抗频率响应函数(FRF)。步进正弦测量使用两个专用的硬件内置数字嵌入式乘法器模块来提取输出信号的相位和正交分量。多正弦FRF测量可计算输入/输出信号的快速傅立叶变换(FFT)。在本文中,我们描述了它的设计,实现和性能评估,对体模进行了电阻抗谱(EIS)测量。 1kΩ(1%)时,步进正弦精度为1.21%,精度为35mΩ,总谐波失真加噪声(THD + N)为-120 dB。对于多正弦阻抗FRF测量,当测量电阻505Ω(1%)时,幅度和相位精度分别为48.828 kHz时为0.23Ω和8.087 MHz时为0.021 deg。幅度精度在8.087 MHz时为0.55%,而相位精度在6.54 MHz时为0.17度。总之,在低于和高于1 MHz的频率下,步进正弦信噪比(SNR)分别为84 dB和65 dB。多正弦FRF测量的SNR高于65 dB(30 kHz-10 MHz)。 FRA带宽为610.4 mHz-12.5 MHz,以30 kHz开始的多正弦波激发的最大FRF测量速率为200光谱s〜(-1)。根据其技术规格和多功能性,本文介绍的FRA可以用于许多应用,例如以便快速了解被测时变阻抗的瞬时阻抗FRF。

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