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FIR4
- *用循环缓冲区和双操作数寻址方法实现FIR滤波器 *N=80,y(n)=h0*x(n)+h1*x(n-1)+...+h78*x(n-78)+h79*x(n-79) *先用matlab,选择80点汉明窗设计一个截止频率为0.2pi的低通滤波器
FIR5
- 系数对称的FIR滤波器设计 * *N=8,h(n)=h(N-1-n) * *y(n)=h0*[x(n)+x(n-7)]+h1*[x(n-1)+x(n-6)] * * +h2*[x(n-2)+x(n-5)]+h3*[x(n-3)+x(n-4)]
FIR-equal-ripple-TI
- 等波纹方法设计的FIR滤波器,用TMS320C54x汇编语言编程,并在CCS下调试实现该FIR滤波器。
chap06
- ex5_1 I-型线性相位FIR滤波器 ex5_2 II-型线性相位FIR滤波器 ex5_3 III-型线性相位FIR滤波器 ex5_4 IV-型线性相位FIR滤波器 ex5_5 矩形窗频响 ex5_6 希尔伯特变换器设计-汉宁窗 ex5_7 低通滤波器设计-汉明窗 ex5_8 带通滤波器设计-布莱克曼窗 ex5_9 低通滤波器设计-凯塞窗 ex5_11 频率采样技术:低通,朴素法 ex5_12 频率采样技术:低通, 最优法T1 & T2 ex5_13
FIR
- DSP TMS320C54X fir滤波器程序设计 高通低通-DSP TMS320C54X fir filter program design high-pass low-pass
DPS5402
- 基于DPS5402的自适应滤波器的设计,ti公司生产的5402芯片。FIR滤波器,lms算法实现自适应滤波-ti chips produced by 5402.FIR filter,lms adaptive filter algorithm
FIR
- fir.asm是基于循环缓冲区的FIR滤波器的设计程序,采样率为10KHz-fir.asm is based on the circular buffer FIR filter design program, sampling rate of 10KHz
FIR2
- fir2.asm基于线性缓冲区的FIR滤波器的设计,采样率为10KHz-fir2.asm buffer based on the linear FIR filter design, sampling rate of 10KHz
54430754fir
- 等波纹方法设计的FIR滤波器,用TMS320C54x汇编语言编程-Chebyshev,Rayleigh Noise
FIR
- 基于dsp的fir滤波器设计,用汇编语言编程的-Dsp fir filters based on the design, assembly language programming
TMS320F2812_DSP-FIR-filter
- 基于TMS320F2812DSP对FIR低通滤波器进行设计与实现,其中的汇编程序通过实验验证-FIR low-pass filter based TMS320F2812DSP Design and implementation of which assembler verified by experiments
DSP-FIR-FILTER
- 利用DSP对FIR低通滤波器进行设计的方法进行了讨论,给出了汇编的源程序,-DSP FIR low-pass filter design methods, a compilation of the source is given,
Matlab-fir
- 用矩形窗,汉宁窗,三角窗,布拉克曼窗设计FIR低通数字滤波器 -With a rectangular window, Hanning window, triangle window, Blackman window FIR low-pass digital filter design
nlms
- nlms算法设计线性相位FIR滤波器,低通滤波器。-nlms algorithm design linear FIR filter
FIR_programme
- 利用FIR滤波原理,设计了一个带通型的FIR滤波器,用于实现语音去噪。-According to the principles of FIR filtering,a type of bandpass FIR filter has been designed to achieve the goal of speech enhancement
clear-all
- 基于matlab的fir数字滤波器设计,可实现对数字信号的滤波,-fir digital filter design matlab based, enabling the digital signal filtering,