章节目录 (10).ppt
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1、2020/7/17,1,4.5 Simple Digital Filters简单的数字滤波器,Later in the course we shall review various methods of designing frequency-selective filters satisfying prescribed specifications We now describe several low-order FIR and IIR digital filters低阶FIR和IIR数字滤波器with reasonable selective frequency responses th
2、at often are satisfactory in a number of applications,2020/7/17,2,Simple FIR Digital Filters简单的FIR数字滤波器,FIR digital filters considered here have integer-valued impulse response coefficients These filters are employed in a number of practical applications, primarily because of their simplicity, which
3、 makes them amenable to inexpensive hardware implementations,2020/7/17,3,Simple FIR Digital Filters简单的FIR数字滤波器,Lowpass FIR Digital Filters低通FIR数字滤波器 The simplest lowpass FIR digital filter is the 2-point moving-average filter given by The above transfer function has a zero at and a pole at z = 0 Not
4、e that here the pole vector has a unity magnitude for all values of w,2020/7/17,4,Simple FIR Digital Filters简单的FIR数字滤波器,On the other hand, as w increases from 0 to p, the magnitude of the zero vector decreases from a value of 2, the diameter of the unit circle, to 0 Hence, the magnitude response is
5、a monotonically decreasing function of w from w = 0 to w = p,2020/7/17,5,Simple FIR Digital Filters简单的FIR数字滤波器,The maximum value of the magnitude function is 1 at w = 0, and the minimum value is 0 at w = p, i.e., The frequency response of the above filter is given by,2020/7/17,6,Simple FIR Digital F
6、ilters简单的FIR数字滤波器,The magnitude response can be seen to be a monotonically decreasing function of w,2020/7/17,7,Simple FIR Digital Filters简单的FIR数字滤波器,The frequency at which is of practical interest since here the gain in dB is given by since the dc gain,G,G,G,2020/7/17,8,Simple FIR Digital Filters简单
7、的FIR数字滤波器,Thus, the gain G(w) at is approximately 3 dB less than the gain at w = 0 As a result, is called the 3-dB cutoff frequency3-dB截止频率 To determine the value of we set which yields,2020/7/17,9,Simple FIR Digital Filters简单的FIR数字滤波器,The 3-dB cutoff frequency can be considered as the passband edge
8、 frequency As a result, for the filter the passband width is approximately p/2 The stopband is from p/2 to p Note: has a zero at or w = p, which is in the stopband of the filter,2020/7/17,10,Simple FIR Digital Filters简单的FIR数字滤波器,A cascade of the simple FIR filters results in an improved lowpass freq
9、uency response as illustrated below for a cascade of 3 sections,2020/7/17,11,Simple FIR Digital Filters简单的FIR数字滤波器,The 3-dB cutoff frequency of a cascade of M sections is given by For M = 3, the above yields Thus, the cascade of first-order sections yields a sharper magnitude response but at the exp
10、ense of a decrease in the width of the passband,2020/7/17,12,Simple FIR Digital Filters简单的FIR数字滤波器,A better approximation to the ideal lowpass filter is given by a higher-order moving-average filter Signals with rapid fluctuations in sample values are generally associated with high-frequency compone
11、nts These high-frequency components are essentially removed by an moving-average filter resulting in a smoother output waveform,2020/7/17,13,Simple FIR Digital Filters简单的FIR数字滤波器,Highpass FIR Digital Filters高通FIR数字滤波器 The simplest highpass FIR filter is obtained from the simplest lowpass FIR filter
12、by replacing z with This results in,2020/7/17,14,Simple FIR Digital Filters简单的FIR数字滤波器,Corresponding frequency response is given by whose magnitude response is plotted below,2020/7/17,15,Simple FIR Digital Filters简单的FIR数字滤波器,The monotonically increasing behavior of the magnitude function can again b
13、e demonstrated by examining the pole-zero pattern of the transfer function The highpass transfer function has a zero at z = 1 or w = 0 which is in the stopband of the filter,2020/7/17,16,Simple FIR Digital Filters简单的FIR数字滤波器,Improved highpass magnitude response can again be obtained by cascading sev
14、eral sections of the first-order highpass filter Alternately, a higher-order highpass filter of the form is obtained by replacing z with in the transfer function of a moving average filter,2020/7/17,17,Simple FIR Digital Filters简单的FIR数字滤波器,An application of the FIR highpass filters is in moving-targ
15、et-indicator (MTI) radars动靶指示(MTI)雷达 In these radars, interfering signals, called clutters杂波, are generated from fixed objects in the path of the radar beam The clutter, generated mainly from ground echoes and weather returns, has frequency components near zero frequency (dc),2020/7/17,18,Simple FIR
16、 Digital Filters简单的FIR数字滤波器,The clutter can be removed by filtering the radar return signal through a two-pulse canceler双脉冲消除器, which is the first-order FIR highpass filter For a more effective removal it may be necessary to use a three-pulse canceler三脉冲消除器obtained by cascading two two-pulse cancele
17、rs,2020/7/17,19,Simple IIR Digital Filters简单的IIR数字滤波器,Lowpass IIR Digital Filters低通IIR数字滤波器 A first-order causal lowpass IIR digital filter has a transfer function given by where |a| 1 for stability The above transfer function has a zero at i.e., at w = p which is in the stopband,2020/7/17,20,Simple
18、 IIR Digital Filters简单的IIR数字滤波器,has a real pole at z = a As w increases from 0 to p, the magnitude of the zero vector decreases from a value of 2 to 0, whereas, for a positive value of a, the magnitude of the pole vector increases from a value of to The maximum value of the magnitude function is 1 a
19、t w = 0, and the minimum value is 0 at w = p,2020/7/17,21,Simple IIR Digital Filters简单的IIR数字滤波器,i.e., and Therefore, is a monotonically decreasing function of w from w = 0 to w = p as indicated below,2020/7/17,22,Simple IIR Digital Filters简单的IIR数字滤波器,The squared magnitude function is given by The de
20、rivative of with respect to w is given by,2020/7/17,23,Simple IIR Digital Filters简单的IIR数字滤波器,in the range verifying again the monotonically decreasing behavior of the magnitude function To determine the 3-dB cutoff frequency we set in the expression for the square magnitude function resulting in,202
21、0/7/17,24,Simple IIR Digital Filters简单的IIR数字滤波器,or which yields The above quadratic equation can be solved for a yielding two solutions,2020/7/17,25,Simple IIR Digital Filters简单的IIR数字滤波器,The solution resulting in a stable transfer function is given by It follows from that is a BR function for |a| 1,
22、2020/7/17,26,Simple IIR Digital Filters简单的IIR数字滤波器,Highpass IIR Digital Filters高通IIR数字滤波器 A first-order causal highpass IIR digital filter has a transfer function given by where |a| 1 for stability The above transfer function has a zero at z = 1 i.e., at w = 0 which is in the stopband,2020/7/17,27,S
23、imple IIR Digital Filters简单的IIR数字滤波器,Its 3-dB cutoff frequency is given by which is the same as that of Magnitude and gain responses of are shown below,2020/7/17,28,Simple IIR Digital Filters简单的IIR数字滤波器,is a BR function for |a| 1 Example - Design a first-order highpass digital filter with a 3-dB cut
24、off frequency of 0.8p Now, and Therefore,2020/7/17,29,Simple IIR Digital Filters简单的IIR数字滤波器,Therefore,2020/7/17,30,Simple IIR Digital Filters简单的IIR数字滤波器,Bandpass IIR Digital Filters带通IIR数字滤波器 A 2nd-order bandpass digital transfer function is given by Its squared magnitude function is,2020/7/17,31,Si
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