... Fourier Transforms in Radar and Signal Processing 4. ͐ ∞ −∞ sinc (x − m) sinc (x − n) dx = ␦ mn Using the result in item 3 above, if m = n the integral is ͵ ∞ −∞ sinc 2 (x − n) dx = ͵ ∞ −∞ sinc 2 xdx= ... from the rules. Writing out Rule 7 using the definitions of Fourier transform and convolution [(2.1) and (2.15)] gives 26 Fourier Transforms in Radar and Signa...
Ngày tải lên: 18/06/2014, 10:05
Fourier Transforms in Radar And Signal Processing_3 pot
... 3.6 Rising edge of width . 52 Fourier Transforms in Radar and Signal Processing Figure 3.13 Power spectra for rect and exponential impulse responses. 32 Fourier Transforms in Radar and Signal ... for integral. 46 Fourier Transforms in Radar and Signal Processing Figure 3.8 Asymmetric trapezoidal pulse spectra: (a) edges 0.2T and 0.3T ; and (b) edges...
Ngày tải lên: 18/06/2014, 10:05
... near +f 0 . 66 Fourier Transforms in Radar and Signal Processing by specifying that U should have no power outside a certain frequency interval, and that there should be no overlapping when U is ... retained by sampling it at a rate 2rW, where r is given in (4.13) above. 56 Fourier Transforms in Radar and Signal Processing Using T 0 and ⌬T as given in Figure 3....
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Fourier Transforms in Radar And Signal Processing_5 doc
... sampling with a finite window width on a high IF may require 82 Fourier Transforms in Radar and Signal Processing above, in particular from the point of view of finding the minimum sampling rate needed ... will in fact sample correctly, but at the cost, compared with Hilbert sampling, of requiring an increased 76 Fourier Transforms in Radar and Signal Processing sa...
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Fourier Transforms in Radar And Signal Processing_6 ppt
... (5.24) = sinc x ͫ sinc y + 1 2 sinc ( y − 1) + 1 2 sinc ( y + 1) ͬ Putting sinc ( y ± 1) = sin ( y ± 1) ( y ± 1) = −sin y ( y ± 1) we have 114 Fourier Transforms in Radar and Signal Processing 5.3.3 ... by 98 Fourier Transforms in Radar and Signal Processing Figure 5.8 FIR interpolation weights with oversampling. Figure 5.9 Trapezoidal spectral gate. 102 Fouri...
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Fourier Transforms in Radar And Signal Processing_7 docx
... to 122 Fourier Transforms in Radar and Signal Processing 5.6 Summary In this chapter we have shown how the rules -and- pairs method can be used to obtain simply results in the field of interpolation ... series, providing insight into the underlying principles. The first main application was to find the FIR filter weights that would provide interpolation for any band-limited s...
Ngày tải lên: 18/06/2014, 10:05
Fourier Transforms in Radar And Signal Processing_8 pdf
... 20% oversampling; and (b) four taps, 50% oversampling. 156 Fourier Transforms in Radar and Signal Processing Figure 6.15 Difference beam gain response against frequency offset: (a) linear response; ... Transforms in Radar and Signal Processing Figure 6.14 Difference beam response: (a) difference beam with narrowband weights; (b) difference beam with equalization. 142...
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Fourier Transforms in Radar And Signal Processing_9 doc
... ] ͮ (7.9) 168 Fourier Transforms in Radar and Signal Processing Figure 7.3 Beam patterns for uniform linear array with raised cosine shading: (a) u -space; (b) angle space. 176 Fourier Transforms in Radar ... raised cosine weighting (solid line). 180 Fourier Transforms in Radar and Signal Processing and the weight function, given by the Fourier transform of...
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Fourier Transforms in Radar And Signal Processing_10 pot
... 190 Fourier Transforms in Radar and Signal Processing time processing, and more comprehensive simulations. Cost could also be a significant factor, particular for real-time signal processing—it ... oversampling (only by a relatively small factor in some cases) in reducing the amount of computation needed in the signal processing under consideration. As computing speed...
Ngày tải lên: 18/06/2014, 10:05
Fourier Transforms in Radar And Signal Processing_1 ppt
... exp (−2 inXy) 46 Fourier Transforms in Radar and Signal Processing Figure 3.8 Asymmetric trapezoidal pulse spectra: (a) edges 0.2T and 0.3T ; and (b) edges 0.6T and 0.8T. 37 Rules and Pairs where ... 2B.1 Contour for integral. 32 Fourier Transforms in Radar and Signal Processing This is in the form of a Fourier series, with period 1/X = Y, and the coeff...
Ngày tải lên: 18/06/2014, 15:20
Fourier Transforms in Radar And Signal Processing_2 docx
... signal power here (from the definition of W ), 54 Fourier Transforms in Radar and Signal Processing Figure 3.14 Rising edge as the difference of two Ramp functions. 68 Fourier Transforms in Radar ... required pulse train (Figure 3.19). Again we take T for the pulse repetition interval, for 56 Fourier Transforms in Radar and Signal Processing Using T 0 and...
Ngày tải lên: 18/06/2014, 15:20
Fourier Transforms in Radar And Signal Processing_3 doc
... required. Figure 4.13 Lines of relative sampling rates. 82 Fourier Transforms in Radar and Signal Processing above, in particular from the point of view of finding the minimum sampling rate needed to ... is given by Hilbert sampling and quadrature sampling, discussed 84 Fourier Transforms in Radar and Signal Processing care, as discussed in the next section, and...
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Fourier Transforms in Radar And Signal Processing_6 doc
... effect of bandwidth: (a) 10% bandwidth; and (b) 200% bandwidth. 156 Fourier Transforms in Radar and Signal Processing Figure 6.15 Difference beam gain response against frequency offset: (a) linear ... wider signal bandwidths require proportionally higher sampling rates (further raised by oversampling.) 162 Fourier Transforms in Radar and Signal Processing also usef...
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Fourier Transforms in Radar And Signal Processing_7 doc
... weights. 168 Fourier Transforms in Radar and Signal Processing Figure 7.3 Beam patterns for uniform linear array with raised cosine shading: (a) u -space; (b) angle space. 174 Fourier Transforms in Radar ... ± 0 /2 and the corresponding u 0 value is given by 172 Fourier Transforms in Radar and Signal Processing take the amplitudes of the sinc functions at ±...
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Fourier Transforms in Radar and Signal Processing_3 pot
... required pulse train (Figure 3.19). Again we take T for the pulse repetition interval, for 56 Fourier Transforms in Radar and Signal Processing Using T 0 and ⌬T as given in Figure 3.14, the ... can now be 66 Fourier Transforms in Radar and Signal Processing by specifying that U should have no power outside a certain frequency interval, and that there should be...
Ngày tải lên: 19/06/2014, 22:20