• Non ci sono risultati.

Coefficienti di funzioni finestreFinestraa0a1a2a3a4noteRettangolare 1Hanning0,50,5Hamming esatta

N/A
N/A
Protected

Academic year: 2021

Condividi "Coefficienti di funzioni finestreFinestraa0a1a2a3a4noteRettangolare 1Hanning0,50,5Hamming esatta"

Copied!
4
0
0

Testo completo

(1)

Coefficienti di funzioni finestre

Finestra a0 a1 a2 a3 a4 note

Rettangolare 1

Hanning 0,5 0,5

Hamming esatta

a)

25/46 21/46 W(f) = 0 per

f=2,5/T

Hamming 0,54 0,46

Blackman esatta

a)

7938/18608 9240/18608 1430/18608 W(f) = 0 per

f=3,5/T 2 4,5/T

Blackman 0,42 0,50 0,08

Blackman-Harris (3 termini)

a)

0,42323 0,49755 0,07922 mimima altezza dei

lobi secondari Blackman-Harris

(4 termini)

a)

0,35875 0,48829 0,14128 0,01168 mimima altezza dei

lobi secondari

Kaiser-Bessel

b)

1 1,24 0,244 0,00305

Flat-top

b)

1 1,93 1,29 0,388 0,0322

Ftat-top

c)

0,2132832 0,4140061 0,2790559 0,0861667 0,0074881 Gauss-top

c)

0,3232154 0,4714921 0,1755341 0,0284970 0,0012614

Blackman-Harris

d)

0,423 0,497 0,079

Flat-top

d)

0,281 0,521 0,198

a) F.J. Harris, “On the use of windows for harmonic analysis with the Discrete Fourier Transformer” Proceedings of IEEE, Vol. 66 No. 1, January 1978, pp. 51 – 83.

b) J.W. Dally, W.F. Riley, K. G. McConnell, “Instrumentation for engineering measurements”, J. Wiley & S., 1993, p. 392 (Bruel & Kjaer Instruments technical review 1987 No. 3).

c) C.F. Coombs Jr. “Electronic instrument handbook”, McGraw Hill, 1994, p.9.13.

d) LeCroy

Finestra Highest

side-lobe level (dB)

Side-lobe fall-out (dB/dec)

Scallop loss (dB)

ENBW (bins)

3.0 dB BW (bins)

6.0 dB BW (bins)

Rettangolare -13 -20 3,92 1,00 0,89 1,21

Hanning -32 -60 1,42 1,50 1,44 2,00

Hamming esatta

a)

-42 -20

Hamming -43 -20 1,78 1,36 1,30 1,81

Blackman esatta

a)

-51 -20 1,33 1,51 1,52 2,13

Blackman -58 -60 1,10 1,73 1,68 2,35

Blackman-Harris

(3 termini)

a)

-67 -20 1,13 1,71 1,66 1,81

Blackman-Harris

(4 termini)

a)

-92 -20 0,83 2,00 1,90 2,72

Kaiser-Bessel

b)

-67 -20 1,80 1,71

Flat-top

b)

-94 -20 0,01 3,77 3,72

Ftat-top

c)

-93 -20 0,01 3,82

Gauss-top

c)

-125 -20 0,68 2,22

Blackman-Harris

d)

-67 -20 1,13 1,71

Flat-top

d)

-44 -20 0,01 2,96

(2)

0 10 20 30 40 50 10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Rettangolare

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Hanning

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Hamming

(3)

0 10 20 30 40 50 10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Blackman

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Blackman-Harris 3-term (-67 dB)

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Flat-top LeCroy

(4)

0 10 20 30 40 50 10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Blackman-Harris 4-term (-92 dB)

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Gauss-top Coombs

0 10 20 30 40 50

10

-7

10

-6

10

-5

10

-4

10

-3

10

-2

10

-1

10

0

Flat-top Coombs

Riferimenti

Documenti correlati

Joint frequency offset estimation and in- terference cancellation in mimo-ofdm systems.. Of

i 700 campioni di suolo previsti dal progetto “carta dei suoli delle valli del noce” sono stati analizzati presso il laboratorio dell’unità chimica vitienologica

The combination of protracted 5FU infusion and alfa 2b interferon has been tested in the treatment of well-dif- ferentiated neuroendocrine carcinomas of the gastroen-

RAKE detector (CRD) and pre-combining advanced blind adaptive multiuser detector (PABA-MUD) in the uplink GSM sub-urban channel with different number of asynchronous interfering

Harris, “On the use of windows for harmonic analysis with the Discrete Fourier Transformer” Proceedings of IEEE, Vol.. McConnell, “Instrumentation for engineering

Conversazione Tematica aperta a tutti gli Studenti a cura di Rosa Cocozza e Domenico

The acid form of Ibuprofen showed a different dynamic behavior, in particular the fast interconformational motions found were the rotation of the methyl groups and the π-flip of

Daily PM2.5 samples were collected during heating and non-heating season of the year 2013 in three different locations in Poland: Szczecin (urban background), Trzebinia