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R&S WinIQSIM2 Software Manual - Rohde & Schwarz

R&S WinIQSIM2 Software Manual - Rohde & Schwarz

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R&S ® <strong>WinIQSIM2</strong><br />

Graphical User Interface<br />

Baseband Block<br />

OFF<br />

Differential<br />

Phase<br />

Diff.<br />

Diff.<br />

+Gray<br />

Gray GSM NADC,<br />

PDC,<br />

PHS,<br />

TETRA,<br />

APCO25<br />

(PSK),<br />

PWT<br />

TFTS/<br />

TETRA<br />

INMARSAT,<br />

ICO,<br />

WCDMA,<br />

cdma2000<br />

VDL<br />

APCO25<br />

(FSK)<br />

APCO25<br />

(8PSK)<br />

32QAM EDGE X<br />

64QAM X X X X X<br />

128QAM X X X X X<br />

256QAM X X X X X<br />

1024QAM X X X X X<br />

Modulation type pi/4DQPSK<br />

With differential coding switched on at the same time, a constellation diagram is obtained<br />

for pi/4DQPSK which is similar to that obtained for 8PSK. Phase shifts are however<br />

assigned to the individual modulation symbols. The following tables show the assignment<br />

of modulation symbols to phase shifts of the I/Q vector in relation to the selected coding.<br />

Table 5-6: Phase shifts for pi/4DQPSK<br />

Modulation symbol a n<br />

(binary indication: MSB, LSB)<br />

00 01 10 11<br />

Phase shifts without coding + 45° + 135° - 135° - 45°<br />

Phase shifts with coding NADC, PDC, PHS,<br />

TETRA or APCO25 (PSK)<br />

+ 45° + 135° - 45° - 135°<br />

Phase shifts with coding TFTS - 135° + 135° - 45° + 45°<br />

Coding algorithms<br />

Common coding types are listed in the following table.<br />

Table 5-7: Coding algorithms<br />

Coding Coding algorithm Applicable for K bit/symbol<br />

NONE b n = a n k = 1...8<br />

Differential b n = (a n + b n-1 ) modulo 2 k k = 1...7<br />

Differential + Gray<br />

Gray coding with additional differential<br />

coding<br />

k = 1...7<br />

GSM dc n = not (d n exor d n-1 ) k = 1<br />

<strong>Software</strong> <strong>Manual</strong> 1008.0858.42 ─ 10<br />

56

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