
LLZ 421
Operation and Maintenance
Alignment Procedure LLZ−1F (LPD)
ILS 420
7−9
Ed. 07.08
SOAC
7.3
SETTING OF TRANSMITTER AND ANTENNA
NOTE:
Because two different PC user programs (
ADRACS
and
MCS
) can be used, the user pro-
gram−specific actions/procedures are described in detail in the ANNEX ’PC User Pro-
gram−specific Procedures’.
7.3.1
Adjusting CRS CSB Signal
a) Switch both TX on and set TX1 on aerial.
b) Open dialog ’Transmitter1−Waveform Data#1’, open dialog ’Transmitter2−Waveform Data#1’.
c) Set parameter ’CRS CSB RF−Level’ of both TX to 15 W.
d) Set parameter ’CRS CSB SDM’ of both TX to 40 %.
e) Set parameter ’CRS CSB DDM’ of both TX to 0 %.
f) Set parameter ’CRS SBO Amplitude’ of both TX to 0 %.
g) Measure SDM and DDM of CSB course signal for TX1 with the portable DDM instrument in the
radiation field at the measurement circle (close to the course line) or use RF signal from nearfield
dipole and connect it to portable instrument. If necessary, correct SDM and DDM of TX1 to get an
indication of 40.0 % SDM and 0.0 % DDM.
h) Open dialog ’Transmitter1−Waveform Data#1’, open dialog ’Transmitter2−Waveform Data#1’.
Set ’Ident AM’ for both TX e.g. to 10 %
.
Use portable instrument. Check if IDENT is measured by
execut. monitors.
i) Set TX2 on aerial. Perform the same procedure as for TX1 in step g) and h).
j) Switch both TX off.
7.3.2
Set CSB/SBO Phase (Course)
a) Switch both TX on and set TX1 on aerial.
b) Open dialog ’Transmitter1−Waveform Data#1’, open dialog ’Transmitter2−Waveform Data#1’.
c) Set parameter ’CRS CSB RF−Level’ of both TX to 15 W.
d) Set parameter ’CRS SBO Amplitude’ of both TX to 30 %.
e) Measure DDM with portable DDM instrument at a distance of approx. 1000 m (test point A or A’,
Fig. 7−6) and at approx. 2° away from course line; then set CRS SBO Phase so that the instrument
indicates DDM 0 (Phase in Quadrature).
NOTE:
Range of values 0...359°
f) Read out phase value determined in e). Then add or subtract 90° to or from it and enter as new
value, so that150 Hz predominates to the left of the course line, as seen in the radiation direction.
If not, a further 180° must be either added or subtracted (Normal Phase).
g) Set TX2 on aerial and repeat the phasing for TX2 with steps b) to f).
h) Switch both TX off.
7.3.3
Check SBO null of Course Antenna
The DDM null must not deviate from the nominal course line by more than ±10 cm at a distance of
150 m from the LLZ antenna, and the DDM must rise in a linear fashion from the null on either side.
If not, the dipoles must be phased in pairs. To perform this procedure refer to Part 3 of the LLZ−manu-
als: Antenna System Description for LPD 1F Antenna, Sect. 9.5.2 (8E) or 9.5.4 (14E).
Содержание 421
Страница 2: ......
Страница 26: ...LLZ 421 General Operation and Maintenance ILS 420 1 6 Ed 01 04 SOAC ...
Страница 54: ...LLZ 421 Installation Operation and Maintenance ILS 420 2 26 Ed 01 04 SOAC Ed 01 10 ...
Страница 56: ......
Страница 58: ......
Страница 66: ...LLZ 421 Installation Operation and Maintenance ILS 420 2 38 Ed 01 10 SOAC ...
Страница 90: ...LLZ 421 Operation Operation and Maintenance ILS 420 3 24 Ed 01 10 SOAC ...
Страница 98: ...LLZ 421 Alignment Procedure LLZ 1F Dip Refl Operation and Maintenance ILS 420 4 8 Ed 01 10 SOAC ...
Страница 108: ...LLZ 421 Alignment Procedure LLZ 1F Dip Refl Operation and Maintenance ILS 420 4 18 Ed 01 10 SOAC ...
Страница 122: ...LLZ 421 Alignment Procedure LLZ 2F Dip Refl Operation and Maintenance ILS 420 5 8 Ed 07 08 SOAC ...
Страница 148: ...LLZ GP Maintenance Operation and Maintenance ILS 420 TEST DATA SHEET 6 8 Ed 01 10 SOAC ...
Страница 156: ...LLZ 421 Maintenance Operation and Maintenance ILS 420 6 14 Ed 01 10 SOAC ...
Страница 216: ...LLZ 421 Alignment Procedure LLZ 1F LPD Operation and Maintenance ILS 420 7 8 Ed 07 08 SOAC ...
Страница 238: ...LLZ 421 Alignment Procedure LLZ 2F LPD Operation and Maintenance ILS 420 8 8 Ed 07 08 SOAC ...
Страница 256: ...LLZ 421 Alignment Procedure LLZ 2F LPD Operation and Maintenance ILS 420 8 26 Ed 07 08 SOAC ...