User Tools

Site Tools


operations:documentation:lba_dbbc_config

This wiki is not maintained! Do not use this when setting up AuScope experiments!

Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revision Previous revision
Next revision
Previous revision
Next revision Both sides next revision
operations:documentation:lba_dbbc_config [2013/03/28 04:12]
Jim Lovell
operations:documentation:lba_dbbc_config [2013/03/28 05:06]
Jim Lovell
Line 25: Line 25:
 </​code>​ </​code>​
  
 +As the notes on [[hardware:​dbbc.routing|how signals are routed through a DBBC]] describe, we only need one CoMo as there'​s a common input IF and all frequencies are in the band of Filter 1 (512 - 1024 MHz). So we can drop ''​ifb''​ and ''​lo=lob...''​. The input IF is X-band RCP which in input 1 and we want automatic gain control. The input power level for Ke in CoMo A [[operations:​currentissues|should be 38000]]. So ''​ifd01''​ should be edited to look like this:
  
 +<​code>​
 +define ​ ifd01         ​13073035822x
 +ifa=1,​agc,​1,​38000
 +lo=
 +lo=loa,​7600.00,​usb,​rcp,​off
 +enddef
 +</​code>​
 +
 +Drudg produced a ''​dbbc01d''​ procedure that looked like this:
  
 <​code>​ <​code>​
Line 36: Line 46:
 </​code>​ </​code>​
  
 +The LO frequencies are correct but we want to use BBCs 01 to 04 and CoMo A. So the revised version looks like this:
  
 +<​code>​
 +define ​ dbbc01d ​      ​13073035822x
 +bbc01=809.00,​a,​16.00
 +bbc02=825.00,​a,​16.00
 +bbc03=841.00,​a,​16.00
 +bbc04=857.00,​a,​16.00
 +enddef
 +</​code>​
  
 +Lastly, in ''​setup01''​ the mark5 mode needs checking. We start with 
 +<​code>​
 +mk5b_mode=ext,​0x0000CCCC,​0
 +</​code>​
  
-''​dbbc01d''​ and ''​ifd01''​ procedures ​to get the input bandsBBC channels etc configured correctly.+However, we want to pass through all bits from the first 4 BBCsso it needs to be changed to this:
  
-** Copy the basic layout from @@dbbc_config_file_lba.txt@@ to your new file and then edit the frequencies. Start by checking the listed frequencies of each channel on the ATNF Wiki. In the corresponding entry in your experiment'​s config file change the frequency to (lower band edge-7600). Using [[http://​www.atnf.csiro.au/​vlbi/​wiki/​index.php?​n=LBAApr2012.V271K|v271k]] as an example, channel 1's lower band edge is 8200 MHz. The first line in the @@dbbc_config_file_v271k.txt@@ is then @@1 dbbc2.bit 600.00 16@@. Repeat for all needed channels and leave unused channels alone. +<​code>​ 
-* %red%Load the configuration into the DBBC with the @@DBBC Client@@ command @@load=dbbc_config_file_v271k.txt@@ +mk5b_mode=ext,0x000000ff,1 
-* %red%Reconfigure the DBBC with @@reconfig@@ +</code>
-* %red%Use the @@DBBC Client@@ to send the command @@dbbcform=geo@@ +
-* %red%Set up the IF inputs. I've assumed that the observing frequencies for X-band are between 8112 and 8624 MHz which is normal for the LBA.  +
-** %red%If using XRCPsend these commands:​\\ +
-%red%@@dbbcifa=1,​agc,1@@\\ +
-%red%@@dbbcifb=4,​agc,​1@@\\ +
-%red%@@pps_sync@@ +
-**%red%If using XLCP, send these commands:​\\ +
-%red%@@dbbcifa=2,​agc,​1@@\\ +
-%red%@@dbbcifb=1,​agc,​1@@\\ +
-%red%@@pps_sync@@ +
-* %red%Confirm that the crossover switches are in the direct position. It's easiest to do this by starting up a system monitor. Connect to ops4 with @@shh -X observer@ops4@@ and run @@monitor_system.pl@@. Select the relevant telescope & check the settings of the "​Cross-over switches"​ +
-* Check the mk5b_mode line in the @@/usr2/​proc/​v271kke.prc@@ file. For 4 channels only, it should read as @@mk5b_mode=ext,​0x000000FF,​0@@ while for 8 it should be @@mk5b_mode=ext,​0x0000FFFF,​1@@.+
  
-!!!X-band, dual polarisation  +===== X-band, dual polarisation ​===== 
-* Create a new configuration file in @@C:\DBBC_CONF@@ of dbbcke if neededIf the experiment shares a configuration with a previous experiment ​(same frequenciespolarisations,​ channel orderthen you should be able to use thatOtherwiseread on.  + 
-** Copy the basic layout from @@dbbc_config_file_lba.txt@@ to your new file and then edit the frequenciesPut all of the channels at one polarisation ​in lines 1-4 and have lines 5-8 for the other polarisationIf the schedule shows the channels as alternating between ​RCP and LCP, tell the LBA chat (Cormac ​and Chris by email) that the recorded channel ordering will be different. +As an example, here's how V465b has it's frequencies set up according to the LBA wiki: 
-** Start by checking ​the listed frequencies of each channel on the ATNF WikiIn the corresponding entry in your experiment's config file change the frequency ​to (lower band edge-7600)As an exampleif channel 1's lower band edge is 8200 MHz then the first line in the @@dbbc_config_file_v999a.txt@@ is then @@1 dbbc2.bit 600.00 16@@Repeat for all needed channels and leave unused channels alone+ 
-* %red%Load the configuration into the DBBC with the @@DBBC Client@@ command @@load=dbbc_config_file_v999a.txt@@ +{{:​operations:​documentation:screenshot_28_03_13_3_32_pm.png|V465b frequency setup}} 
-* %red%Reconfigure the DBBC with @@reconfig@@ + 
-* %red%Use the @@DBBC Client@@ to send the command @@dbbcform=geo@@ +Running ''​drudg''​ on the VEX file produces the following IF setup for Ke (note you may get some warning messagesjust persist and produce the files anyway)
-* %red% up the IF inputsI've assumed that the observing ​frequencies ​for X-band ​are between 8112 and 8624 MHz which is normal ​for the LBA+ 
-** %red%If using XRCPXLCPsend these commands:\\ +<​code>​ 
-%red%@@dbbcifa=1,agc,1@@\\ +define ​ ifd01         ​00000000000x ​            
-%red%@@dbbcifb=1,agc,1@@\\ +ifa=1,​agc,​1 
-%red%@@pps_sync@@ +ifb=4,​agc,​1 
-**%red%If using XLCPXRCP send these commands:\\ +lo= 
-%red%@@dbbcifa=2,agc,1@@\\ +lo=loa,7600.00,usb,​rcp,​off 
-%red%@@dbbcifb=4,agc,1@@\\ +lo=lob,7600.00,​usb,​rcp,​off 
-%red%@@pps_sync@@ +enddef 
-* %red%Confirm that the crossover switches are in the direct positionIt's easiest to do this by starting up a system monitorConnect to ops4 with @@shh -X observer@ops4@@ and run @@monitor_system.pl@@Select the relevant telescope & check the settings of the "​Cross-over switches"​ +</​code>​ 
-* Check the mk5b_mode line in the @@/​usr2/​proc/​v999ake.prc@@ file. For 4 channels only, it should read as @@mk5b_mode=ext,​0x000000FF,​0@@ while for 8 it should be @@mk5b_mode=ext,​0x0000FFFF,​1@@.+ 
 +As the notes on [[hardware:​dbbc.routing|how signals are routed through a DBBC]] describe, we need two CoMos, one for X RCP and one for X LCPThe first four BBCs will need to be one polarisation ​(RCP) and the second four (from CoMo B) LCPA note to the correlator and whoever is running fringe checks should be sent. 
 +The input IF for CoMo A is X-band ​RCP which in input 1, and for CoMo B X LCP is on input 1, and we want automatic gain control. The input power level for Ke in CoMos A and B [[operations:​currentissues|should ​be 38000 and 33000]] respectivelyLastly, we might as well make the ''​lo''​ settings correct (although they don't actually do anything to the DBBC)So ''​ifd01''​ should be edited ​to look like this: 
 + 
 +<​code>​ 
 +define ​ ifd01         ​13075124605x ​            
 +ifa=1,​agc,​1,​38000 
 +ifb=1,​agc,​1,​33000 
 +lo= 
 +lo=loa,7600.00,usb,​rcp,​off 
 +lo=lob,​7600.00,​usb,​lcp,​off 
 +enddef 
 + 
 +</​code>​ 
 + 
 +Drudg produced a ''​dbbc01d''​ procedure that looked like this: 
 + 
 +<​code>​ 
 +define ​ dbbc01d ​      ​00000000000x ​            
 +bbc02=793.00,a,16.00 
 +bbc04=809.00,a,16.00 
 +bbc06=825.00,b,16.00 
 +bbc08=841.00,b,16.00 
 +bbc01=793.00,​a,​16.00 
 +bbc03=809.00,​a,​16.00 
 +bbc05=825.00,​b,​16.00 
 +bbc07=841.00,​b,​16.00 
 +enddef 
 +</​code>​ 
 + 
 +The LO frequencies are correct but we want to use BBCs 01 to 04 and CoMo A for the RCP frequencies and BBCs 05 to 07 and CoMo B for LCPSo the revised version looks like this: 
 + 
 +<​code>​ 
 +define ​ dbbc01d ​      ​13075124605x ​            
 +bbc01=793.00,a,16.00 
 +bbc02=809.00,a,16.00 
 +bbc03=825.00,a,16.00 
 +bbc04=841.00,a,16.00 
 +bbc05=793.00,b,16.00 
 +bbc06=809.00,b,16.00 
 +bbc07=825.00,b,16.00 
 +bbc08=841.00,b,16.00 
 +enddef 
 +</​code>​ 
 + 
 +Lastly, ​in ''​setup01'' ​the mark5 mode needs checkingWe start with  
 +<​code>​ 
 +mk5b_mode=ext,​0x0000FFFF,​1 
 +</​code>​ 
 + 
 +This is correct in this case as we haven'​t changed which BBCs we're passing through, just their frequency and polarisation assignments. 
 + 
 +===== S-band, single polarisation ===== 
 +The setup here is essentially the same as for X-band single polarisation except the [[hardware:​dbbc.routing|IF inputs]] and LO frequencies will differ.
  
-!!!S-band, single polarisation 
-* Create a new configuration file in @@C:​\DBBC_CONF@@ of dbbcke if needed. If the experiment shares a configuration with a previous experiment (same frequencies,​ polarisations,​ channel order) then you should be able to use that. Otherwise, read on.  
-** Copy the basic layout from @@dbbc_config_file_lba.txt@@ to your new file and then edit the frequencies. Start by checking the listed frequencies of each channel on the ATNF Wiki. In the corresponding entry in your experiment'​s config file change the frequency to (lower band edge-1900). As an example, channel 1's lower band edge is 2209 MHz then the first line in the @@dbbc_config_file_v999a.txt@@ is then @@1 dbbc2.bit 309.00 16@@. Repeat for all needed channels and leave unused channels alone. 
-* %red%Load the configuration into the DBBC with the @@DBBC Client@@ command @@load=dbbc_config_file_v999a.txt@@ 
-* %red%Reconfigure the DBBC with @@reconfig@@ 
-* %red%Use the @@DBBC Client@@ to send the command @@dbbcform=geo@@ 
-* %red%Set up the IF inputs. ​ 
-** %red%For either single S-band polarisation,​ use\\ 
-%red%@@dbbcifa=4,​agc,​2@@\\ 
-%red%@@dbbcifb=2,​agc,​2@@\\ 
-%red%@@pps_sync@@ 
-* %red%Confirm that the crossover switches are in the correct position. For SLCP, the switches should be direct, while SRCP you need to have the switches crossed. If you do change this, ''​please leave a note for the next observer!''​. To check the status, it's easiest to do this by starting up a system monitor. Connect to ops4 with @@shh -X observer@ops4@@ and run @@monitor_system.pl@@. Select the relevant telescope & check the settings of the "​Cross-over switches"​ 
-* Check the mk5b_mode line in the @@/​usr2/​proc/​v999ake.prc@@ file. For 4 channels only, it should read as @@mk5b_mode=ext,​0x000000FF,​0@@ while for 8 it should be @@mk5b_mode=ext,​0x0000FFFF,​1@@. 
  
 !!!S-band, dual polarisation - 4 channels maximum !!!S-band, dual polarisation - 4 channels maximum
Line 137: Line 188:
 * %red%For RCP, confirm that the crossover switches are in the direct position. It's easiest to do this by starting up a system monitor. Connect to ops4 with @@ssh -X observer@ops4@@ and run @@monitor_system.pl@@. Select the relevant telescope & check the settings of the "​Cross-over switches"​. For LCP, the crossover switches should be crossed. * %red%For RCP, confirm that the crossover switches are in the direct position. It's easiest to do this by starting up a system monitor. Connect to ops4 with @@ssh -X observer@ops4@@ and run @@monitor_system.pl@@. Select the relevant telescope & check the settings of the "​Cross-over switches"​. For LCP, the crossover switches should be crossed.
 * Check the mk5b_mode line in the @@/​usr2/​proc/​v469ake.prc@@ file. For 8 channels it should be @@mk5b_mode=ext,​0x0FF000FF,​1@@. * Check the mk5b_mode line in the @@/​usr2/​proc/​v469ake.prc@@ file. For 8 channels it should be @@mk5b_mode=ext,​0x0FF000FF,​1@@.
- 
/home/www/auscope/opswiki/data/pages/operations/documentation/lba_dbbc_config.txt · Last modified: 2013/03/28 05:35 by Jim Lovell