OpenBTS/Transceiver52M
Thomas Tsou 83f8196e24 transceiver52m: reset energy threshold on receive gain changes
The adaptive energy detection threshold does not scale relative
to signal level. In other words, the adjustment factor will be
the same whether the at 40% of signal level or 4%. If the receive
gain is reduced by a large amount, suppose 20 dB, the receiver
may take minutes to adjust to the new level.

When the receive gain is changed, reset the threshold back to
the initial level. This reduces issues of runtime gain adjustment
and prevents blocking bursts while the threhold level slowly
adjusts.

Signed-off-by: Thomas Tsou <tom@tsou.cc>

git-svn-id: http://wush.net/svn/range/software/public/openbts/trunk@4595 19bc5d8c-e614-43d4-8b26-e1612bc8e597
2012-12-06 15:43:55 +00:00
..
Complex.h Alexander's patches: 2012-11-23 08:37:32 +00:00
DummyLoad.cpp Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
DummyLoad.h Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
inband-signaling-usb Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
Makefile.am changing config scripts to explitly target UHD/USRP1 2011-11-26 03:19:36 +00:00
pulseApproximate.m Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
radioClock.cpp transceiver: separate radio clock and vector interfaces 2011-11-26 03:18:30 +00:00
radioClock.h transceiver: separate radio clock and vector interfaces 2011-11-26 03:18:30 +00:00
radioDevice.h Transceiver52M: UHD: Setup option to pass arguments from command line 2012-10-22 00:07:14 +00:00
radioInterface.cpp transceiver: clean variable init of radio interface constructor 2011-11-26 03:18:49 +00:00
radioInterface.h transceiver: make the transmit drive loop bus dependent 2011-11-26 03:18:55 +00:00
radioIO.cpp transceiver: separate I/O portion of radio interface implementation 2011-11-26 03:18:34 +00:00
radioIOResamp.cpp transceiver, resamp: enlarge transmit resampler output buffer 2011-11-26 03:19:33 +00:00
radioVector.cpp transceiver: rename getting radio vector time to getTime() 2011-11-26 03:18:43 +00:00
radioVector.h transceiver: rename getting radio vector time to getTime() 2011-11-26 03:18:43 +00:00
rcvLPF_651.h transceiver, resamp: insert missing filter values 2011-11-26 03:19:28 +00:00
README Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
README.DFEsymbolspaced Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
README.Talgorithm Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
runTransceiver.cpp Transceiver52M: UHD: Setup option to pass arguments from command line 2012-10-22 00:07:14 +00:00
sendLPF_961.h transceiver, resamp: insert missing filter values 2011-11-26 03:19:28 +00:00
sigProcLib.cpp transceiver, resamp: insert missing filter values 2011-11-26 03:19:28 +00:00
sigProcLib.h transceiver: separate radio clock and vector interfaces 2011-11-26 03:18:30 +00:00
sigProcLibTest.cpp Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
std_inband.rbf Adding in the missing Transceiver52M directory 2011-10-12 07:44:40 +00:00
Transceiver.cpp transceiver52m: reset energy threshold on receive gain changes 2012-12-06 15:43:55 +00:00
Transceiver.h uhd: inline thread priority setting 2011-11-26 03:17:21 +00:00
UHDDevice.cpp Alexander's patches: 2012-11-23 08:37:32 +00:00
USRPDevice.cpp Transceiver52M: UHD: Setup option to pass arguments from command line 2012-10-22 00:07:14 +00:00
USRPDevice.h Transceiver52M: UHD: Setup option to pass arguments from command line 2012-10-22 00:07:14 +00:00
USRPping.cpp Transceiver52M: UHD: Setup option to pass arguments from command line 2012-10-22 00:07:14 +00:00

The Transceiver

The transceiver consists of three modules:
   --- transceiver
   --- radioInterface
   --- USRPDevice

The USRPDevice module is basically a driver that reads/writes
packets to a USRP with two RFX900 daughterboards, board 
A is the Tx chain and board B is the Rx chain.  

The radioInterface module is basically an interface b/w the
transceiver and the USRP.   It operates the basestation clock
based upon the sample count of received USRP samples.  Packets 
from the USRP are queued and segmented into GSM bursts that are
passed up to the transceiver; bursts from the transceiver are
passed down to the USRP. 

The transceiver basically operates "layer 0" of the GSM stack,
performing the modulation, detection, and demodulation of GSM 
bursts.  It communicates with the GSM stack via three UDP sockets,
one socket for data, one for control messages, and one socket to
pass clocking information.  The transceiver contains a priority
queue to sort to-be-transmitted bursts, and a filler table to fill
in timeslots that do not have bursts in the priority queue.  The
transceiver tries to stay ahead of the basestation clock, adapting 
its latency when underruns are reported by the radioInterface/USRP.
Received bursts (from the radioInterface) pass through a simple 
energy detector, a RACH or midamble correlator, and a DFE-based demodulator.

NOTE: There's a SWLOOPBACK #define statement, where the USRP is replaced
with a memory buffer.  In this mode, data written to the USRP is actually stored 
in a buffer, and read commands to the USRP simply pull data from this buffer.
This was very useful in early testing, and still may be useful in testing basic
Transceiver and radioInterface functionality.