Return-Path: Received: from post.thorcom.com (post.thorcom.com [195.171.43.25]) by mtain-dc06.r1000.mx.aol.com (Internet Inbound) with ESMTP id 1C33F380000C6; Wed, 23 Jan 2013 12:21:54 -0500 (EST) Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1Ty3ub-0005KJ-KI for rs_out_1@blacksheep.org; Wed, 23 Jan 2013 17:14:57 +0000 Received: from [195.171.43.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1Ty3ua-0005KA-Nv for rsgb_lf_group@blacksheep.org; Wed, 23 Jan 2013 17:14:56 +0000 Received: from imr-da03.mx.aol.com ([205.188.105.145]) by relay1.thorcom.net with esmtp (Exim 4.77) (envelope-from ) id 1Ty3uY-00039M-PU for rsgb_lf_group@blacksheep.org; Wed, 23 Jan 2013 17:14:55 +0000 Received: from mtaomg-ma02.r1000.mx.aol.com (mtaomg-ma02.r1000.mx.aol.com [172.29.41.9]) by imr-da03.mx.aol.com (Outbound Mail Relay) with ESMTP id 653021C00014E; Wed, 23 Jan 2013 12:14:33 -0500 (EST) Received: from core-dfd004c.r1000.mail.aol.com (core-dfd004.r1000.mail.aol.com [172.29.55.79]) by mtaomg-ma02.r1000.mx.aol.com (OMAG/Core Interface) with ESMTP id 180D8E000082; Wed, 23 Jan 2013 12:14:33 -0500 (EST) References: <8CFC7A4000C12C4-11E8-34444@webmail-m040.sysops.aol.com> To: rsgb_lf_group@blacksheep.org, rsgb_lf_group@yahoogroups.co.uk In-Reply-To: <8CFC7A4000C12C4-11E8-34444@webmail-m040.sysops.aol.com> X-MB-Message-Source: WebUI MIME-Version: 1.0 From: Markus Vester X-MB-Message-Type: User X-Mailer: AOL Webmail 37309-BASIC Received: from 194.138.39.61 by webmail-m040.sysops.aol.com (64.12.101.223) with HTTP (WebMailUI); Wed, 23 Jan 2013 12:14:32 -0500 Message-Id: <8CFC7A43E6938E4-11E8-344C2@webmail-m040.sysops.aol.com> X-Originating-IP: [194.138.39.61] Date: Wed, 23 Jan 2013 12:14:32 -0500 (EST) X-AOL-VSS-INFO: 5400.1158/87572 X-AOL-VSS-CODE: clean DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=mx.aol.com; s=20121107; t=1358961273; bh=AwNVW1u6kGA6vtuEbDq4603LY7kmHFOFmk4WXr4s1/s=; h=From:To:Subject:Message-Id:Date:MIME-Version:Content-Type; b=vuEYP6Ksct56ulWA/DE/cz67pEgEBjoHpCxN0B/FKddbLaT/A5fiZzJfzUPOuRhaC OCVVSGt78jdU5tRS9QpKqUl+JsXW/ItdJeuqrrBHyTV8/E1TvJlCnzDCOj0cwY2Szb QYluAWHQqGtTb5i0A9yBxLrD6CeJebQLPm8BbRX4= X-AOL-SCOLL-SCORE: 0:2:417914048:93952408 X-AOL-SCOLL-URL_COUNT: 0 Subject: LF: Re: Op32 correlation detection: RN3AGC, UA4WPF, UW8SM Content-Type: multipart/mixed; boundary="--------MB_8CFC7A43EABDF64_11E8_AD02B_webmail-m040.sysops.aol.com" X-Spam-Checker-Version: SpamAssassin 2.63 (2004-01-11) on post.thorcom.com X-Spam-Level: X-Spam-Status: No, hits=0.5 required=5.0 tests=FORGED_AOL_TAGS,HTML_20_30, HTML_MESSAGE autolearn=no version=2.63 X-SA-Exim-Scanned: Yes Sender: owner-rsgb_lf_group@blacksheep.org Precedence: bulk Reply-To: rsgb_lf_group@blacksheep.org X-Listname: rsgb_lf_group X-SA-Exim-Rcpt-To: rs_out_1@blacksheep.org X-SA-Exim-Scanned: No; SAEximRunCond expanded to false x-aol-global-disposition: G X-AOL-VSS-INFO: 5400.1158/87573 X-AOL-VSS-CODE: clean X-AOL-SCOLL-AUTHENTICATION: mtain-dc06.r1000.mx.aol.com ; domain : mx.aol.com DKIM : fail X-AOL-OVERRIDE-PIK-REASON: Y x-aol-sid: 3039ac1d408651001c3252e3 X-AOL-IP: 195.171.43.25 X-AOL-SPF: domain : blacksheep.org SPF : none This is a multi-part message in MIME format. ----------MB_8CFC7A43EABDF64_11E8_AD02B_webmail-m040.sysops.aol.com Content-Type: multipart/alternative; boundary="--------MB_8CFC7A43EABDF64_11E8_AD02C_webmail-m040.sysops.aol.com" ----------MB_8CFC7A43EABDF64_11E8_AD02C_webmail-m040.sysops.aol.com Content-Transfer-Encoding: quoted-printable Content-Type: text/plain; charset="utf-8" Here are last night's Op-32 results, showing more hits from the same player= s, and UW8SM in the clear: =C2=A0frequency=C2=A0=C2=A0=C2=A0=C2=A0 =C2=A0peak=C2=A0=C2=A0 =C2=A0focuse= d=C2=A0=C2=A0=C2=A0 Opera=C2=A0=C2=A0 =C2=A0=C2=A0 end time=C2=A0=C2=A0 cor= r.=C2=A0=C2=A0 callsign=C2=A0=20 137556.938Hz=C2=A0 9.8dB 33.8dBaf -33.9dBOp=C2=A0 20:16:03 20.8dB RN3AGC 137537.000Hz=C2=A0 4.7dB 30.2dBaf -37.4dBOp=C2=A0 20:51:11 17.4dB UA4WPF 137556.938Hz=C2=A0 6.2dB 33.4dBaf -34.2dBOp=C2=A0 21:12:06 19.9dB RN3AGC 137537.000Hz=C2=A0 4.7dB 30.2dBaf -37.4dBOp=C2=A0 21:25:13 18.4dB UA4WPF 137556.953Hz 11.0dB 34.6dBaf -33.0dBOp=C2=A0 22:02:15 21.2dB RN3AGC 137536.922Hz=C2=A0 6.4dB 29.8dBaf -37.9dBOp=C2=A0 21:59:12 19.3dB UA4WPF 137566.516Hz=C2=A0 6.6dB 30.7dBaf -37.0dBOp=C2=A0 00:24:15 20.1dB UW8SM 137566.500Hz=C2=A0 7.6dB 33.5dBaf -34.1dBOp=C2=A0 01:12:06 20.3dB UW8SM 137566.516Hz=C2=A0 4.8dB 30.1dBaf -37.5dBOp=C2=A0 01:59:55 19.2dB UW8SM 137566.531Hz=C2=A0 3.6dB 30.3dBaf -37.4dBOp=C2=A0 02:47:46 16.5dB UW8SM 137566.516Hz=C2=A0 4.2dB 30.5dBaf -37.1dBOp=C2=A0 03:35:35 18.8dB UW8SM 137566.531Hz=C2=A0 7.1dB 32.2dBaf -35.4dBOp=C2=A0 04:23:24 19.4dB UW8SM 137566.516Hz=C2=A0 8.2dB 32.9dBaf -34.8dBOp=C2=A0 05:11:15 21.0dB UW8SM 137566.531Hz=C2=A0 5.6dB 32.3dBaf -35.4dBOp=C2=A0 05:59:06 18.2dB UW8SM This time coherent correlation did not produce more hits, so only incoheren= t is shown. In the spectrogram, some 6.25 Hz Loran lines ended early becaus= e Slonim (my closest GRI 8000 station) went off air at 21:05. BTW the "candidate list" used for correlation is currently WD2XES, G3XDV, P= A0A, M0BMU, SM6BHZ, G0NBD, DF6NM, DK7FC, VO1NA, UA4WPF, DF2JP, G8HUH, RN3AG= C, UA0AET, R7NT, G4WGT, UW8SM. Please send a note if you intend to transmit= Opera-32 on LF and would like to be included. =C2=A0 Best 73, Markus (DF6NM) -----Urspr=C3=BCngliche Mitteilung-----=20 Von: Markus Vester <markusvester@aol.com> An: rsgb_lf_group <rsgb_lf_group@blacksheep.org>; rsgb_lf_group <r= sgb_lf_group@yahoogroups.co.uk> Verschickt: Di, 22 Jan 2013 6:43 pm Betreff: Op32 correlation detection: RN3AGC, UA4WPF, UW8SM Last night Jan-21/22 I tried again to detect Opera signals using the "deep = search" correlatiopn technique.=20 =C2=A0 Attached is a spectrogram covering the 137.5 to 137.6 kHz segment in 0.477 = mHz FFT resolution. At first, the strong WSPR signal from DK7FC on 137.607 = completely defeated the noise blanker. This could later be mitigated by ins= erting a steep bandfilter in SpecLab. The spectrum shows a large number of = peaks, most of them from active Loran chains, eg. 6.25 Hz multiples from GR= I 8000. =C2=A0 The FFT results were exported in ten minute intervals and processed offline= by my experimental Opera detection software, which searches for non-Loran = peaks and correlates the spectrum in their vicinity against several known O= pera signatures. Phase-coherent and incoherent searches were done in two se= parate runs. This produced the following hits: =C2=A0 coherent: =C2=A0 =C2=A0frequency=C2=A0=C2=A0 =C2=A0=C2=A0 =C2=A0peak=C2=A0=C2=A0=C2=A0=C2=A0= focused=C2=A0=C2=A0=C2=A0 Opera=C2=A0=C2=A0 =C2=A0 =C2=A0 end time=C2=A0= =C2=A0 corr.=C2=A0 callsign=C2=A0=20 137536.953Hz 10.0dB 20.7dBaf -46.9dBOp=C2=A0 20:42:13 15.5dB UA4WPF 137536.953Hz=C2=A0 7.4dB 17.4dBaf -50.2dBOp=C2=A0 21:18:12 16.0dB UA4WPF 137556.953Hz=C2=A0 6.2dB 18.1dBaf -49.5dBOp=C2=A0 21:26:11 14.1dB RN3AGC 137556.938Hz 14.2dB 26.2dBaf -41.4dBOp=C2=A0 22:13:29 17.5dB RN3AGC 137556.953Hz 15.4dB 27.3dBaf -40.3dBOp=C2=A0 23:09:31 20.1dB RN3AGC =C2=A0 incoherent: =C2=A0 =C2=A0frequency=C2=A0=C2=A0=C2=A0 =C2=A0=C2=A0 =C2=A0peak=C2=A0 =C2=A0focus= ed=C2=A0=C2=A0=C2=A0 Opera=C2=A0=C2=A0=C2=A0=C2=A0=C2=A0=C2=A0 end time=C2= =A0 =C2=A0corr.=C2=A0 callsign=C2=A0=20 137556.938Hz=C2=A0 5.6dB 28.6dBaf -39.0dBOp=C2=A0 22:13:29 17.8dB RN3AGC 137556.938Hz=C2=A0 6.5dB 32.7dBaf -34.9dBOp=C2=A0 23:09:31 20.1dB RN3AGC 137562.547Hz=C2=A0 4.6dB 31.5dBaf -36.1dBOp=C2=A0 00:08:18 15.8dB UW8SM 137562.547Hz=C2=A0 6.5dB 27.3dBaf -40.4dBOp=C2=A0 02:31:47 14.4dB UW8SM 137562.531Hz=C2=A0 5.5dB 32.7dBaf -34.9dBOp=C2=A0 03:19:38 14.6dB UW8SM 137562.563Hz=C2=A0 5.3dB 31.7dBaf -36.0dBOp=C2=A0 04:07:26 19.7dB UW8SM 137562.547Hz=C2=A0 6.1dB 33.1dBaf -34.5dBOp=C2=A0 05:43:08 19.6dB UW8SM=20 =C2=A0 UA4WPF and RN3AGC seem to be phase continuous whereas UW8SM could only be d= etected in incoherent mode. Note that in the current state the SNR calibrat= ion still has large uncertainties, but the coherent mode can clearly see mu= ch deeper.=20 =C2=A0 Unfortunately UW8SM seems to be sitting right on top of a Russian Loran lin= e on 137562.5. A slight shift in frequency=C2=A0(eg. 0.5 Hz) would probably= provide better coverage for him. =C2=A0 Best 73, Markus (DF6NM) -----Urspr=C3=BCngliche Mitteilung-----=20 Von: Markus Vester <markusvester@aol.com> An: rsgb_lf_group <rsgb_lf_group@blacksheep.org> Verschickt: Sa, 8 Dez 2012 7:03 pm Betreff: R7NT Op32 correlation detection Alex, LF, =C2=A0 the Op32 signal from R7NT was well visible in the 21 mHz TA window. I made = two recordings of a 2 Hz band around the anounced frequency, one from 22:08= to 08:11 UT and another one in=C2=A0daylight from 12:06 to 15:25. Then I= =C2=A0ran both through my Opera correlation detector,=C2=A0see attached res= ult. =C2=A0 The first two lines=C2=A0are=C2=A0a list of several known active Opera stat= ions. Each of=C2=A0these was tried in the=C2=A0cross correlation procedure.= =C2=A0The lines=C2=A0below that are=C2=A0the successful hits. Going from le= ft to right, the=C2=A0printed output contains: =C2=A0 =C2=A0time window for correlation (decimal UT hours before / after midnight= last night), =C2=A0frequency of carrier peak, =C2=A0uncalibrated "raw" dB of detected carrier, =C2=A0carrier SNR after a "carrier autofocus" procedure, which removes smal= l amouts of chirp=C2=A0and optimally weighs the amplitude for QSB, =C2=A0SNR on the Opera scale (ie. carrier in 2.5 kHz=C2=A0minus 4 dB), =C2=A0either c or i for a coherent=C2=A0or incoherent demodulation, =C2=A0UT hour of the winning correlation peak (corresponds to the start of = the transmission), =C2=A0SNR of=C2=A0correlation peak in time domain, =C2=A0callsign of the winner of the correlation procedure. =C2=A0 Now running a recording on 137567 to look for UA0AET tonight. =C2=A0 Best 73, Markus (DF6NM) =C2=A0 =C2=A0 ----------MB_8CFC7A43EABDF64_11E8_AD02C_webmail-m040.sysops.aol.com Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="utf-8"
Here are l= ast night's Op-32 results, showing more hits from the same players, and UW8= SM in the clear:

 frequency      peak    focuse= d    Opera      end time   cor= r.   callsign 
137556.938Hz  9.8dB 33.8dBaf -33.9dBOp  20:16:03 20.8dB RN3AGC 137537.000Hz  4.7dB 30.2dBaf -37.4dBOp  20:51:11 17.4dB UA4WPF 137556.938Hz  6.2dB 33.4dBaf -34.2dBOp  21:12:06 19.9dB RN3AGC 137537.000Hz  4.7dB 30.2dBaf -37.4dBOp  21:25:13 18.4dB UA4WPF 137556.953Hz 11.0dB 34.6dBaf -33.0dBOp  22:02:15 21.2dB RN3AGC
137536.922Hz  6.4dB 29.8dBaf -37.9dBOp  21:59:12 19.3dB UA4WPF 137566.516Hz  6.6dB 30.7dBaf -37.0dBOp  00:24:15 20.1dB UW8SM
137566.500Hz  7.6dB 33.5dBaf -34.1dBOp  01:12:06 20.3dB UW8SM
137566.516Hz  4.8dB 30.1dBaf -37.5dBOp  01:59:55 19.2dB UW8SM
137566.531Hz  3.6dB 30.3dBaf -37.4dBOp  02:47:46 16.5dB UW8SM
137566.516Hz  4.2dB 30.5dBaf -37.1dBOp  03:35:35 18.8dB UW8SM
137566.531Hz  7.1dB 32.2dBaf -35.4dBOp  04:23:24 19.4dB UW8SM
137566.516Hz  8.2dB 32.9dBaf -34.8dBOp  05:11:15 21.0dB UW8SM
137566.531Hz  5.6dB 32.3dBaf -35.4dBOp  05:59:06 18.2dB UW8SM

This time coherent correlation did not produce more hits, so only incoheren= t is shown. In the spectrogram, some 6.25 Hz Loran lines ended early becaus= e Slonim (my closest GRI 8000 station) went off air at 21:05.

BTW the "candidate list" used for correlation is currently WD2XES, G3XDV, P= A0A, M0BMU, SM6BHZ, G0NBD, DF6NM, DK7FC, VO1NA, UA4WPF, DF2JP, G8HUH, RN3AG= C, UA0AET, R7NT, G4WGT, UW8SM. Please send a note if you intend to transmit= Opera-32 on LF and would like to be included.
 
Best 73, Markus (DF6NM)


-----Urspr=C3=BCngliche Mitteilung-----
Von: Markus Vester <markusvester= @aol.com>
An: rsgb_lf_group <rsgb_= lf_group@blacksheep.org>; rsgb_lf_group <rsgb_lf_group@yahoogroups.co.uk>
Verschickt: Di, 22 Jan 2013 6:43 pm
Betreff: Op32 correlation detection: RN3AGC, UA4WPF, UW8SM

Last night= Jan-21/22 I tried again to detect Opera signals using the "deep search" co= rrelatiopn technique.
 
Attached is a spectrogram covering the 137.5 to 137.6 kHz segment in 0= .477 mHz FFT resolution. At first, the strong WSPR signal from DK7FC on 137= .607 completely defeated the noise blanker. This could later be mitigated b= y inserting a steep bandfilter in SpecLab. The spectrum shows a large numbe= r of peaks, most of them from active Loran chains, eg. 6.25 Hz multiples fr= om GRI 8000.
 
The FFT results were exported in ten minute intervals and processed of= fline by my experimental Opera detection software, which searches for non-L= oran peaks and correlates the spectrum in their vicinity against several kn= own Opera signatures. Phase-coherent and incoherent searches were done in t= wo separate runs. This produced the following hits:
 
coherent:
 
 frequency       peak   &= nbsp; focused    Opera       end time&nb= sp;  corr.  callsign 
137536.953Hz 10.0dB 20.7dBaf -46.9dBOp  20:42:13 15.5dB UA4WPF
137536.953Hz  7.4dB 17.4dBaf -50.2dBOp  21:18:12 16.0dB UA4WPF 137556.953Hz  6.2dB 18.1dBaf -49.5dBOp  21:26:11 14.1dB RN3AGC 137556.938Hz 14.2dB 26.2dBaf -41.4dBOp  22:13:29 17.5dB RN3AGC
137556.953Hz 15.4dB 27.3dBaf -40.3dBOp  23:09:31 20.1dB RN3AGC
 
incoherent:
 
 frequency        peak   = focused    Opera       end tim= e   corr.  callsign 
137556.938Hz  5.6dB 28.6dBaf -39.0dBOp  22:13:29 17.8dB RN3AGC 137556.938Hz  6.5dB 32.7dBaf -34.9dBOp  23:09:31 20.1dB RN3AGC 137562.547Hz  4.6dB 31.5dBaf -36.1dBOp  00:08:18 15.8dB UW8SM
137562.547Hz  6.5dB 27.3dBaf -40.4dBOp  02:31:47 14.4dB UW8SM
137562.531Hz  5.5dB 32.7dBaf -34.9dBOp  03:19:38 14.6dB UW8SM
137562.563Hz  5.3dB 31.7dBaf -36.0dBOp  04:07:26 19.7dB UW8SM
137562.547Hz  6.1dB 33.1dBaf -34.5dBOp  05:43:08 19.6dB UW8SM
 
UA4WPF and RN3AGC seem to be phase continuous whereas UW8SM could only= be detected in incoherent mode. Note that in the current state the SNR cal= ibration still has large uncertainties, but the coherent mode can clearly s= ee much deeper.
 
Unfortunately UW8SM seems to be sitting right on top of a Russian Lora= n line on 137562.5. A slight shift in frequency (eg. 0.5 Hz) would pro= bably provide better coverage for him.
 
Best 73,
Markus (DF6NM)


-----Urspr=C3=BCngliche Mitteilung-----
Von: Markus Vester <markusvester= @aol.com>
An: rsgb_lf_group <rsgb_= lf_group@blacksheep.org>
Verschickt: Sa, 8 Dez 2012 7:03 pm
Betreff: R7NT Op32 correlation detection

Alex, LF,
 
the Op32 signal from R7NT was well visible= in the 21 mHz TA window. I made two recordings of a 2 Hz band around the a= nounced frequency, one from 22:08 to 08:11 UT and another one in dayli= ght from 12:06 to 15:25. Then I ran both through my Opera correlation = detector, see attached result.
 
The first two lines are a list o= f several known active Opera stations. Each of these was tried in the&= nbsp;cross correlation procedure. T= he lines below that are the successful hits. Going from left to r= ight, the printed output contains:
 
 time window for correlation (decimal= UT hours before / after midnight last night),
 frequency of carrier peak,
 uncalibrated "raw" dB of detected ca= rrier,
 carrier SNR after a "carrier autofoc= us" procedure, which removes small amouts of chirp and optimally weigh= s the amplitude for QSB,
 SNR on the Opera scale (ie. carrier = in 2.5 kHz minus 4 dB),
 either c or i for a coherent or= incoherent demodulation,
 UT hour of the winning correlation p= eak (corresponds to the start of the transmission),
 SNR of correlation peak in time= domain,
 callsign of the winner of the correl= ation procedure.
 
Now running a recording on 137567 to look = for UA0AET tonight.
 
Best 73,
Markus (DF6NM)
 
 
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