Return-Path: Received: from mtain-ma12.r1000.mx.aol.com (mtain-ma12.r1000.mx.aol.com [172.29.96.20]) by air-db08.mail.aol.com (v128.1) with ESMTP id MAILINDB084-869c4bb8ce14ff; Sun, 04 Apr 2010 13:36:21 -0400 Received: from post.thorcom.com (post.thorcom.com [193.82.116.20]) by mtain-ma12.r1000.mx.aol.com (Internet Inbound) with ESMTP id 7B0AC380000A8; Sun, 4 Apr 2010 13:36:18 -0400 (EDT) Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1NyTj3-0005r6-DR for rs_out_1@blacksheep.org; Sun, 04 Apr 2010 18:35:09 +0100 Received: from [193.82.116.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1NyTj2-0005qx-KU for rsgb_lf_group@blacksheep.org; Sun, 04 Apr 2010 18:35:08 +0100 Received: from imr-ma01.mx.aol.com ([64.12.206.39]) by relay1.thorcom.net with esmtp (Exim 4.63) (envelope-from ) id 1NyTiz-0008Aa-Cm for rsgb_lf_group@blacksheep.org; Sun, 04 Apr 2010 18:35:08 +0100 Received: from mtaout-db02.r1000.mx.aol.com (mtaout-db02.r1000.mx.aol.com [172.29.51.194]) by imr-ma01.mx.aol.com (8.14.1/8.14.1) with ESMTP id o34HYrxa011373 for ; Sun, 4 Apr 2010 13:34:53 -0400 Received: from Black (g229083219.adsl.alicedsl.de [92.229.83.219]) by mtaout-db02.r1000.mx.aol.com (MUA/Third Party Client Interface) with ESMTPA id 3B4D3E003386 for ; Sun, 4 Apr 2010 13:34:50 -0400 (EDT) Message-ID: <22CD490837B140B4B3F5B77C52A4ED47@Black> From: "Markus Vester" To: References: <8CC9FBC74256911-41E0-18086@Webmail-m124.sysops.aol.com> In-Reply-To: <8CC9FBC74256911-41E0-18086@Webmail-m124.sysops.aol.com> Date: Sun, 4 Apr 2010 19:34:28 +0200 MIME-Version: 1.0 X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Windows Mail 6.0.6000.16480 X-MimeOLE: Produced By Microsoft MimeOLE V6.0.6000.16669 X-AOL-VSS-INFO: 5400.1158/57050 X-AOL-VSS-CODE: clean X-Spam-Score: 0.0 (/) X-Spam-Report: autolearn=disabled,HTML_MESSAGE=0.001 Subject: LF: Re: VK to Eu - both ways! Content-Type: multipart/mixed; boundary="----=_NextPart_000_002D_01CAD42D.D7978A10" X-Spam-Checker-Version: SpamAssassin 2.63 (2004-01-11) on post.thorcom.com X-Spam-Level: X-Spam-Status: No, hits=0.7 required=5.0 tests=HTML_20_30, HTML_FONTCOLOR_UNKNOWN,HTML_MESSAGE,MISSING_OUTLOOK_NAME 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: 5400.1158/57050 X-AOL-VSS-CODE: clean x-aol-sid: 3039ac1d60144bb8ce12194e X-AOL-IP: 193.82.116.20 ------=_NextPart_000_002D_01CAD42D.D7978A10 Content-Type: multipart/alternative; boundary="----=_NextPart_001_002E_01CAD42D.D7978A10" ------=_NextPart_001_002E_01CAD42D.D7978A10 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Dear LF, Jean Pierre, Laurence,=20 the attached image is a false colour assembly of grabber captures abov= e 19 kHz from the last four days. The timescale is 10 minutes per pixe= l from April 1, 06:00 until April 4, 14:00 UT, with midnight UT highli= ghted by arrowheads.Frequency resolution was 1.46 Hz. The strong red= signal is GBZ Anthorn, with maxima around midday and midnight, and a= very sharp sunrise minimum at 4:30. NWC is a much weaker 200 Hz band= around 19.8 kHz, green to olive, with the ripple effect visible durin= g the first half of each day. It comes out best in the GBZ sideband nu= lls around 19.73 and 19.83 kHz. GBZ was off for a few hours on April= 1st, and the receiver was disconnected during my VLF transmit test ye= sterday afternoon. I am now quite sure that the effect is real, and that the proposed exp= lanation is correct, by the following reasons: - the ripple pattern repeated every day in a deterministic way. It's= not local interference. - the time delay causing between the components (1 / 21 Hz) matches th= e geometrical path difference (14.4 Mm / c). - the ripple is strongest between 4 and 12 UT. During this time, a lar= ge part of the long path across America is in darkness, whereas the sh= ort path across Asia is attenuated by daylight. - the diurnal pattern shift shows a cyclic variation of phase differen= ce. When the difference is larger (ie. long path is more delayed) the= pattern shifts downwards in frequency. The largest difference occurs= around 9 UT, with lower ionospheric height at noon over Asia advancin= g the short path, and midnight delaying the long path. - the short path is mainly overland, while the longpath is favoured by= going across two large oceans. This helps to emphasize the pattern by= making the levels more comparable. On the web there are some hints ab= out magnetically induced nonreciprocity, favouring west-to-east propag= ation. But I have no idea whether that could contribute significantly= at this frequency. All my observations were on the usual passive E-field antenna. I would= predict that a loop would probably swap maxima and minima in the ripp= le, by introducing a phase inversion between the two components arrivi= ng from east and west. I think this unusual and interesting effect is not difficult to see fo= r anyone. All you will need is a spectrogram with narrow enough freque= ncy resolution, and preferable some incoherent averaging to flatten th= e speckle from the modulation content. Of course being a bit further= away from GBZ helps. Best regards, Markus, DF6NM ----- Original Message -----=20 From: Markus Vester=20 To: rsgb_lf_group@blacksheep.org=20 Sent: Thursday, April 01, 2010 4:12 PM Subject: VLF: VK to Eu - both ways! Dear LF, the Australian VLF transmitter North West Cape (NWC, 19.8 kHz) can= be received regularly in Europe. This morning I had a detailed look= on the power spectrum of the MSK signal, and found interesting 21 Hz= periodic ripples. I believe this is an interference effect, due to th= e same signal being simultaneously received on both short path and lon= g path. The geometrical path difference (12.8 vs 27.2 Mm) does indeed= match the observed ripple period. I have switched my VLF grabber http://www.mydarc.de/df6nm/vlf/vlfgra= bber.htm to zoom in on the signal, and have slowed it down to be able= to see diurnal changes. During the last hours between 7 and 13 UT, th= e fading pattern has not disappeared completely. The frequency of the= minima has shifted upwards by one-and-a-half ripple periods, most lik= ely due to a variable differential phase shift between the two routes. I'd be interested to see if others observe this effect as well. If= the explanation is correct, the null positions should depend on east-= west receiver location on a half-wavelength scale.=20 Fascinating stuff! Kind regards Markus (DF6NM) PS - This is not an April joke. ------=_NextPart_001_002E_01CAD42D.D7978A10 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Dear LF, Jean Pierre, Laurence,
 
the attached image is a false colour= assembly of=20 grabber captures above 19 kHz from the last four days. The timesc= ale=20 is 10 minutes per pixel from April 1, 06:00 until April 4,= 14:00 UT,=20 with midnight UT highlighted by arrowheads.Frequency resolut= ion was=20 1.46 Hz. The strong red signal is GBZ Anthorn, with maxima around= midday=20 and midnight, and a very sharp sunrise minimum at 4:30. NWC= is a much=20 weaker 200 Hz band around 19.8 kHz, green to olive, with the ripple ef= fect=20 visible during the first half of each day. It comes out best = ;in the=20 GBZ sideband nulls around 19.73 and 19.83 kHz. GBZ was off for a few= hours on=20 April 1st, and the receiver was disconnected during my VLF transm= it test=20 yesterday afternoon.
 
I am now quite sure that the effect= is real, and=20 that the proposed explanation is correct, by the following reasons:
 
- the ripple pattern repeated ev= ery day in a=20 deterministic way. It's not local interference.
- the time delay causing&nb= sp;between the=20 components (1 / 21 Hz) matches the geometrical path difference (14.4= Mm /=20 c).
- the ripple is strongest between 4= and 12 UT.=20 During this time, a large part of the long path across America is in= darkness,=20 whereas the short path across Asia is attenuated by daylight.
- the diurnal=20 pattern shift shows a cyclic variation of phase difference.= When the=20 difference is larger (ie. long path is more delayed) the pattern shift= s=20 downwards in frequency. The largest difference occurs around 9=20 UT, with lower ionospheric height at noon over Asia advancin= g the=20 short path, and midnight delaying the long path.
- the short path is mainly overl= and, while the=20 longpath is favoured by going across two large oceans. This helps= =20 to emphasize the pattern by making the levels more comp= arable. On=20 the web there are some hints about magnetically induced nonreciprocity= ,=20 favouring west-to-east propagation. But I have no idea whether th= at=20 could contribute significantly at this frequency.
 
All my observations were on the= usual passive=20 E-field antenna. I would predict that a loop would probably swap maxim= a and=20 minima in the ripple, by introducing a phase inversion between th= e two=20 components arriving from east and west.
 
I think this unusual and interesting= effect is not=20 difficult to see for anyone. All you will need is a spectrogram= with narrow=20 enough frequency resolution, and preferable some incoherent averaging= to flatten=20 the speckle from the modulation content. Of course being a bit further= away from=20 GBZ helps.
 
Best regards,
Markus, DF6NM
 
----- Original Message -----
Sent: Thursday, April 01, 201= 0 4:12=20 PM
Subject: VLF: VK to Eu - both= ways!
=
Dear LF,
 
the Australian VLF transmitter North West Cape (NWC, 19.8 kHz)= can be=20 received regularly in Europe. This morning I had a detailed look on= the power=20 spectrum of the MSK signal, and found interesting 21 Hz periodic rip= ples. I=20 believe this is an interference effect, due to the same signal being= =20 simultaneously received on both short path and long path. The geomet= rical path=20 difference (12.8 vs 27.2 Mm) does indeed match the observed ripple= =20 period.
 
I have switched my VLF grabber http://www.mydarc.de/df6nm/vlf/vlfgrabbe= r.htm=20 to zoom in on the signal, and have slowed it down to be able to see= diurnal=20 changes. During the last hours between 7 and 13 UT, the fading patte= rn has not=20 disappeared completely. The frequency of the minima has shifted upwa= rds by=20 one-and-a-half ripple periods, most likely due to a variable differe= ntial=20 phase shift between the two routes.
 
I'd be interested to see if others observe this effect as well.= If the=20 explanation is correct, the null positions should depend on east-wes= t receiver=20 location on a half-wavelength scale.
 
Fascinating stuff!
 
Kind regards
Markus (DF6NM)

PS - This is not an April=20 joke.
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