Received: from post.thorcom.com (post.thorcom.com [195.171.43.25]) by mtain-mc01.r1000.mx.aol.com (Internet Inbound) with ESMTP id 9968838000093; Sun, 17 Jul 2011 09:44:19 -0400 (EDT) Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1QiRcx-0002ii-7N for rs_out_1@blacksheep.org; Sun, 17 Jul 2011 14:43:23 +0100 Received: from [195.171.43.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1QiRcw-0002iZ-M8 for rsgb_lf_group@blacksheep.org; Sun, 17 Jul 2011 14:43:22 +0100 Received: from mail-pv0-f171.google.com ([74.125.83.171]) by relay1.thorcom.net with esmtp (Exim 4.63) (envelope-from ) id 1QiRcs-0005lL-TR for rsgb_lf_group@blacksheep.org; Sun, 17 Jul 2011 14:43:22 +0100 Received: by pva4 with SMTP id 4so3469548pva.16 for ; Sun, 17 Jul 2011 06:43:11 -0700 (PDT) DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=gmail.com; s=gamma; h=mime-version:date:message-id:subject:from:to:content-type; bh=GE9VxfsZhm2aTqUdf3eQ538q7i/ZHP/ta74/FGOq1Zc=; b=fTh+qieN0u78S0Xot52dRoIo3PrPnNA4qA02BDGzbJMCUsP7P1lmLNZTxAixMgY2Aa DmmTrV69liOgCG5TFfEFOFaR8kDqdqS9Kqt3rttI/jTi8ndyXVTRao4XSncnUqjWSu4n b9rUO9lK3br5VvKqb8kDvgEgl5HryQU8I4C88= MIME-Version: 1.0 Received: by 10.143.3.21 with SMTP id f21mr2722438wfi.272.1310910191338; Sun, 17 Jul 2011 06:43:11 -0700 (PDT) Received: by 10.142.180.13 with HTTP; Sun, 17 Jul 2011 06:43:11 -0700 (PDT) Date: Sun, 17 Jul 2011 14:43:11 +0100 Message-ID: From: Roger Lapthorn To: rsgb_lf_group@blacksheep.org, sub9khz@yahoogroups.com X-Spam-Score: 0.9 (/) X-Spam-Report: autolearn=disabled,HTML_10_20=0.945,HTML_MESSAGE=0.001 Subject: LF: Today's 8.7605kHz earth-mode tests (so far) Content-Type: multipart/mixed; boundary=001636e90dfa49837c04a8441060 X-Spam-Checker-Version: SpamAssassin 2.63 (2004-01-11) on post.thorcom.com X-Spam-Level: X-Spam-Status: No, hits=0.0 required=5.0 tests=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: 5400.1158/72463 X-AOL-VSS-CODE: clean X-AOL-SCOLL-SCORE: 0:2:474240448:93952408 X-AOL-SCOLL-URL_COUNT: 0 X-AOL-SCOLL-AUTHENTICATION: mail_rly_antispam_dkim-d257.1 ; domain : gmail.com DKIM : fail x-aol-sid: 3039ac1d60494e22e7323769 X-AOL-IP: 195.171.43.25 X-AOL-SPF: domain : blacksheep.org SPF : none --001636e90dfa49837c04a8441060 Content-Type: multipart/alternative; boundary=001636e90dfa49837704a844105e --001636e90dfa49837704a844105e Content-Type: text/plain; charset=ISO-8859-1 An interesting discovery this morning. I've been trying long continuous carriers with short breaks for ID purposes. At my usual roadside test site (3.6km from TX) my signal was about 20dB over noise with Spectran on 0.18Hz bandwidth. At a new test site (5.4km), believed to be well away from buried pipes, the signal was not visible at all with Spectran and the 80cm 30t loop. So, as an experiment I moved some 10-20m away from the road into a field which was bordered on one side by a fenland water irrigation channel. An earth-electrode pair was improvised with a baseline of 18m. One electrode (a large croc-clip) was dropped into the water and the other end (another large croc-clip) buried about 3cm into the peat soil as far away as possible from the water channel. With Spectrum Lab I got good lock on GQD and my long test TX carrier on 8.7605kHz was clearly visible, but no trace at all was seen on Spectran with 0.18Hz BW. SL was running with around 11mHz FFT bandwidth. To confirm it was my signal, I got my wife back home to drop the carrier for 5 minutes. The attached screen-shot (LF reflector only) shows the carrier clearly visible before and after the 5 minute break. Note the 0.1Hz low frequency as the crystal oscillator had cooled and drifted when the carrier was turned back on. So, this is more evidence that the fenland water channels are involved in my earth-mode propagation. Further tests are now needed to see if the signal is detectable at even greater distances by using earth-electrode pairs with one electrode in the fenland water channels. At the TX end the usual earth-electrode pair (one connector to the house water pipes and one an earth rod 20m away at the bottom of the garden) was used. The TX power is still just 5W from a TDA2003. The propagation is clearly conduction but this discovery opens up new places to try to receive the signal. Results at around 1kHz and lower will be considerably better than at 8.76kHz. So much still to try and this is without radiating a signal! 73s Roger G3XBM -- http://g3xbm-qrp.blogspot.com/ http://www.g3xbm.co.uk http://www.youtube.com/user/g3xbm https://sites.google.com/site/sub9khz/ --001636e90dfa49837704a844105e Content-Type: text/html; charset=ISO-8859-1 Content-Transfer-Encoding: quoted-printable An interesting discovery this morning. I've been trying long continuous= carriers with short breaks for ID purposes.

At my usu= al roadside test site (3.6km from TX) my signal was about 20dB over noise w= ith Spectran on 0.18Hz bandwidth. At a new test site (5.4km),=A0 believed t= o be well away from buried pipes, the signal was not visible at all with Sp= ectran and the 80cm 30t loop. So, as an experiment I moved some 10-20m away= from the road into a field which was bordered on one side by a fenland wat= er irrigation channel. An earth-electrode pair was improvised with a baseli= ne of 18m. One electrode (a large croc-clip) was dropped into the water and= the other end (another large croc-clip) buried about 3cm into the peat soi= l as far away as possible from the water channel.

With Spectrum Lab I got good lock on GQD and my long test TX carrier on= 8.7605kHz was clearly visible, but no trace at all was seen on Spectran wi= th 0.18Hz BW. SL was running with around 11mHz FFT bandwidth. To confirm it= was my signal, I got my wife back home to drop the carrier for 5 minutes. = The attached screen-shot (LF reflector only) shows the carrier clearly visi= ble before and after the 5 minute break. Note the 0.1Hz low frequency as th= e crystal oscillator had cooled and drifted when the carrier was turned bac= k on.

So, this is more evidence that the fenland water channels are involved = in my earth-mode propagation. Further tests are now needed to see if the si= gnal is detectable at even greater distances by using earth-electrode pairs= with one electrode in the fenland water channels. At the TX end the usual = earth-electrode pair (one connector to the house water pipes and one an ear= th rod 20m away at the bottom of the garden) was used. The TX power is stil= l just 5W from a TDA2003.

The propagation is clearly conduction but this discovery opens up new p= laces to try to receive the signal. Results at around 1kHz and lower will b= e considerably better than at 8.76kHz.

So much still to try and thi= s is without radiating a signal!

73s
Roger G3XBM

--
http://g3xbm-qrp.blogspot.com/
http://www.g3xbm.co.uk
http://www.youtub= e.com/user/g3xbm
https:= //sites.google.com/site/sub9khz/

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