Return-Path: Received: from mtain-dh10.r1000.mx.aol.com (mtain-dh10.r1000.mx.aol.com [172.29.65.30]) by air-mb07.mail.aol.com (v129.4) with ESMTP id MAILINMB071-a7844c41effa16e; Sat, 17 Jul 2010 14:01:30 -0400 Received: from post.thorcom.com (post.thorcom.com [193.82.116.20]) by mtain-dh10.r1000.mx.aol.com (Internet Inbound) with ESMTP id 63CC8380000B5; Sat, 17 Jul 2010 14:01:28 -0400 (EDT) Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1OaBgY-0006pd-AK for rs_out_1@blacksheep.org; Sat, 17 Jul 2010 19:00:26 +0100 Received: from [193.82.116.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1OaBgX-0006pU-ID for rsgb_lf_group@blacksheep.org; Sat, 17 Jul 2010 19:00:25 +0100 Received: from mail-bw0-f43.google.com ([209.85.214.43]) by relay1.thorcom.net with esmtp (Exim 4.63) (envelope-from ) id 1OaBgV-0006OH-RK for rsgb_lf_group@blacksheep.org; Sat, 17 Jul 2010 19:00:25 +0100 Received: by bwz13 with SMTP id 13so2081635bwz.16 for ; Sat, 17 Jul 2010 11:00:22 -0700 (PDT) DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=gmail.com; s=gamma; h=domainkey-signature:mime-version:received:received:date:message-id :subject:from:to:content-type; bh=vDHtAtFWYqqjbZagGxUmNzS2f/XOJEyfWReMigbFr3E=; b=vewMegFnP43A9stoGVT2IXULkH4gGxK8wgW4JqmlQrFW8pVp/r4vEtbwLbp9qVHfCi v2nLcx96vishdn9Bk863/boz98J1i81jtoEL7u1nzpZoMggiKMyrrYEgjBWuy4g1U9VK eYMFzxIqdxdTnqv3oFKZO/r6n42zYw0eS8S9w= DomainKey-Signature: a=rsa-sha1; c=nofws; d=gmail.com; s=gamma; h=mime-version:date:message-id:subject:from:to:content-type; b=YYVuvQMevnP4QWhTwT0MHDFWJzothSLRzG9PXxlxNtJXaDZrP4eqaEdAjmotUFAmsw BA/xpdVow271XP8jaVK31+YEkvHrtVv0FtpCsWB89pHyoAdIEzl5y6GPqabEA0sm/ytL TBnXccAp7RZ/Gv443zJ5471hXASQW9IaUro4U= MIME-Version: 1.0 Received: by 10.204.163.77 with SMTP id z13mr2131935bkx.169.1279389621913; Sat, 17 Jul 2010 11:00:21 -0700 (PDT) Received: by 10.204.122.148 with HTTP; Sat, 17 Jul 2010 11:00:21 -0700 (PDT) Date: Sat, 17 Jul 2010 19:00:21 +0100 Message-ID: From: Roger Lapthorn To: rsgb_lf_group@blacksheep.org DomainKey-Status: good (testing) X-Spam-Score: 0.9 (/) X-Spam-Report: autolearn=disabled,HTML_10_20=0.945,HTML_MESSAGE=0.001 Subject: LF: More earth mode DXing today (5.6kms) Content-Type: multipart/mixed; boundary=0003255557eef189e8048b991bbc 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: 5400.1158/61000 X-AOL-VSS-CODE: clean X-AOL-SCOLL-AUTHENTICATION: mail_rly_antispam_dkim-m205.1 ; domain : gmail.com DKIM : fail x-aol-sid: 3039ac1d411e4c41eff83398 X-AOL-IP: 193.82.116.20 X-AOL-SPF: domain : blacksheep.org SPF : none X-Mailer: Unknown (No Version) --0003255557eef189e8048b991bbc Content-Type: multipart/alternative; boundary=0003255557eef189e1048b991bba --0003255557eef189e1048b991bba Content-Type: text/plain; charset=ISO-8859-1 *Earth Mode DX up to 5.6km (utilities assisted, 4W TX)* Today I resumed my QRSS3 VLF earth mode tests using 4W at 838Hz into 20m spaced earth electrodes. The aim of the test today was to determine the absolute maximum range possible by utilities assisted earth mode. Best result was *5.6km* along Commissioner's Fen to the west of Burwell, the home QTH. Signals we just copied at this distance using the 80cm, 30 turn, loop and preamp into the PC running Spectran (see picture from the Spectran screen). A test at 6km resulted in no detectable signal. At one point about 5km from the QTH the signal was so strong that I could copy it when some 20m away from the road (presumably with buried pipes) or when holding the loop high in the air vertically orientated above my head! Another possible clue to the mode of propagation was fenland drainage water channels. Signals always seemed to be somewhat stronger when close to these. So, conclusions today are: (1) The propagation is definitely "utilities assisted" conduction apart from the last few metres of induction into the loop. Even so, I'm amazed that the signal can be seen so clearly on Spectran when running QRSS3 with such low power (4W) to such a small earth electrode antenna with just 20m spacing. 5.6km is a *very* long way from my QTH. (2) Even at 2.4kms from the home QTH, the signal induced in the ground via buried pipes was stronger than any detected by pure induction. I tried various loop orientations to see if there was any "pure induction" signal, but I was unable to see any. (3) There is *weak* evidence that at the more distant points some assistance may be being given from water channels criss-crossing the wet fenland. This needs further testing, but I suspect there is something in this. (4) There is no evidence that overhead electricity cables are helping: when orienting the loop for best coupling into these the signal actually decreased. Further work: (1) Try using a larger loop at the RX end. I have in mind a 3 or 4 turn loop some 5 x 5 metres that I can lay flat on the ground. This will allow stronger coupling into the loop from any buried utilities. Also, with a small loop (80cm) it is a bit "hit or miss" where this is placed to get decent coupling when signals are weak. Also, a simple wire loop can be left in the road when cars go by, whereas my 80cm loop on a wooden frame always has to be moved...or be crushed. (2) Try using an electrode pair antenna at the RX end. I'm thinking of straddling the roadways or drainage channels with this to see if the received signal is stronger and can be detected further from the utilities. (3) Increasing the TX power. 100W should allow more chance of communication over moderate distances with less dependence on buried utilities or by pure induction (or even some radiation). I need to get hold of a 100W amplifier. (4) Try an E-field probe antenna at the RX end using an earth electrode RX antenna. All good fun again after a short break. Early next week I'm hoping to run some QRSS3 tests on 137kHz using 1W into the same earth electrode antenna. I am only expecting reception in the next village but I will let people know when I'm testing just in case. Work on a real 136kHz transverter is about to start as is work on a credible 136kHz antenna in my very small garden. With this I hope to do some QRSS and WSPR tests starting in the autumn on 136/137kHz. 73s Roger G3XBM -- http://g3xbm-qrp.blogspot.com/ http://www.g3xbm.co.uk http://www.youtube.com/user/g3xbm G3XBM GQRP 1678 ISWL G11088 --0003255557eef189e1048b991bba Content-Type: text/html; charset=ISO-8859-1 Content-Transfer-Encoding: quoted-printable Earth Mode DX up to 5.6km (utilities assisted, 4W TX)
Today I resumed my QRSS3 VLF earth mode tests using 4W at 838Hz into 20m= spaced earth=20 electrodes. The aim of the test today was to determine the absolute=20 maximum range possible by utilities assisted earth mode. Best result was 5.6km along Commissioner's Fen to the west of Burwell, the hom= e=20 QTH. Signals=20 we just copied at this distance using the 80cm, 30 turn, loop and preamp =20 into the PC running Spectran (see picture from the Spectran screen). A tes= t at 6km resulted in no detectable=20 signal. At one point about 5km from the QTH the signal was so strong that I could= =20 copy it when some 20m away from the road (presumably with buried pipes)=20 or when holding the loop high in the air vertically orientated above my he= ad! Another possible clue to the mode of propagation was fenland drainage water channels.=20 Signals always seemed to be somewhat stronger when close to these.
So,=20 conclusions today are:

(1) The=20 propagation is definitely "utilities assisted" conduction apart= from the last few metres of induction into the loop. Even so, I'm amazed that= =20 the signal can be seen so clearly on Spectran when running QRSS3 with=20 such low power (4W) to such a small earth electrode antenna with just=20 20m spacing. 5.6km is a very long way from my QTH.
(2) Even at= 2.4kms from the home QTH, the signal induced in the ground via buried pipes was stronger than any detected by pure=20 induction. I tried various loop orientations to see if there was any "= ;pure induction" signal, but I was unable to see any.
(3) There is= weak evidence that at the more distant points some assistance may be being given from water channels=20 criss-crossing the wet fenland. This needs further testing, but I suspect= there is something in this.
(4) There is no evidence that=20 overhead electricity cables are helping: when orienting the loop for best coupling into these the signal actually decreased.

Further= work:

(1) Try using a larger loo= p at the RX end. I have in mind a 3 or 4 turn loop some 5 x 5 metres that= I can lay flat on the ground. This will allow stronger coupling into the= loop from any buried utilities. Also, with a small loop (80cm) it is a bi= t "hit or miss" where this is placed to get decent coupling when= signals are weak. Also, a simple wire loop can be left in the road when= cars go by, whereas my 80cm loop on a wooden frame always has to be moved= ...or be crushed.
(2) Try using an electrode pair antenna at the RX end. I'm thinking of= straddling the roadways or drainage channels with this to see if the rece= ived signal is stronger and can be detected further from the utilities. (3) Increasing the TX power. 100W should allow more chance of communicatio= n over moderate distances with less dependence on buried utilities or by= pure induction (or even some radiation). I need to get hold of a 100W amp= lifier.
(4) Try an E-field probe antenna at the RX end using an earth electrode RX= antenna.

All good fun again after a short break.

Ear= ly next week I'm hoping to run some QRSS3 tests on 137kHz using 1W int= o the same earth electrode antenna. I am only expecting reception in the= next village but I will let people know when I'm testing just in case= . Work on a real 136kHz transverter is about to start as is work on a cred= ible 136kHz antenna in my very small garden. With this I hope to do some= QRSS and WSPR tests starting in the autumn on 136/137kHz.

73s
Roger G3XBM
--
http://g3xbm-qrp.blogspot.com/
http://www.g3xbm.co.uk
http://www.youtube.com/user/g3xbm
G3XBM=A0 =A0 GQRP 1678=A0 =A0 =A0 ISWL G11088
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