Return-Path: Received: from post.thorcom.com (post.thorcom.com [195.171.43.25]) by klubnl.pl (8.14.4/8.14.4/Debian-8+deb8u2) with ESMTP id x4EJGFZK001199 for ; Tue, 14 May 2019 21:16:16 +0200 Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1hQcgV-00056F-6O for rs_out_1@blacksheep.org; Tue, 14 May 2019 20:01:55 +0100 Received: from [195.171.43.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1hQcgP-000566-16 for rsgb_lf_group@blacksheep.org; Tue, 14 May 2019 20:01:49 +0100 Received: from mout01.posteo.de ([185.67.36.65]) by relay1.thorcom.net with esmtps (TLSv1.2:DHE-RSA-AES256-GCM-SHA384:256) (Exim 4.92) (envelope-from ) id 1hQcgN-0005Mf-74 for rsgb_lf_group@blacksheep.org; Tue, 14 May 2019 20:01:47 +0100 Received: from submission (posteo.de [89.146.220.130]) by mout01.posteo.de (Postfix) with ESMTPS id 99C8816005D for ; Tue, 14 May 2019 21:01:44 +0200 (CEST) X-DKIM-Result: Domain=posteo.de Result=Signature OK DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/simple; d=posteo.de; s=2017; t=1557860504; bh=pgj2sad6TXsIB+HQcaV3usvx4piSypHhNUWhBv0ENFs=; h=Date:From:To:Subject:From; b=VbUjMtxO8iXWrqCrUYZaTeIMPd94c+irC+djRzyWj+FzkNlJmPXDkDpxliR4zC51U poKY5qPzFJQdJW8RtpCDFAZi+9/oor263shGsNM14icOijdvBiqejHi+pyNs5dhAgg 1tL0YyeTlZCx8GHqAmsy5jZRX/UTSU5yMfmfCHlDSZ8DzWu58t2IuuEvYQL7xzciMs BrZrPcXv4AX/GHlHpwSgIcZ3dHAuqSwvXgJ2N8pkDOuEGeo4OtBnV0RFmBOreOeuHm OptfQqz6l+RBMWfTyogHOOQz7ahHh1ykY5zD9hcZbMjIV/4e+HUNHekmZiU2Qd8jO9 KFNHddra36jJQ== Received: from customer (localhost [127.0.0.1]) by submission (posteo.de) with ESMTPSA id 453Rqq3tGmz6tmL; Tue, 14 May 2019 21:01:43 +0200 (CEST) Message-ID: <5CDB1096.5090309@posteo.de> Date: Tue, 14 May 2019 21:01:42 +0200 From: DK7FC User-Agent: Mozilla/5.0 (Windows; U; Windows NT 6.1; de; rv:1.9.1.8) Gecko/20100227 Thunderbird/3.0.3 MIME-Version: 1.0 To: "rsgb_lf_group@blacksheep.org" , Renato Romero X-Spam-Score: -2.5 (--) X-Spam-Report: Spam detection software, running on the system "relay1.thorcom.net", has NOT identified this incoming email as spam. The original message has been attached to this so you can view it or label similar future email. If you have any questions, see @@CONTACT_ADDRESS@@ for details. Content preview: Hello SLF freinds, Just a note from a recent experiment at *270.1 Hz.* On sunday morning, *2019-05-12_10:34,+150m*, i've done a carrier transmission on my ground loop antenna again. I did not expect more than, hopefully, a detectable spectrum peak in 57.6 km distance, i. [...] Content analysis details: (-2.5 points, 5.0 required) pts rule name description ---- ---------------------- -------------------------------------------------- -2.3 RCVD_IN_DNSWL_MED RBL: Sender listed at http://www.dnswl.org/, medium trust [185.67.36.65 listed in list.dnswl.org] -0.0 SPF_PASS SPF: sender matches SPF record 0.0 HTML_MESSAGE BODY: HTML included in message -0.1 DKIM_VALID_EF Message has a valid DKIM or DK signature from envelope-from domain -0.1 DKIM_VALID Message has at least one valid DKIM or DK signature 0.1 DKIM_SIGNED Message has a DKIM or DK signature, not necessarily valid -0.1 DKIM_VALID_AU Message has a valid DKIM or DK signature from author's domain 0.0 DC_PNG_UNO_LARGO Message contains a single large png image 0.0 DKIMWL_WL_MED DKIMwl.org - Whitelisted Medium sender X-Scan-Signature: 19b8e66afc0986ad087ebb266b5e074f Subject: SLF: 2nd attempt at 270 Hz Content-Type: multipart/mixed; boundary="------------080907000509050701050308" 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 This is a multi-part message in MIME format. --------------080907000509050701050308 Content-Type: multipart/alternative; boundary="------------010502070602070505040108" --------------010502070602070505040108 Content-Type: text/plain; charset=ISO-8859-15; format=flowed Content-Transfer-Encoding: 7bit Hello SLF freinds, Just a note from a recent experiment at *270.1 Hz.* On sunday morning, *2019-05-12_10:34,+150m*, i've done a carrier transmission on my ground loop antenna again. I did not expect more than, hopefully, a detectable spectrum peak in 57.6 km distance, i.e. at my tree site. The tree receiver site was listening and recording data using vlf-rx tools. One E field antenna and two orthogonal loops were listening. The loops have been improved recently! They consist out of a single circular turn of 1.2 m diameter using 10mm diameter copper tube (about 25 mm^2). It is a closed loop, non-resonated, with an impedance matching transformer. This transformer previously had 1:100 turns. Now it (they) has 2:240 turns, i.e. two turns primary (out of 14mm^2, AWG6). This improved the sensitivity below 2 kHz significantly ( abt. 4...5 dB). Furthermore the TX antenna length and angle has been improved, resulting in about +3 dB more signal strength on the RX site! In a previous experiment at 270.1 Hz, some month ago, there was no result at all, not the weakest trace, despite excessive tweaking of all parameters. So the question was, will the improvements result in a detectable signal now? Several things went wrong in that experiment. I forgot a bag containing important equipment such as the power supply for the netbook that generates the carrier signal. Also the output power was not as high as planned, just about 380 W, giving *2.2 A antenna current* (I measured 64.7 V at 1 A DC). Anyway i managed to improvise so the experiment was started, but with some hours of delay which meant i higher QRN background level. Then, on the WLAN link to the tree, there were several interruptions of the stream (i'll move to 5 GHz very soon!). I even got some QRM from my battery charger for some short time periods (forgot to disable the charger remotely). So there were several factors that could have been improved or avoided. And the middle of May is not the ideal time anyway. Well, 270.1 Hz, that's the *1110 km band*! The far field begins at 177 km distance, i.e. i am clearly in the near field here. Thus, from a 'magnetic' TX antenna, we would expect that the signal is mainly detectable on the H field, i.e. the loop antennas. The first interesting results is that this expection is actually confirmed. There is nothing detectable on the E field but the carrier S/N in the H fields is close to 10 dB in the first run. Mixing the H fields and tweaking the filters rises the* carrier S/N to 10.7 dB*, see attachment. So far not really an undoubtly detection but it is a candidate for optimism! With a few less problems during the experiment there is a chance for 14 dB SNR. Also, there is quite much sideband QRM arround 300 Hz which makes 270 Hz a bit harder to work on. 73, Stefan --------------010502070602070505040108 Content-Type: text/html; charset=ISO-8859-15 Content-Transfer-Encoding: 8bit Hello SLF freinds,

Just a note from a recent experiment at 270.1 Hz.
 
On sunday morning, 2019-05-12_10:34,+150m, i've done a carrier transmission on my ground loop antenna again. I did not expect more than, hopefully, a detectable spectrum peak in 57.6 km distance, i.e. at my tree site. The tree receiver site was listening and recording data using vlf-rx tools.
One E field antenna and two orthogonal loops were listening. The loops have been improved recently! They consist out of a single circular turn of 1.2 m diameter using 10mm diameter copper tube (about 25 mm^2). It is a closed loop, non-resonated, with an impedance matching transformer. This transformer previously had 1:100 turns. Now it (they) has 2:240 turns, i.e. two turns primary (out of 14mm^2, AWG6). This improved the sensitivity below 2 kHz significantly ( abt. 4...5 dB).
Furthermore the TX antenna length and angle has been improved, resulting in about +3 dB more signal strength on the RX site!

In a previous experiment at 270.1 Hz, some month ago, there was no result at all, not the weakest trace, despite excessive tweaking of all parameters. So the question was, will the improvements result in a detectable signal now?

Several things went wrong in that experiment. I forgot a bag containing important equipment such as the power supply for the netbook that generates the carrier signal. Also the output power was not as high as planned, just about 380 W, giving 2.2 A antenna current (I measured 64.7 V at 1 A DC). Anyway i managed to improvise so the experiment was started, but with some hours of delay which meant i higher QRN background level. Then, on the WLAN link to the tree, there were several interruptions of the stream (i'll move to 5 GHz very soon!). I even got some QRM from my battery charger for some short time periods (forgot to disable the charger remotely). So there were several factors that could have been improved or avoided. And the middle of May is not the ideal time anyway.

Well, 270.1 Hz, that's the 1110 km band! The far field begins at 177 km distance, i.e. i am clearly in the near field here. Thus, from a 'magnetic' TX antenna, we would expect that the signal is mainly detectable on the H field, i.e. the loop antennas.
The first interesting results is that this expection is actually confirmed. There is nothing detectable on the E field but the carrier S/N in the H fields is close to 10 dB in the first run. Mixing the H fields and tweaking the filters rises the carrier S/N to 10.7 dB, see attachment.

So far not really an undoubtly detection but it is a candidate for optimism! With a few less problems during the experiment there is a chance for 14 dB SNR. Also, there is quite much sideband QRM arround 300 Hz which makes 270 Hz a bit harder to work on.

73, Stefan
--------------010502070602070505040108-- --------------080907000509050701050308 Content-Type: image/png; name="2nd_270.1Hz.png" Content-Transfer-Encoding: base64 Content-Disposition: attachment; filename="2nd_270.1Hz.png" iVBORw0KGgoAAAANSUhEUgAABGcAAACpCAIAAAF+H/d+AAAAB3RJTUUH4wUOEjk4TR959QAA IABJREFUeJzsnXVcFOkfxz8zG8TC7goCYosgqIgCKoKCgI1dnOLJ2YmF3Z7ddWInZ8JhnN2o iKLCYJ3oWmd7glIjvfv7Y3aHLRYwTr3fvF+8dHae+j4x9TzP9/slrE3K+HfwBsf3Db9xS4+8 3Pxt9W373njt6dXk9KlTcgXRtm2bSxeji038/HVaLSmRYSIG8PRFctWKZQUKRR5BfHWp///g Z2fnDDVPv/ZKkJ2d8+zZ3041nRQKRVRUlNjcDMC71IpkwV+bdm0xg/zEa/LIgjE5tUZUvbIg SShtZZX1ptYg0f2w1Lz3fJInMrfOyc5Kl4uEJA1gzeoVISPHfOva/XcgfJt6kST5rcXgKAZ+ 6vV/DMfwD4t89AZ/z+kOAKQU8lQAJCBXRbjx99z6VabpJhQ4DMmTrf+i0haJqwgUDQCEeTVF xpMiYqlLDQACIK/4vDVSUR+uNyzT4Pz2RmOijK8fjtaNbS8mX6fLaX0ZxWxv1KTP1eLLqxQk f75bVwi0D+EBCEqSBh016rHbCECzu1I2xrnh3QFUHL3bNyzScsj6uisjoSa4tOtappNcf7ui nu92Wqb2i8+v8hNMXJgHF3VrfFEi8gG+/YDRM38C4ODsqB60PlXGtx/AHBNSPyPXKRD7A9jV 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