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 w18CpCF5026854 for ; Thu, 8 Feb 2018 13:51:13 +0100 Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1ejlZ5-0002lG-DP for rs_out_1@blacksheep.org; Thu, 08 Feb 2018 12:44:35 +0000 Received: from [195.171.43.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1ejlZ4-0002l7-Bu for rsgb_lf_group@blacksheep.org; Thu, 08 Feb 2018 12:44:34 +0000 Received: from mout01.posteo.de ([185.67.36.65]) by relay1.thorcom.net with esmtps (TLSv1.2:ECDHE-RSA-AES256-GCM-SHA384:256) (Exim 4.89) (envelope-from ) id 1ejlZ0-0007pA-LU for rsgb_lf_group@blacksheep.org; Thu, 08 Feb 2018 12:44:33 +0000 Received: from submission (posteo.de [89.146.220.130]) by mout01.posteo.de (Postfix) with ESMTPS id 4E37E20F7E for ; Thu, 8 Feb 2018 13:44:28 +0100 (CET) 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=1518093868; bh=eVjRWV5l0CJH4G0zxGeI9t0pDZL2YjgqOGFyLrcDugY=; h=Date:From:To:Subject:From; b=SN+CROfuWCwUnzZXX45I04U+fjny+Ng3MOHUfJHJUi/en8cuhzJ2Le6g+mrcA4Je5 anDPadaB5LSlxreAssif0mXd5pFY8diyw2bSZfA/OaIsQDbOd9oCEI6MYVCXPZcBUE ZWagknquQfL5Usa5SLRzxmnBUPDULuhdyToupdtI6pKMq3bYFDHcc0JSaA2aFf2E1I yqUvHnqdU4Ko3hmWR3OhBL21mAZdG6HSwxkwE+zidTgVqQmiyphL9DMzLf6AjzoGBU CQKjwjjt2tWn0UOCe0B8rHu0pNAKtCwcA3vujJB3K3824F1cP48tL0vpDOgZKwQpZm 7mgrecVJbs3sg== Received: from customer (localhost [127.0.0.1]) by submission (posteo.de) with ESMTPSA id 3zcdDq38T4z9rxR; Thu, 8 Feb 2018 13:44:27 +0100 (CET) Message-ID: <5A7C462A.20905@posteo.de> Date: Thu, 08 Feb 2018 13:44:26 +0100 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 References: <15f68ccfd03-c09-1dcf0@webjas-vaa134.srv.aolmail.net> <40168a26-8991-6998-e541-585a8575ad32@abelian.org> <59FCF49B.9050703@posteo.de> <5A06DAE4.9030301@posteo.de> <5A072F91.1050406@posteo.de> <5A083D50.2080105@posteo.de> <34e5e647-caf1-6184-9ab5-9d293486994f@abelian.org> <5A085F65.3060409@posteo.de> <5A0889B1.3020701@posteo.de> <5A09B458.1040700@posteo.de> <5A0DC9D1.1050706@posteo.de> <5A6A4D33.5020502@posteo.de> <5A6CB04D.7080006@posteo.de> <5A6D1532.8090206@posteo.de> <5A6E09B4.2090301@posteo.de> <5A71C4F8.50508@posteo.de> In-Reply-To: <5A71C4F8.50508@posteo.de> X-Spam-Score: 0.0 (/) 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 the administrator of that system for details. Content preview: Hello dear friends of the Ultra Low Frequencies, Update: There are a few things to note so far: I made a mistake in the calculation of the *ERP*. It is not 10 nW but rather *18 nW*. [...] Content analysis details: (0.0 points, 5.0 required) pts rule name description ---- ---------------------- -------------------------------------------------- -0.0 T_RP_MATCHES_RCVD Envelope sender domain matches handover relay domain 0.0 HTML_MESSAGE BODY: HTML included in message 0.0 T_DKIM_INVALID DKIM-Signature header exists but is not valid X-Scan-Signature: 7286dd4bbbcd33d72e6e3b0898ad73bc Subject: Re: ULF: New experiment on 970 Hz 2/3 Content-Type: multipart/mixed; boundary="------------080900070109050304030407" 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. --------------080900070109050304030407 Content-Type: multipart/alternative; boundary="------------080609020502080103000509" --------------080609020502080103000509 Content-Type: text/plain; charset=UTF-8; format=flowed Content-Transfer-Encoding: 7bit Hello dear friends of the Ultra Low Frequencies, Update: There are a few things to note so far: I made a mistake in the calculation of the *ERP*. It is not 10 nW but rather *18 nW*. All transmissions seemed to go out as intended. The stream from the local tree was interrupted almost daily due to lack of solar energy but at least a few hours came through. From these few hours i got decodes of each carrier transmissions. I also got decodes of all EbNaut messages. So things went well from the TX site it seems. The *36 mA antenna current* (12 kV antenna voltage) was running for 8 days without a single interruption. The constructed resonating transformer has done its job flawlessly. Since i decided to take back the RX equipment on the 7th of February, there was some more time for another EbNaut message: 06.Feb, 17:30 UTC: EbNaut, 16K21A, 1 char, 90 sec, CRC27 (21:12:00) The experiment stopped at 15:45 UTC. BTW the exact location was JN49BK33UG That is a distance of 40.5 km to the TX site. But so far there are no decodes or traces, so no success so far. The next good step is that the whole RX equipment has still been in its place, nothing stolen, nothing damaged. The Raspi was still running after 8 days. The Raspi was supplied by two 12 V / 26 Ah lead gel accus. They were standing in the snow and discharged to 11.8 V! The two accus for the preamps of the loop and vertical were still above 12.3 V. So that was all fine too! Now the stuff is sorted, cleaned and the accus are charging and warming up again here. I just started the Raspi and checked the data on the 64 GB USB stick. This looks good and promising, see attachment. And it looks like there were no timing breaks of the GPS module. For the first time i run the recording using vlfrx tooly by Paul and the octo soundcard. Also it is the first set of data i have available to build a cardioid antenna by software... Exciting stuff. The recording process by vlfrx tools saves to a new file each day. Here the files are 7.8 GB large: 2 channels * 24000 samples/(channel*second) * 16 bit/sample * 3600 seconds/hour * 24 hours/day * 1/8 Byte/bit * 1/1024 kByte/Byte * 1/1024 MBity/kByte * 1/1024 GByte/MByte = 7.72 GB/day Obviously the recording process was stopped during the last night 03:58 UTC because the USB stick capacity seems to be just 58 GB actually. The recording is started/stopped by switching a switch which is connected to one of the GPIO pins. This is necessary because in the field there is no monitor and no keyboard of course. At start-up, a scripts is executed which checks the logic level of the pin where the switch is connected... During the recording process, a loop is running within this script which periodically checks the remaining available space of the data carrier. As soon as the remaining space becomes less than 100 kB, the recording process is stopped. This ensures that there is still enough space to save the log files which are written at the end of the recording process. It also ensures that there are no crashes and unwanted data loss, broken files etc... In a few days i can report about the results, so stay tuned... 73, Stefan Am 31.01.2018 14:30, schrieb DK7FC: > Hi all, > > Since yesterday, ~ 17 UTC, i'm running a new portable experiment on > 970 Hz, or the 309 km band. The receiver site is somewhere in the > forest in JN49BK , a distance of > 40 km to the TX site. > > I carried a lot of accus to that location and the USB stick where the > data is written on has 64 GB, so i can run the experiment for more > than one week! :-) > > For the first time i'm using two antennas. An active E field antenna > with a 1.5 m long steel wire as the capacitive probe. It is mounted on > a 10 m high pole. The E field preamp is supplied by a separate battery > and uses an isolation transformer with a low pass filter applied. > The second antenna is my compact loop with 80 cm diameter and 84 > turns. It uses a low noise preamp (also supplied by a separate > battery) using a LT1028. This loop RX worked surprisingly well on 4470 > Hz when beeing in France last September. Hopefully it will pick up the > signal. > Unfortunately the E field antenna is not very high above the > sourrounding trees, so the sensitivity may be limited. Also the H > field antenna showed much more mains hum than expected in this > location. So it may be a bit questionable if the experiment will be > successful. The long transmissions will allow to stack carrier > transmissions and/or EbNaut transmissions though... > > Running 36 mA antenna current means an *ERP of 10 nW* on that frequency. > My transmission plan is: > 30.JAN, 17 UTC: Carrier on 970.005 Hz > 01.Feb, 17 UTC: Carrier on 970.0025 Hz > 02.Feb, 17 UTC: EbNaut, 16K21A, 2 char, 100 sec, CRC22 (24 hours) > 03.Feb, 17 UTC: EbNaut, 16K21A, 2 char, 100 sec, CRC22 (24 hours) > 04.Feb, 17 UTC: EbNaut, 16K21A, 5 char, 80 sec, CRC17 (23:49:20) > 05.Feb, 17 UTC: EbNaut, 16K21A, 5 char, 80 sec, CRC17 (23:49:20) > > Not sure if someone else can pick up the signal. Most likely not. But > new components to rise the voltage to 20 kV in a next experiment are > already in preparation... > > 73, Stefan > --------------080609020502080103000509 Content-Type: text/html; charset=UTF-8 Content-Transfer-Encoding: 8bit Hello dear friends of the Ultra Low Frequencies,

Update:
There are a few things to note so far:

I made a mistake in the calculation of the ERP. It is not 10 nW but rather 18 nW.

All transmissions seemed to go out as intended. The stream from the local tree was interrupted almost daily due to lack of solar energy but at least a few hours came through. From these few hours i got decodes of each carrier transmissions. I also got decodes of all EbNaut messages. So things went well from the TX site it seems.

The 36 mA antenna current (12 kV antenna voltage) was running for 8 days without a single interruption. The constructed resonating transformer has done its job flawlessly.

Since i decided to take back the RX equipment on the 7th of February, there was some more time for another EbNaut message:
06.Feb, 17:30 UTC: EbNaut, 16K21A, 1 char, 90 sec, CRC27 (21:12:00)

The experiment stopped at 15:45 UTC. BTW the exact location was JN49BK33UG  That is a distance of 40.5 km to the TX site. But so far there are no decodes or traces, so no success so far.

The next good step is that the whole RX equipment has still been in its place, nothing stolen, nothing damaged. The Raspi was still running after 8 days. The Raspi was supplied by two 12 V / 26 Ah lead gel accus. They were standing in the snow and discharged to 11.8 V! The two accus for the preamps of the loop and vertical were still above 12.3 V. So that was all fine too!

Now the stuff is sorted, cleaned and the accus are charging and warming up again here.

I just started the Raspi and checked the data on the 64 GB USB stick. This looks good and promising, see attachment. And it looks like there were no timing breaks of the GPS module.
For the first time i run the recording using vlfrx tooly by Paul and the octo soundcard. Also it is the first set of data i have available to build a cardioid antenna by software... Exciting stuff.

The recording process by vlfrx tools saves to a new file each day.
Here the files are 7.8 GB large:  2 channels * 24000 samples/(channel*second) * 16 bit/sample * 3600 seconds/hour * 24 hours/day * 1/8 Byte/bit * 1/1024 kByte/Byte * 1/1024 MBity/kByte * 1/1024 GByte/MByte =  7.72 GB/day 

Obviously the recording process was stopped during the last night 03:58 UTC because the USB stick capacity seems to be just 58 GB actually. The recording is started/stopped by switching a switch which is connected to one of the GPIO pins. This is necessary because in the field there is no monitor and no keyboard of course. At start-up, a scripts is executed which checks the logic level of the pin where the switch is connected... During the recording process, a loop is running within this script which periodically checks the remaining available
space of the data carrier. As soon as the remaining space becomes less than 100 kB, the recording process is stopped. This ensures that there is still enough space to save the log files which are written at the end of the recording process. It also ensures that there are no crashes and unwanted data loss, broken files etc...

In a few days i can report about the results, so stay tuned...

73, Stefan




Am 31.01.2018 14:30, schrieb DK7FC:
Hi all,

Since yesterday, ~ 17 UTC, i'm running a new portable experiment on 970 Hz, or the 309 km band. The receiver site is somewhere in the forest in JN49BK, a distance of  40 km to the TX site.

I carried a lot of accus to that location and the USB stick where the data is written on has 64 GB, so i can run the experiment for more than one week! :-)

For the first time i'm using two antennas. An active E field antenna with a 1.5 m long steel wire as the capacitive probe. It is mounted on a 10 m high pole. The E field preamp is supplied by a separate battery and uses an isolation transformer with a low pass filter applied.
The second antenna is my compact loop with 80 cm diameter and 84 turns. It uses a low noise preamp (also supplied by a separate battery) using a LT1028. This loop RX worked surprisingly well on 4470 Hz when beeing in France last September. Hopefully it will pick up the signal.
Unfortunately the E field antenna is not very high above the sourrounding trees, so the sensitivity may be limited. Also the H field antenna showed much more mains hum than expected in this location. So it may be a bit questionable if the experiment will be successful. The long transmissions will allow to stack carrier transmissions and/or EbNaut transmissions though...

Running 36 mA antenna current means an ERP of 10 nW on that frequency.
My transmission plan is:
30.JAN, 17 UTC: Carrier on 970.005 Hz
01.Feb, 17 UTC: Carrier on 970.0025 Hz
02.Feb, 17 UTC: EbNaut, 16K21A, 2 char, 100 sec, CRC22 (24 hours)
03.Feb, 17 UTC: EbNaut, 16K21A, 2 char, 100 sec, CRC22 (24 hours)
04.Feb, 17 UTC: EbNaut, 16K21A, 5 char, 80 sec, CRC17 (23:49:20)
05.Feb, 17 UTC: EbNaut, 16K21A, 5 char, 80 sec, CRC17 (23:49:20)

Not sure if someone else can pick up the signal. Most likely not. But new components to rise the voltage to 20 kV in a next experiment are already in preparation...

73, Stefan


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