X-GM-THRID: 1196684404245296047 X-Gmail-Labels: rsgb lf X-Gmail-Received: f0ac3b04dc6e9ba876ea82ccc53437c4b64060f8 Delivered-To: daveyxm@gmail.com Received: by 10.54.71.12 with SMTP id t12cs55135wra; Sat, 4 Mar 2006 15:30:28 -0800 (PST) Received: by 10.66.184.5 with SMTP id h5mr2088319ugf; Sat, 04 Mar 2006 15:30:27 -0800 (PST) Return-Path: Received: from post.thorcom.com (post.thorcom.com [193.82.116.20]) by mx.gmail.com with ESMTP id q40si89789ugc.2006.03.04.15.30.26; Sat, 04 Mar 2006 15:30:27 -0800 (PST) Received-SPF: neutral (gmail.com: 193.82.116.20 is neither permitted nor denied by best guess record for domain of owner-rsgb_lf_group@blacksheep.org) Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1FFgB5-0002j5-KY for rs_out_1@blacksheep.org; Sat, 04 Mar 2006 23:28:47 +0000 Received: from [193.82.59.130] (helo=relay2.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1FFgB4-0002iw-MG for rsgb_lf_group@blacksheep.org; Sat, 04 Mar 2006 23:28:46 +0000 Received: from smtp803.mail.ukl.yahoo.com ([217.12.12.140]) by relay2.thorcom.net with smtp (Exim 4.51) id 1FFh8D-0003mV-6C for rsgb_lf_group@blacksheep.org; Sun, 05 Mar 2006 00:29:54 +0000 Received: (qmail 71088 invoked from network); 4 Mar 2006 23:28:44 -0000 Received: from unknown (HELO ?213.122.142.203?) (james.moritz@btopenworld.com@213.122.142.203 with login) by smtp803.mail.ukl.yahoo.com with SMTP; 4 Mar 2006 23:28:37 -0000 Received: from 127.0.0.1 (AVG SMTP 7.1.375 [268.1.2/274]); Sat, 04 Mar 2006 23:27:31 +0000 Message-ID: <002e01c63fe3$35a57600$cb8e7ad5@w4o8m9> From: "James Moritz" To: References: <01cd01c63d73$69bc4f80$0300a8c0@LAPTOP> <4407287F.8000306@freenet.de> <029801c63e22$bb20b190$0300a8c0@LAPTOP> <003a01c63e33$08290cc0$67b0fea9@lark> <02a101c63e36$cf0e6120$0300a8c0@LAPTOP> <7.0.0.10.2.20060302213743.0383a228@spin-it.com> <02b901c63e4c$38a127c0$0300a8c0@LAPTOP> <030401c63ea8$6a6b90e0$0300a8c0@LAPTOP> Date: Sat, 4 Mar 2006 23:27:31 -0000 MIME-Version: 1.0 X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 5.00.2615.200 X-MimeOLE: Produced By Microsoft MimeOLE V5.00.2615.200 X-Spam-Score: -2.6 (--) X-Spam-Report: autolearn=disabled,AWL=0.005,BAYES_00=-2.599,RCVD_IN_SORBS_WEB=0.007 Subject: Re: LF: LORAN spurious emission levels Content-Type: multipart/mixed; boundary="----=_NextPart_000_002B_01C63FE3.3569F3A0" 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=none 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 Status: O X-Status: X-Keywords: X-UID: 6229 This is a multi-part message in MIME format. ------=_NextPart_000_002B_01C63FE3.3569F3A0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: 7bit Dear Peter, LF Group, I tried some rough field strength measurements on the Loran noise in the 136kHz band, in an attempt to confirm your calculations. A a field strength reference, I injected a known signal EMF into a single-turn loop RX antenna, using a clamp-on current transformer. The transformer primary has 25 turns, so the induced voltage in the loop is 0.04 times the sig gen output voltage. The equivalent field strength is calculated using the formula V = 2.1e-8*fNAE, which at 137kHz means the induced loop EMF for 1uV/m and a 4m^2 loop is equivalent is 11.5nV, requiring a sig gen output of 0.29uV. I used an RA1792 RX and SpecLab to compare the amplitude of this test signal with the Loran lines. The idea of this set-up is that preamp and RX gain does not affect the comparison, and the only thing that has to be assumed is the relation between loop EMF and field strength. Using this system, I made a quick survey of most of the 136kHz band. The Loran lines are not equal in amplitude; a variation of about 10dB can be present between adjacent lines in a repeating pattern (see the attachment, which is actually the "wanted" Loran signal, where 0Hz on the scale is 100.000kHz - the pattern of amplitude variation is also similar throughout the 137kHz band, but obviously the overall amplitude is much smaller). I logged the minimum and maximum Loran line amplitudes in 200Hz segments, given in dBuV/m: 136.0 - 136.2: -6.1, -15.3 136.2 - 136.4: -6.8, -16.6 136.4 - 136.6: -6.5, -17.0 136.6 - 136.8: -8.6, -14.6 136.8 - 137.0: -5.3, -14.1 137.0 - 137.2: -5.9, -16.3 137.2 - 137.4: -6.9, -14.6 137.4 - 137.6: -6.1, -16.4 137.6 - 137.8: -7.0, -16.2 So, give or take a few dB, the overall level of Loran noise is fairly constant over the band, allthough individual lines can differ by 10dB or more. Averaging together all the min and max figures in dB gives a "typical" level of -11dBuV/m. Rugby is roughly 100km distant from here, so if ERP = (Ed)^2 /50, and typical field strength is 0.28uV/m, the "typical" Loran line has an ERP of 16uW. I also tried measuring the ERP of the signal at 100kHz. The problem here was that the max. RX bandwidth is 6kHz, and the pulse width is noticeably stretched compared to the pictures of the theoretical Loran pulse, so the peak amplitude is probably reduced by the filter. I measured the peak amplitude of the Loran pulses at the RX IF output on a 'scope, and compared this with a CW reference signal in a similar way to the previous measurements. The peak field strength worked out to 19mV/m, making the peak envelope ERP 72kW. I also used a true RMS mV meter (Racal 9301A) to compare peak and RMS amplitudes at the IF output. These were 57mV and 8.5mV respectively (not sure what crest factor the 9301A can cope with; for the Loran signal it must be quite big, but I used the 30mV range instead of the 10mV range to hopefully reduce error from this source), which makes peak/mean power ratio 45:1. Thus the mean ERP would be 1.6kW. Due to the reduced bandwidth, these figures for power are probably a bit low. When I get time, I will get the covers off the RX and see if I can't repeat the measurement in a wider bandwidth. Comparing to Peter's figures, it would seem that my measured values are lower than his calculated values by something of the order of 10dB; 0.128 mW ERP at 100km should result in a field strength of about 0.8uV/m, or -2dBuV/m for each Loran line, wheras I get values between -5 and -17dBuV/m. My ERP figures for the "wanted" 100kHz signal are lower than what Peter assumed, but that could be expected because of the restricted bandwidth of the RX I used, which is only about 1/3 of the nominal Loran band. But I would note that most Loran TX antennas seem to be of the 1000' or more umbrella variety, while at Rugby, I think they must be using one of the old "T" antennas which was presumably the one used for the 73.25kHz signal that used to be such a pain. When we visited the site in 2003, I guessed the T antennas, which were slung from the main 820' masts, but at a level well below the VLF top load, were at somewhere around 600' high, so it might be that the Rugby Loran has significantly less ERP compared to typical Loran stations. Hope this is of interest, Cheers, Jim Moritz 73 de M0BMU ----- Original Message ----- From: Peter Martinez To: Sent: Friday, March 03, 2006 9:54 AM Subject: Re: LF: LORAN spurious emission levels > From G3PLX: > > I calculated the radiated power of a LORAN line now, but I would like other > people to check if I did it right, because the result is surprisingly small. ..... > > If we estimate (from the info given by Marco) that each LORAN transmitter > radiates 7.5kW mean power, then the radiated power in each LORAN line is > 1.71e-8 * 7500 = 0.128 mW. > > I don't know if I should believe this! Can anybody find a mistake or at > least check my calculations? All the figures needed for the calculations > are in this email. Does anyone have any evidence that any of these figures > are wrong? > > 73 > Peter G3PLX > > > ------=_NextPart_000_002B_01C63FE3.3569F3A0 Content-Type: image/gif; name="Loran_100k_100r2k.gif" Content-Transfer-Encoding: base64 Content-Disposition: attachment; filename="Loran_100k_100r2k.gif" R0lGODdhdwP7APcAAAAAAAEBAQICAgMDAwQEBAUFBQYGBgcHBwgICAkJCQoKCgsLCwwMDA0NDQ4O Dg8PDxAQEBERERISEhMTExQUFBUVFRYWFhcXFxgYGBkZGRoaGhsbGxwcHB0dHR4eHh8fHyAgICEh ISIiIiMjIyQkJCUlJSYmJicnJygoKCkpKSoqKisrKywsLC0tLS4uLi8vLzAwMDExMTIyMjMzMzQ0 NDU1NTY2Njc3Nzg4ODk5OTo6Ojs7Ozw8PD09PT4+Pj8/P0BAQEFBQUJCQkNDQ0REREVFRUZGRkdH R0hISElJSUpKSktLS0xMTE1NTU5OTk9PT1BQUFFRUVJSUlNTU1RUVFVVVVZWVldXV1hYWFlZWVpa WltbW1xcXF1dXV5eXl9fX2BgYGFhYWJiYmNjY2RkZGVlZWZmZmdnZ2hoaGlpaWpqamtra2xsbG1t bW5ubm9vb3BwcHFxcXJycnNzc3R0dHV1dXZ2dnd3d3h4eHl5eXp6ent7e3x8fH19fX5+fn9/f4CA gIGBgYKCgoODg4SEhIWFhYaGhoeHh4iIiImJiYqKiouLi4yMjI2NjY6Ojo+Pj5CQkJGRkZKSkpOT k5SUlJWVlZaWlpeXl5iYmJmZmZqampubm5ycnJ2dnZ6enp+fn6CgoKGhoaKioqOjo6SkpKWlpaam 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