Return-Path: Received: (qmail 11962 invoked from network); 1 Dec 2001 11:09:35 -0000 Received: from unknown (HELO murphys-inbound.services.quay.plus.net) (212.159.14.225) by excalibur-qfe1-smtp-plusnet.harl.plus.net with SMTP; 1 Dec 2001 11:09:35 -0000 Received: (qmail 11460 invoked from network); 1 Dec 2001 11:09:56 -0000 Received: from unknown (HELO post.thorcom.com) (212.172.148.70) by murphys.services.quay.plus.net with SMTP; 1 Dec 2001 11:09:56 -0000 Received: from majordom by post.thorcom.com with local (Exim 3.33 #2) id 16A7v5-0007Xt-00 for rsgb_lf_group-outgoing@blacksheep.org; Sat, 01 Dec 2001 11:02:55 +0000 Received: from sun4.scgroup.com ([192.55.122.7]) by post.thorcom.com with esmtp (Exim 3.33 #2) id 16A7uy-0007Xo-00 for rsgb_lf_group@blacksheep.org; Sat, 01 Dec 2001 11:02:48 +0000 Received: from parissn2 (AMontsouris-101-1-3-195.abo.wanadoo.fr [193.252.108.195]) by sun4.scgroup.com (8.9.1b+Sun/8.9.1) with SMTP id DAA01208 for ; Sat, 1 Dec 2001 03:01:31 -0800 (PST) Message-ID: <001201c17a57$519bc130$0400000a@parissn2> From: "Stewart Nelson" To: rsgb_lf_group@blacksheep.org References: <3C0813D6.28D093B3@att.net> <002501c179fb$f8965b00$0400000a@parissn2> <3C083862.BDD4C79B@att.net> Subject: Re: LF: Re: 75 kHz HBG +50db above noise in NC Date: Sat, 1 Dec 2001 11:59:57 +0100 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="------------060707000803050803040202" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2600.0000 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1106 Precedence: bulk Reply-To: rsgb_lf_group@blacksheep.org X-Listname: rsgb_lf_group Sender: This is a multi-part message in MIME format. --------------060707000803050803040202 Content-Type: text/plain; charset=windows-1252; format=flowed Content-Transfer-Encoding: 8bit Hi Dexter and all, > Yes the 73.6 kHz signal is 75 Hz shift but I don't know about it rate. > Can I determine this by viewing with Cool Edit? I have a one minuet > .wav file, close to 1 MB, I could send you if you want to analyze it. > > I have no problem seeing the 100 Hz shift signal centered on 73.25 kHz > which must be Rugby. That is when the 73.6 blaster isn't running. I was surprised to clearly see both signals in your recording. I took a 2 second segment that was free of static, converted the sample rate to 4 kHz (so the dB scale would be visible in a cropped image without editing the picture), and ran the Frequency Analysis command. Assuming that your receiver was set to 71750 USB, you can see CFH peaks at 73563 and 73638. Also Rugby peaks at 73200 and 73300, about 35 dB weaker. The presence of these discrete lines is a good clue that the shift is equal to (or a multiple of) the data rate. That's because a shift from mark to space and back to mark leaves the carrier in the same phase as it would have, had there been no shift. If the data is random, then exactly 1/4 of the transmitted energy is in each of these lines; the remaining 1/2 fills the occupied bandwidth. So if you can measure the strength of a discrete line, and know the transmitted ERP, you have a quantitative propagation reading. Cool Edit's View->Spectral View command can do a crude FM demodulation of a signal. You can see the shifts of CFH here pretty well. By moving the cursor over a number of bits, one can accurately determine the baud rate. If the signal is RTTY, you can also easily see the pattern of start and stop bits, and know character length as well. 73, Stewart KK7KA --------------060707000803050803040202 Content-Type: image/gif; name="fft.gif" Content-Transfer-Encoding: base64 Content-Disposition: inline; filename="fft.gif" R0lGODdhXQFAAfcAAAAAAAAAVQAAqgAA/wAkAAAkVQAkqgAk/wBJAABJVQBJqgBJ/wBtAABt VQBtqgBt/wCSAACSVQCSqgCS/wC2AAC2VQC2qgC2/wDbAADbVQDbqgDb/wD/AAD/VQD/qgD/ /yQAACQAVSQAqiQA/yQkACQkVSQkqiQk/yRJACRJVSRJqiRJ/yRtACRtVSRtqiRt/ySSACSS VSSSqiSS/yS2ACS2VSS2qiS2/yTbACTbVSTbqiTb/yT/ACT/VST/qiT//0kAAEkAVUkAqkkA /0kkAEkkVUkkqkkk/0lJAElJVUlJqklJ/0ltAEltVUltqklt/0mSAEmSVUmSqkmS/0m2AEm2 VUm2qkm2/0nbAEnbVUnbqknb/0n/AEn/VUn/qkn//20AAG0AVW0Aqm0A/20kAG0kVW0kqm0k /21JAG1JVW1Jqm1J/21tAG1tVW1tqm1t/22SAG2SVW2Sqm2S/222AG22VW22qm22/23bAG3b VW3bqm3b/23/AG3/VW3/qm3//5IAAJIAVZIAqpIA/5IkAJIkVZIkqpIk/5JJAJJJVZJJqpJJ /5JtAJJtVZJtqpJt/5KSAJKSVZKSqpKS/5K2AJK2VZK2qpK2/5LbAJLbVZLbqpLb/5L/AJL/ 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