Tagged: rtl-sdr

Receiving Dead Satellites with the RTL-SDR

Recently happysat, a reader of RTL-SDR.com wrote in to let us know about an unusual hobby he has found with the RTL-SDR. Happysat has been using the RTL-SDR together with a QFH antenna to detect old decommissioned satellites in the 136-138 MHz and 150-400 MHz frequency ranges. Although these satellite’s batteries have long been expired, because of some sort of chemical reaction due to thousands of failed recharge cycles the batteries begin to conduct over time and allow the satellite to be powered directly from the solar panels thus activating the transmitter. Happysat writes:

During weathersat reception of NOAA/Meteor on the 137 MHz band i did see quite often unidentified interrupting signals. After a bit of Googling around I learned that these were Dead Satellite’s that still are broadcasting given the right sunlight conditions, the signal strength is sufficient to show up in SDRSharp, not all signals are very strong some very weak and needed a good close up zoom in SDRSharp. There are many shutdown Satellite’s who apparently having a life of their own varying from Military, Navigation, Experimental, Weather, and also Amateur ones. Most are not transmitting any usable telemetry or weather images but they still use the original frequencies to sent out a unmodulated carrier, which interferes with the current operational Satellite’s in the 136/138 MHz band. Normally when a satellite goes out of service and runs almost out of fuel the last reserve is used to shift it in a graveyard orbit which resides above the normal operation orbit, it will be switched off and left on their own. But this will not always goes as planned, sometimes due solar radiation or other technical failures it will not respond again to the ground station commands, which leaves the Satellite in its current orbit. Some have a timer onboard which will be activated at end of life scheduled to end/shortcut the power feed to the transmitter so it will not broadcast again, also this can fail. Until some day they might not work at all anymore.. But that can take a while one of the oldest satellite still broadcasting are: Transit 5B-5 (Military Navigation) from 1964 – they can be heard in either CW or USB mode. An audio example of Transit is over here [link to example] (my recording – link to online stream  uploaded by commenter Jordan here) it sounds like some kind of melody song. And LES-1 from 1965 (Lincoln Experimental Satellite 1) – Audio example over here [link to example] thanks to Phil Williams. Others are just a spooky hauling sound like LES-1, NOAA’s etc due the Voltage fluctuation from the solar panels. DD1US does have a very nice collection images and orginal sounds on : [space sounds] A list of frequencies and more in depth details can be found on Mike Kenny’s excellent website: [mike kenny’s website] My TLE containing all current Deadsatellite’s is available on dropbox for anyone would like to try out – [TLE file] Updated once a week. You can use it in your favorite tracker, i prefer Gpredict for this course of the unstable frequency and Doppler effects Orbitron will not always suite on this birds.

Happysat has also provided a frequency database for SDR# containing the frequencies of all the dead satellites.

Aloutte
Aloutte
Transit 5B
Transit 5B
Transit 5B
Transit 5B
Tiros-N
Tiros-N
NOAA-9
NOAA-9
NOAA-9
NOAA-9
LES-1
LES-1
ISIS-1
ISIS-1
GPredict
GPredict
Fenyung 1D
Fenyung 1D

 

Radio Astronomy using a Differential Radiometer and Interferometer with an RTL-SDR

Amateur radio astronomer Marcus Leech often makes use of RTL-SDR dongles for his amateur radio astronomy experiments. Recently Marcus wrote a technical paper discussing a modern SDR implementation of a Dicke Radiometer, which is a type of radio telescope that is designed to significantly reduce the effects of receiver noise. Marcus has also developed an RTL-SDR approach to another similar system called the Phase-Switched Interferometer.

Using his new SDR based approach together with GNU Radio, a 10ft satellite dish and two RTL-SDR dongles he was able to plot a transit of the Milky Way Galaxy as shown below.

Milky Way Galaxy Transit
Milky Way Galaxy Transit

New Raspberry Pi Image with RTL-SDR Drivers and GNU Radio Built In

A new image for the Raspberry Pi containing RTL-SDR software has been made available by tech enthusiast Gareth Hayes. The image contains all the software and drivers needed to get started with the RTL-SDR or HackRF on a 512MB Raspberry Pi. It is very useful as compilation of large software like GNU Radio is slow and problematic on an embedded PC like the Raspberry Pi. The image contains the following software:

  • GNU Radio V3.7.5 built from source, including GNU Radio Companion
  • Osmocom GNU Radio Source (and Sink) Blocks
  • Support for DVB-T USB dongles
  • Support for HackRF One (and Jawbreaker)
  • RTL-SDR Suite
  • Gqrx

A few months ago we also featured a similar image for the BeagleBone Black.

Raspberry Pi Mini Linux Computer
Raspberry Pi Mini Linux Computer

Shielding the RTL-SDR

Over on Reddit user will1384 has posted about his imgur photo album that clearly documents some well researched steps that he took in an effort to shield the RTL-SDR dongle from interference. Interference is caused by strong out of band signals that can sometimes show up even when no antenna is connected to the dongle. Shielding the dongle helps to remove this interference.

The main steps he took were the following:

  1. Buy an aluminium case from ebay and put the dongle inside it.
  2. Remove the USB connector and ground the dongle ground to the aluminium casing using a 1M Ohm resistor and a 47nf ceramic disk capacitor.
  3. Connect the USB data lines to a USB extension cable and wrap a toroid around the 5v and GND lines and twist the two data lines together.

There is a discussion about this shielding project on Reddit.

Shielding Wiring Diagram
Shielding Wiring Diagram

Receiving Hellschreiber with the RTL-SDR and an Upconverter

Over on YouTube user BSoD Badgers has uploaded a video showing reception of Hellschreiber on HF at 20m. To receive the HF frequencies he used a ham-it-up upconverter. He used SDR# to receive the signal and the Fldigi decoding software to decode the signal.

Hellschreiber is a fax-like communications mode used by amateur radio hobbyists.

Tutorial Video Showing How to Receive Meteor M2 Weather Satellite Images with the RTL-SDR

Recently we posted about a tutorial showing how to receive LRPT weather satellite images from the new Russian Meteor M2 satellite. Now over on YouTube user Tom Mladenov has uploaded a tutorial video showing all the tutorial steps.

The reception process is to essentially record an IQ file of an LRPT transmission using SDR#, reduce the sample rate of the IQ file using audacity and then decode the file using LRPTrx.exe. Then finally the decoded data can be imported into LRPTofflineDecoder to produce an image.

University Lab Sheet Explaining RTL-SDR and Demodulation Theory

A reader of our blog has recently written in to let us know about a lab sheet from the University of Colorado College of Engineering and Applied Science which clearly explains software defined radio theory with the aide of an RTL-SDR dongle.

The lab sheet starts off by showing how the RTL-SDR works at a high level, then goes on to explain the function of the R820T tuner chip and RTL2832U chip. The lab then shows a behavioural level model of the RTL-SDR which becomes useful for mathematical analysis. Finally, the lab also explains demodulation theory for FM and FSK signals and sets several lab exercises that involve writing FM and FSK demodulators in MATLAB or Python.

The zip files mentioned in the lab sheet can be downloaded from http://www.eas.uccs.edu/wickert/ece4670/lecture_notes/.

RTL-SDR Behavioural Model
RTL-SDR Behavioural Model

Another TCXO RTL-SDR for Sale And Aluminium Cases

Recently we posted about a new US based source for modded TCXO RTL-SDR dongles. Now Nooelec, one of the most popular sellers of standard RTL-SDR dongles have started selling their own version of TCXO modded dongles as well. Their dongles come with a 0.5 ppm TCXO oscillator as well as an external aluminium casing for interference shielding.

A TCXO is a temperature controlled oscillator. Its advantage over a standard oscillator like the one used in a normal RTL-SDR is that its frequency will not drift as the temperature of the dongle changes.

Nooelec are also selling the aluminium casing by itself in silver and in blue for use in shielding dongles that you already have.

Nooelec TCXO Dongle
Nooelec TCXO Dongle