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Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

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Page 1: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Differences between Digisondes, Dynasondes and

Classical Ionosondes in the projects: DIAS and LOIS.

Christer juren

IRF

Kiruna

Page 2: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

A discussion about different philosophies regarding Ionosondes suitable

to be used in the project DIAS (http://www.iono.noa.gr/DIAS/) and LOIS.

The history of The Swedish Ionosondes (up to Transpusondes) are

described with illustrations from very old soundings and newer ones.

Object oriented view of the Ionosphere.

The digisonde is closely compared with the dynasonde;

two quite different types of concepts!

   What type of sounding is interesting for DIAS / LOIS?

Page 3: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 4: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 5: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 6: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Transpusonde Computer part

Dark red: 286 PCGreen: RS232 connectionBlue: Transputer T800White: Transputer T200

Light red: Xilinx 3030Yello: GPSGray: samplingunit (T200)

Page 9: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 10: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

4 * myIonosonde

Page 11: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Bill Wright; Dynasonde

Bodo Reinisch;Digisonde

Page 12: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

The Dynasonde collects echoes in form of detected discrete pulses described by: time, amplitude and some phases.

The Digisonde collects time series for frequency and polarization.

!Both defined by the transmitter!

Page 13: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

The Dynasonde transmits plane polarized waves inform of 100 micrSec shaped pulses. The pulse poweris about 1- 10 KW. The original receiving antennas werefrom four to six in number and each of them consistedof broadband active dipoles about 5 meters in length.

Dynasonde

Receiver dipole in Lycksele

Page 14: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Dynasonde

The dynasonde transmiting antenna will alwaystransmit plane polarized waves. The constructionsvary; traveling wave dipole, delta, logperiodic,broad band dipole (Lycksele) ....

Inverted logperiodic at Tromsö; the feedpoint:

Page 15: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

An ionogram sampled with a soundcard.The red curve is a part of an original time series for one frequency.The ionogram is a little bit hacked, which is due to thetype of sounding, .”Frequency” along the horizontal!

Dynasonde

Page 16: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

The antenna layout and the definition of the data for one detected pulse, which is the complex amplitudes for the maximum in the timeseries around the accepted pulse.

dynasonde

Page 17: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 18: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

One Digisonde receiving antenna at RAL UK

A digisonde has four receiving antennas. Each consists of two crossed dipoles. The signals will be combined so the output will represent the O- and XO-modes separately.

Digisonde

Page 19: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Digisonde transmiting antenna in Juliusruh.Two crossed delta antennas. They generateright or left circular polarized waves.

Digisonde

Page 20: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 21: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 22: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna
Page 23: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

The Transpusonde at Uppsala transmits pulses and a Lois receiver receives them.

Page 24: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna

Conclusion

Go the Dynasonde way together with LOIS receivers.

Use the concepts of the Dynasonde.

Page 25: Differences between Digisondes, Dynasondes and Classical Ionosondes in the projects: DIAS and LOIS. Christer juren IRF Kiruna