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151 lines
5.9 KiB
Plaintext
151 lines
5.9 KiB
Plaintext
=== VHF Setup
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_WSJT-X_ v1.7.0 builds on the features designed for use on VHF and
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higher bands first introduced in v1.6. These features now include
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*JT4*, a mode particularly useful for EME on the microwave bands;
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*QRA64*, a mode for EME using a "`Q-ary Repeat Accumulate`" code, a
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low-density partity-check (LDPC) code using a 64-character symbol
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alphabet; *MSK144*, a mode for meteor scatter using a binary LDPC code
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and offset quadrature phase-shift keying (OQPSK), a waveform also
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known as Minimum Shift Keying (MSK); and *ISCAT*, intended for other
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types of scatter propagation. Additional VHF-and-up features include
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*Echo* mode, for detecting and measuring your own lunar echoes, and
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automatic high-accuracy *Doppler tracking* for the EME path.
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- To activate the VHF-and-up features check the box labeled _Enable
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VHF/UHF/Microwave features_ on the *Settings | General* tab. In most
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cases you will also want to check _Single decode_.
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- If you will be doing EME, check the box _Decode at t = 52 s_
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to allow for the EME path delay on received signals.
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- If you will use automatic Doppler tracking, check the box _Allow Tx
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frequency changes while transmitting_. On the *Radio* tab select
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_Split Operation_ (use either _Rig_ or _Fake It_: you might need to
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experiment with both).
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IMPORTANT: Not all transceivers permit computer adjustments of Tx
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frequency while transmitting. Among those that do are the IC-735,
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IC-756 Pro II, IC-910-H, FT-847, TS-2000 (with Rev 9 firmware
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upgrade), Flex 1500 and 5000, HPSDR, Anan-10, Anan-100, and KX3.
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- The main window reconfigures itself as necessary to include controls
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supporting features of each mode. For example, in JT4 mode the
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central part of the main window will look like this:
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image::VHF_controls.png[align="center",alt="VHF Controls"]
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- On the *View* menu, select *Astronomical data* to display a window
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with important information for tracking the Moon and performing
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automatic Doppler control. Check the box labeled _Doppler tracking_
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to ensure that the right-hand portion of the window is visible.
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image::Astronomical_data.png[align="center",alt="Astronomical data"]
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IMPORTANT: Note that three different types of Doppler tracking are
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provided.
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- Select _Full Doppler to DX Grid_ if you know your QSO partner's locator
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and he/she will not be using any Doppler control.
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- Select _Receive only_ to enable EME Doppler tracking of your receive
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frequency to a specific locator; your Tx frequency will remain fixed.
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- Select _Constant frequency on Moon_ to correct for your own (one-way)
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Doppler shift to or from the Moon. If your QSO partner does the same
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thing, both stations will have the required Doppler compensation.
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Moreover, anyone else using this option will hear both of you
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without the need for manual frequency changes. The hypothetical "`man
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in the moon`" would copy all of you on the selected nominal frequency.
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- In the example depicted above, the moon-based nominal frequency is
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100 kHz above the stated band edge, or 10368.100 MHz for the 10 GHz
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band. The home station two-way self Doppler shift is +24366 Hz, so the
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one-way shift is +12183 Hz. Therefore, the receive frequency is set
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to 10,360.112183 Hz. When a transmission is started, the frequency
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will be reset to 12183 Hz _below_ the nominal on-the-moon frequency.
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=== EME with JT4
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- Select *JT4* from the *Mode* menu.
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- Select the desired submode, which determines the tone spacing.
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Higher spacings are used on the higher microwave bands, to allow for
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larger Doppler spreads. For example, JT4F is generally used for EME on
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the 10 GHz band.
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- If using a transverter, set the appropriate offset on the *Settings
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| Frequencies* tab. Offset is defined as (desired transceiver dial
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reading) minus (desired on-the-air frequency). For example, when
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using a 144 MHz radio at 10368 MHz, _Offset (MHz)_ = (144 - 10368) =
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-10224.000. If the band is already in the table, you can edit the
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offset by double clicking on the offset field itself. Otherwise a new
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band can be added by right clicking in the table and selecting _Insert_.
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image::Add_station_info.png[align="center",alt="Station information"]
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- The JT4 decoder in _WSJT-X_ includes optional facilities for
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averaging over successive transmissions and also correlation decoding,
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also known as "`Deep Search`".
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image::decoding_depth.png[align="center",alt="Decoding Depth"]
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- By convention, EME with JT4 can use "`short form`" messages. To
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activate automatic generation of these messages, check the box labeled
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_Sh_ on the main window.
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IMPORTANT: Thanks to G3WDG, many additional hints for using JT4 and
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Echo mode on the EME path are available in {jt4eme}.
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=== EME with JT65
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TBD ...
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=== EME with QRA64
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TBD ...
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=== Meteor Scatter with MSK144
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TBD ...
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=== Scatter Propagation with ISCAT
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TBD ...
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=== Echo Mode
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*Echo* mode allows you to make sensitive measurements of your own
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lunar echoes, even when they are too weak to be heard. Select *Echo*
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from the *Mode* menu, aim your antenna at the moon, pick a clear
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frequency, and toggle click *Tx Enable*. _WSJT-X_ will then cycle
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through the following loop every 6 seconds:
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1. Transmit a 1500 Hz fixed tone for 2.3 s
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2. Wait about 0.2 s for start of the return echo
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3. Record the received signal for 2.3 s
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4. Analyze, average, and display the results
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5. Repeat from step 1
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To make a sequence of echo tests:
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- Select *Echo* from the *Mode* menu.
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- On the Astronomical Data window check _Doppler tracking_ and
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_Constant frequency on the Moon_
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- Choose your desired test frequency using the _Frequency above nominal
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band edge_ controls.
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- Be sure that your rig control has been set up for _Split Operation_
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(either _Rig_ of _Fake It_) on the *Settings | Radio* tab.
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- Click *Enable Tx* on the main window to start a sequence of 6-second
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cycles.
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- _WSJT-X_ calculates and compensates for Doppler shift automatically.
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Your return echo should always appear at the center of the plot area
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on the Echo Graph window, as in the screen shot below.
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image::echo_144.png[align="center",alt="Echo 144 MHz"]
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