Mariner Mission to VenusJet Propulsion Laboratory (U.S.)
Science
Mariner Mission to Venus
Jet Propulsion Laboratory (U.S.)
Project Mariner (U.S.)
Radio command signals transmitted to Mariner were decoded in a command
subassembly, processed, and routed to the proper using devices. A
transponder was used to receive the commands, send back confirmation of
receipt to the Earth, and distribute them to the spacecraft subsystems.
Mariner II used four antennas in its communication system. A cone-like
nondirectional (omni) antenna was mounted at the top of the spacecraft
superstructure, and was used from injection into the Venus flight
trajectory through the midcourse maneuver (the directional antenna could
not be used until it had been oriented on the Earth).
A dish-type, high-gain, directional antenna was used at Earth
orientation and after the trajectory correction maneuver was completed.
It could receive radio signals at greater distances than the
nondirectional antenna. The directional antenna was nested beneath the
hexagonal frame of the spacecraft while it was in the nose-cone shroud.
Following the unfolding of the solar panels, it was swung into operating
position, although it was not used until after the spacecraft locked
onto the Sun.
The directional antenna was equipped with flexible coaxial cables and a
rotary joint. It could move in two directions; one motion was supplied
by rolling the spacecraft around its long axis.
In addition, two command antennas, one on either side of one of the
solar panels, received radio commands from the Earth for the midcourse
maneuver and other functions.
ATTITUDE CONTROL: BALANCING IN SPACE
Mariner II had to maintain a delicate balance in its flight position
during the trip to Venus (like a tight-wire walker balancing with a
pole) in order to keep its solar panels locked onto the Sun and the
directional antenna pointed at the Earth. Otherwise, both power and
communications would have been lost.
A system of gas jets and valves was used periodically to adjust the
attitude or position of the spacecraft. Expulsion of nitrogen gas
supplied the force for these adjustments during the cruise mode. While
the spacecraft was subjected to the heavier disturbances caused by the
rocket engine during the midcourse maneuver, the gas jets could not
provide enough power to control the attitude of the spacecraft and it
was necessary to use deflecting vanes as rudders in the rocket engine
exhaust stream for stabilizing purposes.
The attitude control system was activated by CC&S command 60 minutes
after launching. It operated first to align the long axis of the
spacecraft with the Sun; thus its solar panels would face the Sun.
Either the Sun sensors or the three gyroscopes mounted in the pitch
(rocking back and forth), yaw (side to side), and roll axes, could
activate the gas jet valves during the maneuver, which normally required
about 30 minutes to complete.
Public-domain text, read in full here on John Shaqi.
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