Flying Helicopters – ArmA: Armed Assault
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==Flight Model & Controls== | ==Flight Model & Controls== | ||
===Controls=== | |||
There are 3 controls in a chopper : | |||
* Cyclic | |||
* Collective | |||
* Rudder | |||
Cyclic controls the '''attitude''' of your chopper, it is the stick in the middle of the cockpit, between the legs. It banks the airframe left and right, and pulls nose up or down. | |||
Collective control the global sustentation of the blade, so basically, when it is pulled, the chopper gains altitude, when it is pushed, the chopper loses altitude. | |||
Rudder controls the power applied to the tail rotor or the differential of power applied to both main rotors in contra-rotative helicopters (like the Ka-50). It makes the chopper frame change direction without banking or changing attitude. | |||
===Flight Model=== | |||
Several side-effects appear when you use one of the controls to change the helicopter flight. Few of them are modelled in ArmA : | |||
* pulling the nose up while having significative speed makes the helicopter gains altitude | |||
* the opposite is true, when you pull the nose down to gain speed, you lose altitude | |||
* the rudder loses authority when speed increases, up to a point where it has nearly no effect | |||
==Controller Setup== | ==Controller Setup== |
Revision as of 16:38, 14 February 2007
Introduction
Since the flight model of helicopters in ArmA is a bit more demanding than it used to be in OFP, here are some tips for beginners and experts on how to control them efficiently.
Flight Model & Controls
Controls
There are 3 controls in a chopper :
- Cyclic
- Collective
- Rudder
Cyclic controls the attitude of your chopper, it is the stick in the middle of the cockpit, between the legs. It banks the airframe left and right, and pulls nose up or down.
Collective control the global sustentation of the blade, so basically, when it is pulled, the chopper gains altitude, when it is pushed, the chopper loses altitude.
Rudder controls the power applied to the tail rotor or the differential of power applied to both main rotors in contra-rotative helicopters (like the Ka-50). It makes the chopper frame change direction without banking or changing attitude.
Flight Model
Several side-effects appear when you use one of the controls to change the helicopter flight. Few of them are modelled in ArmA :
- pulling the nose up while having significative speed makes the helicopter gains altitude
- the opposite is true, when you pull the nose down to gain speed, you lose altitude
- the rudder loses authority when speed increases, up to a point where it has nearly no effect
Controller Setup
(joysticks vs. mouse/keyboard, efficient assignments, etc.)
How-Tos
(how to turn, land, etc. What and how to practice)