Optical zoom focusing method, projection device and storage medium
A focusing method and optical zoom technology, which is applied in the field of projectors, can solve problems such as blurred pictures and poor user experience, and achieve the effect of reducing the number of operations, precise adjustment and stable adjustment, and ensuring continuous clear zooming of the picture
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Embodiment 1
[0047] A motorized focusing method for optical zooming, such as figure 1 shown, including the following steps:
[0048]Get instructions;
[0049] Control the focus mechanism and the zoom mechanism according to the instructions to adjust the definition and / or size of the projected picture.
[0050] Specifically, such as figure 2 As shown, the focus mechanism and the zoom mechanism are controlled to move synchronously according to the instructions, so that the projected picture remains clear when changing its size.
[0051] After receiving the command, control the focus mechanism to rotate in the first direction, and control the zoom mechanism to rotate in the first direction or the second direction opposite to the first direction synchronously; the synchronization here includes synchronization without time difference or synchronization with a certain error, The direction of rotation is set according to a specific design, and the first direction may be clockwise or counterc...
Embodiment 2
[0067] The difference between this embodiment and Embodiment 1 is that during the synchronous movement of the focus mechanism and the zoom mechanism, the projection distance changes.
[0068] Control the focus mechanism and the zoom mechanism to move synchronously at a non-fixed projection distance according to the second relational expression, the second relational expression is z=f'(x,y) , y Indicates the number of zoom travel steps of the zoom mechanism, x represents the projection distance, z Indicates the number of focusing travel steps of the focusing mechanism, f'() Indicates the functional relationship among the projection distance, the zoom travel steps of the zoom mechanism, and the focus travel steps of the focus mechanism.
[0069] The acquisition of the second relational expression comprises the following steps:
[0070] Under multiple projection distances, change the zoom travel steps of the zoom mechanism, and record the focus travel steps of the focus mech...
Embodiment 3
[0076] The difference between this embodiment and Embodiment 1 or 2 is that the minimum moving unit and moving speed are optimized during the synchronous movement of the zoom mechanism and the focusing structure.
[0077] For example, when the user triggers the zoom, the zoom range cannot be predicted in advance, so the zoom distance is divided, and multiple minimum moving units are used to realize the entire zooming process. The minimum moving unit of the focus mechanism and the minimum moving unit of the zoom mechanism have a mapping relationship, such as , at a fixed distance, the mapping relationship is the first relationship.
[0078] The smallest moving unit of the zoom mechanism during the movement of the zoom mechanism and the focus mechanism at a fixed distance b min satisfy b min = △ b / a ,△ b Indicates the moving distance of the zoom mechanism, a Indicates the greatest common divisor of the moving distance of the zoom mechanism and the moving distance of the ...
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