Method and system for controlling smartwatch, and smartwatch
A technology for controlling smart and smart watches, applied in the field of smart watches, can solve the problems of single control method, unable to realize complicated functions of pointers, unable to meet user needs, etc., and achieve the effect of high user experience
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Embodiment 1
[0029] figure 1 It shows the implementation flow of a method for controlling a smart watch provided by an embodiment of the present invention. The smart watch includes a pointer, and the method includes:
[0030] In step S101, a user instruction is received, and the shaking speed, shaking acceleration and shaking direction of the user shaking the smart watch are obtained according to the user instruction.
[0031] In one embodiment, after accepting the user instruction, it further includes: generating a random number, and controlling the pointer to move to a position corresponding to the random number.
[0032] In this implementation, when the user wants to control the rotation of the pointer by shaking the smart watch, the corresponding command is input on the smart watch, and the smart watch turns on the swing control pointer mode according to the user's command.
[0033] In this embodiment, calculate the angular difference between all pointers and the preset zero position,...
Embodiment 2
[0065] Such as Figure 4 As shown, the system 100 for controlling smart watches provided by an embodiment of the present invention is used to perform figure 1 For the method steps in the corresponding embodiments, the smart watch includes a pointer, and the system includes:
[0066] Obtaining a user command module 110, configured to receive a user command, and obtain the swing speed, swing acceleration and swing direction of the user's swinging smart watch according to the user command.
[0067] The acquisition rotational acceleration module 120 is used to calculate the rotational acceleration according to the swing acceleration.
[0068] The current rotation pointer selection module 130 is used to select the pointer with the smallest distance from the preset zero position as the current rotation pointer.
[0069] The control pointer rotation module 140 is used to control the current rotation pointer to rotate according to the shaking direction with the shaking speed and the...
Embodiment 3
[0082] Figure 5 It is a schematic diagram of a smart watch provided by an embodiment of the present invention. Such as Figure 5 As shown, the smart watch 5 of this embodiment includes: a processor 50 , a memory 51 and a computer program 52 stored in the memory 51 and operable on the processor 50 . When the processor 50 executes the computer program 52, it realizes the steps of each embodiment as in Embodiment 1, for example figure 1 Step S101 to step S105 are shown. Alternatively, when the processor 50 executes the computer program 52, it realizes the functions of each module / unit in each system embodiment in Embodiment 2, for example image 3 The functions of the modules 110 to 150 are shown.
[0083] Exemplarily, the computer program 52 can be divided into one or more modules / units, and one or more modules / units are stored in the memory 51 and executed by the processor 50 to implement the present invention. One or more modules / units may be a series of computer program...
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