A control method for an intelligent safe
A control method and technology of safes, which are applied in safes, instruments, building structures, etc., can solve problems such as high power consumption, and achieve the effects of reducing power consumption, increasing sleep time, and reducing broadcasting time
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Embodiment 1
[0041] The control method of the smart safe of the present invention is a control method suitable for a smart safe that uses Bluetooth communication technology to perform wireless remote control unlocking / closing of the smart safe. The control method is realized by controlling the APP on the terminal device, and the APP can be a cross Platform design, applicable to windows, Linux and android systems at the same time, terminal devices can be desktop computers, notebook computers, tablet computers and mobile phones, etc. The smart safe referred to in the present invention can be either a cabinet or a box. The size can be changed according to actual needs. For the convenience of description, they are collectively referred to as smart safes. The smart safes include a cabinet, a door, a handle, a lock body assembly, a Bluetooth receiving control module and a terminal device. The cabinet, The cabinet door, handle, and lock body components can use the existing technology. The lock body...
Embodiment 2
[0046] In this example, the switching period T is set to 10s, and the initial value of the broadcast time duty cycle a is 0.4, so that the broadcast time t1=T*a=4s, the sleep time t2=T*(1-a)=6s, Set the upper limit M of the number of switching cycles to 10, the initial value of the number of switching cycles m to 0, the lower limit of the broadcast time duty cycle A to 0.3, the decrement of the broadcast time duty cycle n to 0.03, and the unlock delay time B It is 20s, the initial value of the number of incorrect password input c is 0, the upper limit of the number of incorrect password input C is 5, the unlock password is set to 662288, and the terminal device is a mobile phone.
[0047] After the system is powered on and initialized 146s, the mobile phone sends a connection request packet to the Bluetooth receiving control module. At this time, the Bluetooth receiving control module has passed 14 switching cycles T, a = 0.4-1*0.03 = 0.37, and the broadcast time t1 = T*a =3.7s, ...
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