Auxiliary passenger loading system for elevator
An elevator and passenger boarding technology, which is applied to elevators, elevators, transportation and packaging in buildings, etc., can solve the problems of exposing passenger weight information, unclear elevator remaining load capacity, passenger time delay, etc., to improve the efficiency of passenger boarding , protect the privacy of weight, and avoid the effect of wasting capacity
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Embodiment 1
[0038] An elevator assisting passenger boarding system, comprising:
[0039] Auxiliary mechanism, which includes at least two distance measuring devices and a hall door prompting device, each of which is installed at the center position on both sides of the elevator hall door, and the detection port of the distance measuring device faces the outside of the elevator hall door space, the hall door prompting device is installed on one side of the hall door, the two distance measuring devices and the hall door prompting device are connected to the elevator controller; the weighing device is installed at the bottom of the car, and the weighing device It is connected with the elevator controller; the car prompting device is installed on the inner wall of the car, and the car prompting device is connected with the elevator controller; the control computing center includes at least a registration module, a comparison module, and a signal generation module . A calculation optimization ...
Embodiment 2
[0046] combine figure 1 As shown, the control method of the elevator auxiliary boarding system includes the following steps:
[0047]Step 1) The weighing device weighs the load of the elevator in real time and transmits it to the elevator controller. The two distance measuring devices measure the distance signal of the nearest object on the left and right sides of the elevator lobby in real time and transmit it to the elevator controller. device;
[0048] Step 2) The comparison module receives the elevator load signal, and compares the elevator load with p and q values respectively;
[0049] Step 3) If the load of the elevator is less than p and the elevator light curtain cannot sense objects within the set time, then close the elevator door;
[0050] Step 4) If the load of the elevator is greater than or equal to p and less than q, the prompting device prompts the people inside and outside the elevator to have the remaining load of the elevator, and at the same time, the ...
Embodiment 3
[0058] An elevator often has peaks and valleys over time according to its busyness. Taking the school as an example, it may be heavily used in the first few minutes after each class, while the time for boarding passengers is the least used. In fact, in the first few minutes after each get out of class, the use of elevators is similar. Although the first few minutes of these several sections after class are discontinuous in time, they should be divided into a period of use. In the same way, the time for visiting customers is divided into another period of use.
[0059] The division of the use period adopts the k-means clustering algorithm, and the time sub-section is set as 1 minute, then there are 1440 time sub-sections in one day, and the total weight of the elevator in each minute is X i , clustered into 20 usage time periods, including the following steps:
[0060] Step A) Randomly take 20 sub-time units as the initial clustering center, so that c(0)=X 0 ,...c(19)=X 19 ; ...
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