CN111882223A - Method and device for judging state of storage space in use - Google Patents

Method and device for judging state of storage space in use Download PDF

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Publication number
CN111882223A
CN111882223A CN202010752288.3A CN202010752288A CN111882223A CN 111882223 A CN111882223 A CN 111882223A CN 202010752288 A CN202010752288 A CN 202010752288A CN 111882223 A CN111882223 A CN 111882223A
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storage space
storage
value
state
judging
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张�林
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Shenzhen Zhilai Science and Technology Co Ltd
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Shenzhen Zhilai Science and Technology Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/10Coin-freed apparatus for hiring articles; Coin-freed facilities or services for means for safe-keeping of property, left temporarily, e.g. by fastening the property
    • G07F17/12Coin-freed apparatus for hiring articles; Coin-freed facilities or services for means for safe-keeping of property, left temporarily, e.g. by fastening the property comprising lockable containers, e.g. for accepting clothes to be cleaned

Abstract

The invention relates to a method for judging the state of a storage space in use, which comprises the following steps: obtaining an output signal of a detection unit of a storage space in use, judging whether a deposited article exists in the storage space, and if the deposited article does not exist, judging that the storage space is in a vacant state; if the article exists, executing the next step; acquiring a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value, and if so, judging that the storage space is in an overtime register state; if not, judging the storage space state to be normal use; the stored timing parameter is a set timing value that increases by a set amount each time a set time interval elapses after being assigned an initial value. The invention also relates to a device for realizing the method. The method and the device for judging the state of the storage space in use have the following beneficial effects: the actual utilization efficiency of the storage space is higher.

Description

Method and device for judging state of storage space in use
Technical Field
The present invention relates to an apparatus for depositing or temporarily storing articles, and more particularly, to a method and apparatus for determining the status of an article storage space being used.
Background
In the existing locker or intelligent locker, for example, a common barcode locker or intelligent express delivery locker, a remote or local system allocates a storage space for a user, unlocks the locker, puts articles in the user and closes the door to deposit or store the articles by a user request. At present, the bar code locker is widely used in domestic markets, such as large supermarkets, playgrounds and other places, the flow of people in the places is large, and the situation that the supply of a storage space of the bar code locker is insufficient is often met in the using process. In the actual use process, some users do not store articles according to the actual requirements, for example, one person applies for several grids for many times but does not store articles, and the condition is called empty storage, namely storage of articles is not put in, so that waste of storage space is caused; in addition, a part of users do not take articles for a long time after storing the articles, the set allowable storage time is exceeded, generally called as overtime storage, and the actual utilization rate of the storage space is reduced due to the overtime storage. In the prior art, a manager cannot judge the state of the storage spaces which are already used by the user, and therefore, there is no way to improve the above situation.
Disclosure of Invention
The technical problem to be solved by the present invention is to provide a method and a device for determining the status of an object storage space in use, which have high actual utilization efficiency of the object storage space, aiming at the defect of low actual utilization efficiency of the object storage space in the prior art.
The technical scheme adopted by the invention for solving the technical problems is as follows: a method for judging the state of a storage space in use is constructed, and comprises the following steps:
A) obtaining an output signal of a detection unit of a storage space in use, judging whether a deposited article exists in the storage space, and if the deposited article does not exist, judging that the storage space is in a vacant state; if the article exists, executing the next step;
B) acquiring a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value, and if so, judging that the storage space is in an overtime register state; if not, judging the storage space state to be normal use;
the storage timing parameter is a timing value which is given to an initial value after a user triggers a setting key to use the storage space to start to deposit articles and a door lock of the storage space sends a locking signal, the value of the timing value is increased by a set number every time a set time interval passes after the initial value is given, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit.
Still further, the method comprises the following steps:
executing the steps A) -B) one by one on all the storage spaces which are in use, respectively obtaining the state of each storage space which is in use, and showing the states of all the storage spaces on a display interface to remind a manager to process the empty storage state and the storage space which is registered overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
Furthermore, the detection unit comprises an infrared correlation sensor arranged in the storage space, and the infrared correlation sensor comprises an emitting part and a receiving part, wherein the emitting part emits infrared beams, and the receiving part receives the infrared beams emitted by the emitting part; the receiving section outputs a specified level signal when receiving the infrared beam, and outputs a level signal opposite to the specified level when not receiving the infrared beam.
Further, the transmitting portion and the receiving portion are respectively installed at set heights of left and right sidewalls of the storage space, and when an article is placed in the storage space, the article blocks a transmission path of the infrared beam, so that the receiving portion cannot receive the infrared beam.
Further, the initial value of the timer value includes 1, and the timer value is added with 1 every set time.
Furthermore, the designated area of the storage timing parameter stored in the storage unit comprises a timing value storage area allocated to each storage space during system initialization, and the stored data of the timing value storage area is cleared when the timing value storage area is allocated and the storage space finishes one-time article storage.
Still further, the method comprises the following steps:
the storage space is judged to be an empty storage space or a storage space in use according to the parameter value by reading the use state parameter which is stored in the storage unit and represents the storage state of the storage space.
Further, in all the judging steps, the following judgment is also included:
and acquiring a door magnet output signal of the storage space, and determining that the door of the storage space is locked.
The invention also relates to a device for realizing the method, which comprises the following steps:
a deposited article determination unit: the detection unit is used for obtaining an output signal of the storage space in use, judging whether a deposited article exists in the storage space, and if the deposited article does not exist, judging that the storage space is in a vacant state; if the article exists, calling a storage timing parameter judgment module;
a storage timing parameter judgment unit: the storage timing device is used for obtaining a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value or not, and judging that the storage space is in an overtime register state if the storage timing parameter value is larger than the set value; if not, judging the storage space state to be normal use;
initialization and timing unit: the storage timing parameter is endowed with an initial value; the storage timing parameter is a timing value after a storage space starts to store articles when a user triggers a setting key to use the storage space and a door lock of the storage space sends a locking signal, the value of the timing value is increased by a set number every time a set time interval passes after an initial value is given, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit.
Still further, still include:
a display unit: the storage space management system is used for judging all storage spaces which are in use one by one, respectively obtaining the state of each storage space which is in use, then showing the states of all the storage spaces on a display interface, and reminding a manager of processing the empty storage state and the storage space which is stored overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
The method and the device for judging the state of the storage space in use have the following beneficial effects: because the article detection unit is arranged in each storage space and the detection unit is used for judging whether a user puts articles in the distributed storage space after requesting to deposit the articles, whether the storage space has an empty storage state can be accurately judged; meanwhile, each storage space is allocated with a fixed storage area for storing the storage timing parameters, the storage timing parameters are endowed with initial values when the storage space is used (for storing articles) and are changed along with the increase of time, and whether the storage space is subjected to overtime storage can be judged by reading the storage timing parameters, so that the abnormity in the storage space in use can be selected and the manager can be informed to process the abnormity. Therefore, the actual utilization efficiency of the storage space is high.
Drawings
FIG. 1 is a flowchart of a method in an embodiment of the method and apparatus for determining the status of an in-use storage space of the present invention;
FIG. 2 is a flow chart of memory region allocation for storing timing parameters in the embodiment;
FIG. 3 is a schematic structural diagram of a display interface in one case of the embodiment;
FIG. 4 is a schematic view of the installation position of the article detection unit in one case of the embodiment;
fig. 5 is a schematic structural view of the device in the embodiment.
Detailed Description
The embodiments of the present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1, in the embodiment of the method and the device for determining the state of the storage space in use of the present invention, the method for determining the state of the storage space in use includes the following steps:
step S11 starts the detection unit in the storage space, and obtains a detection signal output by the detection unit: in this embodiment, one locker or express delivery cabinet includes a plurality of storage spaces, each storage space is provided with a detection unit, the detection units are used for detecting the presence of the registered articles in the storage space, and when the registered articles exist and do not exist, the output signals of the detection units are different, and usually different levels are output, so as to facilitate system identification. Corresponding relations exist between the detection units and the storage spaces where the detection units are located, and the system knows the corresponding relations. In other words, the system knows the number or identification code of the detection unit in a storage space. The detection units are not always operated, and the system can control the detection units to operate only when needed, so that the power consumption of the equipment can be saved, and the burden of a processor can be reduced. In this step, a storage space in use is selected (the state of an unused or empty storage space is clear and does not need to be determined in the method described in this embodiment), the detection unit in the storage space is activated, and an output signal of the detection unit is obtained. In this embodiment, the detection unit may be powered on or off to operate or not operate.
Step S12, determining whether or not an article is present based on the detection signal: in this step, the system determines whether an article is present in the storage space according to the received output signal of the detection unit of the storage space, for example, whether an article is present is determined according to the level of the signal; when it is judged that the article exists, step S14 is executed; when it is judged that the article is not present, step S14 is executed.
Step S13 is in an empty storage state: in this step, since the storage space is already in a use state, but there is no article therein, it is determined that the storage space is in an empty storage state, which is abnormal for the storage space in use, and usually, after the user requests to register, the system opens the corresponding door, but the user is in some reason, and closes the door without placing the article. This means that the user occupies this storage space, so that this storage space neither deposits items nor can participate in subsequent depositing.
Step S14 is to read the storage timing parameter corresponding to the storage space: in this step, a storage timing parameter value corresponding to the storage space in the storage unit is obtained. In this embodiment, the storage timing parameter is a timing value assigned to an initial value after a user triggers a set key to use the storage space to start to store articles, and a lock of the storage space sends a locking signal, the timing value is assigned a set number every time a set time interval elapses after the initial value is assigned, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit. In other words, the storage timing parameter is a parameter corresponding to the storage space, which is stored at a designated position of the storage unit, and is given an initial value, which is generally 1, when the corresponding storage space is used to store the article; when the storage space is not used or the stored articles are taken away, the parameter is usually zero or cleared; after the parameter is given an initial value, if the articles in the storage space are not removed (i.e. the storage space does not perform the fetching operation) after a set time, for example, 1 hour, the parameter value will automatically add 1 to the original value, for example, after the first hour, the parameter value becomes 2 on the basis of the initial value of 1; after the second hour, the parameter value becomes 3, and so on.
Step S15 whether the parameter value is greater than the set value: in this embodiment, it is determined whether the parameter value of the stored timing parameter is greater than a set value, if so, step S16 is executed; otherwise, step S17 is executed. In this embodiment, the setting value is a preset value, which is usually an integer value, for example, 5 or 8.
Step S16 is in the overtime storage state: in this step, it is judged that the storage space is in an overtime storage state. The state is also an abnormal state indicating that the time for placing the article stored in the storage space has exceeded the time for which the manager announces or permits the placement.
Step S17 is that the storage space is in a normal storage state: in this step, it is judged that the storage space is in a normal storage state.
Through the steps, the state of the used or in-use storage space can be clearly identified. Except for the normal storage state, other two abnormal states need to be processed in time by a manager, and the corresponding storage space is released to be in an idle state, so that the actual utilization efficiency of the storage space is improved in a crowded area.
In this embodiment, the method further includes performing the above steps for all the storage spaces in use one by one, respectively obtaining the state of each storage space in use, and displaying the states of all the storage spaces on a display interface to remind a manager to process the empty storage state and the storage space registered overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
Fig. 3 shows a display interface in the embodiment, and fig. 3 shows a state of all the storage spaces of the barcode locker. The number of the boxes in the total 6 columns are 01-06, 07-12, 13-18, 19-24, 25-30 and 31-36 from left to right in sequence. The meaning of each icon is: the x-icon represents an empty case (storage space) that is not used for dispensing;
Figure BDA0002610408660000064
the icon indicates that the article is stored and there is no article in the storage space.
Figure BDA0002610408660000061
The non-flashing icon represents that articles are stored, articles are in the storage space and the time is not out;
Figure BDA0002610408660000062
the flashing icon represents that articles are stored, articles are in the storage space and the time is out; the manager can visually observe the use condition of the corresponding storage space according to the icon display. If found, the
Figure BDA0002610408660000063
The icon can open the storage space through the background, and if no article exists in the storage space, the storage information before the storage space can be cleared, and the use state of the box is reset to be x (unoccupied); if found, the
Figure BDA0002610408660000065
And when the icon flickers, the article can be taken out and stored independently by opening the box at the background, and the use state of the box is reset to be x (unoccupied). By the method, the invalid storage space of the locker can be effectively released, and the actual utilization rate of the storage space is improved.
In this embodiment, the detection unit includes an infrared correlation sensor disposed in the storage space, and includes an emitting portion that emits an infrared beam and a receiving portion that receives the infrared beam emitted by the emitting portion; the receiving section outputs a specified level signal when receiving the infrared beam, and outputs a level signal opposite to the specified level when not receiving the infrared beam. As shown in fig. 4, fig. 4 shows a positional relationship between the storage space and the detection unit inside thereof. In fig. 4, the broken-line arrows indicate the transmission paths of infrared rays. The transmitting part and the receiving part are respectively installed at a set height (set on the bottom surface in fig. 4, the infrared transmission path of which has a certain height) of the left and right side walls of the storage space, and when an article is placed in the storage space, the article blocks the transmission path of the infrared beam, so that the receiving part cannot receive the infrared beam.
In this embodiment, before the above steps are performed, all the storage spaces in the locker or the express cabinet need to be determined, the empty storage space and the storage space in use are distinguished, and then the above steps are performed on the storage space in use. And to judge whether a storage space is free or in use, only the use state parameters of the storage space need to be read. That is, in the present embodiment, by reading the use state parameter indicating the storage state of the storage space stored in the storage unit, it is determined whether the storage space is an empty storage space or a storage space in use by the parameter value.
In this embodiment, the usage status parameter of the storage space is also a parameter corresponding to the storage space and set by the system during initialization. Fig. 2 shows a specific case of setting the use state parameter and the storage timing parameter for one storage space at the time of initialization in one embodiment. In this respect, a predetermined parameter value indicating the state of the storage space is put in the storage area allocated to the storage area, and for example, the parameter value put in accordance with the state parameter indicates that the storage space is empty, and the storage timing parameter is directly put in the number 0 to indicate that the storage timing is not performed. At the same time, these parameter values may change in subsequent operations depending on the particular type of operation.
Specifically, in fig. 2, the initialization includes the steps of:
s21 obtaining the number of a storage space;
s22, confirming that the door lock of the storage space corresponding to the number is closed and articles are not deposited; in this embodiment, if the door of one storage space is not closed, only two situations can be set, one is that the door of the storage space is abnormal, and the other is that the user opens the door of the storage space to put in articles.
S23, allocating a use state parameter storage area for the storage space, and storing the area into a state value representing that the storage space is free; specifically, a storage area, for example, one or more bytes, is associated with the storage space or the storage space number, and the storage area is no longer used for placing other parameters, but is used for placing the use state parameters, and meanwhile, a parameter value indicating that the storage space is in a free state is placed in the storage area and stored as an initial state value. The state value can change along with the use or quit use of the storage space in the following operation.
S24, distributing a storage timing parameter storage area for the storage space, and storing a value zero in the area; in this step, similarly to the previous step, the storage area is different, and the parameters to be stored are different, and in this embodiment, the values of the parameters to be stored in the timing parameters during initialization are the same. That is to say, the designated area of the storage timing parameter stored in the storage unit includes a timing value storage area allocated to each storage space during system initialization, and the stored data of the timing value storage area is cleared when the timing value storage area is allocated and the storage space completes one article storage. Therefore, parameter initialization of the whole register cabinet or express cabinet can be realized by respectively executing the steps on all the storage spaces.
In addition, in this embodiment, as described above, when the door is opened, the state transition or the initialization setting should not be performed, and therefore, in all the determination steps, the following determination is further included: and acquiring a door magnet output signal of the storage space, and determining that the door of the storage space is locked. That is, other determinations, or the premise of obtaining a detection signal or obtaining a stored timing parameter when the door is closed. If the door of one storage space is not closed, the above-mentioned judgment or initialization should not be performed. After waiting for a set time (usually, when the next state judgment is performed), judging whether the door of the storage room is closed again, if the door is judged to be closed, marking the storage space as abnormal door, and not considering the storage space as normal storage space.
The invention also relates to a device for implementing the method, the structure of the device is shown in figure 5. In fig. 5, the apparatus includes a registered item judging unit 1, a storage timing parameter judging unit 2, an initializing and timing unit 3, and a display unit 4; the article storage space detecting unit 1 is used for detecting an article storage space in use, detecting whether the article storage space is filled with articles or not, and judging whether the article storage space is empty or not; if the article exists, calling a storage timing parameter judgment module 2; the storage timing parameter judging unit 2 is used for obtaining a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value or not, and judging that the storage space state is overtime register if the storage timing parameter value is larger than the set value; if not, judging the storage space state to be normal use; the initialization and timing unit 3 is used for giving an initial value to the storage timing parameter; the storage timing parameter is a timing value after a storage space is used for storing articles when a user triggers a setting key to use the storage space, and a door lock of the storage space sends a locking signal, the value of the timing value is set to be a set number after an initial value is given, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit. The display unit 4 is used for displaying the states of all the storage spaces on a display interface after the judgment is performed on all the storage spaces in use one by one and the states of all the storage spaces in use are respectively obtained, and reminding a manager of processing the empty storage state and the storage space which is stored overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. A method for judging the state of a storage space in use is characterized by comprising the following steps:
A) obtaining an output signal of a detection unit of a storage space in use, judging whether a deposited article exists in the storage space, and if the deposited article does not exist, judging that the storage space is in a vacant state; if the article exists, executing the next step;
B) acquiring a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value, and if so, judging that the storage space is in an overtime register state; if not, judging the storage space state to be normal use;
the storage timing parameter is a timing value which is given to an initial value after a user triggers a setting key to use the storage space to start to deposit articles and a door lock of the storage space sends a locking signal, the value of the timing value is increased by a set number every time a set time interval passes after the initial value is given, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit.
2. The method for determining the status of an in-use storage space according to claim 1, further comprising the steps of:
executing the steps A) -B) one by one on all the storage spaces which are in use, respectively obtaining the state of each storage space which is in use, and showing the states of all the storage spaces on a display interface to remind a manager to process the empty storage state and the storage space which is registered overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
3. The method of determining the status of an in-use storage space according to claim 2, wherein the detection unit comprises an infrared correlation sensor disposed in the storage space and including a transmitting portion that emits an infrared beam and a receiving portion that receives the infrared beam emitted by the transmitting portion; the receiving section outputs a specified level signal when receiving the infrared beam, and outputs a level signal opposite to the specified level when not receiving the infrared beam.
4. The method of claim 3, wherein the transmitting portion and the receiving portion are installed at set heights of left and right sidewalls of the storage space, respectively, and when an article is placed in the storage space, the article blocks a transmission path of the infrared beam such that the receiving portion cannot receive the infrared beam.
5. The method of judging the state of a storage space in use according to claim 4, wherein the initial value of the timing value includes 1, and the timing value is added with 1 every set time.
6. The method for judging the state of the storage space in use according to claim 5, wherein the designated area for storing the timing parameter in the storage unit comprises a timing value storage area allocated to each storage space at the time of system initialization, and the stored data of the timing value storage area is cleared when the storage space is allocated and the storage space finishes one-time article registration.
7. The method for judging the state of a storage space being used according to any one of claims 1 to 6, further comprising the steps of:
the storage space is judged to be an empty storage space or a storage space in use according to the parameter value by reading the use state parameter which is stored in the storage unit and represents the storage state of the storage space.
8. The method for judging the state of a storage space in use according to any one of claims 1 to 6, further comprising, in all the judging steps, the judgment of:
and acquiring a door magnet output signal of the storage space, and determining that the door of the storage space is locked.
9. An apparatus for implementing the method of claim 1, comprising:
a deposited article determination unit: the detection unit is used for obtaining an output signal of the storage space in use, judging whether a deposited article exists in the storage space, and if the deposited article does not exist, judging that the storage space is in a vacant state; if the article exists, calling a storage timing parameter judgment module;
a storage timing parameter judgment unit: the storage timing device is used for obtaining a storage timing parameter value corresponding to the storage space in the storage unit, judging whether the storage timing parameter value is larger than a set value or not, and judging that the storage space is in an overtime register state if the storage timing parameter value is larger than the set value; if not, judging the storage space state to be normal use;
initialization and timing unit: the storage timing parameter is endowed with an initial value; the storage timing parameter is a timing value after a storage space starts to store articles when a user triggers a setting key to use the storage space and a door lock of the storage space sends a locking signal, the value of the timing value is increased by a set number every time a set time interval passes after an initial value is given, and the timing value is stored in a designated area corresponding to the storage space number in the storage unit.
10. The apparatus of claim 9, further comprising:
a display unit: the storage space management system is used for judging all storage spaces which are in use one by one, respectively obtaining the state of each storage space which is in use, then showing the states of all the storage spaces on a display interface, and reminding a manager of processing the empty storage state and the storage space which is stored overtime; the position of each storage space on the display interface corresponds to the actual position of the storage space; the different states are represented using different symbols.
CN202010752288.3A 2020-07-30 2020-07-30 Method and device for judging state of storage space in use Pending CN111882223A (en)

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