CN109178722B - Garbage throwing management method and system - Google Patents

Garbage throwing management method and system Download PDF

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Publication number
CN109178722B
CN109178722B CN201811232083.1A CN201811232083A CN109178722B CN 109178722 B CN109178722 B CN 109178722B CN 201811232083 A CN201811232083 A CN 201811232083A CN 109178722 B CN109178722 B CN 109178722B
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China
Prior art keywords
user
garbage
collection device
garbage collection
throwing
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CN201811232083.1A
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CN109178722A (en
Inventor
汪剑超
杨勇印
朱军
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Chengdu Aobei Environmental Protection Technology Co ltd
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Chengdu Aobei Environmental Protection Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/0033Refuse receptacles; Accessories therefor specially adapted for segregated refuse collecting, e.g. receptacles with several compartments; Combination of receptacles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/04Refuse receptacles; Accessories therefor with removable inserts
    • B65F1/06Refuse receptacles; Accessories therefor with removable inserts with flexible inserts, e.g. bags or sacks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F1/16Lids or covers
    • B65F1/1615Lids or covers with means for locking, fastening or permanently closing thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/176Sorting means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/184Weighing means

Abstract

The disclosure provides a garbage throwing management method and system, wherein the method comprises the following steps: receiving a garbage throwing request from a user, wherein the garbage throwing request indicates the identity of the user; based on the garbage throwing request, identifying the identity of the user as a registered user; in response to identifying the user as a registered user, identifying the user as a misthrower; and responsive to identifying the user as a misthrower, locking the garbage collection device to prevent the user from opening the garbage collection device.

Description

Garbage throwing management method and system
Technical Field
The disclosure relates to a garbage throwing management method and system.
Background
At present, in the process of carrying out garbage classification in China, a misarea exists, namely garbage collection device garbage cans paved on streets, in public spaces, in business areas, in communities and the like, and most garbage collection device garbage cans are divided into two boxes of recyclable garbage and other garbage. But the two cases are substantially identical except for the color distinction. When residents and tourists throw garbage, the residents and the tourists are inevitably misplaced due to the lack of specific classification knowledge. This results in a distinction on boxes, but the actual collection is still a mix, eventually only a mix is carried away, and the sorting of the waste is not effectively achieved.
Disclosure of Invention
In order to solve at least one of the above technical problems, the present disclosure provides a garbage disposal management method, which includes: receiving a garbage throwing request from a user, wherein the garbage throwing request indicates the identity of the user; based on the garbage throwing request, identifying the identity of the user as a registered user; in response to identifying the user as a registered user, identifying the user as a misthrower; and responsive to identifying the user as a misthrower, locking the garbage collection device to prevent the user from opening the garbage collection device.
In accordance with at least one embodiment of the present disclosure, the step of identifying the user as a misthrower further comprises: acquiring the correct rate of the latest n times of total garbage throwing of a user; and determining the user with the latest n times of total garbage throwing accuracy lower than the set threshold as a misthrower.
According to another embodiment of the present disclosure, the method further comprises: under the condition that the user is determined to put in the j-1 th cleaning garbage collection device to the j-th cleaning garbage collection device, determining the correct rate of garbage put in the j-th garbage collection device as the correct rate of garbage put in the user, wherein the correct rate of garbage put in the j-th garbage collection device is the ratio of the correct put amount in the garbage collection device to the total put amount in the garbage collection device between the j-1 th cleaning garbage collection device and the j-th cleaning garbage collection device; determining the correct rate of garbage throwing of the user for the last n times; and determining the product of the correct garbage input rates of the last n times of users as the total correct garbage input rate of the last n times of users.
According to yet another embodiment of the present disclosure, the method further comprises: detecting that the garbage collection device is filled; in response to detecting that the garbage collection device is full, a user of the garbage collection device of interest is notified that the garbage collection device is full.
According to yet another embodiment of the present disclosure, the garbage collection device is provided with a replaceable garbage bag for collecting garbage, and the method further comprises: receiving a deposit request of a user of the garbage collection device; identifying a user of the attention garbage collection device as a registered user; in response to identifying the user of the garbage collection device of interest as a registered user, allowing the user of the garbage collection device of interest to store a replaceable garbage bag containing garbage; and performing a profit calculation on the replaceable trash bag and issuing the profit to an account number of a user who is interested in the trash collection device.
The present disclosure also provides a garbage disposal management system, comprising: garbage collection device and first recognition device. The garbage collection device is provided with a replaceable garbage bag for containing garbage. The first recognition device is used for: identifying an identity of a user in response to a drop request from the user; in the case that the user is identified as a registered user, identifying whether the user is a misthrower; locking the garbage collection device to prevent the user from opening the garbage collection device in the event that the user is identified as a misthrower; and allowing the user to turn on the garbage collection device if the user is identified as a non-misthrower.
According to another embodiment of the present disclosure, the system further comprises: a password providing unit and a second identifying device, wherein the password providing unit is arranged at the garbage deposit point and is used for providing a first unlocking password. The second identifying device is used for: identifying an identity of a user in response to a deposit request from the user; providing a first unlocking password by a password providing unit provided at a location indicated by the location information in a case where the user is identified as a registered user; receiving a second unlocking password sent by a user; and allowing the user to store the replaceable trash bag containing trash in response to the first unlocking password being the same as the second unlocking password.
According to yet another embodiment of the present disclosure, the system further comprises: and the capacity monitoring device is used for detecting the garbage amount in the garbage collection device and notifying a user focusing on the garbage collection device to be filled when the garbage amount exceeds the set maximum capacity.
According to yet another embodiment of the present disclosure, the first identifying means is further for: acquiring the correct rate of the latest n times of total garbage throwing of a user; and determining the user with the latest n times of total garbage throwing accuracy lower than the set threshold as a misthrower.
According to yet another embodiment of the present disclosure, the first identifying means is further for: under the condition that the user is determined to put in the j-1 th cleaning garbage collection device to the j-th cleaning garbage collection device, determining the correct rate of garbage put in the j-th garbage collection device as the correct rate of garbage put in the user, wherein the correct rate of garbage put in the j-th garbage collection device is the ratio of the correct put amount in the garbage collection device to the total put amount in the garbage collection device between the j-1 th cleaning garbage collection device and the j-th cleaning garbage collection device; determining the correct rate of garbage throwing of the user for the last n times; and determining the product of the correct garbage input rates of the last n times of users as the total correct garbage input rate of the last n times of users.
According to yet another embodiment of the present disclosure, the second identifying means is further adapted to perform a revenue calculation for the replaceable waste bag and to issue the revenue to the account number of the user of the waste collection device of interest.
Drawings
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate exemplary embodiments of the disclosure and together with the description serve to explain the principles of the disclosure.
Fig. 1 shows a flow diagram of a garbage disposal management method according to at least one embodiment of the present disclosure.
Fig. 2 illustrates a schematic diagram of a garbage disposal management system in accordance with at least one embodiment of the present disclosure.
Detailed Description
The present disclosure is described in further detail below with reference to the drawings and the embodiments. It is to be understood that the specific embodiments described herein are merely illustrative of the relevant content and not limiting of the present disclosure. It should be further noted that, for convenience of description, only a portion relevant to the present disclosure is shown in the drawings.
In addition, embodiments of the present disclosure and features of the embodiments may be combined with each other without conflict. The present disclosure will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
In order to solve at least one of the above technical problems, the present disclosure provides a garbage disposal management method, as shown in fig. 1, including the following steps:
s1: receiving a garbage throwing request from a user, wherein the garbage throwing request indicates the identity of the user;
s2: based on the garbage throwing request, identifying the identity of the user as a registered user;
s3: in response to identifying the user as a registered user, identifying the user as a misthrower;
s4: in response to identifying the user as a misthrower, the garbage collection device is locked to prevent the user from opening the garbage collection device.
Unlike traditional fully open designs of the garbage can, the garbage collection device in the present disclosure requires the user to first perform identity authentication, and the user who is not registered in the system and trained by classification knowledge cannot open the garbage collection device. Therefore, a threshold is set for participating in garbage classification, and wrong throwing of the public which does not understand how to classify is prevented, so that classification throwing and recovery can be kept in a correct and ordered state.
In some embodiments of the present disclosure, the garbage placement request of step S1 may be generated based on a two-dimensional code, where the two-dimensional code is disposed on or near the garbage collection device, or at another appropriate location. In other embodiments of the present disclosure, the garbage placement request may be generated by a smart phone/tablet/wearable device, or the like. In one exemplary embodiment of the present disclosure, the garbage placement request may be generated by scanning a two-dimensional code through a WeChat installed on a mobile phone. In other alternative embodiments of the present disclosure, the unlock request may also be generated by the NFC module. Similar to two-dimensional codes, the NFC module may also be disposed on or near the garbage collection device, or at other suitable locations. The garbage can request may be generated by the mobile terminal supporting the NFC function contacting the NFC module.
The spam request in step S1 indicates the identity of the user (e.g. the user ID or user identifier is included in the spam request), so in step S2 the identity of the user is identified and the registered user is identified. In some embodiments, in step S2, a flag (e.g., a user ID or a user identifier, etc.) included in the spam delivery request is looked up in the database, and in the event that the flag included in the spam delivery request is present in the database, the user is identified as a registered user, otherwise the user is identified as a non-registered user.
When the user needs to discard recyclable objects (express packages, beverage bottles, books, newspapers, magazines, plastic products, glass, clothes and the like) and common garbage, the garbage collection device can be opened only through identity authentication, so that the user can put garbage in a classified mode, and the garbage collection device is locked again after the user uses the garbage collection device. The garbage throwing device can be arranged in communities, public areas, business areas and other areas, and the distribution density considers the people flow and the garbage generated quantity.
The garbage throwing management method provided by the disclosure can also identify the misthrower with low garbage classification throwing accuracy. When a user is determined to be a misthrower, the garbage collection device will lock the user. Only after the user completes the necessary classification learning and passes the examination, the right to use the garbage collection device can be obtained again. Therefore, the garbage classification level of the user can be continuously improved, and meanwhile, the garbage classification collection can be orderly carried out.
The method is described in detail below how to distinguish the misthrower with low garbage throwing accuracy, and improve the garbage classification level of the misthrower through related measures, so as to achieve the purpose of promoting the garbage to be correctly classified.
In accordance with at least one embodiment of the present disclosure, the step of identifying the user as a misthrower further comprises: acquiring the correct rate of the latest n times of total garbage throwing of a user; and determining the user with the latest n times of total garbage throwing accuracy lower than the set threshold as a misthrower.
According to another embodiment of the present disclosure, the method further comprises: under the condition that the user is determined to put in the j-1 th garbage cleaning and collecting device to the j-1 th garbage cleaning and collecting device, the garbage collecting device can only identify the identity of the user who puts garbage each time and can not judge whether the garbage is put in the garbage collecting device correctly or not, so that the correct rate of garbage put in the j-1 th garbage cleaning and collecting device is equal to the correct rate of garbage put in the j-th garbage collecting device, and the correct rate of garbage put in the j-th garbage collecting device is used for representing the correct rate of garbage put in the j-th garbage cleaning and collecting device. The correct rate of garbage throwing in the j-th garbage collection device is the ratio of the correct throwing amount in the garbage collection device to the total throwing amount in the garbage collection device between the j-1-th garbage collection device and the j-th garbage collection device.
According to yet another embodiment of the present disclosure, the method further comprises: determining the correct rate of the garbage placement of the user for the last n times, and determining the product of the correct rate of the garbage placement of the user for the last n times as the total correct rate of the garbage placement of the user for the last n times.
According to yet another embodiment of the present disclosure, the method further comprises: detecting that the garbage collection device is filled; in response to detecting that the garbage collection device is full, a user of the garbage collection device of interest is notified that the garbage collection device is full. After the user receives the notification, the filled garbage collection device is cleaned. In some embodiments, the detection of whether the garbage collection device is filled may be performed by ultrasonic ranging. For example, the distance between the ultrasonic wave and the ultrasonic wave generating source can be determined by sending ultrasonic waves to the bottom of the garbage collection device, reflecting the ultrasonic waves back when encountering the obstacle and combining the time difference between sending and receiving the ultrasonic waves with the temperature and the sound velocity, so that whether the garbage collection device is filled or not can be judged.
According to yet another embodiment of the present disclosure, the garbage collection device is provided with a replaceable garbage bag for collecting garbage, and the method further comprises: receiving a deposit request of a user of the garbage collection device; identifying a user of the attention garbage collection device as a registered user; in response to identifying the user of the garbage collection device of interest as a registered user, allowing the user of the garbage collection device of interest to store a replaceable garbage bag containing garbage; and performing a profit calculation on the replaceable trash bag and issuing the profit to an account number of a user who is interested in the trash collection device. Users of the attention garbage collection device may include a presenter, an operator, and the like. In some implementations, the deposit request may be generated by a smartphone/tablet/wearable device or the like based on a two-dimensional code provided at the garbage deposit point. In one exemplary embodiment of the present disclosure, the deposit request may be generated by scanning a two-dimensional code through a WeChat installed on a mobile phone. In some embodiments of the present disclosure, the storage request may also be generated by the mobile terminal supporting the NFC function contacting an NFC module provided at the garbage storage point. The identity (e.g., user ID or user identifier, etc.) included in the deposit request is looked up in the database, and in the event that the identity included in the deposit request is present in the database, the user is identified as a registered user, otherwise the user is identified as a non-registered user.
The disclosure also provides a garbage disposal management system, as shown in fig. 2, which includes: garbage collection device, first recognition device.
The garbage collection device is provided with a replaceable garbage bag for containing garbage. When the garbage bag is recovered, only the replaceable garbage bag needs to be replaced, so that the operation process is simplified, and the time can be saved by 80% compared with other modes. Furthermore, the use of a replaceable disposal bag as a receptacle for collecting the waste may reduce the use of up to 90% of the metallic material, thereby reducing costs, as compared to other approaches. Compared with the existing garbage can, the replaceable garbage bag has a simplified structure, reduces the use of materials and reduces the cost. When the removable disposal bag is stained, removable disposal bag of removable stain to guaranteed that garbage collection device's outward appearance is clean and tidy and reducible maintenance operation, reduced maintenance cost.
The first recognition device is used for: identifying an identity of a user in response to a drop request from the user; in the case that the user is identified as a registered user, identifying whether the user is a misthrower; locking the garbage collection device to prevent the user from opening the garbage collection device in the event that the user is identified as a misthrower; and allowing the user to turn on the garbage collection device if the user is identified as a non-misthrower.
According to yet another embodiment of the present disclosure, the system further comprises: and a password providing unit provided at the trash storage point and configured to provide a first unlocking password. The password providing unit is used for providing a first unlocking password, and can comprise at least one of a display screen and a loudspeaker. The loudspeaker for the password providing unit can broadcast the first unlocking password to the user in a voice mode, so that the password is convenient for various crowds (such as old people and children) to use. The display screen for the password providing unit may include at least one of a liquid crystal screen, an LED screen, or a nixie tube to display the first unlock password to the user.
According to yet another embodiment of the present disclosure, the system further comprises: second identifying means for: identifying an identity of a user in response to a deposit request from the user; providing a first unlocking password by a password providing unit provided at a location indicated by the location information in a case where the user is identified as a registered user; receiving a second unlocking password sent by a user; and allowing the user to store the replaceable trash bag containing trash in response to the first unlocking password being the same as the second unlocking password.
By arranging the password providing unit and the second identifying device, the security can be improved, the complexity of operation can be reduced, and the user experience can be improved.
According to yet another embodiment of the present disclosure, the system further comprises: and the capacity monitoring device is used for detecting the garbage amount in the garbage collection device and notifying a user focusing on the garbage collection device to be filled when the garbage amount exceeds the set maximum capacity. In some embodiments, the capacity monitoring device may include an ultrasonic ranging device, such as a US-100 ultrasonic ranging module, which may provide 2cm-450cm of non-contact distance sensing. The ultrasonic ranging device can detect whether the garbage collection device is filled or not in an ultrasonic ranging mode. For example, the amount of garbage in the garbage collection device can be determined by sending ultrasonic waves to the bottom of the garbage collection device, reflecting the ultrasonic waves back against the obstacle, and determining the distance between the obstacle and the ultrasonic wave generating source by combining the time difference between sending and receiving the ultrasonic waves with the temperature and the sound velocity.
The garbage collection device can be arranged in communities, public areas, business areas and the like, and the distribution density considers the people flow and the garbage generation quantity.
In an area where a certain number of refuse collection means are laid, refuse storage points are provided for the centralized treatment and storage of the recoverable refuse collected in the refuse collection means in the area. When a capacity monitoring device in a garbage collection device detects that the garbage collection device is full, the state of the garbage collection device is updated to full in a management system and a user who is interested in the garbage collection device is notified to clean the garbage collection device. After the user empties the garbage collection device, the recyclable garbage is sent to a garbage storage point. The garbage deposit point also needs to be identified, and only authorized registered users can enter the garbage deposit point. The second identifying means is for identifying users who have access to the point of deposit of waste. The user stores the recyclable waste in a waste storage site. At the point of waste storage, the recovered waste may be processed to identify the correct and total amount of disposal in the waste collection device. These data will be used to identify misthrowers with low accuracy in the placement of the spam. In one exemplary embodiment, the correct dosed amount refers to the mass of the waste of the type in the waste collection device that corresponds to the type of waste that the waste collection device is intended to receive, and the total dosed amount refers to the total mass of the waste in the waste collection device.
According to yet another embodiment of the present disclosure, the first identifying means is further for: acquiring the correct rate of the latest n times of total garbage throwing of a user; and determining the user with the latest n times of total garbage throwing accuracy lower than the set threshold as a misthrower.
According to yet another embodiment of the present disclosure, the first identifying means is further for: under the condition that the user is determined to put in the j-1 th cleaning garbage collection device to the j-th cleaning garbage collection device, determining the correct rate of garbage put in the j-th garbage collection device as the correct rate of garbage put in the user, wherein the correct rate of garbage put in the j-th garbage collection device is the ratio of the correct put amount in the garbage collection device to the total put amount in the garbage collection device between the j-1 th cleaning garbage collection device and the j-th cleaning garbage collection device; determining the correct rate of garbage throwing of the user for the last n times; and determining the product of the correct garbage input rates of the last n times of users as the total correct garbage input rate of the last n times of users.
In order to reduce the burden, the management system only stores the latest n times of garbage throwing correct rate of the user. When there is a new delivery accuracy, the management system saves the new delivery accuracy of the garbage and removes the delivery accuracy that is the farthest from the current time. The system calculates the total garbage placement accuracy for n times of the user, which is equal to the product of the garbage placement accuracy for the past n times of the user. When the garbage throwing accuracy records of the user are smaller than n, the system does not calculate the total garbage throwing accuracy of the user; if and only if the records reach n pieces, the management system calculates the total garbage input correct rate of the user. The system compares the latest n times of total garbage throwing correct rate of the user with a threshold value, and determines the user as a misthrower under the condition that the latest n times of total garbage throwing correct rate is lower than a set threshold value. When the number of the correct delivery rate records of the user reaches n, each time a new delivery record exists, the system calculates the correct new n times of total garbage delivery rate, compares the correct new n times of total garbage delivery rate with a threshold value, and judges whether the new n times of total garbage delivery rate is a misthrower or not. When the most recent n times of total garbage throw accuracy of the user is smaller than the threshold, the user is judged as a misthrower, and the garbage collection device needs to be temporarily stopped, and forced learning is performed until the related test is passed. The user's overall spam delivery accuracy history value may be stored in the system for use in determining whether the user's spam delivery behavior has improved.
When the first identification device identifies a misthrower, the garbage collection device is locked so as to prohibit the misthrower from using the garbage collection device. Only after the user who is judged as the misthrower completes forced learning and passes the examination, the identity of the user can be recovered to be the common user, so that the garbage collection device can be reused.
Meanwhile, the client side of the user judged as the misthrower receives the prompt of forced learning, reminds the misthrower to carry out forced learning through the client side, and passes the related test. After the misthrower finishes forced learning and passes the examination, the management system receives the confirmation that the user finishes learning, thereby recovering the use authority of the garbage collection device of the misthrower.
The management system can also judge whether the user is suitable for using the garbage collection device according to the historical total garbage throwing accuracy of the user and the learning record. When the learning record is too frequent, and the total garbage throwing accuracy is not improved, the user's garbage collection device can be permanently disqualified after a certain time.
The threshold is determined according to the practice and is adjusted with the practice. The threshold is set so that a certain proportion of misthrowers can be identified, and the probability of misthrowing is high.
The value of n is determined by the capacity of the management system, the total number of users and the practical experience and is adjusted at any time. The n value is set so that the total garbage throwing accuracy can reflect the garbage throwing behavior of the user in a statistical sense, thereby reducing the probability of misjudgment. Meanwhile, the numerical value of n does not bring too much storage and calculation burden to the management system.
According to yet another embodiment of the present disclosure, the second identifying means is further adapted to perform a revenue calculation for the replaceable waste bag and to issue the revenue to the account number of the user of the waste collection device of interest. The release of revenue is used to encourage users to actively participate in garbage classification and recycling.
According to yet another embodiment of the present disclosure, the management system is further configured to manage the location of the garbage collection device and provide it to the user. The user can find the nearest garbage collection device through the WeChat applet (or webpage or special APP) and put garbage classification into the device.
It will be appreciated by those skilled in the art that the above-described embodiments are merely for clarity of illustration of the disclosure, and are not intended to limit the scope of the disclosure. Other variations or modifications will be apparent to persons skilled in the art from the foregoing disclosure, and such variations or modifications are intended to be within the scope of the present disclosure.

Claims (6)

1. A method for garbage disposal management, the method comprising:
receiving a garbage throwing request from a user, wherein the garbage throwing request indicates the identity of the user;
based on the garbage throwing request, identifying the identity of the user as a registered user;
in response to identifying the user as a registered user, identifying the user as a misthrower; and
in response to identifying the user as a misthrower, locking the garbage collection device to prevent the user from opening the garbage collection device,
wherein the step of identifying the user as a misthrower further comprises: obtaining the latest of the usernThe correct rate of secondary total garbage throwing; will be most recentnA user with the secondary total trash placement accuracy lower than the set threshold value is determined to be a misthrower,
the method further comprises the steps of: at the time of determining that the user is at the firstj-1 cleaning the garbage collection device to the firstjUnder the condition that the garbage collection devices are put in the next cleaning, the first step is tojDetermining the correct rate of garbage throwing in the secondary garbage collection device as the correct rate of garbage throwing of the user at the time, wherein the first timejThe correct rate of garbage throwing in the secondary garbage collection device is thatj-1 cleaning the garbage collection device to the firstjCleaning the ratio of the correct throwing amount in the garbage collection device to the total throwing amount in the garbage collection device between the garbage collection devices for the second time; determining the user's most recentnThe correct rate of secondary garbage throwing; to the nearest of the usernThe product of the secondary garbage placement accuracy is determined as the latest of the usersnAnd the correct rate of secondary total garbage throwing.
2. The method according to claim 1, wherein the method further comprises:
detecting that the garbage collection device is filled;
in response to detecting that the garbage collection device is full, notifying a user interested in the garbage collection device that the garbage collection device is full.
3. The method of claim 2, wherein the step of determining the position of the substrate comprises,
the garbage collection device is provided with a replaceable garbage bag for collecting garbage, and
the method further comprises the steps of:
receiving a deposit request focused on a user of the garbage collection device;
identifying a user focusing on the garbage collection device as a registered user;
in response to identifying the user interested in the garbage collection device as a registered user, allowing the user interested in the garbage collection device to store a replaceable garbage bag containing garbage; and
and calculating benefits of the replaceable garbage bags and distributing the benefits to account numbers of users focusing on the garbage collection device.
4. A garbage disposal management system, the system comprising:
a garbage collection device in which a replaceable garbage bag for containing garbage is provided; and
a first identification means for:
identifying an identity of a user in response to a drop request from the user;
in the case that the user is identified as a registered user, identifying whether the user is a misthrower;
locking the garbage collection device to prevent a user from opening the garbage collection device in the event that the user is identified as a misthrower; and
in case the user is identified as a non-misthrower, allowing the user to open the garbage collection device,
wherein the first identifying means is further for: obtaining the latest of the usernThe correct rate of secondary total garbage throwing; will be most recentnA user with the secondary total trash placement accuracy lower than the set threshold value is determined to be a misthrower,
wherein the first identifying means is further for: at the time of determining that the user is at the firstj-1 cleaning the garbage collection device to the firstjUnder the condition that the garbage collection devices are put in the next cleaning, the first step is tojThe correct rate of garbage placement in the secondary garbage collection device is determined as the current garbage of the userA correct rate of putting garbage, wherein the firstjThe correct rate of garbage throwing in the secondary garbage collection device is thatj-1 cleaning the garbage collection device to the firstjCleaning the ratio of the correct throwing amount in the garbage collection device to the total throwing amount in the garbage collection device between the garbage collection devices for the second time; determining the user's most recentnThe correct rate of secondary garbage throwing; to the nearest of the usernThe product of the secondary garbage placement accuracy is determined as the latest of the usersnAnd the correct rate of secondary total garbage throwing.
5. The system of claim 4, wherein the system further comprises:
a password providing unit which is arranged at the garbage storage point and is used for providing a first unlocking password; and
a second identification means for:
identifying an identity of a user in response to a deposit request from the user;
providing a first unlock password by the password providing unit provided at a location indicated by location information in a case where the user is identified as a registered user;
receiving a second unlocking password sent by a user; and
in response to the first unlocking password being the same as the second unlocking password, allowing the user to store a replaceable trash bag containing trash.
6. The system of claim 5, wherein the system further comprises:
and the capacity monitoring device is used for detecting the garbage amount in the garbage collection device and notifying a user focusing on the garbage collection device to be filled when the garbage amount exceeds the set maximum capacity.
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CN110371541A (en) * 2019-08-12 2019-10-25 河南寻宝环保科技有限公司 A kind of array intelligent dustbin
CN110674948A (en) * 2019-09-03 2020-01-10 饶秀慧 Community household garbage classification processing method and system
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