WO2024066786A1 - 一种档案箱无序放置方法、***、智能终端及存储介质 - Google Patents

一种档案箱无序放置方法、***、智能终端及存储介质 Download PDF

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Publication number
WO2024066786A1
WO2024066786A1 PCT/CN2023/113583 CN2023113583W WO2024066786A1 WO 2024066786 A1 WO2024066786 A1 WO 2024066786A1 CN 2023113583 W CN2023113583 W CN 2023113583W WO 2024066786 A1 WO2024066786 A1 WO 2024066786A1
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WO
WIPO (PCT)
Prior art keywords
file
boxes
box
placement
cabinet
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Application number
PCT/CN2023/113583
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English (en)
French (fr)
Inventor
蒋运涛
张昆
何龙
白来彬
张建
杨龙飞
蒋小军
柳青
杨志祥
于帅帅
黎前卫
魏莹
Original Assignee
北京融安特智能科技股份有限公司
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Application filed by 北京融安特智能科技股份有限公司 filed Critical 北京融安特智能科技股份有限公司
Publication of WO2024066786A1 publication Critical patent/WO2024066786A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B63/00Cabinets, racks or shelf units, specially adapted for storing books, documents, forms, or the like
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/10Structural association with clutches, brakes, gears, pulleys or mechanical starters

Definitions

  • the present application relates to the field of file box placement, and in particular to a method, system, intelligent terminal and storage medium for disorderly placement of file boxes.
  • the archives room is the internal structure of each agency (including teams, schools, factories, enterprises, institutions, etc.) for the preservation and management of the archives of the agency. It is a component of the entire agency. In order to ensure that the archives in the archives room are not damaged, the same type of archives are generally placed in a file box. Due to the different types and quantities of archives, the volume and weight of the archive box will also vary.
  • the file boxes When placing the file boxes, they are generally sorted by the date or the first letter of the file boxes. Since the date or the first letter of the file boxes are discontinuous, for example, the first letter of file box 1 is A and the first letter of file box 2 is C, when placing file box 1 and file box 2, the position of the file box with the first letter B needs to be left empty; if the first letters of the file boxes differ greatly, it is possible that all the file boxes may be placed on the same side of the left or right side of the compact cabinet. During the movement of the compact cabinet, there is a risk of the compact cabinet tilting due to the large difference in weight on the left or right side of the compact cabinet.
  • the first purpose of the present application is to provide a method for the disorderly placement of file boxes, which has the effect of reducing the risk of tilting of compact cabinets.
  • a method for placing archive boxes in disorder comprising:
  • the compact cabinet is a carrier for placing file boxes
  • parameters of the file box including weight and number of times of use, the number of times of use being the average number of times the file box is used per unit time;
  • the placement position of the file box is determined according to the parameters and the placement rule.
  • the second purpose of this application is to provide a system for placing unordered archive boxes.
  • a file box disorderly placement system comprising:
  • An acquisition module is used to acquire the type of compact cabinet and the parameters of the file box;
  • the determination module is used to determine the placement rules corresponding to the types of dense boxes according to the types of dense boxes, and is used to determine the placement position of the file box according to the parameters and the placement rules.
  • the third purpose of this application is to provide a smart terminal.
  • An intelligent terminal comprises a memory and a processor, wherein the memory stores a computer program which can be loaded by the processor and execute the above-mentioned file box placement method.
  • the fourth objective of this application is to provide a computer storage medium capable of storing corresponding programs.
  • a computer-readable storage medium stores a computer program that can be loaded by a processor and execute any of the above-mentioned methods for placing archive boxes in disorder.
  • FIG1 is a schematic flow chart of a method for placing archive boxes in an unordered manner according to an embodiment of the present application.
  • FIG. 2 is a system schematic diagram of a system for disorganized placement of file boxes according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of the structure of a smart terminal according to an embodiment of the present application.
  • the embodiment of the present application provides a method for placing files in disorder, which is mainly used in the scenario where files are placed in compact cabinets. Specifically, in order to ensure that the files are not damaged, files of the same type are generally placed in a file box. Due to the different types and quantities of files, the volume and weight of the file box will also be different. During the placement process, the file boxes are generally sorted according to the file box date or the first letter of the file box.
  • the file box date or the first letter of the file box are discontinuous, for example, the first letter of file box 1 is A, and the first letter of file box 2 is C, when file box 1 and file box 2 are placed, the position of the file box with the first letter B needs to be vacated; if the difference between the first letters of the file boxes is large, it is possible that all the file boxes are placed on the same side of the left or right side of the compact cabinet. During the movement of the compact cabinet, due to the large difference in weight on the left or right side of the compact cabinet, there is a risk of the compact cabinet tilting.
  • an embodiment of the present application provides a method for placing file boxes in an unordered manner to solve the above-mentioned problem.
  • Step S100 obtaining the type of compact cabinet.
  • the compact cabinet is a carrier for placing file boxes.
  • a single compact cabinet is single-sided or double-sided.
  • the staff will place multiple compact cabinets together.
  • Due to the heavy weight of the compact cabinet a motor and pulley will be installed at the bottom of the compact cabinet, and the movement of the pulley will be controlled by the motor to facilitate the movement of the compact cabinet by the staff.
  • the motor includes one motor and two motors. When the compact cabinet is installed with one motor, the motor will be installed at the center of the bottom of the compact cabinet. When two compact cabinets are installed, the motors will be installed on the left and right sides of the bottom of the compact cabinet to ensure the balance of the left and right sides of the compact cabinet.
  • compact cabinets include compact cabinets with one motor on a single side, compact cabinets with two motors on a single side, compact cabinets with one motor on both sides, and compact cabinets with two motors on both sides.
  • Step S200 determining a placement rule corresponding to the type of compact cabinet according to the type of compact cabinet.
  • the compact cabinet placement rules include the first placement rule, the second placement rule, the third placement rule and the fourth placement rule.
  • the corresponding relationship between the compact cabinet placement rules and the types of compact cabinets is as follows:
  • the first placement rule corresponds to a motor compact cabinet on one side
  • the second placement rule corresponds to the two motor compact cabinets on one side
  • the third placement rule corresponds to a motor dense cabinet on both sides
  • the fourth placement rule corresponds to the two-motor compact cabinets on both sides.
  • Step S300 obtaining parameters of the file box.
  • the parameters of the file box include weight, volume and number of times the file box is used, that is, the weight, volume and number of times the file box is used are retrieved from the big data archive.
  • the number of times the file box is used is the average number of times the file box is used per unit time.
  • the file boxes After the file boxes are placed, some of them may not be used in a short period of time, while some may be used frequently. When the frequently used file boxes are placed together due to the weight and volume parameters, the balance of the compact cabinet will fail when they are used. Therefore, the number of times the file boxes are used should be taken into account in the parameters.
  • Step S400 determining the placement position of the item archive box according to the parameters and the placement rule.
  • the first placement rule is:
  • the compact cabinet is divided into multiple placement parts, that is, the compact cabinet with one motor on one side is divided into left and right parts from the position of the length center plane, and the balance threshold a of the left and right parts of the compact cabinet with one motor on one side is set.
  • the load threshold of each layer of cabinets and the weight threshold for placing file boxes are set.
  • the load threshold and weight threshold are reduced from bottom to top, which can better ensure the balance of the single-side single-motor compact cabinet; among them, the weight threshold for placing file boxes is the weight of a single file box that can be placed in a single-layer cabinet.
  • the weight threshold for placing file boxes on a layer of cabinets is 100KG-200KG. If the weight of the file box to be placed is 150KG, the file box needs to be placed on this layer of cabinets. If the weight of the file box to be placed is 50KG, the file box does not need to be placed on this layer of cabinets.
  • the file box will be placed on the same cabinet layer of the other single-side motor compact cabinet, and the next volume of file boxes will be selected to compare with the remaining capacity of the cabinet layer until a compact cabinet that can be placed at the remaining capacity is found; when the volume of the file boxes that meet the weight threshold of the cabinet layer cannot be placed at the remaining capacity, the remaining capacity will be left empty.
  • the file box will be placed at the remaining storage volume.
  • the total weight of all file boxes placed on a single-layer cabinet must not exceed the load threshold of the cabinet on that layer.
  • the total weight of all the file boxes on the left and right parts of the single-side motor compact cabinet is obtained, that is, the weight and the number of times the file boxes placed on the single-side motor compact cabinet are retrieved, and the total weight of the file boxes on the left and right parts of the single-side motor compact cabinet is calculated.
  • the actual weight of the left part is W A
  • the actual weight of the right part is W B.
  • the weight of the retrieved file box is determined according to the retrieval result, the placement part where the retrieved file box is located is obtained, the total weight of all the file boxes in the placement part is retrieved, and the difference between the weight of the retrieved file box and the total weight of all the file boxes in the placement part is calculated, and the difference is the remaining weight of all the file boxes in the placement part.
  • the file box to be taken out is taken out, and the file box that can be placed in the corresponding position is selected from the remaining file boxes until
  • the remaining file boxes here are the file boxes that are not placed on the single-side motor compact cabinet.
  • the file boxes that can be placed in the corresponding position here are the file boxes that meet the requirements of the same weight, the same or smaller volume, and different number of times of use as the taken out file box.
  • W A is 280KG
  • W B is 300KG
  • W 1 is 5KG
  • W 2 is 10KG
  • a 10KG.
  • take out the file box weighing 5KG and select a file box with the same weight, the same or smaller volume, and a reduced number of times of use to place it there.
  • the reduced number of times of use indicates that the file box does not meet the use conditions, then
  • the second placement rule is:
  • the second placement rule is different from the first placement rule in that the file boxes on the single-layer cabinet are placed in sequence from the left and right sides to the center surface of the two motor compact cabinets on one side.
  • the third placement rule is:
  • the compact cabinet is divided into multiple placement parts, that is, the compact cabinet with one motor on both sides is divided into left and right parts from the center plane position of the width, and at the same time, it is divided into front and back parts from the center plane position of the length, and the balance threshold b of the left and right parts of the compact cabinet with one motor on both sides is set, and the balance threshold c of the front and back parts of the compact cabinet with one motor on both sides is set.
  • the load threshold of each layer of cabinets and the weight threshold for placing file boxes are set.
  • the load threshold and weight threshold are reduced from bottom to top, which can better ensure the balance of the double-sided one-motor compact cabinet; among them, the weight threshold for placing file boxes is the weight of a single file box that can be placed in a single-layer cabinet.
  • the weight threshold for placing file boxes on a layer of cabinets is 100KG-200KG. If the weight of the file box to be placed is 150KG, the file box needs to be placed on this layer of cabinets. If the weight of the file box to be placed is 50KG, the file box does not need to be placed on this layer of cabinets.
  • the file box will be placed on the same layer of the cabinet with a motor on both sides, and at the same time, a file box of the next volume will be selected to compare with the remaining capacity of the cabinet on this layer until a compact cabinet that can be placed at the remaining capacity is found; when the volume of the file boxes that meet the weight threshold of the cabinet on this layer cannot be placed at the remaining capacity, the remaining capacity will be left empty.
  • the file box is placed at the remaining storage volume.
  • the total weight of all file boxes placed on a single-layer cabinet must not exceed the load threshold of the cabinet on that layer.
  • the total weight of all the file boxes in the four parts of the left, right, front and back of the double-sided motor compact cabinet is obtained, that is, the weight and number of times all the file boxes placed on the single-side motor compact cabinet are retrieved;
  • the actual weight of the file boxes in the left and right parts of the single-side motor compact cabinet is calculated, the actual weight of the left part is W C , the actual weight of the right part is W D , the actual weight of the front part is W E , and the actual weight of the rear part is W F.
  • the balance of the motor compact cabinet on both sides is determined according to the total weight, balance threshold b and balance threshold c.
  • the weight of the retrieved file box is determined according to the retrieval result, the placement part where the retrieved file box is located is obtained, the total weight of all the file boxes in the placement part is retrieved, and the difference between the weight of the retrieved file box and the total weight of all the file boxes in the placement part is calculated, and the difference is the remaining weight of all the file boxes in the placement part.
  • file boxes are taken out, and file boxes that can be placed in the corresponding positions are selected from the remaining file boxes until
  • the remaining file boxes here are the file boxes that are not placed on the double-sided motor compact cabinet.
  • the file boxes that can be placed in the corresponding positions here are the file boxes that meet the requirements of the same weight, the same or smaller volume, and a different number of uses as the taken out file boxes.
  • W C is 280KG
  • W D is 300KG
  • W 3 is 5KG
  • W 4 is 10KG
  • b is 10KG.
  • the processing method of ⁇ W C -W D ⁇ b, ⁇ W E -W F ⁇ >c and the processing method of ⁇ W C -W D ⁇ >b, ⁇ W E -W F ⁇ c are the same in principle. It should be noted that the processing method of ⁇ W C -W D ⁇ >b, ⁇ W E -W F ⁇ c is used to process the file boxes in the front and back parts of the double-sided motor compact cabinet.
  • the processing method of ⁇ W C -W D ⁇ >b, ⁇ W E -W F ⁇ >c and the processing method of ⁇ W C -W D ⁇ >b, ⁇ W E -W F ⁇ c are the same in principle. It should be noted that the processing method of ⁇ W C -W D ⁇ b, ⁇ W E -W F ⁇ >c is used to process the file boxes of the left and right parts and the front and back parts of the double-sided motor compact cabinet.
  • the fourth placement rule is:
  • the fourth placement rule differs from the third placement rule in that the file boxes are placed differently on a single-layer cabinet.
  • the method for placing the compact cabinet in the embodiment of the present application can determine the corresponding placement rules according to the weight, volume, number of times the file box is taken out, and the type of the compact cabinet, and can make maximum use of the space in the compact cabinet. At the same time, during the placement of the file box, the impact of the file box on the compact cabinet when it is taken out is taken into consideration, so that the file box is more balanced after placement.
  • FIG2 is a system schematic diagram of a system for disorganized placement of file boxes provided by an embodiment of the present application.
  • a system for placing archive boxes in disorder includes an acquisition module 21 and a determination module 22, wherein:
  • the acquisition module 21 is used to acquire the type of compact cabinet and the parameters of the file box;
  • the determination module 22 is used to determine the placement rule corresponding to the type of the dense box according to the type of the dense box, and to determine the placement position of the file box according to the parameters and the placement rule.
  • FIG3 shows a schematic diagram of the structure of an intelligent terminal suitable for implementing the embodiments of the present application.
  • the intelligent terminal includes a central processing unit (CPU) 301, which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM) 302 or a program loaded from a storage part into a random access memory (RAM) 303.
  • ROM read-only memory
  • RAM random access memory
  • CPU 301, ROM 302, and RAM 303 are connected to each other via a bus 304.
  • I/O input/output
  • the following components are connected to the I/O interface 305: an input section 306 including a keyboard, a mouse, etc.; an output section 307 including a cathode ray tube (CRT), a liquid crystal display (LCD), etc., and a speaker, etc.; a storage section 308 including a hard disk, etc.; and a communication section 309 including a network interface card such as a LAN card, a modem, etc.
  • the communication section 309 performs communication processing via a network such as the Internet.
  • a drive 310 is also connected to the I/O interface 305 as needed.
  • a removable medium 311, such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, etc., is installed on the drive 310 as needed, so that a computer program read therefrom is installed into the storage section 308 as needed.
  • an embodiment of the present application includes a computer program product, which includes a computer program carried on a machine-readable medium, and the computer program contains program code for executing the method shown in the flowchart.
  • the computer program can be downloaded and installed from a network through a communication section 309, and/or installed from a removable medium 311.
  • CPU central processing unit
  • the computer-readable medium shown in the present application may be a computer-readable signal medium or a computer-readable storage medium or any combination of the above two.
  • the computer-readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above.
  • Computer-readable storage media may include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above.
  • a computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in combination with an instruction execution system, device or device.
  • a computer-readable signal medium may include a data signal propagated in a baseband or as part of a carrier wave, which carries a computer-readable program code.
  • This propagated data signal may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above.
  • a computer-readable signal medium may also be any computer-readable medium other than a computer-readable storage medium, which may send, propagate or transmit a program for use by or in conjunction with an instruction execution system, apparatus or device.
  • the program code contained on the computer-readable medium may be transmitted using any appropriate medium, including but not limited to: wireless, wire, optical cable, RF, etc., or any suitable combination of the above.
  • the units or modules involved in the embodiments described in the present application may be implemented by software or by hardware.
  • the described units or modules may also be arranged in a processor, for example, they may be described as: a processor connected to an acquisition module 21 and a determination module 22.
  • the names of these units or modules do not, in some cases, constitute limitations on the units or modules themselves, for example, the acquisition module 21 may also be described as "a module for acquiring the type of compact cabinets, a module for acquiring the parameters of archive boxes".
  • the present application further provides a computer-readable storage medium, which may be included in the electronic device described in the above embodiment; or may exist independently without being assembled into the electronic device.
  • the above computer-readable storage medium stores one or more programs, and when the above programs are used by one or more processors to execute the data encryption transmission method described in the present application.

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Abstract

本申请涉及一种档案箱无序放置方法、***、智能终端及存储介质,方法包括获取密集柜的种类,所述密集柜为放置档案箱的载体;根据密集柜的种类确定与密集柜的种类相对应的放置规则;获取档案箱的参数,所述参数包括重量和取用次数,所述取用次数为单位时间内取用档案箱的平均次数;根据所述参数和所述放置规则确定档案箱的放置位置。

Description

一种档案箱无序放置方法、***、智能终端及存储介质 技术领域
本申请涉及档案箱放置的领域,尤其是涉及一种档案箱无序放置方法、***、智能终端及存储介质。
背景技术
档案室是各机关(包括团队、学校、工厂、企业、事业单位等)同一保存和管理本机关档案的内部结构,是整个机关的组成成分。为了保证档案室内的档案不被破损,一般是将同一类的档案放置在一个档案箱内,由于档案种类和数量的不同,档案箱的体积和重量也会有差异。
档案箱在放置过程中,一般是按照档案箱日期或档案箱首字母进行排序,由于档案箱日期或档案箱首字母均具有间断性,比如档案箱1的首字母是A,档案箱2的首字母是C,在档案箱1和档案箱2放置时,需要空出首字母是B的档案箱的位置;如果档案箱首字母之间相差较大,有可能导致档案箱全部放在密集柜的左边或右边同一侧,在密集柜移动过程中,由于密集柜左边或右边的重量相差较大,导致密集柜有倾斜的风险。
发明内容
本申请目的一是提供一种档案箱无序放置方法,具有减小密集柜倾斜风险的效果。
一种档案箱无序放置方法,包括;
获取密集柜的种类,所述密集柜为放置档案箱的载体;
根据密集柜的种类确定与密集柜的种类相对应的放置规则;
获取档案箱的参数,所述参数包括重量和取用次数,所述取用次数为单位时间内取用档案箱的平均次数;
根据所述参数和所述放置规则确定档案箱的放置位置。
本申请目的二是提供一种档案箱无序放置***。
一种档案箱无序放置***,包括;
获取模块,用于获取密集柜的种类,用于获取档案箱的参数;
确定模块,用于根据密集箱的种类确定与密集箱的种类相对应的放置规则,用于根据所述参数和所述放置规则确定档案箱的放置位置。
本申请目的三是提供一种智能终端。
一种智能终端,包括存储器和处理器,所述存储器上存储有能够被处理器加载并执行上述档案箱放置方法的计算机程序。
本申请目的四是提供一种计算机存储介质,能够存储相应的程序。
一种计算机可读存储介质,存储有能够被处理器加载并执行上述任一种档案箱无序放置方法的计算机程序。
综上所述,本申请包括以下有益技术效果:
先将档案箱按照重量大小由中心向两侧的方向依次放置或由两侧向中心的方向依次放置在密集柜的最底层,待密集柜的最底层放置完成后,开始放置上一层,直至密集柜各个单层柜体放置完成;随后计算密集柜各个放置部分的档案箱的总重量,并判断总重量是否满足均衡阈值,若是,则根据档案箱的取用次数调整档案箱,使档案箱的放置位置更加的均衡,进而在移动密集柜时,减小密集柜的倾斜风险;
附图说明
图1是本申请实施例一种档案箱无序放置方法的流程示意图。
图2是本申请实施例一种档案箱无序放置***的***示意图。
图3是本申请实施例的智能终端的结构示意图。
附图标记说明:21、获取模块;22、确定模块;301、CPU;302、ROM;303、RAM;304、总线;305、I/O接口;306、输入部分;307、输出部分;308、存储部分;309、通信部分;310、驱动器;311、可拆卸介质。
具体实施方式
以下结合附图对本申请作进一步详细说明。
本申请实施例提供一种档案无序放置方法,主要应用于档案放置在密集柜的场景中。具体的,为了保证档案不被破损,一般是将同一类的档案放置在一个档案箱内,由于档案种类和数量的不同,档案箱的体积和重量也会有差异。档案箱在放置过程中,一般是按照档案箱日期或档案箱首字母进行排序,由于档案箱日期或档案箱首字母均具有间断性,比如档案箱1的首字母是A,档案箱2的首字母是C,在档案箱1和档案箱2放置时,需要空出首字母是B的档案箱的位置;如果档案箱首字母之间相差较大,有可能导致档案箱全部放在密集柜的左边或右边同一侧,在密集柜移动过程中,由于密集柜左边或右边的重量相差较大,导致密集柜有倾斜的风险。
为此,本申请实施例提供一种档案箱无序放置方法,用来解决上述问题。
下面结合说明书附图对本申请实施例作进一步详细描述。
如图1所述:
步骤S100,获取密集柜的种类。
密集柜是放置档案箱的载体,一般单个密集柜是单侧或双侧的,为了节约档案室的空间,工作人员会将多个密集柜并且放置在一起;由于密集柜的重量较大,会在密集柜底端安装电机和滑轮,用电机控制滑轮移动,方便工作人员对密集柜的移动;电机包括一个电机和两个电机,当密集柜安装有一个电机时,会将电机安装在密集柜的底端正中心位置处,当密集柜安装有两个时,会将电机安装在密集柜的底端左右两边的位置,用来保证密集柜左右两边的均衡。
因此,密集柜的种类包括单侧一电机密集柜、单侧两电机密集柜、双侧一电机密集柜和双侧两电机密集柜。
步骤S200,根据密集柜的种类确定与密集柜的种类相对应的放置规则。
由于密集柜的种类不同,为了在档案箱在放置或取下时,均能保证密集柜的均衡性,会有不同的密集柜放置规则。
密集柜放置规则包括第一放置规则、第二放置规则、第三放置规则和第四放置规则,密集柜柜置规则与密集柜的种类的对应关系为:
第一放置规则与单侧一电机密集柜相对应;
第二放置规则与单侧两电机密集柜相对应;
第三放置规则与双侧一电机密集柜相对应;
第四放置规则与双侧两电机密集柜相对应。
步骤S300,获取档案箱的参数。
具体的,档案箱的参数包括重量、体积和取用次数,也就是从大数据档案库内调取档案箱的重量、体积和取用次数,取用次数为单位时间内取用档案箱的平均次数。
当将档案箱放置完成后,有的档案箱可能短时间内不会取用,有的档案箱可能经常取用,当经常取用的档案箱由于重量和体积参数的作用而摆放在一起时,取用时,会导致密集柜的均衡失效,因此,将档案箱的取用次数考虑在参数之中。
步骤S400,根据所述参数和所述放置规则确定物品档案箱的放置位置。
具体的,第一放置规则为:
密集柜分为多个放置部分,即将单侧一电机密集柜从长度中心面位置处分为左右两部分,设定单侧一电机密集柜左右两部分的均衡阈值a。
设定每层柜体的载重阈值和放置档案箱的重量阈值,载重阈值和重量阈值均由下至上依次减小,这样更能保证单侧一电机密集柜的均衡性;其中,放置档案箱的重量阈值为单层柜体能够放置单个档案箱的重量,比如一层柜体的放置档案箱的重量阈值为100KG-200KG,若要放置的档案箱的重量为150KG,该档案箱需要放置在此层柜体上,若要放置的档案箱的重量为50KG,则该档案箱不需要放置在此层柜体上。
将档案箱由下至上依次放置;优先将档案箱放置在单侧一电机密集柜的最底层;按照档案箱的重量从大到小依次从长度中心位置处依次向两边逐一放置,当该层档案箱快要放置完成时,比较该层柜体的剩余容纳体积与要放置的档案箱的体积大小:
若该层柜体的剩余容纳体积小于要放置的档案箱的体积,则将该档案箱放置在另一单侧一电机密集柜的同一层柜体,同时选用下一体积的档案箱与该层柜体的剩余容纳体积比较,直至找到能够放置在该剩余容纳体积处的密集柜;当符合该层柜体的重量阈值的档案箱的体积均不能放置在该剩余容纳体积处时,该剩余容纳体积处空出来。
若该层柜体的剩余容纳体积大于要放置的档案箱的体积,则将该档案箱放置在该剩余容纳体积处。
同时,单层柜体上放置的所有档案箱的重量之和不得超过该层柜体的载重阈值。
待该层柜体上的档案箱放置完成后,开始放置上一层柜体的档案箱,直至将整个单侧一电机密集柜的每层柜体放置完成。
待整个单侧一电机密集柜的每层柜体放置完成后,获取单侧一电机密集柜上左右两部分的所有档案箱的总重量,即调取放置在该单侧一电机密集柜上所有档案箱的重量和取用次数,计算单侧一电机密集柜左右两部分的档案箱的总重量,左部分的实际重量为WA,右部分的实际重量为WB
根据总重量和均衡阈值a判断单侧一电机密集柜的均衡性:
若是,则根据取用次数调整档案箱,即当∣WA-WB∣≤a时,说明单侧一电机密集柜左右两部分均衡性强,移动过程中不易倾斜;
若否,则需要重新放置档案箱,即当∣WA-WB∣>a时,说明单侧一电机密集柜左右两部分均衡性弱,移动过程中易发生倾斜。
当∣WA-WB∣≤a时,遍历该密集柜上所有档案箱的取用次数,得到第一遍历结果,根据第一遍历结果取出在预设次数内的取用档案箱,得到取用结果,调取预定时间内的符合条件的档案箱,符合条件的档案箱为取用次数大于预设次数的档案箱;此时,调取取用档案箱的重量,并计算位于单侧一电机密集柜左部分的取用档案箱的总重量,总重量为W1,计算位于单侧一电机密集柜右部分的取用档案箱的总重量,总重量为W2,随后根据所述确定结果和均衡阈值a判断单侧一电机密集柜的均衡性,即比较∣(WA-W1)-(WB-W2)∣与a的大小:
若是,则不需要对取用档案箱进行替换,即∣(WA-W1)-(WB-W2)∣≤a,说明该单侧一电机密集柜左右两部分在取出取用档案箱后仍具有强的均衡性。
若否,则替换取用档案箱,即∣(WA-W1)-(WB-W2)∣>a,说明单侧一电机密集柜左右两部分在取出符合条件的档案箱后仍不具有强的均衡性。
根据所述取用结果确定取用档案箱的重量,获取取用档案箱所处的放置部分,调取该放置部分所有档案箱的总重量,计算取用档案箱的重量与该放置部分所有档案箱的总重量的差值,差值为该放置部分所有档案箱的剩余重量。
遍历剩余档案箱,并确定所述剩余档案箱中每个档案箱的重量,得到第二遍历结果,剩余档案箱为未放置在单侧一电机密集柜上的档案箱;根据第二遍历结果确定与取用档案箱的重量相同、取出次数小于预设次数的替换档案箱;将替换档案箱放置在取出的档案箱所在的位置处,使密集柜的各放置部分的档案箱的总重量之间均满足均衡阈值a。
即将取用档案箱取出,在剩余档案箱挑选能够放置在相应位置的档案箱,直至∣WA-(WB-W2)∣≤a或∣(WA-W1)-WB∣≤a,此处剩余档案箱为未放置在该单侧一电机密集柜上的档案箱,此处能够放置在相应位置的档案箱为同时满足与取出的档案箱在重量相同、体积相同或减小、取用次数不同的档案箱。
比如,WA为280KG,WB为300KG,W1为5KG,W2为10KG,a为10KG,依据上述数据,∣(280-5)-(300-10)∣>10,此时,将重量为5KG的档案箱取出,选用重量相同、体积相同或减小、取用次数减小的档案箱放置在该处,取用次数减小说明该档案箱不满足取用条件,则∣280-(300-10)∣≤10,满足单侧一电机密集柜左右两部分的均衡性。
当有新档案箱放置时,将新档案箱按照上述规则和档案箱的参数放置在新单侧一电机密集柜上,或将新档案箱按照上述规则和档案箱的参数放置在未满的单侧一电机密集柜上。
第二放置规则为:
第二放置规则与第一放置规则不同的是单层柜体上档案箱由左右两侧向单侧两电机密集柜中心面位置依次放置。
第三放置规则为:
密集柜分为多个放置部分,即将双侧一电机密集柜从宽度中心面位置处分为左右两部分,同时,从长度中心面位置处分为前后两部分,设定双侧一电机密集柜左右两部分的均衡阈值b,设定双侧一电机密集柜前后两部分的均衡阈值c。
设定每层柜体的载重阈值和放置档案箱的重量阈值,载重阈值和重量阈值均由下至上依次减小,这样更能保证双侧一电机密集柜的均衡性;其中,放置档案箱的重量阈值为单层柜体能够放置单个档案箱的重量,比如一层柜体的放置档案箱的重量阈值为100KG-200KG,若要放置的档案箱的重量为150KG,该档案箱需要放置在此层柜体上,若要放置的档案箱的重量为50KG,则该档案箱不需要放置在此层柜体上。
将档案箱由下至上依次放置;优先将档案箱放置在双侧一电机密集柜的最底层,同时按照档案箱的重量从大到小的顺序从中心位置依次向两边逐一放置,尤其注意的是,当第一个档案箱放置在左部分前部分时,第二个档案箱放置在右部分后部分,使第一个档案箱和第二个档案箱关于该层柜体的中心位置轴对称,第三个档案箱放置在右部分前部分时,第四个档案箱放置在左部分后部分,使第三个档案箱和第四个档案箱关于该层柜体的中心位置轴对称,依次顺序放置档案箱;当该层档案箱快要放置完成时,比较该层柜体的剩余容纳体积与要放置的档案箱的体积大小:
若该层柜体的剩余容纳体积小于要放置的档案箱的体积,则将该档案箱放置在另一双侧一电机密集柜的同一层柜体,同时选用下一体积的档案箱与该层柜体的剩余容纳体积比较,直至找到能够放置在该剩余容纳体积处的密集柜;当符合该层柜体的重量阈值的档案箱的体积均不能放置在该剩余容纳体积处时,该剩余容纳体积处空出来。
若该层柜体的剩余容纳体积大小于要放置的档案箱的体积,则将该档案箱放置在该剩余容纳体积处。
同时,单层柜体上放置的所有档案箱的重量之和不得超过该层柜体的载重阈值。
待该层柜体上的档案箱放置完成后,开始放置上一层柜体的档案箱,直至将整个双侧一电机密集柜的每层柜体放置完成。
待整个单侧一电机密集柜的每层柜体放置完成后,获取双侧一电机密集柜上左右前后四部分的所有档案箱的总重量,即调取放置在该单侧一电机密集柜上所有档案箱的重量和取用次数;计算单侧一电机密集柜左右两部分的档案箱的实际重量,左部分的实际重量为WC,右部分的实际重量为WD,前部分的实际重量为WE,后部分的实际重量为WF
根据总重量、均衡阈值b和均衡阈值c判断双侧一电机密集柜的均衡性。
若是,则根据取用次数调整档案箱,即当∣WC-WD∣≤b,同时∣WE-WF∣≤c时,说明双侧一电机密集柜左右两部分均衡性强,前后两部分均衡性强,移动过程中不易倾斜。
若否,则需要重新放置档案箱,即当∣WC-WD∣>b,∣WE-WF∣≤c时,说明双侧一电机密集柜左右两部分均衡性弱,前后两部分均衡性强,左右移动过程中易发生倾斜。当∣WC-WD∣≤b,∣WE-WF∣>c时,说明双侧一电机密集柜左右两部分均衡性强,前后两部分均衡性弱,前后移动过程中易发生倾斜。当∣WC-WD∣>b,∣WE-WF∣>c时,说明双侧一电机密集柜左右两部分均衡性弱,前后两部分均衡性弱,左右移动、前后移动过程中均易发生倾斜。
当∣WC-WD∣>b,∣WE-WF∣≤c时,遍历该双侧一电机密集柜上所有档案箱的取用次数,得到第一遍历结果,根据第一遍历结果取出在预设次数内的取用档案箱,得到取用结果,调取预定次数内的符合条件的档案箱,符合条件的档案箱为取用次数大于预设次数的档案箱;此时,调取取用档案箱的重量,并计算位于双侧一电机密集柜左部分的取用档案箱的总重量,总重量为W3,计算位于双侧一电机密集柜右部分的取用档案箱的总重量,总重量为W4,随后根据所述确定结果和均衡阈值b判断双侧一电机密集柜的均衡性,即比较∣(WC-W3)-(WD-W4)∣与b的大小:
若是,则不需要对取用档案箱进行替换,即∣(WC-W3)-(WD-W4)∣≤b,说明该双侧一电机密集柜左右两部分在取出取用档案箱后仍具有强的均衡性;
若否,则替换取用档案箱,即∣(WC-W3)-(WD-W4)∣>b,说明双侧一电机密集柜左右两部分在取出取用档案箱后仍不具有强的均衡性。
根据所述取用结果确定取用档案箱的重量,获取取用档案箱所处的放置部分,调取该放置部分所有档案箱的总重量,计算取用档案箱的重量与该放置部分所有档案箱的总重量的差值,差值为该放置部分所有档案箱的剩余重量。
遍历剩余档案箱,并确定所述剩余档案箱中每个档案箱的重量,得到第二遍历结果,剩余档案箱为未放置在双侧一电机密集柜上的档案箱;根据第二遍历结果确定与取用档案箱的重量相同、取出次数小于预设次数的替换档案箱;将替换档案箱放置在取出的档案箱所在的位置处,使密集柜的各放置部分的档案箱的总重量之间均满足均衡阈值b。
即将这些档案箱取出,在剩余档案箱挑选能够放置在相应位置的档案箱,直至∣WC-(WD-W4)∣≤b或∣(WC-W3)-WD∣≤b,此处剩余档案箱为未放置在该双侧一电机密集柜上的档案箱,此处能够放置在相应位置的档案箱为同时满足与取出的档案箱在重量相同、体积相同或减小、取用次数不同的档案箱。
比如,WC为280KG,WD为300KG,W3为5KG,W4为10KG,b为10KG,依据上述数据,∣(280-5)-(300-10)∣>10,此时,将重量为5KG的档案箱取出,选用重量相同、体积相同或减小、取用次数减小的档案箱放置在该处,取用次数减小说明该档案箱不满足取用条件,则∣280-(300-10)∣≤10,满足双侧一电机密集柜左右两部分的均衡性。
∣WC-WD∣≤b,∣WE-WF∣>c的处理方法和∣WC-WD∣>b,∣WE-WF∣≤c的处理方法在原理上相同,需要注意的是∣WC-WD∣>b,∣WE-WF∣≤c的处理方法是处理双侧一电机密集柜前后两部分的档案箱。
∣WC-WD∣>b,∣WE-WF∣>c的处理方法和∣WC-WD∣>b,∣WE-WF∣≤c的处理方法在原理上相同,需要注意的是∣WC-WD∣≤b,∣WE-WF∣>c的处理方法是处理双侧一电机密集柜左右两部分、前后两部分的档案箱。
当有新档案箱放置时,将新档案箱按照上述规则和档案箱的参数放置在新双侧一电机密集柜上,或将新档案箱按照上述规则和档案箱的参数放置在未满的双侧一电机密集柜上。
第四放置规则为:
第四放置规则与第三放置规则不同的是单层柜体上档案箱放置方式不同。
在双侧两电机密集柜的单层柜体放置密集柜时,按照档案箱的重量从大到小的顺序从两边依次向长度中心位置逐一放置,尤其注意的是,当第一个档案箱放置在左部分前部分时,第二个档案箱放置在右部分后部分,使第一个档案箱和第二个档案箱关于该层柜体的中心位置轴对称,第三个档案箱放置在右部分前部分时,第四个档案箱放置在左部分后部分,使第三个档案箱和第四个档案箱关于该层柜体的中心位置轴对称,按照此放置顺序依次放置。
本申请实施例密集柜的放置方法能够根据档案箱的重量、体积和取用次数以及密集柜的类型确定相对应的放置规则,能够最大程度上利用密集柜的空间,同时,在档案箱放置过程中,考虑到档案箱取用的时候对密集柜的影响,使档案箱放置完成后的均衡性更强。
图2为本申请一种实施例提供的一种档案箱无序放置***的***示意图。
如图2所示的一种档案箱无序放置***,包括获取模块21和确定模块22,其中:
获取模块21,用于获取密集柜的种类,用于获取档案箱的参数;
确定模块22,用于根据密集箱的种类确定与密集箱的种类相对应的放置规则,用于根据所述参数和所述放置规则确定档案箱的放置位置。
图3示出了适于用来实现本申请实施例的智能终端的结构示意图。
如图3所示,智能终端包括中央处理单元(CPU)301,其可以根据存储在只读存储器(ROM)302中的程序或者从存储部分加载到随机访问存储器(RAM)303中的程序而执行各种适当的动作和处理。在RAM 303中,还存储有***操作所需的各种程序和数据。CPU 301、ROM 302以及RAM 303通过总线304彼此相连。输入/输出(I/O)接口305也连接至总线304。
以下部件连接至I/O接口305:包括键盘、鼠标等的输入部分306;包括诸如阴极射线管(CRT)、液晶显示器(LCD)等以及扬声器等的输出部分307;包括硬盘等的存储部分308;以及包括诸如LAN卡、调制解调器等的网络接口卡的通信部分309。通信部分309经由诸如因特网的网络执行通信处理。驱动器310也根据需要连接至I/O接口305。可拆卸介质311,诸如磁盘、光盘、磁光盘、半导体存储器等,根据需要安装在驱动器310上,以便于从其上读出的计算机程序根据需要被安装入存储部分308。
特别地,根据本申请的实施例,上文参考流程图图1描述的过程可以被实现为计算机软件程序。例如,本申请的实施例包括一种计算机程序产品,其包括承载在机器可读介质上的计算机程序,该计算机程序包含用于执行流程图所示的方法的程序代码。在这样的实施例中,该计算机程序可以通过通信部分309从网络上被下载和安装,和/或从可拆卸介质311被安装。在该计算机程序被中央处理单元(CPU)301执行时,执行本申请的***中限定的上述功能。
需要说明的是,本申请所示的计算机可读介质可以是计算机可读信号介质或者计算机可读存储介质或者是上述两者的任意组合。计算机可读存储介质例如可以是——但不限于——电、磁、光、电磁、红外线、或半导体的***、装置或器件,或者任意以上的组合。计算机可读存储介质的更具体的例子可以包括但不限于:具有一种或多种导线的电连接、便携式计算机磁盘、硬盘、随机访问存储器(RAM)、只读存储器(ROM)、可擦式可编程只读存储器(EPROM或闪存)、光纤、便携式紧凑磁盘只读存储器(CD-ROM)、光存储器件、磁存储器件、或者上述的任意合适的组合。在本申请中,计算机可读存储介质可以是任何包含或存储程序的有形介质,该程序可以被指令执行***、装置或者器件使用或者与其结合使用。而在本申请中,计算机可读的信号介质可以包括在基带中或者作为载波一部分传播的数据信号,其中承载了计算机可读的程序代码。这种传播的数据信号可以采用多种形式,包括但不限于电磁信号、光信号或上述的任意合适的组合。计算机可读的信号介质还可以是计算机可读存储介质以外的任何计算机可读介质,该计算机可读介质可以发送、传播或者传输用于由指令执行***、装置或者器件使用或者与其结合使用的程序。计算机可读介质上包含的程序代码可以用任何适当的介质传输,包括但不限于:无线、电线、光缆、RF等,或者上述的任意合适的组合。
描述于本申请实施例中所涉及到的单元或模块可以通过软件的方式实现,也可以通过硬件的方式来实现。所描述的单元或模块也可以设置在处理器中,例如,可以描述为:一种处理器接获取模块21和确定模块22。其中,这些单元或模块的名称在某种情况下并不构成对该单元或模块本身的限定,例如,获取模块21还可以被描述为“用于获取密集柜的种类的模块,用于获取档案箱的参数的模块”。
作为另一方面,本申请还提供了一种计算机可读存储介质,该计算机可读存储介质可以是上述实施例中描述的电子设备中所包含的;也可以是单独存在,而未装配入该电子设备中的。上述计算机可读存储介质存储有一个或者多个程序,当上述前述程序被一个或者一个以上的处理器用来执行描述于本申请的数据加密传输方法。
以上描述仅为本申请的较佳实施例以及对所运用技术原理的说明。本领域技术人员应当理解,本申请中所涉及的申请范围,并不限于上述技术特征的特定组合而成的技术方案,同时也应涵盖在不脱离前述申请构思的情况下,由上述技术特征或其等同特征进行任意组合而形成的其它技术方案。例如上述特征与本申请中申请的(但不限于)具有类似功能的技术特征进行互相替换而形成的技术方案。

Claims (9)

  1. 一种档案箱无序放置方法,其特征在于:包括;
    获取密集柜的种类,所述密集柜为放置档案箱的载体;
    根据密集柜的种类确定与密集柜的种类相对应的放置规则;
    获取档案箱的参数,所述参数包括重量和取用次数,所述取用次数为单位时间内取用档案箱的平均次数;
    根据所述参数和所述放置规则确定档案箱的放置位置。
  2. [根据细则91更正 10.10.2023]
    根据权利要求1所述的一种档案箱无序放置方法,其特征在于:所述放置规则,包括;
    所述密集柜上的档案箱按照重量大小由中心向两侧的方向依次放置或由两侧向中心的方向依次放置,且所述档案箱按照自下至上的顺序依次放置;
    所述密集柜分为多个放置部分,并设定均衡阈值;
    获取所述密集柜上各个放置部分的所有档案箱的总重量;
    根据所述总重量和均衡阈值判断密集柜的均衡性;
    若是,则根据所述取用次数调整档案箱。
  3. [根据细则91更正 10.10.2023]
    根据权利要求2所述的一种档案箱无序放置方法,其特征在于:所述若是,则根据所述取用次数调整档案箱,包括;
    遍历该所述密集柜上所有档案箱的取用次数,得到第一遍历结果;
    根据第一遍历结果取出在预设次数内的取用档案箱,得到取用结果,该所述取用档案箱为取用次数大于预设次数的档案箱。
  4. [根据细则91更正 10.10.2023]
    根据权利要求3所述的一种档案箱无序放置方法,其特征在于:所述根据第一遍历结果取出在预设次数内的取用档案箱,得到取用结果之后,包括;
    根据所述取用结果确定取出相对应档案箱后密集柜各部分档案箱的剩余重量,得到确定结果;
    根据所述确定结果和均衡阈值判断密集柜的均衡性;
    若否,则替换所述取用档案箱。
  5. [根据细则91更正 10.10.2023]
    根据权利要求4所述的一种档案箱无序放置方法,其特征在于:所述根据所述取用结果确定取出相对应档案箱后密集柜各部分档案箱的剩余重量,得到确定结果,包括;
    根据所述取用结果确定取用档案箱的重量;
    获取所述取用档案箱所处的放置部分;
    调取该放置部分所有档案箱的总重量;
    计算取用档案箱的重量与该放置部分所有档案箱的总重量的差值;
    所述差值为该放置部分所有档案箱的剩余重量。
  6. [根据细则91更正 10.10.2023]
    根据权利要求4所述的一种档案箱无序放置方法,其特征在于:所述若否,则替换取出的档案箱,包括;
    遍历剩余档案箱,并确定所述剩余档案箱中每个档案箱的重量,得到第二遍历结果,所述剩余档案箱为未放置在密集柜上的档案箱;
    根据所述第二遍历结果确定与取用档案箱的重量相同、取出次数小于预设次数的替换档案箱;将替换档案箱放置在取出的档案箱所在的位置处,使密集柜的各放置部分的档案箱的总重量之间均满足均衡阈值。
  7. [根据细则91更正 10.10.2023]
    一种档案箱无序放置***,其特征在于:包括;
    获取模块(21),用于获取密集柜的种类,用于获取档案箱的参数;
    确定模块(22),用于根据密集箱的种类确定与密集箱的种类相对应的放置规则,用于根据所述参数和所述放置规则确定档案箱的放置位置。
  8. [根据细则91更正 10.10.2023]
    一种智能终端,其特征在于:包括存储器和处理器,所述存储器上存储有能够被处理器加载并执行如权利要求1至6任一种方法的计算机程序。
  9. [根据细则91更正 10.10.2023]
    一种计算机可读存储介质,其特征在于:存储有能够被处理器加载并执行如权利要求1至6中任一种方法的计算机程序。
PCT/CN2023/113583 2022-09-26 2023-08-17 一种档案箱无序放置方法、***、智能终端及存储介质 WO2024066786A1 (zh)

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