CN116823137A - Asset acceptance business processing method and processing system - Google Patents

Asset acceptance business processing method and processing system Download PDF

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Publication number
CN116823137A
CN116823137A CN202310271357.2A CN202310271357A CN116823137A CN 116823137 A CN116823137 A CN 116823137A CN 202310271357 A CN202310271357 A CN 202310271357A CN 116823137 A CN116823137 A CN 116823137A
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asset
assets
management server
checked
acceptance
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CN116823137B (en
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孙海芬
戴小喆
陈雪
叶然
何云飞
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Tongji Medical College of Huazhong University of Science and Technology
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Tongji Medical College of Huazhong University of Science and Technology
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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
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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms

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Abstract

The application provides a processing method and a processing system for an asset inspection service, which are used for providing a set of convenient and efficient system processing architecture for the asset inspection service of a hospital, thereby ensuring lower application cost and better application effect. The method comprises the following steps: the contract management server pushes asset acceptance sheet data generated on the system to the asset management server through a pre-configured system docking relationship between the contract management server and the asset management server; the asset management server performs pre-warehousing processing on the assets to be checked based on the asset check list data; the asset management server pushes the relevant data after the pre-warehouse entry processing of the asset acceptance list to the terminal equipment; under the guidance of the relevant data after the pre-warehouse entry processing, the terminal equipment completes the acceptance of the assets to be inspected and obtains the acceptance data, and then uploads the acceptance data to the asset management server; the asset management server generates asset acceptance sheet data based on the acceptance data.

Description

Asset acceptance business processing method and processing system
Technical Field
The application relates to the field of asset management, in particular to a method and a system for processing an asset acceptance service.
Background
In the operation of hospitals, the management of fixed assets can be involved, mainly involving a large number of medical devices, which obviously have great value, and thus the corresponding fixed asset management work has its importance.
In the fixed asset acceptance of hospitals, the fixed asset acceptance is often completed by workers in different links through butt joint, and this also has a disadvantage that the manual fixed asset acceptance scheme is relied on to bring about larger implementation cost (including manpower, financial resources and material resources), and the abnormal condition of data errors is also easily caused due to complicated flow.
Obviously, the conventional fixed asset acceptance scheme relying on manual work in the hospital scene has the defects of high application cost and poor application effect.
Disclosure of Invention
The application provides a processing method and a processing system for an asset inspection service, which are used for providing a set of convenient and efficient system processing architecture for the asset inspection service of a hospital, thereby ensuring lower application cost and better application effect.
In a first aspect, the present application provides a method for processing an asset inspection service, where the method includes:
the contract management server pushes asset acceptance sheet data generated on the system to the asset management server through a pre-configured system docking relationship between the contract management server and the asset management server;
the asset management server performs pre-warehousing processing on the corresponding assets to be checked and accepted based on the asset check and accepted list data;
the asset management server pushes the relevant data after the pre-warehouse entry processing of the asset acceptance list to the terminal equipment;
under the guidance of the relevant data after the pre-warehouse entry processing, the terminal equipment completes the acceptance of the assets to be inspected and obtains the acceptance data, and then uploads the acceptance data to the asset management server;
and the asset management server generates asset acceptance list data according to the acceptance data to complete acceptance of the assets to be accepted.
With reference to the first aspect of the present application, in a first possible implementation manner of the first aspect of the present application, before the terminal device performs acceptance of the asset to be accepted, the method further includes:
the terminal equipment acquires asset information of the assets which are preliminarily confirmed to be the assets to be checked from the assets which are preliminarily confirmed to be the assets to be checked;
and when the asset information of the assets which are preliminarily confirmed to be the assets to be checked is confirmed to be the asset information of the assets to be checked, the terminal equipment triggers the assets to be checked.
With reference to the first possible implementation manner of the first aspect of the present application, in a second possible implementation manner of the first aspect of the present application, the obtaining, by the terminal device, asset information of the asset preliminarily confirmed as the asset to be checked from the asset preliminarily confirmed as the asset to be checked includes:
and the terminal equipment scans the electronic tag device which is preliminarily confirmed to be the asset configuration of the asset to be checked, and obtains asset information of the asset which is preliminarily confirmed to be the asset to be checked.
With reference to the first possible implementation manner of the first aspect of the present application, in a third possible implementation manner of the first aspect of the present application, the obtaining, by the terminal device, asset information of the asset preliminarily confirmed as the asset to be checked from the asset preliminarily confirmed as the asset to be checked includes:
and the terminal equipment image identification preliminarily confirms the image identification of the asset configuration of the asset to be checked, and obtains asset information of the asset preliminarily confirmed to be checked.
With reference to the first possible implementation manner of the first aspect of the present application, in a fourth possible implementation manner of the first aspect of the present application, the obtaining, by the terminal device, asset information of the asset preliminarily confirmed as the asset to be checked from the asset preliminarily confirmed as the asset to be checked includes:
the terminal equipment performs image acquisition processing on the assets which are preliminarily confirmed to be assets to be checked;
and the terminal equipment performs image recognition on the acquired images and obtains asset information of the assets which are preliminarily confirmed to be assets to be checked.
With reference to the first possible implementation manner of the first aspect of the present application, in a fifth possible implementation manner of the first aspect of the present application, if the confirming preliminary confirms that the asset information of the asset to be checked is not the asset information of the asset to be checked, the method further includes:
the terminal equipment combines the asset information of the assets which are preliminarily confirmed to be the assets to be checked and the asset information of the assets to be checked, and determines difference data of the assets which are preliminarily confirmed to be the assets to be checked and the assets to be checked;
the terminal equipment outputs a reminder based on the difference data to provide guidance.
With reference to any one possible implementation manner of the first aspect of the present application, in a sixth possible implementation manner of the first aspect of the present application, the checking and accepting by the terminal device of the asset to be checked includes:
and the terminal equipment combines the acquired initial confirmation to confirm the asset information of the asset to be checked, and checks the asset to be checked, wherein the checking process comprises real-time image acquisition processing of the asset to be checked and electronic signature confirmation processing of staff.
With reference to the first aspect of the present application, in a seventh possible implementation manner of the first aspect of the present application, the method further includes:
the asset management server generates asset payment notification data;
and pushing the asset acceptance bill data and the asset payment notification bill data to the financial node by the asset management server to finish the account reporting of the asset to be accepted.
In a second aspect, the present application provides a processing system comprising a contract management server, an asset management server and a terminal device, the processing system being arranged to perform the method of the first aspect of the present application or any one of the possible implementations of the first aspect of the present application.
In a third aspect, the present application provides a computer readable storage medium having stored thereon a plurality of instructions adapted to be loaded by a processor to perform the method of the first aspect of the present application or any one of the possible implementations of the first aspect of the present application.
From the above, the present application has the following advantages:
the application particularly aims at the checking and accepting link of fixed assets in a hospital, and configures a processing system related to a contract management server, an asset management server and terminal equipment, under the convenient and efficient system processing architecture, the labor cost is obviously reduced, related personnel are not required to run back and forth as in the prior art, and the data circulation efficiency and the data processing efficiency are greatly promoted through the linkage of the contract management server, the asset management server and the terminal equipment, so that the checking and accepting process of the assets to be checked at present is more transparent and efficient, thereby ensuring lower application cost and better application effect.
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In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are needed in the description of the embodiments will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present application, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a flow chart of a method of processing an asset inspection service according to the present application;
FIG. 2 is a schematic view of a construction of the treatment apparatus of the present application.
Detailed Description
The following description of the embodiments of the present application will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to fall within the scope of the application.
The terms first, second and the like in the description and in the claims and in the above-described figures, are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used may be interchanged where appropriate such that the embodiments described herein may be implemented in other sequences than those illustrated or otherwise described herein. Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or modules is not necessarily limited to those steps or modules that are expressly listed or inherent to such process, method, article, or apparatus. The naming or numbering of the steps in the present application does not mean that the steps in the method flow must be executed according to the time/logic sequence indicated by the naming or numbering, and the execution sequence of the steps in the flow that are named or numbered may be changed according to the technical purpose to be achieved, so long as the same or similar technical effects can be achieved.
The division of the modules in the present application is a logical division, and may be implemented in another manner in practical applications, for example, a plurality of modules may be combined or integrated in another system, or some features may be omitted or not implemented, and further, coupling or direct coupling or communication connection between the modules shown or discussed may be through some interfaces, and indirect coupling or communication connection between the modules may be electrical or other similar manners, which are not limited in the present application. The modules or sub-modules described as separate components may be physically separated or not, or may be distributed in a plurality of circuit modules, and some or all of the modules may be selected according to actual needs to achieve the purpose of the present application.
Before describing the method for processing the asset checking business provided by the application, the background content related to the application is first described.
The method for processing the asset inspection business and the computer readable storage medium provided by the application can be applied to a processing system and used for providing a set of convenient and efficient system processing architecture for the asset inspection business of a hospital, thereby ensuring lower application cost and better application effect.
Next, the method for processing the asset inspection service provided by the application will be described.
The application provides a processing method of an asset checking business, which is applied to a processing system in a hospital application scene, and the processing system relates to a contract management server, an asset management server and terminal equipment.
It should be understood that the processing system does not necessarily include a contract management server, an asset management server and a terminal device directly in system configuration, but may also enable part of device nodes to participate in the work of the processing system in a docking manner, for example, the contract management server may be an existing contract management server, and only needs to open an interface and trigger the contract management server in a default triggering manner or a real-time triggering manner to provide asset acceptance sheet data (which is referred to later) required by the present application.
In addition, the contract management server and the asset management server related to the application are not necessarily independent hardware devices in actual situations, but may be installed on some hardware devices in the form of application services, and even in more special situations, the contract management server and the asset management server may be configured on the same hardware device. Obviously, these are adapted to the specific application conditions/application requirements in the actual situation.
In this context, referring to fig. 1, fig. 1 shows a schematic flow chart of a method for processing an asset inspection service according to the present application, and the method for processing an asset inspection service according to the present application specifically includes steps S101 to S105 as follows:
step S101, a contract management server pushes asset acceptance sheet data generated on a system to an asset management server through a pre-configured system butting relation between the contract management server and the asset management server;
it can be appreciated that, on the contract management server side, the corresponding asset acceptance sheet data can be generated based on newly added or updated asset acceptance requirements/events on the system by automatically initiating a policy, or the asset acceptance sheet data entered by related staff can also be received by a man-machine interaction mode.
In the asset acceptance sheet data, the content of the asset to be accepted, i.e., the asset to be accepted (fixed asset of the hospital), such as specific asset attributes of the device type, the device model, etc., is generally described.
The assets involved in the application are generally understood by relevant equipment of a hospital, and in actual situations, mainly relevant medical equipment or relevant office equipment which can be involved in a hospital application scene.
In addition to the basic asset attribute information described in the prior art, the asset acceptance sheet data may be described with corresponding asset-specific attributes, which may be specific to each asset device (or may be understood by inherent attributes that may be observed by software/data processing), or may be related attributes that are easily recognized by the relevant staff or device (or may be understood by visually observable attributes), so as to facilitate quick or accurate searching of specific asset devices among numerous asset devices.
After determining that the asset acceptance list data generated in the specific time period or the real-time period exists, the contract management server can push the asset acceptance list data to the asset management server through the system docking relation between the contract management server and the asset management server, and it can be understood that the asset acceptance list data are initiated for the acceptance business of the asset to be accepted, so that the asset management service area can be prompted to expand the follow-up specific asset acceptance process for the asset to be accepted.
The system docking relationship can be realized by the connection of the two through the related interface reserved by the server or manually established by staff, and is usually configured in advance for subsequent practical use.
The main service of the contract management server is to manage related contracts, and on the basis of the related contracts, corresponding asset inspection receipt data, namely an asset inspection receipt, can be generated, and the aspect corresponds to the processing habit of a hospital application scene, so that the application does not develop and explain specific generation logic, and the application focuses on the management content of related asset inspection work developed on the basis of the asset inspection receipt data, and particularly continues to see the description of subsequent steps.
On the contract management server side, the asset acceptance list data can be automatically generated by adopting the structured data, so that standardized, refined and efficient data support can be carried out at a data source, the related labor cost is directly saved, and the processing efficiency is remarkably improved.
Step S102, the asset management server performs pre-warehouse entry processing on the corresponding assets to be checked and accepted based on the asset check and acceptance list data;
after the asset inspection receipt data is obtained, the asset management server may perform pre-warehousing processing on the asset to be inspected pointed by the asset inspection receipt data, and it may be understood that the pre-warehousing stage at this time refers to a processing stage before the formal warehousing.
In the pre-binning process, the pre-binning of the asset may be handled to generate asset tags (which may be printed), and obviously, the process of asset tags is similar to the prior art.
The pre-warehouse entry processing may involve the participation of an asset management server side worker (such as an asset inspection worker), for example, may participate in the confirmation of the processing, and the worker may transact the pre-warehouse entry of the asset through one key at a related operation interface provided by the asset management server, and may also extract a printed asset tag for pasting at a later asset to be inspected.
Step S103, the asset management server pushes the relevant data after the pre-warehouse entry processing of the asset acceptance sheet to the terminal equipment;
it should be noted that, at this time, for the asset to be checked, the information that is known at this time is still the content of the on-line information based on the previous asset check list data, and corresponds to the check requirement, and then the off-line physical check is also required.
Correspondingly, the terminal equipment is specially configured for on-line physical acceptance, or is specially configured for related assets in an application scene of an actual acceptance hospital, and is usually a special personal digital assistant (Personal Digital Assistance, PDA) handheld terminal, so that related personnel in charge of current asset acceptance work can conveniently carry the terminal equipment with them.
Of course, the terminal device may be other types of hardware devices besides PDA handheld terminals, for example, smart phones equipped with the application services related to the terminal device of the present application.
It can be understood that compared with other hardware devices possibly presented by the terminal device, the specially configured PDA handheld terminal has higher pertinence, and the functions of the existing hardware devices are not affected, so that the PDA handheld terminal can be independently separated from other hardware devices in work and has higher specialization under the application scene of a hospital, the situation of borrowing devices caused by other functions on the device is avoided, the stability of physical acceptance work is further promoted, and abnormal situations such as equipment loss can be remarkably avoided.
Thus, corresponding to the terminal device responsible for executing the physical inspection work, the relevant data after the pre-warehouse entry processing can be pushed to the terminal device, and the data instruct the terminal device to execute the physical inspection work of the current asset, so that the relevant data after the pre-warehouse entry processing and corresponding to the inspection work can also be called as relevant data after the pre-warehouse entry processing.
Step S104, under the guidance of the relevant data after the pre-warehouse entry processing, the terminal equipment completes the acceptance of the assets to be inspected and obtains the acceptance data, and then uploads the acceptance data to the asset management server;
after receiving the related data issued by the asset management server, the terminal device can execute the checking and accepting work of the assets to be checked under the guidance of the terminal device, wherein the checking and accepting work is to check whether the assets to be put in the storage of the sequence recorded at the side of the server are in accordance with the real objects of the assets, if so, the assets can pass the checking and accepting, the corresponding checking and accepting data are recorded, and the corresponding checking and accepting data are uploaded to the asset management server for the next storage required processing.
It will be appreciated, among other things, that knowledge of the physical nature of the asset to be accepted is generally limited to the descriptive scope on the data before acceptance.
If the asset equipment is special, the asset equipment is more, the asset equipment is strange to staff or the asset equipment is not directly affected by special events such as the terminal equipment automatic identification range, the searching of the currently required checked and accepted assets is also affected, and therefore the checking and accepting efficiency/quality of the checked and accepted assets is also affected.
That is, in actual situations, it may be difficult for the terminal device to be accurately at the asset to be accepted at the first time.
Aiming at the situation, the application also configures a checking mechanism so as to ensure that the terminal equipment can be accurately positioned at the asset to be checked at the first time and can aim at the asset to be checked for checking and accepting the current time at the first time.
Specifically, as another practical implementation manner, before the terminal device of the present application performs acceptance of the asset to be accepted, the method for processing the asset acceptance service provided by the present application may further include the following contents:
the terminal equipment acquires asset information of the assets which are preliminarily confirmed to be the assets to be checked from the assets which are preliminarily confirmed to be the assets to be checked;
and when the asset information of the assets which are preliminarily confirmed to be the assets to be checked is confirmed to be the asset information of the assets to be checked, the terminal equipment triggers the assets to be checked.
The terminal device can check and verify the asset information of the asset to be checked with the asset information of the asset to be checked, so that whether the current asset is the asset to be checked for the current time can be accurately judged, and the very accurate checking work can be performed on the execution object after the determination.
Wherein, for the asset information of the assets to be checked and accepted, obviously, the asset information is extracted from the related data issued by the asset management server;
the asset information of the assets which are preliminarily confirmed to be the assets to be checked is currently acquired and collected from the assets which are preliminarily confirmed to be the assets to be checked in real time.
For the asset information of the asset preliminarily confirmed as the asset to be accepted here, it may be specifically implemented in the following three ways.
First kind
And the terminal equipment scans the electronic tag device which is preliminarily confirmed to be the asset configuration of the asset to be checked, and obtains asset information of the asset which is preliminarily confirmed to be the asset to be checked.
It will be appreciated that the asset to be checked may be provided with an electronic tag device for identifying its asset identity at or prior to the shipping operation, which is often provided by the carrier or the asset holder in the preceding link of the shipment.
Or when the assets to be checked are transported to a warehouse of a hospital or the like for placement, the electronic tag device can be configured for subsequent checking and accepting based on the knowledge of the assets to be checked.
The electronic tag device is generally a device configured based on radio frequency identification (Radio Frequency Identification, RFID) technology, which can be understood as a contactless automatic identification technology, which automatically identifies a target object by radio frequency signals and acquires related data.
Thus, the verification and detection of the asset identity of the application are directly served through the related asset information carried in advance by the electronic tag device.
Second kind
And the terminal equipment image identification preliminarily confirms the image identification of the asset configuration of the asset to be checked, and obtains asset information of the asset preliminarily confirmed to be checked.
It can be understood that the image identifier is configured in a physical form, and the configuration and the asset surface are configured to facilitate image acquisition, so that compared with an electronic tag, the image identifier can directly carry related asset information, and the image identifier provides an indirect asset information query channel.
After the identification content of the image identification is obtained through image identification, the content corresponding to the identification content can be searched on line.
Specifically, the image identifier can be configured by using a physical carrier of a link address of asset information, such as a two-dimensional code, a ring code and other special image identifiers, so that the corresponding asset information can be directly called through the link address; alternatively, the asset information can be configured in the form of a physical identifier, and the asset information matched with the identifier can be found in an online database.
Third kind
The terminal equipment performs image acquisition processing on the assets which are preliminarily confirmed to be assets to be checked;
and the terminal equipment performs image recognition on the acquired images and obtains asset information of the assets which are preliminarily confirmed to be assets to be checked.
It is easy to see that the asset information referred to herein is visually acquired from image features such as appearance contours presented by the current asset, and further refers to image recognition, so as to recognize corresponding appearance dimension specifications, contour features, color features, and the like, and the content of the specific image recognition performed is adaptive to the verification of the subsequent asset information, so that the adaptive image recognition strategy needs to be deployed in advance in combination with the related image features referred to in the asset identity verification, so as to provide accurate data reference.
The image recognition is generally implemented by artificial intelligence (Artificial Intelligence, AI) technology, specifically, different types of neural network models such as convolutional neural networks (Convolutional Neural Network, CNN), cyclic neural networks (Recurrent Neural Network, RNN) or deep neural networks (Deep Neural Network, DNN) can be adopted to build an initial model, training of the model is performed through an adapted sample image, and an image recognition model which can be put into the image recognition processing is obtained.
It should be understood that, the two previous asset information acquisition modes are all required to be configured with corresponding pre-processing, and after the image recognition algorithm is deployed in the acquisition mode, no pre-processing on related assets is needed, so that the method is very convenient and fast in specific application, and the effect of repairing leakage can be achieved for the two previous acquisition modes.
In addition, for different asset information acquisition modes, the method can also be applied in a combination mode in practical application, and particularly can be adjusted according to practical needs
For example, the first acquisition mode or the second acquisition mode may be performed first, and the third acquisition mode may be performed when no corresponding asset information is acquired, so that not only the acquisition efficiency is considered, but also the acquisition result is ensured.
Even, in practical application, a dynamically adjusted adaptive scheme may be configured, for example, which acquisition mode is used when the acquisition efficiency (which may relate to the processing time of the effective acquisition result) of which acquisition mode is the highest can be monitored.
After the current asset information to be detected is obtained, an asset information verification link can be entered, if the current asset information of the asset to be checked is confirmed to be the asset information of the asset to be checked, the asset checking process can be normally carried out obviously, and if the asset information of the asset to be checked is confirmed to be not the asset information of the asset to be checked, the current asset is obviously needed to be skipped, and whether other assets are the asset to be checked (or realized through the verification of the asset information) is continuously judged.
For the case that the asset information of the asset which is confirmed to be the asset to be checked is not the asset information of the asset to be checked, and a new round of asset information verification is needed, the application provides a further optimized corresponding scheme for promoting higher accuracy probability/recognition efficiency on the verification object.
Specifically, if it is confirmed that the asset information of the asset to be checked is not the asset information of the asset to be checked, the method of the present application may further include:
the terminal equipment combines the asset information of the assets which are preliminarily confirmed to be the assets to be checked and the asset information of the assets to be checked, and determines difference data of the assets which are preliminarily confirmed to be the assets to be checked and the assets to be checked;
the terminal equipment outputs a reminder based on the difference data to provide guidance.
In practical applications, when asset information of assets to be inspected described on the system is determined, it is easy to understand that it can be used as a guide to assist the terminal device/staff in arriving at the asset where the asset to be inspected is most likely.
When the currently verified asset is not the asset to be verified, the embodiment of the application considers the problem of conventional processing logic/thinking, combines the asset information of the asset to be verified and the asset information of the asset to be verified, determines the difference between the asset information and the asset information of the asset to be verified, and presents the difference data to remind in a more concise and clear way, so that the specific asset to be verified next can be determined more accurately and directionally.
The difference data may indicate, among other things, how much difference exists in the relevant size/size ratio (which may be marked with a red font if displayed on the display screen).
In addition, the difference data may also relate to the content of the distance dimension, for example, the distance between the current asset and the asset to be verified may be indicated according to the difference between the position information, and even further, the distance may relate to the direction, that is, the spatial position of the asset to be verified compared with the current asset may be directly indicated, so that the specific asset to be verified next may be determined more accurately.
Returning to a specific acceptance link, the terminal device accepts the asset to be accepted, which may include:
and the terminal equipment combines the acquired initial confirmation to confirm the asset information of the asset to be checked, and checks the asset to be checked, wherein the checking process comprises real-time image acquisition processing of the asset to be checked and electronic signature confirmation processing of staff.
It can be understood that when checking the asset, it is mainly to check whether the asset is intact, can be used normally, and after determining that there is no problem, it can take a photograph to store a certificate, sign and confirm.
In this embodiment, the secondary usage of the asset information acquired in real time before is involved, for example, a panoramic photo or a partial photo taken before can be called as a related image of the image acquisition processing, and for example, related contour features identified by the previous image or related information recorded by the electronic tag device is called to be used with acceptance (which may include recording).
After the assets to be checked are checked and accepted, the terminal equipment can upload the checked and accepted data to the asset management server, so that the asset management server can continuously carry out subsequent checking and accepted processing.
Through the data processing architecture, real-time and efficient data butt joint is achieved, round-trip running of related workers can be obviously reduced, efficient physical asset acceptance efficiency can be obtained through digital operation, and the error probability of manual operation can be effectively reduced.
Step S105, the asset management server generates asset acceptance list data according to the acceptance data, and completes acceptance of the assets to be accepted.
It can be understood that after the acceptance of the physical asset of the asset to be accepted, the data of the asset acceptance list, i.e. the "asset acceptance list", can be generated based on the acceptance data uploaded by the terminal device side that completes the acceptance, and the asset acceptance content of the asset to be accepted is recorded on the system, so as to complete the current acceptance.
As can be seen from the embodiment shown in fig. 1, the application specifically aims at the acceptance link of the fixed asset in the hospital, and configures the processing system related to the contract management server, the asset management server and the terminal equipment, under the convenient and efficient system processing architecture, the labor cost is obviously reduced, related personnel are not required to run back and forth as in the prior art, and the data circulation efficiency and the data processing efficiency are greatly promoted through the linkage of the contract management server, the asset management server and the terminal equipment, so that the acceptance process of the current asset to be accepted is more transparent and efficient, thereby ensuring lower application cost and better application effect.
After the completion of the asset acceptance process, corresponding to the asset warehousing process, a subsequent security link may be further involved, and in particular, as another implementation manner suitable for practical use, the method of the present application may further include, after step S105:
the asset management server generates asset payment notification data;
and pushing the asset acceptance bill data and the asset payment notification bill data to the financial node by the asset management server to finish the account reporting of the asset to be accepted.
The asset payment notification data, namely the asset payment notification book, corresponds to the requirements of the guarantee processing procedure of the financial side of the application scene of the hospital in the actual situation, and at this time, the asset management server can push the asset acceptance notification data (the asset acceptance sheet) and the asset payment notification data (the asset payment notification sheet) obtained in the prior to the guarantee of the to-be-accepted asset which are currently in warehouse for the financial node of the financial side.
In the embodiment, the application can be seen that the three-sheet linkage on the asset warehouse entry sheet, the asset acceptance sheet and the asset payment notification sheet is finished, so that the data transfer/utilization efficiency is obviously improved, the manual data input operation is avoided as far as possible, a large amount of asset management cost related to manpower, financial resources and material resources can be obviously saved in practical application, and the problems of data transfer errors, equipment information distortion and the like caused by complicated steps and excessive participation personnel can be fundamentally avoided.
In addition, the present application also provides a processing system from the perspective of hardware structure, for convenience of explanation, different hardware devices related to the processing system of the present application are all described in terms of processing devices, referring to fig. 2, fig. 2 shows a schematic structural diagram of the processing device of the present application, specifically, the processing device of the present application may include a processor 201, a memory 202, and an input/output device 203, where the processor 201 is configured to implement steps corresponding to a main body of a processing method of an asset inspection service in the corresponding embodiment of fig. 1 when executing a computer program stored in the memory 202.
By way of example, a computer program may be partitioned into one or more modules/units that are stored in the memory 202 and executed by the processor 201 to accomplish the present application. One or more of the modules/units may be a series of computer program instruction segments capable of performing particular functions to describe the execution of the computer program in a computer device.
The processing devices may include, but are not limited to, a processor 201, a memory 202, and an input output device 203. It will be appreciated by those skilled in the art that the illustrations are merely examples of processing devices and are not limiting of processing devices, and may include more or fewer components than shown, or may combine some components, or different components, e.g., processing devices may also include network access devices, buses, etc., through which processor 201, memory 202, input output device 203, etc. are connected.
The processor 201 may be a central processing unit (Central Processing Unit, CPU), but may also be other general purpose processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC), field programmable gate arrays (Field-Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, or the like. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like, which is a control center for a processing device, with various interfaces and lines connecting the various parts of the overall device.
The memory 202 may be used to store computer programs and/or modules, and the processor 201 implements various functions of the computer device by running or executing the computer programs and/or modules stored in the memory 202 and invoking data stored in the memory 202. The memory 202 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, application programs required for at least one function, and the like; the storage data area may store data created according to the use of the processing device, or the like. In addition, the memory may include high-speed random access memory, and may also include non-volatile memory, such as a hard disk, memory, plug-in hard disk, smart Media Card (SMC), secure Digital (SD) Card, flash Card (Flash Card), at least one disk storage device, flash memory device, or other volatile solid-state storage device.
The processor 201 is configured to execute the computer program stored in the memory 202, and may specifically implement the following functions of the corresponding main body:
the contract management server pushes asset acceptance sheet data generated on the system to the asset management server through a pre-configured system docking relationship between the contract management server and the asset management server;
the asset management server performs pre-warehousing processing on the corresponding assets to be checked and accepted based on the asset check and accepted list data;
the asset management server pushes the relevant data after the pre-warehouse entry processing of the asset acceptance list to the terminal equipment;
under the guidance of the relevant data after the pre-warehouse entry processing, the terminal equipment completes the acceptance of the assets to be inspected and obtains the acceptance data, and then uploads the acceptance data to the asset management server;
and the asset management server generates asset acceptance list data according to the acceptance data to complete acceptance of the assets to be accepted.
It will be clearly understood by those skilled in the art that, for convenience and brevity of description, the specific working process of the above-described processing device, processing system and corresponding units of the asset inspection service may refer to the description of the processing method of the asset inspection service in the corresponding embodiment of fig. 1, and will not be repeated herein.
Those of ordinary skill in the art will appreciate that all or a portion of the steps of the various methods of the above embodiments may be performed by instructions, or by instructions controlling associated hardware, which may be stored in a computer-readable storage medium and loaded and executed by a processor.
For this reason, the present application provides a computer readable storage medium, in which a plurality of instructions capable of being loaded by a processor to execute steps of the method for processing an asset inspection service according to the corresponding embodiment of fig. 1 are stored, and specific operations may be referred to the description of the method for processing an asset inspection service according to the corresponding embodiment of fig. 1, which are not repeated herein.
Wherein the computer-readable storage medium may comprise: read Only Memory (ROM), random access Memory (Random Access Memory, RAM), magnetic or optical disk, and the like.
Because the instructions stored in the computer readable storage medium may execute the steps of the method for processing the asset inspection service according to the embodiment of fig. 1, the method for processing the asset inspection service according to the embodiment of fig. 1 may achieve the beneficial effects of the method for processing the asset inspection service according to the embodiment of fig. 1, which are detailed in the foregoing description and will not be repeated herein.
The above detailed description of the method, the device, the processing system and the computer readable storage medium for processing the asset inspection service provided by the application applies specific examples to illustrate the principles and the implementation of the application, and the above examples are only used to help understand the method and the core idea of the application; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in light of the ideas of the present application, the present description should not be construed as limiting the present application.

Claims (10)

1. A method of processing an asset acceptance transaction, the method comprising:
the contract management server pushes asset acceptance sheet data generated on the system to the asset management server through a pre-configured system butting relation between the contract management server and the asset management server;
the asset management server performs pre-warehousing processing on the corresponding assets to be checked and accepted based on the asset check and accepted list data;
the asset management server pushes the relevant data of the asset acceptance list after the pre-warehouse entry processing to a terminal device;
the terminal equipment completes the acceptance of the assets to be inspected and obtains acceptance data under the guidance of the relevant data after the pre-warehouse entry processing, and then uploads the acceptance data to the asset management server;
and the asset management server generates asset acceptance list data according to the acceptance data to complete acceptance of the assets to be accepted.
2. The method of claim 1, wherein prior to the terminal device accepting the asset to be accepted, the method further comprises:
the terminal equipment acquires asset information of the assets which are preliminarily confirmed to be the assets to be checked from the assets which are preliminarily confirmed to be the assets to be checked;
and when the preliminary confirmation is confirmed that the asset information of the asset to be checked is the asset information of the asset to be checked, triggering the terminal equipment to check the asset to be checked.
3. The method of claim 2, wherein the terminal device obtaining asset information for the asset initially identified as the asset to be accepted from the asset initially identified as the asset to be accepted, comprising:
and the terminal equipment scans the electronic tag device which is preliminarily confirmed to be the asset configuration of the asset to be checked, and obtains the asset information of the asset which is preliminarily confirmed to be the asset to be checked.
4. The method of claim 2, wherein the terminal device obtaining asset information for the asset initially identified as the asset to be accepted from the asset initially identified as the asset to be accepted, comprising:
and the terminal equipment image identifies the image identification of the asset configuration of the assets to be checked, and obtains the asset information of the assets to be checked, which are preliminarily identified as the assets to be checked.
5. The method of claim 2, wherein the terminal device obtaining asset information for the asset initially identified as the asset to be accepted from the asset initially identified as the asset to be accepted, comprising:
the terminal equipment performs image acquisition processing on the assets which are preliminarily confirmed to be the assets to be checked;
and the terminal equipment performs image recognition on the acquired image and obtains the asset information of the asset which is preliminarily confirmed to be the asset to be checked.
6. The method of claim 2, wherein if the preliminary confirmation is confirmed that the asset information of the asset to be accepted is not the asset information of the asset to be accepted, the method further comprises:
the terminal equipment combines the asset information of the assets which are preliminarily confirmed to be the assets to be checked and the asset information of the assets to be checked, and determines difference data of the assets which are preliminarily confirmed to be the assets to be checked and the assets to be checked;
and the terminal equipment outputs a reminder based on the difference data to provide guidance.
7. A method according to any one of claims 2 to 6, wherein the terminal device accepting the asset to be accepted, comprising:
and the terminal equipment performs acceptance on the asset to be accepted according to the acquired asset information of the asset which is preliminarily confirmed to be the asset to be accepted, wherein the acceptance process comprises image acquisition processing of the asset to be accepted in real time and electronic signature confirmation processing of staff.
8. The method according to claim 1, wherein the method further comprises:
the asset management server generates asset payment notification data;
and pushing the asset acceptance list data and the asset payment notification list data to a financial node by the asset management server to finish the account reporting of the asset to be accepted.
9. A processing system comprising a contract management server, an asset management server and a terminal device, the processing system being adapted to perform the method of any of claims 1 to 8.
10. A computer readable storage medium storing a plurality of instructions adapted to be loaded by a processor to perform the method of any one of claims 1 to 8.
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