CN116362519A - Emergency resource management system based on urban public health event - Google Patents

Emergency resource management system based on urban public health event Download PDF

Info

Publication number
CN116362519A
CN116362519A CN202310530033.6A CN202310530033A CN116362519A CN 116362519 A CN116362519 A CN 116362519A CN 202310530033 A CN202310530033 A CN 202310530033A CN 116362519 A CN116362519 A CN 116362519A
Authority
CN
China
Prior art keywords
emergency
event
resource
community
public
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN202310530033.6A
Other languages
Chinese (zh)
Other versions
CN116362519B (en
Inventor
梁文清
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
HEBEI GOLDEN LOCK SAFETY ENGINEERING CO LTD
Original Assignee
HEBEI GOLDEN LOCK SAFETY ENGINEERING CO LTD
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by HEBEI GOLDEN LOCK SAFETY ENGINEERING CO LTD filed Critical HEBEI GOLDEN LOCK SAFETY ENGINEERING CO LTD
Priority to CN202310530033.6A priority Critical patent/CN116362519B/en
Publication of CN116362519A publication Critical patent/CN116362519A/en
Application granted granted Critical
Publication of CN116362519B publication Critical patent/CN116362519B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • G06Q10/105Human resources
    • 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
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • G06Q50/26Government or public services
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/60Planning or developing urban green infrastructure

Abstract

The invention relates to the technical field of emergency resource management, and particularly discloses an emergency resource management system based on urban public health events, which comprises an information acquisition module, an information preprocessing module, an emergency resource allocation analysis module, a comprehensive management scheduling center and an information allocation management library.

Description

Emergency resource management system based on urban public health event
Technical Field
The invention relates to the technical field of emergency resource management, in particular to an emergency resource management system based on urban public health events.
Background
In cities, once sudden and urgent public health events caused by various reasons occur, a series of negative effects are caused in a densely-personnel urban gathering place, so that when the urban public health events occur, the urgent public health events need to be treated through a series of emergency measures, wherein the essential requirement is that the emergency resources are managed and scheduled in a rapid, efficient, reasonable and orderly manner for the public health events, and the key for guaranteeing the emergency handling capability of the urban treatment on the emergency events is that.
However, the emergency resource management for urban public health events has larger limitations and defects at present, and can be embodied in the following layers: 1. the prior urban public health event emergency resource management is still dependent on subjective decision-making distribution of personnel to a large extent, and the subjective decision-making of personnel may be influenced by factors such as personal cognitive deviation, experience deficiency and the like, so that an unbalanced distribution and unreasonable phenomenon of emergency resources occur, but the main purpose of carrying out the emergency resource management on the urban public health event is to more reasonably and effectively distribute and utilize limited resources under emergency conditions, so that the property loss of personnel can be reduced to the greatest extent, and obviously, the subjective decision-making distribution depending on the personnel may need to spend a great deal of time and energy, so that the emergency response speed of the resources becomes lagged, and further negative influence is caused on the utilization efficiency of the emergency resources.
2. At present, the emergency resource management aiming at urban public health events neglects attention to human resources, when emergency public health events occur, human resources are indispensable important resources, in the distribution management of emergency object resources, human resources play an important role, and the lack of management and scheduling of human resources can not further manage and allocate the emergency object resources in order, so that the emergency resources are possibly excessive in certain areas, the phenomenon of insufficient emergency resources in other areas is possibly caused, and the coordination management and allocation level of the emergency object resources is further reduced, so that the timeliness of emergency response to the public health events is influenced.
Disclosure of Invention
In order to overcome the defects in the background art, the embodiment of the invention provides an emergency resource management system based on urban public health events, which can effectively solve the problems related to the background art.
The aim of the invention can be achieved by the following technical scheme: an emergency resource management system based on urban public health events, comprising: and the information acquisition module is used for: the public health event processing method is used for recording the public health event which occurs this time as a designated public event, further collecting basic information of the designated public event, and collecting characteristic information of each emergency resource station to which the target city belongs and emergency manpower data to which the target city belongs.
An information preprocessing module: and the method is used for extracting the basic information of the specified public event, further analyzing the diffusion trend influence index of the specified public event, and dividing the diffusion trend influence index into the predicted diffusion coverage area of the specified public event.
An emergency resource allocation analysis module: the system is used for carrying out emergency resource allocation analysis on the appointed public event according to the characteristic information and emergency manpower data of each emergency resource station to which the target city belongs, and comprises an object resource allocation analysis unit and a manpower resource allocation analysis unit.
And the comprehensive management scheduling center: the method is used for screening the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community, and further carrying out object resource allocation and manpower resource allocation on the estimated diffusion coverage area of the specified public event.
Information deployment management library: the method is used for storing the population quantity of communities in a target city, storing the number of alarm growth of the occurrence interval time of units corresponding to audience personnel belonging to public health events of various properties, storing the number of alarm associated population belonging to public health events of various properties, storing various basic emergency material resource belonging to public health events of various properties, storing the demand of various basic emergency material resource corresponding to unit period days in public health events of various properties of single personnel, and storing the occupation area corresponding to communities in the target city.
As a preferable technical scheme, the basic information of the specified public event comprises event properties, occurrence time points, initial occurrence position points and initial statistics of audience personnel number
Figure SMS_1
The characteristic information of each emergency resource station of the target city comprises geographic positions and reserve amounts of each basic emergency resource.
The emergency manpower data of the target city is the number of emergency personnel of each community.
As a preferred technical solution, the analysis designates a diffusion trend impact index of the public event, and the specific analysis process is as follows: according to the occurrence time point of the appointed public event and based on the current monitoring time point, further extracting the occurrence interval duration of the appointed public event
Figure SMS_2
And acquires the accumulated number of audience in the current monitoring time point>
Figure SMS_3
Preliminary calculation is carried out to obtain the increment quantity of the unit occurrence interval duration corresponding to the audience personnel of the appointed public event, which is recorded as
Figure SMS_4
Acquiring a map of a target city, positioning the primary occurrence position point of the specified public event in the map of the target city according to the primary occurrence position point of the specified public event, extracting communities to which the primary occurrence position point of the specified public event belongs, marking the communities as specified reference communities, and screening the population numbers of the specified reference communities from an information allocation management library
Figure SMS_5
Dividing the set areas to obtain each related adjacent community of the designated reference community, and counting the resident population number of each related adjacent community +.>
Figure SMS_6
I is the number of each associated neighbor community, < +.>
Figure SMS_7
Statistics of the currentMonitoring audience number for a specified reference community at a time point
Figure SMS_8
Further, the audience base diffusion influence factor of the appointed public event is calculated preliminarily>
Figure SMS_9
Wherein->
Figure SMS_10
And corresponding the basic diffusion influence correction value to the preset audience.
According to the warning increment quantity of the unit occurrence interval duration corresponding to the public health event belonging to the audience of various properties stored in the information allocation management library, according to the event property of the appointed public event, screening to obtain the warning increment quantity of the unit occurrence interval duration corresponding to the audience of the appointed public event
Figure SMS_11
Similarly, screening alert associated population count for specified public event +.>
Figure SMS_12
Calculating the diffusion trend impact index of the specified public event according to the above, and marking as +.>
Figure SMS_13
As a preferred embodiment, the spreading trend of the specified public event affects the index
Figure SMS_14
The specific expression of (2) is: />
Figure SMS_15
Wherein->
Figure SMS_16
、/>
Figure SMS_17
And->
Figure SMS_18
And the weight occupation ratio is assessed for the diffusion trend influence corresponding to the set audience increment number, the associated population number and the audience basic diffusion influence factor respectively, and e is a natural constant.
As a preferred technical solution, the object resource allocation analysis unit is configured to perform allocation analysis of object resources on a specified public event, and the specific process is as follows: based on event properties of the appointed public event, the event properties are matched with various basic emergency material resources of the public health event with various properties stored in the information allocation management library, various basic emergency material resources of the appointed public event are obtained, and meanwhile, the demand of various basic emergency material resources of a single person in the appointed public event corresponding to unit period days is screened.
And screening and designating all communities in the predicted diffusion coverage area of the public event in the map of the target city, and calibrating the communities as all predicted diffusion coverage communities.
Calibrating various basic emergency material resources to which the specified public event belongs as various specified basic emergency material resources, simultaneously counting the population number of each estimated diffusion coverage community according to the number of the set management reference period days, and further obtaining the demand of each estimated diffusion coverage community corresponding to each specified basic emergency material resource in the specified public event through data processing
Figure SMS_19
J is the number of each appointed basic emergency material resource, < ->
Figure SMS_20
D is the number of each estimated diffusion coverage community,/-for>
Figure SMS_21
According to the reserve of each basic emergency resource of each emergency resource station of the target city, the reserve of each appointed basic emergency resource of each emergency resource station of the target city is screened and counted
Figure SMS_22
G is the number of each emergency resource station, < ->
Figure SMS_23
Based on the geographic position of each emergency resource station of the target city, the geographic position of each estimated diffusion coverage community is obtained, and the reference transmission distance of each emergency resource station of the target city to each estimated diffusion coverage community is extracted
Figure SMS_24
Calculating the suitability index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community
Figure SMS_25
As a preferable technical scheme, the specific expression of the suitability index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community is as follows:
Figure SMS_26
wherein->
Figure SMS_27
For presetting the appropriate influencing factor of the corresponding unit transmission distance of the emergency resource station, +.>
Figure SMS_28
And->
Figure SMS_29
And respectively obtaining the basic emergency resource reserve quantity of the preset emergency resource station and the proper weight factor corresponding to the transmission interval.
As an preferable technical solution, the human resource allocation analysis unit is configured to perform allocation analysis of human resources on a specified public event, and the specific process is as follows: emergency personnel according to communities to which target cities belongQuantity of emergency personnel from each estimated diffusion coverage community
Figure SMS_30
The population number of each estimated diffusion coverage community is extracted, and then the population number is matched with the number of the expected demand emergency personnel corresponding to the predefined population number intervals of each estimated diffusion coverage community, so that the number of the expected demand emergency personnel corresponding to each estimated diffusion coverage community is obtained
Figure SMS_31
Calculating the emergency personnel complete index of each estimated diffusion coverage community through comparison, and marking as
Figure SMS_32
As a preferable technical scheme, the emergency personnel completion index of each estimated diffusion coverage community
Figure SMS_33
The specific expression of (2) is: />
Figure SMS_34
Wherein->
Figure SMS_35
And (5) compensating the correction factors for the complete corresponding emergency personnel number.
As a preferable technical scheme, the screening of the number of the resource distribution points of the reference adaptation object of each estimated diffusion coverage community comprises the following specific processes: the occupied area corresponding to each estimated diffusion coverage community is extracted from the information allocation management library, and then the occupied area is matched with the number of the reference adaptive object resource distribution points of various occupied area intervals corresponding to the predefined communities, so that the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community is obtained.
Compared with the prior art, the embodiment of the invention has at least the following advantages or beneficial effects: 1. compared with the prior emergency resource management allocation mode that the urban public sanitary event depends on personnel to perform subjective decision, the emergency resource management system has timeliness and regularity, can reduce negative effects caused by factors such as personal cognition deviation, insufficient experience and the like possibly existing due to subjective decision of the personnel, and further reduces occurrence rate of unbalanced and unreasonable emergency resource allocation.
2. According to the invention, by arranging the emergency resource allocation analysis module and through data analysis, a more reasonable and reliable data support basis can be provided for the subsequent allocation of emergency resources to the appointed public event, and limited emergency resources can be allocated and utilized more reasonably and effectively under the emergency condition of the urban public health event, so that the method is beneficial to reducing the property loss of personnel to the greatest extent, the defect that a great amount of personnel time and energy are required due to the dependence on the subjective decision allocation of the personnel is overcome effectively, the emergency response speed of the resources is improved, and the utilization efficiency of the emergency resources is further ensured.
3. According to the invention, the emergency personnel complete indexes of each estimated diffusion coverage community are calculated by comparison, so that more powerful data support can be provided for the allocation of human resources to the estimated diffusion coverage area of the specified public event in the later period, the attention to the allocation of the human resources is effectively improved through the allocation analysis of the human resources, the human resources can be reasonably managed and scheduled when the emergency public health event happens, further orderly management and allocation of emergency object resources are facilitated, the phenomenon that the emergency resources are excessive in certain areas and insufficient in other areas is effectively reduced, the coordination management and allocation level of the emergency object resources can be ensured, and the timeliness of emergency response to the public health event is improved.
Drawings
The invention will be further described with reference to the accompanying drawings, in which embodiments do not constitute any limitation of the invention, and other drawings can be obtained by one of ordinary skill in the art without inventive effort from the following drawings.
FIG. 1 is a schematic diagram of a system architecture connection according to the present invention.
Fig. 2 is a schematic structural diagram of an emergency resource allocation analysis module according to the present invention.
Detailed Description
The following description of the embodiments of the present invention 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 invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1, the present invention provides an emergency resource management system based on urban public health events, comprising: the system comprises an information acquisition module, an information preprocessing module, an emergency resource allocation analysis module, a comprehensive management scheduling center and an information allocation management library.
The information acquisition module is respectively connected with the information preprocessing module and the emergency resource allocation analysis module, the information preprocessing module and the emergency resource allocation analysis module are connected, the emergency resource allocation analysis module is connected with the comprehensive management scheduling center, and the information allocation management library is respectively connected with the information preprocessing module, the emergency resource allocation analysis module and the comprehensive management scheduling center.
The information acquisition module is used for recording the public health event which occurs this time as a designated public event, further acquiring basic information of the designated public event, and acquiring characteristic information of each emergency resource station of the target city and emergency manpower data of the target city.
Specifically, the basic information of the specified public event comprises event properties, occurrence time points, initial occurrence position points and initial statistics of audience personnel number
Figure SMS_36
It should be added that the event properties of the specified public event include, but are not limited to, viral infectious diseases, bacterial infectious diseases, parasitic infectious diseases, some food public health events, such as food poisoning and mycotoxin pollution, etc., and the audience specifically refers to the person who is substantially injured in the specified public event.
The characteristic information of each emergency resource station of the target city comprises geographic positions and reserve amounts of each basic emergency resource.
The emergency manpower data of the target city is the number of emergency personnel of each community.
The information preprocessing module is used for extracting basic information of the appointed public event, further analyzing diffusion trend influence indexes of the appointed public event, and dividing the information into the appointed public event predicted diffusion coverage area according to the diffusion trend influence indexes.
It should be noted that, the specific process of obtaining the specified public event predicted diffusion coverage area through the division is as follows: according to the diffusion trend impact index of the appointed public event, comparing the predicted diffusion coverage areas corresponding to the predefined diffusion trend impact index intervals, screening the predicted diffusion coverage areas of the appointed public event, taking the initial occurrence position point of the appointed public event as a starting point, uniformly diffusing and extending the periphery, dividing the initial occurrence position point into areas with the actual area equal to the area corresponding to the predicted diffusion coverage areas, and calibrating the areas as the predicted diffusion coverage areas of the appointed public event.
Specifically, the analysis designates a diffusion trend impact index of the common event, and the specific analysis process is as follows: according to the occurrence time point of the appointed public event and based on the current monitoring time point, further extracting the occurrence interval duration of the appointed public event
Figure SMS_37
And acquires the accumulated number of audience in the current monitoring time point>
Figure SMS_38
Preliminary calculation is carried out to obtain the increment quantity of the unit occurrence interval duration corresponding to the audience personnel of the appointed public event, which is recorded as
Figure SMS_39
It should be explained that the audience of the specified public event corresponds to the increment of the unit duration
Figure SMS_40
The specific calculation formula of (2) is as follows: />
Figure SMS_41
Acquiring a map of a target city, positioning the primary occurrence position point of the specified public event in the map of the target city according to the primary occurrence position point of the specified public event, extracting communities to which the primary occurrence position point of the specified public event belongs, marking the communities as specified reference communities, and screening the population numbers of the specified reference communities from an information allocation management library
Figure SMS_42
Dividing the set areas to obtain each related adjacent community of the designated reference community, and counting the resident population number of each related adjacent community +.>
Figure SMS_43
I is the number of each associated neighbor community, < +.>
Figure SMS_44
Counting the number of audience members of a designated reference community at a current monitoring time point
Figure SMS_45
Further, the audience base diffusion influence factor of the appointed public event is calculated preliminarily>
Figure SMS_46
Wherein->
Figure SMS_47
And corresponding the basic diffusion influence correction value to the preset audience.
According to the warning increment quantity of the unit occurrence interval duration corresponding to the public health event belonging to the audience of various properties stored in the information allocation management library, according to the event property of the appointed public event, screening to obtain the warning increment quantity of the unit occurrence interval duration corresponding to the audience of the appointed public event
Figure SMS_48
Similarly, screening alert associated population count for specified public event +.>
Figure SMS_49
Calculating the diffusion trend impact index of the specified public event according to the above, and marking as +.>
Figure SMS_50
Further, the diffusion trend of the specified common event affects the index
Figure SMS_51
The specific expression of (2) is:
Figure SMS_52
wherein->
Figure SMS_53
、/>
Figure SMS_54
And->
Figure SMS_55
And the weight occupation ratio is assessed for the diffusion trend influence corresponding to the set audience increment number, the associated population number and the audience basic diffusion influence factor respectively, and e is a natural constant.
The emergency resource allocation analysis module is used for carrying out allocation analysis on emergency resources of the appointed public event according to the characteristic information and the emergency manpower data of each emergency resource station to which the target city belongs.
In the specific embodiment of the invention, by arranging the emergency resource allocation analysis module and through data analysis, a more reasonable and reliable data support basis can be provided for the subsequent allocation of emergency resources to the appointed public event, and limited emergency resources can be allocated and utilized more reasonably and effectively under the emergency condition of the urban public health event, so that the invention is beneficial to reducing the property loss of personnel to the greatest extent, effectively overcoming the defect that a great amount of personnel time and energy are required due to the dependence on the subjective decision allocation of the personnel, improving the emergency response speed of the resources and further providing a guarantee for the utilization efficiency of the emergency resources.
Referring to fig. 2, the emergency resource allocation analysis module includes an object resource allocation analysis unit and a human resource allocation analysis unit.
Specifically, the object resource allocation analysis unit is used for allocating and analyzing object resources for the specified public event, and the specific process is as follows: based on event properties of the appointed public event, the event properties are matched with various basic emergency material resources of the public health event with various properties stored in the information allocation management library, various basic emergency material resources of the appointed public event are obtained, and meanwhile, the demand of various basic emergency material resources of a single person in the appointed public event corresponding to unit period days is screened.
And screening and designating all communities in the predicted diffusion coverage area of the public event in the map of the target city, and calibrating the communities as all predicted diffusion coverage communities.
Calibrating various basic emergency material resources to which the specified public event belongs as various specified basic emergency material resources, simultaneously counting the population number of each estimated diffusion coverage community according to the number of the set management reference period days, and further obtaining the demand of each estimated diffusion coverage community corresponding to each specified basic emergency material resource in the specified public event through data processing
Figure SMS_56
J is each designated baseNumbering of emergency material resources of foundation +.>
Figure SMS_57
D is the number of each estimated diffusion coverage community,/-for>
Figure SMS_58
It should be noted that, the above-mentioned method obtains the demand of each predicted diffusion coverage community corresponding to each specified basic emergency material resource in the specified public event through data processing
Figure SMS_59
The specific data processing process is as follows: according to the calibrated specified basic emergency material resources, further extracting the demand of each specified basic emergency material resource corresponding to the number of unit period days in the specified public event by a single person, and marking the demand as +.>
Figure SMS_60
And reference cycle days according to the set management +.>
Figure SMS_61
And the number of living population of each estimated diffusion coverage community +.>
Figure SMS_62
Further according to the calculation expression +.>
Figure SMS_63
Processing to obtain the required quantity of each estimated diffusion coverage community corresponding to each specified basic emergency material resource in the specified public event>
Figure SMS_64
According to the reserve of each basic emergency resource of each emergency resource station of the target city, the reserve of each appointed basic emergency resource of each emergency resource station of the target city is screened and counted
Figure SMS_65
G is each emergency resourceNumber of station>
Figure SMS_66
Based on the geographic position of each emergency resource station of the target city, the geographic position of each estimated diffusion coverage community is obtained, and the reference transmission distance of each emergency resource station of the target city to each estimated diffusion coverage community is extracted
Figure SMS_67
Calculating the suitability index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community
Figure SMS_68
Further, the specific expression of the suitability index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community is as follows:
Figure SMS_69
wherein
Figure SMS_70
For presetting the appropriate influencing factor of the corresponding unit transmission distance of the emergency resource station, +.>
Figure SMS_71
And->
Figure SMS_72
And respectively obtaining the basic emergency resource reserve quantity of the preset emergency resource station and the proper weight factor corresponding to the transmission interval.
Specifically, the human resource allocation analysis unit is used for allocating and analyzing human resources for the specified public event, and the specific process is as follows: according to the number of emergency personnel of each community of the target city, screening the number of emergency personnel of each estimated diffusion coverage community
Figure SMS_73
The population number of each estimated diffusion coverage community is extracted, and then the population number is matched with the number of the expected demand emergency personnel corresponding to the predefined population number intervals of each estimated diffusion coverage community, so that the number of the expected demand emergency personnel corresponding to each estimated diffusion coverage community is obtained
Figure SMS_74
Calculating the emergency personnel complete index of each estimated diffusion coverage community through comparison, and marking as
Figure SMS_75
Further, the emergency personnel complete index of each estimated diffusion coverage community
Figure SMS_76
The specific expression of (2) is:
Figure SMS_77
wherein->
Figure SMS_78
And (5) compensating the correction factors for the complete corresponding emergency personnel number.
In the specific embodiment of the invention, the emergency personnel complete indexes of each estimated diffusion coverage community are calculated by comparison, so that more powerful data support can be provided for the allocation of human resources to the estimated diffusion coverage area of the specified public event in the later period, the attention to the allocation of the human resources is effectively improved through the allocation analysis of the human resources, the reasonable management and scheduling of the human resources can be carried out when the emergency public health event occurs, further the orderly management and allocation of the emergency object resources are facilitated, the phenomenon that the emergency resources are excessive in some areas and insufficient in other areas is effectively reduced, the coordination management and allocation level of the emergency object resources can be ensured, and the timeliness of emergency response to the public health event is improved.
The comprehensive management scheduling center is used for screening the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community, and further carrying out object resource allocation and manpower resource allocation on the estimated diffusion coverage area of the specified public event.
Specifically, the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community is screened, and the specific process is as follows: the occupied area corresponding to each estimated diffusion coverage community is extracted from the information allocation management library, and then the occupied area is matched with the number of the reference adaptive object resource distribution points of various occupied area intervals corresponding to the predefined communities, so that the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community is obtained.
It should be further explained that the specific implementation steps of allocating object resources and allocating human resources for the predicted diffusion coverage area of the specified public event are as follows: (1) object resource allocation: s1: according to the screened estimated diffusion coverage communities, a certain estimated diffusion coverage community is screened from the estimated diffusion coverage communities to serve as an example, the estimated diffusion coverage communities are marked as estimated example diffusion coverage communities, a certain appointed basic emergency resource is screened to serve as reference basic emergency resource, the suitability index of the appointed basic emergency resource of each emergency resource station belonging to the target city for the estimated example diffusion coverage communities is further extracted based on the suitability index of the appointed basic emergency resource of each emergency resource station belonging to the target city for the estimated example diffusion coverage communities, the suitability indexes of the reference basic emergency resource of each emergency resource station belonging to the target city for the estimated example diffusion coverage communities are sequentially arranged according to the order from high to low, and then the emergency resource stations belonging to the target city with the first ranking of the suitability indexes of the reference basic emergency resource resources for the estimated example diffusion coverage communities are extracted and marked as the suitable emergency resource taking stations of the reference basic emergency resource of the estimated example diffusion coverage communities.
S2: according to the demand of each estimated diffusion coverage community in the specified public event corresponding to each specified basic emergency resource, screening the demand of the estimated example diffusion coverage community in the specified public event corresponding to the reference basic emergency resource, and further calling from the adaptive calling emergency resource station of the reference basic emergency resource of the estimated example diffusion coverage community.
S3: and (3) respectively allocating each appointed basic emergency material resource to each estimated diffusion coverage community according to the analysis modes of the S1 and the S2.
(2) And (3) allocating human resources: comparing the emergency personnel complete indexes of each estimated diffusion coverage community with a set emergency personnel complete index threshold, if the emergency personnel complete index of a certain estimated diffusion coverage community is higher than or equal to the emergency personnel complete index threshold, allocating the estimated diffusion coverage community by the corresponding estimated required emergency personnel quantity, otherwise, recording the estimated diffusion coverage community as personnel requirements to allocate the estimated diffusion coverage community again, allocating the personnel requirements to allocate the number of the deviation personnel between the emergency personnel quantity of the estimated diffusion coverage community and the estimated required emergency personnel quantity again, recording the number of the demand allocation personnel again, and screening each estimated diffusion coverage community with the emergency personnel complete index higher than the emergency personnel complete index threshold according to the nearby principle to allocate the required re-allocation personnel quantity.
The information allocation management library is used for storing the population numbers of communities in the target city, storing the warning increment number of the occurrence interval time of the audience personnel corresponding to the public health event of various properties, storing the warning association population numbers of the public health event of various properties, storing various basic emergency material resource of the public health event of various properties, storing the demand of various basic emergency material resource of the individual personnel corresponding to the number of days of a unit period in the public health event of various properties, and storing the occupation area corresponding to the communities in the target city.
In a specific embodiment of the invention, by providing an emergency resource management system based on urban public health events, the system can carry out the dependent object resource allocation and the manpower resource allocation aiming at the urban public health events, and compared with the prior emergency resource management allocation mode that the urban public health events depend on personnel to carry out subjective decision, the system has the advantages of timeliness and regularity, and can reduce the negative influence caused by factors such as personal cognition deviation, insufficient experience and the like possibly existing due to the subjective decision of the personnel, thereby reducing the occurrence rate of unbalanced and unreasonable emergency resource allocation.
The foregoing is merely illustrative of the structures of this invention and various modifications, additions and substitutions for those skilled in the art of describing particular embodiments without departing from the structures of the invention or exceeding the scope of the invention as defined by the claims.

Claims (9)

1. An emergency resource management system based on urban public health events, comprising:
and the information acquisition module is used for: the public health event generation system is used for recording the public health event which occurs this time as a designated public event, further collecting basic information of the designated public event, and collecting characteristic information of each emergency resource station to which the target city belongs and emergency manpower data to which the target city belongs;
an information preprocessing module: the method comprises the steps of extracting basic information of a specified public event, analyzing a diffusion trend influence index of the specified public event, and dividing the basic information into a predicted diffusion coverage area of the specified public event according to the diffusion trend influence index;
an emergency resource allocation analysis module: the system is used for carrying out emergency resource allocation analysis on specified public events according to the characteristic information and emergency manpower data of each emergency resource station to which the target city belongs, and comprises an object resource allocation analysis unit and a manpower resource allocation analysis unit;
and the comprehensive management scheduling center: the method comprises the steps of screening the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community, and further respectively carrying out object resource allocation and human resource allocation on the estimated diffusion coverage area of the designated public event;
information deployment management library: the method is used for storing the population quantity of communities in a target city, storing the number of alarm growth of the occurrence interval time of units corresponding to audience personnel belonging to public health events of various properties, storing the number of alarm associated population belonging to public health events of various properties, storing various basic emergency material resource belonging to public health events of various properties, storing the demand of various basic emergency material resource corresponding to unit period days in public health events of various properties of single personnel, and storing the occupation area corresponding to communities in the target city.
2. An emergency resource management system based on urban public health events according to claim 1, characterized in that: the basic information of the specified public event comprises event properties, occurrence time points, initial occurrence position points and initial statistics of audience personnel quantity
Figure QLYQS_1
The characteristic information of each emergency resource station to which the target city belongs comprises geographic positions and reserve amounts of each basic emergency resource;
the emergency manpower data of the target city is the number of emergency personnel of each community.
3. An emergency resource management system based on urban public health events according to claim 2, characterized in that: the analysis designates a diffusion trend impact index of a public event, and the specific analysis process is as follows:
according to the occurrence time point of the appointed public event and based on the current monitoring time point, further extracting the occurrence interval duration of the appointed public event
Figure QLYQS_2
And obtaining the accumulated number of audience personnel in the current monitoring time point +.>
Figure QLYQS_3
Preliminary calculation is carried out to obtain the increment quantity of the unit occurrence interval duration corresponding to the audience personnel of the appointed public event, which is recorded as
Figure QLYQS_4
Acquiring a map of a target city, positioning the primary occurrence position point of the specified public event in the map of the target city according to the primary occurrence position point of the specified public event, extracting communities to which the primary occurrence position point of the specified public event belongs, marking the communities as specified reference communities, and screening the population numbers of the specified reference communities from an information allocation management library
Figure QLYQS_5
Dividing the set area to obtain each related adjacent community of the designated reference community, and counting the resident population number of each related adjacent community +.>
Figure QLYQS_6
i is the number of each associated neighbor community, +.>
Figure QLYQS_7
Counting the number of audience members of a designated reference community at a current monitoring time point
Figure QLYQS_8
Further, the audience base diffusion influence factor of the appointed public event is calculated preliminarily>
Figure QLYQS_9
Wherein->
Figure QLYQS_10
Corresponding basic diffusion influence correction values for preset audience;
according to the warning increment quantity of the unit occurrence interval duration corresponding to the public health event belonging to the audience of various properties stored in the information allocation management library, according to the event property of the appointed public event, screening to obtain the warning increment quantity of the unit occurrence interval duration corresponding to the audience of the appointed public event
Figure QLYQS_11
Similarly, screening alert associated population count for specified public event +.>
Figure QLYQS_12
Calculating the diffusion trend impact index of the specified public event according to the above, and marking as +.>
Figure QLYQS_13
4. A municipal public health event based emergency resource management system according to claim 3, wherein: the diffusion trend of the specified public event influences the index
Figure QLYQS_14
The specific expression of (2) is:
Figure QLYQS_15
wherein->
Figure QLYQS_16
、/>
Figure QLYQS_17
And->
Figure QLYQS_18
And the weight occupation ratio is assessed for the diffusion trend influence corresponding to the set audience increment number, the associated population number and the audience basic diffusion influence factor respectively, and e is a natural constant.
5. An emergency resource management system based on urban public health events according to claim 2, characterized in that: the object resource allocation analysis unit is used for allocating and analyzing object resources for the appointed public event, and the specific process is as follows:
based on event properties of the appointed public event, matching with various basic emergency material resources of the public health event with various properties stored in the information allocation management library to obtain various basic emergency material resources of the appointed public event, and screening the demand of various basic emergency material resources of a single person in the appointed public event, wherein the various basic emergency material resources correspond to unit period days;
screening and designating all communities in the predicted diffusion coverage area of the public event in the map of the target city, and calibrating the communities as all predicted diffusion coverage communities; calibrating various basic emergency material resources to which the specified public event belongs as various specified basic emergency material resources, simultaneously counting the population number of each estimated diffusion coverage community according to the number of the set management reference period days, and further obtaining the demand of each estimated diffusion coverage community corresponding to each specified basic emergency material resource in the specified public event through data processing
Figure QLYQS_19
J is the number of each appointed basic emergency material resource, < ->
Figure QLYQS_20
D is the number of each estimated diffusion coverage community,/-for>
Figure QLYQS_21
According to the reserve of each basic emergency resource of each emergency resource station of the target city, the reserve of each appointed basic emergency resource of each emergency resource station of the target city is screened and counted
Figure QLYQS_22
G is the number of each emergency resource station, < ->
Figure QLYQS_23
Based on the geographic position of each emergency resource station of the target city, the geographic position of each estimated diffusion coverage community is obtained, and the reference transmission distance of each emergency resource station of the target city to each estimated diffusion coverage community is extracted
Figure QLYQS_24
Calculating the suitability index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community
Figure QLYQS_25
6. The urban public health event-based emergency resource management system according to claim 5, wherein: the specific expression of the suitable index of each appointed basic emergency resource of each emergency resource station of the target city to each estimated diffusion coverage community is as follows:
Figure QLYQS_26
wherein->
Figure QLYQS_27
For presetting the appropriate influencing factor of the corresponding unit transmission distance of the emergency resource station, +.>
Figure QLYQS_28
And->
Figure QLYQS_29
And respectively obtaining the basic emergency resource reserve quantity of the preset emergency resource station and the proper weight factor corresponding to the transmission interval.
7. The urban public health event-based emergency resource management system according to claim 5, wherein: the human resource allocation analysis unit is used for allocating and analyzing human resources for the appointed public event, and the specific process is as follows:
according to the number of emergency personnel of each community of the target city, screening the number of emergency personnel of each estimated diffusion coverage community
Figure QLYQS_30
The population number of each estimated diffusion coverage community is extracted, and then the population number is matched with the number of the expected demand emergency personnel corresponding to the predefined population number intervals of each estimated diffusion coverage community, so that the number of the expected demand emergency personnel corresponding to each estimated diffusion coverage community is obtained
Figure QLYQS_31
Calculating the emergency personnel complete index of each estimated diffusion coverage community through comparison, and marking as
Figure QLYQS_32
8. The urban public health event-based emergency resource management system according to claim 7, wherein: the emergency personnel complete index of each estimated diffusion coverage community
Figure QLYQS_33
The specific expression of (2) is: />
Figure QLYQS_34
The method comprises the steps of carrying out a first treatment on the surface of the Wherein->
Figure QLYQS_35
And (5) compensating the correction factors for the complete corresponding emergency personnel number.
9. An emergency resource management system based on urban public health events according to claim 1, characterized in that: the number of the resource distribution points of the reference adaptation object of each estimated diffusion coverage community is screened, and the specific process is as follows: the occupied area corresponding to each estimated diffusion coverage community is extracted from the information allocation management library, and then the occupied area is matched with the number of the reference adaptive object resource distribution points of various occupied area intervals corresponding to the predefined communities, so that the number of the reference adaptive object resource distribution points of each estimated diffusion coverage community is obtained.
CN202310530033.6A 2023-05-12 2023-05-12 Emergency resource management system based on urban public health event Active CN116362519B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202310530033.6A CN116362519B (en) 2023-05-12 2023-05-12 Emergency resource management system based on urban public health event

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202310530033.6A CN116362519B (en) 2023-05-12 2023-05-12 Emergency resource management system based on urban public health event

Publications (2)

Publication Number Publication Date
CN116362519A true CN116362519A (en) 2023-06-30
CN116362519B CN116362519B (en) 2023-08-15

Family

ID=86909953

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202310530033.6A Active CN116362519B (en) 2023-05-12 2023-05-12 Emergency resource management system based on urban public health event

Country Status (1)

Country Link
CN (1) CN116362519B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116644869A (en) * 2023-07-27 2023-08-25 中南大学湘雅医院 Real-time data analysis and public health event prediction system

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103942743A (en) * 2014-05-09 2014-07-23 东南大学 Full-lifecycle-based public emergency information management system
CN111403046A (en) * 2020-03-16 2020-07-10 湖北亲缘互联传承网络有限公司 Monitoring tracking and grading adaptation system and method for early public health discovery
CN112530559A (en) * 2020-11-09 2021-03-19 河北工程大学 Intelligent medical material allocation system for sudden public health event
CN112561341A (en) * 2020-12-18 2021-03-26 创意信息技术股份有限公司 Multi-element dynamic cooperative disposal system for urban disasters
CN114519521A (en) * 2022-02-17 2022-05-20 平安国际智慧城市科技股份有限公司 Resource scheduling method and device, computer equipment and storage medium
CN114723133A (en) * 2022-04-07 2022-07-08 华北科技学院(中国煤矿安全技术培训中心) City emergency early warning and evacuation command method and system under emergency
CN115169867A (en) * 2022-06-30 2022-10-11 宁夏回族自治区人民医院(宁夏眼科医院、西北民族大学第一附属医院) Emergency resource allocation method and system in sudden public health event
CN115424710A (en) * 2022-08-22 2022-12-02 东南大学 Infectious disease medical material distribution method

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103942743A (en) * 2014-05-09 2014-07-23 东南大学 Full-lifecycle-based public emergency information management system
CN111403046A (en) * 2020-03-16 2020-07-10 湖北亲缘互联传承网络有限公司 Monitoring tracking and grading adaptation system and method for early public health discovery
CN112530559A (en) * 2020-11-09 2021-03-19 河北工程大学 Intelligent medical material allocation system for sudden public health event
CN112561341A (en) * 2020-12-18 2021-03-26 创意信息技术股份有限公司 Multi-element dynamic cooperative disposal system for urban disasters
CN114519521A (en) * 2022-02-17 2022-05-20 平安国际智慧城市科技股份有限公司 Resource scheduling method and device, computer equipment and storage medium
CN114723133A (en) * 2022-04-07 2022-07-08 华北科技学院(中国煤矿安全技术培训中心) City emergency early warning and evacuation command method and system under emergency
CN115169867A (en) * 2022-06-30 2022-10-11 宁夏回族自治区人民医院(宁夏眼科医院、西北民族大学第一附属医院) Emergency resource allocation method and system in sudden public health event
CN115424710A (en) * 2022-08-22 2022-12-02 东南大学 Infectious disease medical material distribution method

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
柴微涛;宋述军;: "基于WebGIS构建突发公共卫生事件应急指挥系统――以成都市为例", 资源开发与市场, no. 09, pages 821 - 824 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116644869A (en) * 2023-07-27 2023-08-25 中南大学湘雅医院 Real-time data analysis and public health event prediction system
CN116644869B (en) * 2023-07-27 2023-11-10 中南大学湘雅医院 Real-time data analysis and public health event prediction system

Also Published As

Publication number Publication date
CN116362519B (en) 2023-08-15

Similar Documents

Publication Publication Date Title
CN116362519B (en) Emergency resource management system based on urban public health event
CN101547449B (en) Frequency sweep and mobile phone measurement report-based method for automatic frequency optimization
CN102097004B (en) Mobile phone positioning data-based traveling origin-destination (OD) matrix acquisition method
CN102395136B (en) Telephone traffic distribution calculation method based on neighbor cell field intensity information and system thereof
Ghosh et al. Modeling and validation of channel idleness and spectrum availability for cognitive networks
CN106301984A (en) A kind of mobile communications network capacity prediction methods and device
CN103634807B (en) WIFI data hotspot cell data monitoring method and WLAN deployment ordering method and device
CN105163344A (en) Method for positioning TD-LTE intra-system interference
CN106817708B (en) A kind of inspection cluster construction method and device
CN111754135A (en) Regional development index calculation method applied to rural planning
CN106470399A (en) The method and system of semi-continuous scheduling reactivation in cluster multi call business
CN108243429B (en) Network coverage detection method and system for indoor distribution system
CN112700114A (en) Automatic event allocation scheduling method and system
CN114692962A (en) Charging infrastructure satisfaction degree evaluation method and system based on big data
CN109951828A (en) It is a kind of social activity sensing network in D2D multicast video transmission method for channel allocation
CN112862278A (en) DEA-Malmquist analysis-based method and system for analyzing urban management resource investment management efficiency
CN112465346A (en) Smart city garbage classification system and method
CN107846614A (en) A kind of video flow dispatching method, device, electronic equipment and storage medium
Chen et al. Trunked radio systems: traffic prediction based on user clusters
Niccolai et al. A gis-based approach for optimal electric vehicles charging stations deployment
CN106817691A (en) A kind of PCI distribution method and device
CN115955698A (en) 5G network slicing system based on smart power grid
CN113611150B (en) Parking space reservation and allocation method based on LoRa intelligent parking system
CN108495318A (en) Multiple cell PCI Intelligent planning methods based on MR data
CN112566030B (en) Mobile phone signaling data-based residence double-period identification method and application

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of invention: An Emergency Resource Management System Based on Urban Public Health Incidents

Granted publication date: 20230815

Pledgee: Agricultural Bank of China Limited Baoding Technology Branch

Pledgor: HEBEI GOLDEN LOCK SAFETY ENGINEERING Co.,Ltd.

Registration number: Y2024980007684

PE01 Entry into force of the registration of the contract for pledge of patent right