CN114358444B - Rescue information processing method and device based on data interface and readable medium - Google Patents

Rescue information processing method and device based on data interface and readable medium Download PDF

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CN114358444B
CN114358444B CN202210234787.2A CN202210234787A CN114358444B CN 114358444 B CN114358444 B CN 114358444B CN 202210234787 A CN202210234787 A CN 202210234787A CN 114358444 B CN114358444 B CN 114358444B
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吴正斌
陈巍
刘跃
窦楠楠
王希淑
安宇航
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Tianjin Zhongke Advanced Technology Industry Co ltd
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Abstract

The invention discloses a rescue information processing method, a device and a readable medium based on a data interface, belonging to the technical field of electronic control and comprising the following steps: the rescue station receives the first data, calculates a first preset value, receives second data and third data sent by a person to be rescued after meeting a first preset condition, and evaluates the rescue difficulty value of the person to be rescued according to the calculated first preset value, second preset value and third preset value; acquiring fourth data, fifth data and sixth data, and evaluating the rescue capacity value of the rescue station according to the calculated fourth preset value, fifth preset value and sixth preset value; if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station meet a second preset condition, the capability of the rescue station is sufficient; and if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station do not meet a second preset condition, indicating that the rescue station ability is insufficient.

Description

Rescue information processing method and device based on data interface and readable medium
Technical Field
The invention relates to the technical field of electronic control, in particular to a rescue information processing method and device based on a data interface and a readable medium.
Background
In recent years, natural disasters such as earthquakes, floods and the like are frequent, and huge disasters can cause large-area collapse of buildings and casualties, destroy basic living goods and materials of people, and easily cause secondary injuries such as diseases and the like. In order to avoid aggravating the situation of the trapped people, the rescue personnel need to timely and accurately master the disaster site and the rescue information of the trapped people, so that the rescue efficiency is improved, and sufficient material support is provided according to the injury condition and the material situation of the trapped people.
In the prior art, when a disaster occurs, disaster information cannot be accurately mastered by rescuers in time, the efficiency of information transmission is low, the injury of wounded persons is easily delayed, the injury information of the wounded persons is not accurately mastered, accurate rescue goods and materials cannot be provided, and therefore the waste of the goods and the personnel is caused.
Therefore, it is an urgent technical problem for those skilled in the art to provide a novel rescue information processing method to quickly and efficiently grasp the rescue information of a person to be rescued and to make a response strategy in time.
Disclosure of Invention
Therefore, the invention provides a rescue information processing method, a device and a readable medium based on a data interface, which aim to solve the problem that support cannot be timely and effectively provided due to inaccurate rescue information mastering in the prior art.
In order to achieve the above purpose, the invention provides the following technical scheme:
according to a first aspect of the present invention, a rescue information processing method based on a data interface is provided, which specifically includes the following steps:
s1: the rescue station receives an access request, determines a first data interface based on identity information, receives first data sent by a person to be rescued through the first data interface, and obtains a first preset value according to the first data and a first preset algorithm, wherein the first preset value represents position information of the person to be rescued;
s2: if the first preset value meets the first preset condition, opening a second data interface, establishing communication connection between the person to be rescued and the rescue site, and receiving second data and third data sent by the person to be rescued; if the first preset value does not meet the first preset condition, opening a third data interface, and sending a support request to a station close to the person to be rescued;
s3: the rescue station obtains a second preset value according to the second data and a second preset algorithm, wherein the second preset value represents the life state information of the person to be rescued; obtaining a third preset value according to the third data and a third preset algorithm, wherein the third preset value represents the demand information of the person to be rescued; evaluating the rescue difficulty value of the person to be rescued according to the first preset value, the second preset value and the third preset value;
s4: the rescue station acquires fourth data, fifth data and sixth data inside the station; obtaining a fourth preset value according to the fourth data and a fourth preset algorithm, wherein the fourth preset value represents material allocation information of the rescue station; obtaining a fifth preset value according to the fifth data and a fifth preset algorithm, wherein the fifth preset value represents personnel information of a rescue station; obtaining a sixth preset value according to the sixth data and a sixth preset algorithm, wherein the sixth preset value represents route planning information of a rescue station; evaluating the rescue capacity value of the rescue station according to the fourth preset value, the fifth preset value and the sixth preset value;
s5: if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station meet a second preset condition, the capability of the rescue station is sufficient; and if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station do not meet a second preset condition, indicating that the rescue station has insufficient ability.
Further, the first preset condition is 0<W1<L;
Wherein, W1And L is a first preset value, and the maximum rescue distance acceptable by the preset rescue station.
Further, the formula for evaluating the rescue difficulty value of the person to be rescued is as follows:
θ1=K1*W1+K2*W2+K3*W3 (1)
wherein, theta1Is the rescue difficulty value of the person to be rescued, W1At a first predetermined value, K1A predetermined weight, W, of a first predetermined value2At a second predetermined value, K2Preset weight, W, of a second preset value3In order to be the third preset value, the first preset value,K3and is a preset weight of a third preset value.
Further, the formula for evaluating the rescue ability value of the rescue station is as follows:
θ2=K4*W4+K5*W5+K6*W6 (2)
wherein, theta2Rescue ability value of a rescue station for a person to be rescued, W4At a fourth preset value, K4Preset weight, W, for a fourth preset value5At a fifth preset value, K5Is a preset weight of a fifth preset value, W6Is a sixth preset value, K6Is a preset weight of a sixth preset value.
Further, a third preset condition is included, and on the basis of the situation that the capacity of the rescue station is insufficient, if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station meet the third preset condition, the rescue station stands by in place, opens a third data interface, and sends a support signal to a nearby rescue station or a rescue master station; and if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station do not meet a third preset condition, reducing the amount of rescue by the rescue station, opening a third data interface, and sending a support signal to nearby rescue stations.
Further, a fourth preset condition is included, based on step S4, if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station satisfy the fourth preset condition, it indicates that the capability of the rescue station is far insufficient and cannot provide support for the rescue station, and a third data interface is opened to send a support signal to a nearby rescue station or a rescue master station.
Further, the second preset condition is θ12
The third preset condition is theta1>2θ2
The fourth preset condition is theta12<0;
Wherein, theta1Is the rescue difficulty value theta of the person to be rescued2To be rescuedThe rescue ability value of the rescue station of the rescuer.
Further, the first preset algorithm is:
W1=ρ+C*δ (3)
wherein, W1The clock error is a first preset value, rho is the distance from the satellite to the rescue station, delta is the clock error of the receiver clock, and C is the clock error times of the receiver clock;
the second preset algorithm is as follows:
W2=1-(f1(a))b (4)
wherein, W2Is a second preset value, f1(a) The function is a second preset function, wherein a represents the injury of the person to be rescued, and b represents the environment of the person to be rescued;
the third preset algorithm is as follows:
Figure GDA0003657563830000041
wherein, W3Is a third preset value, i1Indicates the number of parameters in the third data,
Figure GDA0003657563830000042
in order to be a third preset function of the function,
Figure GDA0003657563830000043
is and is
Figure GDA0003657563830000044
The corresponding preset weight is set according to the weight,
Figure GDA0003657563830000045
according to
Figure GDA0003657563830000046
Determining the influence degree of the state of the person to be rescued,
Figure GDA0003657563830000047
indicating the nth of the third data1A parameter, n1Has a value range of 1 to i1An integer of (d);
the fourth preset algorithm is as follows:
Figure GDA0003657563830000048
wherein, W4Is a fourth preset value, i2Indicates the number of parameters in the fourth data,
Figure GDA0003657563830000049
in order to be the fourth pre-set function,
Figure GDA00036575638300000410
is prepared by reacting with
Figure GDA00036575638300000411
The corresponding preset weight is set according to the weight,
Figure GDA00036575638300000412
according to
Figure GDA00036575638300000413
The importance degree of the rescue is determined,
Figure GDA00036575638300000414
indicates the nth of the fourth data2A parameter, n2Has a value range of 1 to i2An integer of (d);
the fifth preset algorithm is as follows:
Figure GDA00036575638300000415
wherein, W5Is a fifth preset value, i3Indicates the number of parameters in the fifth data,
Figure GDA00036575638300000416
in order to be a fifth preset function of the function,
Figure GDA00036575638300000417
is prepared by reacting with
Figure GDA00036575638300000418
The corresponding preset weight is set to be the weight,
Figure GDA00036575638300000419
according to
Figure GDA00036575638300000420
The corresponding person determines that the person is,
Figure GDA00036575638300000421
indicating the nth of the fifth data3A parameter, n3Has a value range of 1 to i3An integer of (d);
the sixth preset algorithm is as follows:
W6=1-(f6(c))d (8)
wherein, W6Is a sixth preset value, f6(c) C represents the road surface smoothness of the road, and d represents the congestion condition of the road condition;
according to a second aspect of the present invention, there is provided a rescue information processing apparatus based on a data interface, including:
the device comprises a request receiving module, a first sending module and a second sending module, wherein the request receiving module is used for receiving an access request sent by a person to be rescued, and the access request carries identity card information of a requester;
the first data interface determining module is used for determining a first data interface based on the identity information of the person to be rescued and supporting receiving of first data;
the second data interface determining module is used for opening a second data interface and establishing communication connection between the person to be rescued and the rescue station based on the first preset value meeting the first preset condition;
the third data interface determining module is used for opening a third data interface and supporting the sending of a rescue request to other rescue sites based on the fact that the first preset value does not meet the first preset condition or the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue site do not meet the second preset condition;
a memory for storing computer execution instructions;
a processor for executing the computer-executable instructions stored in the memory to enable the device to execute any one of the rescue information processing methods based on the data interface.
According to a third aspect of the present invention, there is provided a computer-readable medium including a program and instructions, when the program or instructions are run on a computer, the rescue information processing method based on a data interface according to any one of the above is implemented.
The invention has the following advantages:
according to the invention, whether the rescue station is the nearest station or not is judged by comparing the first preset conditions, so that a person to be rescued can be supported in time, and delay of rescue time on the way is avoided. If the first preset value does not meet the first preset condition, sending a rescue request to other rescue stations; and if the first preset value meets a first preset condition, receiving other rescue information of the person to be rescued, and evaluating the rescue difficulty value of the person to be rescued according to the first preset value, the second preset value and the third preset value. And simultaneously analyzing the response capability condition inside the rescue station, and evaluating the rescue capability value of the rescue station according to the fourth preset value, the fifth preset value and the sixth preset value. And comparing the rescue difficulty value of the person to be rescued with the rescue ability value of the rescue station through a second preset condition, and judging whether the rescue station has the ability to rescue. The response measures are automatically generated according to the capacity of the rescue station, the analysis time of manual operation is reduced, rescue personnel can quickly implement rescue, precious rescue time is won, and therefore the success rate of rescue actions is greatly improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It should be apparent that the drawings in the following description are merely exemplary, and that other embodiments can be derived from the drawings provided by those of ordinary skill in the art without inventive effort.
The structures, ratios, sizes, and the like shown in the present specification are only used for matching with the contents disclosed in the specification, so as to be understood and read by those skilled in the art, and are not used to limit the conditions that the present invention can be implemented, so that the present invention has no technical significance, and any structural modifications, changes in the ratio relationship, or adjustments of the sizes, without affecting the effects and the achievable by the present invention, should still fall within the range that the technical contents disclosed in the present invention can cover.
FIG. 1 is a flowchart of a method for performing a first predetermined condition screening according to the present invention;
FIG. 2 is a flowchart of a method for evaluating rescue difficulty of a person to be rescued according to the present invention;
FIG. 3 is a flowchart of a method for evaluating rescue ability values of rescue sites according to the present invention;
FIG. 4 is a flowchart of a method for screening the second preset condition and the third preset condition according to the present invention.
Detailed Description
The present invention is described in terms of particular embodiments, other advantages and features of the invention will become apparent to those skilled in the art from the following disclosure, and it is to be understood that the described embodiments are merely exemplary of the invention and that it is not intended to limit the invention to the particular embodiments disclosed. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In a first aspect, an embodiment of the present application provides a rescue information processing method based on a data interface, which specifically includes the following steps:
s1: the method comprises the steps that a person to be rescued sends an access request and rescue information, wherein the access request carries identity card information of a requester, and the identity information refers to identification information bound between the person to be rescued and a rescue site, so that the rescue site can conveniently identify the authenticity of the access request;
the rescue information comprises first data, second data and third data, wherein the first data are satellite positioning information of the person to be rescued, the second data comprise environmental information and injury information of the person to be rescued, and the third data comprise medicine information, food information and clothes information required by the person to be rescued;
the rescue station receives the access request, determines a first data interface based on the identity information, receives first data sent by a person to be rescued through the first data interface, and obtains a first preset value according to the first data and a first preset algorithm, wherein the first preset value represents position information of the person to be rescued;
the first preset algorithm is as follows:
W1=ρ+C*δ (3)
wherein, W1The clock error is a first preset value, rho is the distance from the satellite to the rescue station, delta is the clock error of the receiver clock, and C is the clock error times of the receiver clock.
S2: if the first preset value meets the first preset condition, opening a second data interface, establishing communication connection between the person to be rescued and the rescue site, and receiving second data and third data; if the first preset value does not meet the first preset condition, opening a third data interface, and sending a support request to a station close to the person to be rescued;
the first preset condition is 0<W1<L;
Wherein, W1And L is a first preset value, and the maximum rescue distance acceptable by the preset rescue station.
The farthest distance for timely rescue is set, the nearest rescue station can be conveniently allocated, the nearest rescue station can obtain rescue information in time, a support scheme is quickly generated, and the delay of the optimal rescue time is avoided.
S3: the rescue station obtains a second preset value according to the second data and a second preset algorithm, and the second preset value represents the life state information of the person to be rescued;
the second preset algorithm is
W2=1-(f1(a))b (4)
Wherein, W2Is a second preset value, f1(a) And a represents the injury of the person to be rescued and b represents the environment of the person to be rescued as a second preset function.
The value of a is an integer of 0-3, which represents that the degree of injury of a patient is light, medium and heavy; the value of b is an integer of 1-2, which represents that the environmental conditions around the patient are normal and abnormal.
Obtaining a third preset value according to the third data and a third preset algorithm, wherein the third preset value represents the demand information of the person to be rescued;
the third preset algorithm is
Figure GDA0003657563830000081
Wherein, W3Is a third preset value, i1Indicates the number of parameters in the third data,
Figure GDA0003657563830000082
in order to be a third preset function of the function,
Figure GDA0003657563830000083
is prepared by reacting with
Figure GDA0003657563830000084
The corresponding preset weight is set according to the weight,
Figure GDA0003657563830000085
according to
Figure GDA0003657563830000086
Determining the influence degree of the state of the person to be rescued,
Figure GDA0003657563830000087
representing the nth of the third data1A parameter, n1Has a value range of 1 to i1Is an integer of (1).
Figure GDA0003657563830000088
Medication, food and clothing information representing the patient's needs, respectively. Each piece of information represents a different function equation, and the information is summed to obtain a third preset value.
Evaluating the rescue difficulty value of the person to be rescued according to the first preset value, the second preset value and the third preset value;
the formula for evaluating the rescue difficulty value of the person to be rescued is as follows:
θ1=K1*W1+K2*W2+K3*W3 (1)
wherein, theta1Is the rescue difficulty value of the person to be rescued, W1At a first predetermined value, K1A predetermined weight, W, of a first predetermined value2At a second preset value, K2A preset weight, W, of a second preset value3At a third preset value, K3And is a preset weight of a third preset value.
S4: the rescue station acquires basic information inside the station, wherein the basic information comprises fourth data, fifth data and sixth data, the fourth data is information for medicine preparation and equipment preparation in the station, the fifth data is basic information of staff in the station, and the sixth data is route planning information;
obtaining a fourth preset value according to the fourth data and a fourth preset algorithm, wherein the fourth preset value represents the material allocation information of the rescue station;
the fourth preset algorithm is
Figure GDA0003657563830000089
Wherein, W4Is a fourth preset value, i2Indicates the number of parameters in the fourth data,
Figure GDA0003657563830000091
in order to be the fourth pre-set function,
Figure GDA0003657563830000092
is prepared by reacting with
Figure GDA0003657563830000093
The corresponding preset weight is set according to the weight,
Figure GDA0003657563830000094
according to
Figure GDA0003657563830000095
The importance degree of the rescue is determined,
Figure GDA0003657563830000096
indicates the nth of the fourth data2A parameter, n2Has a value range of 1 to i2Is an integer of (1).
Figure GDA0003657563830000097
Drug compounding and device compounding information representing the patient's needs, respectively. And each piece of information represents a different function equation, and the different function equations are summed to obtain a fourth preset value.
Obtaining a fifth preset value according to the fifth data and a fifth preset algorithm, wherein the fifth preset value represents personnel information of the rescue station;
the fifth preset algorithm is
Figure GDA0003657563830000098
Wherein, W5Is a fifth preset value, i3Indicates the number of parameters in the fifth data,
Figure GDA0003657563830000099
in order to be a fifth preset function of the function,
Figure GDA00036575638300000910
is prepared by reacting with
Figure GDA00036575638300000911
The corresponding preset weight is set according to the weight,
Figure GDA00036575638300000912
according to
Figure GDA00036575638300000913
The corresponding person determines that the person is,
Figure GDA00036575638300000914
indicating the nth of the fifth data3A parameter, n3Has a value range of 1 to i3Is an integer of (1).
Figure GDA00036575638300000915
Respectively, representing the person who needs to move. Each worker has different physical fitness and ability,
Figure GDA00036575638300000916
to represent each person's corresponding exponential function, n3And summing the number of the staff to obtain the total score of the staff at the rescue station.
Obtaining a sixth preset value according to the sixth data and a sixth preset algorithm, wherein the sixth preset value represents route planning information of the rescue station;
the sixth preset algorithm is
W6=1-(f6(c))d (8)
Wherein, W6Is a sixth preset value, f6(c) For the sixth preset function, c represents the road surface smoothness of the road, and d represents the traffic jam.
The value of c is an integer of 0-1, which represents that the road surface is flat and uneven; the value of d is an integer of 1-2, which represents that the road condition is smooth and crowded.
Evaluating the rescue capacity value of the rescue station according to the fourth preset value, the fifth preset value and the sixth preset value;
the formula for evaluating the rescue ability value of the rescue station is as follows:
θ2=K4*W4+K5*W5+K6*W6 (2)
wherein, theta2Rescue ability value of a rescue station for a person to be rescued, W4At a fourth preset value, K4Preset weight, W, for a fourth preset value5At a fifth preset value, K5Preset weight, W, of a fifth preset value6Is a sixth preset value, K6And is a preset weight of the sixth preset value.
S5: the second predetermined condition is θ12
Wherein, theta1Is the rescue difficulty value of the person to be rescued, theta2The rescue ability value of the rescue station of the person to be rescued.
If the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station meet a second preset condition, the capability of the rescue station is sufficient, the person to be rescued can be rescued in a sufficient amount, and the rescue is performed by equally distributing the existing resources and personnel of the rescue station; and if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station do not meet the second preset condition, indicating that the rescue station has insufficient ability.
Based on the condition that the capacity of the rescue station is insufficient, the method further comprises a third preset condition, wherein the third preset condition is theta1>2θ2
Wherein, theta1Is the rescue difficulty value of the person to be rescued, theta2Is the rescue ability value of the rescue station of the person to be rescued.
If the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station meet a third preset condition and indicate that personnel and materials in the rescue station can not support rescue far, the rescue station stands by in situ, a third data interface is opened, a support signal is sent to a nearby rescue station or a rescue master station, and tasks are distributed by the rescue master station or other rescue stations are used for rescue; and if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station do not meet the third preset condition, the rescue station performs rescue according to the self capacity reduction, reserve materials are reserved, a third data interface is opened, and a support signal is sent to the nearby rescue station.
After the rescue difficulty value and the rescue ability value are obtained through calculation, the first preset condition is brought into for preliminary screening, sufficient rescue is carried out or next screening is carried out according to the result, when the rescue station capacity is insufficient, different rescue schemes are selected according to the third preset condition, the process is carried out fully automatically, and the time wasted by manual operation is reduced. And response measures are generated according to the capacity of the rescue station, so that the analysis time of manual operation is reduced, rescue personnel can quickly implement rescue, precious rescue time is won, and the success rate of rescue actions is greatly improved.
The method also comprises a fourth preset condition, wherein the fourth preset condition is theta12<0;
Wherein, theta1Is the rescue difficulty value theta of the person to be rescued2The rescue ability value of the rescue station of the person to be rescued.
After the step S4, the calculated rescue difficulty value and rescue ability value may be directly compared with a fourth preset condition, and if the fourth preset condition is satisfied, the step S5 is not needed, so that a process of bringing in the comparison condition is omitted, and the operation time is saved. And if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station meet the fourth preset condition, the situation that the rescue station is far insufficient in capacity and cannot provide support for the rescue station is represented, the third data interface is opened, and a support signal is sent to a nearby rescue station or a rescue master station.
In a second aspect, an embodiment of the present application provides a rescue information processing apparatus based on a data interface, including: the device comprises a request receiving module, a first sending module and a second sending module, wherein the request receiving module is used for receiving an access request sent by a person to be rescued, and the access request carries identity card information of a requester; the first data interface determining module is used for determining a first data interface based on the identity information of the person to be rescued and supporting receiving first data; the second data interface determining module is used for opening a second data interface based on the first preset value meeting the first preset condition, establishing communication connection between a person to be rescued and a rescue site, and acquiring information and inquiring the person to be rescued by utilizing the communication channel; the third data interface determining module is used for opening a third data interface and supporting the sending of a rescue request to other rescue sites based on the fact that the first preset value does not meet the first preset condition or the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue site do not meet the second preset condition;
by using the module, the rescue station receives data in a screening manner, so that a support scheme beneficial to rescue is generated, automatic access to an access party is completed, and a dispatching scheme is automatically generated according to the rescue difficulty and the capability of the rescue station.
Also included are a memory and a processor. A memory for storing computer execution instructions; and the processor is used for executing the computer execution instructions stored in the memory so as to enable the device to execute the rescue information processing method based on the data interface.
In a third aspect, an embodiment of the present application provides a computer-readable medium, which includes a program and instructions, and when the program or the instructions are run on a computer, the rescue information processing method based on a data interface is implemented.
Although the invention has been described in detail above with reference to a general description and specific examples, it will be apparent to one skilled in the art that modifications or improvements may be made thereto based on the invention. Accordingly, such modifications and improvements are intended to be within the scope of the invention as claimed.

Claims (5)

1. A rescue information processing method based on a data interface is characterized by comprising the following steps:
s1: the method comprises the steps that a rescue station receives an access request, determines a first data interface based on identity information, receives first data sent by a person to be rescued through the first data interface, and obtains a first preset value according to the first data and a first preset algorithm, wherein the first preset value represents position information of the person to be rescued;
the first preset algorithm is as follows:
W1=ρ+C*δ (3)
wherein, W1The clock error is a first preset value, rho is the distance from the satellite to the rescue station, delta is the clock error of the receiver clock, and C is the clock error times of the receiver clock;
s2: if the first preset value meets a first preset condition, opening a second data interface, establishing communication connection between the person to be rescued and the rescue site, and receiving second data and third data sent by the person to be rescued; if the first preset value does not meet the first preset condition, opening a third data interface, and sending a support request to a station close to the person to be rescued;
the first preset condition is 0<W1<L;
Wherein, W1The distance L is a first preset value, and L is a preset longest rescue distance of a rescue station;
s3: the rescue station obtains a second preset value according to the second data and a second preset algorithm, wherein the second preset value represents the life state information of the person to be rescued; obtaining a third preset value according to the third data and a third preset algorithm, wherein the third preset value represents the demand information of the person to be rescued; evaluating the rescue difficulty value of the person to be rescued according to the first preset value, the second preset value and the third preset value;
the second preset algorithm is as follows:
W2=1-(f1(a))b (4)
wherein, W2Is a second preset value, f1(a) The function is a second preset function, wherein a represents the injury of the person to be rescued, and b represents the environment of the person to be rescued;
the third preset algorithm is as follows:
Figure FDA0003657563820000011
wherein, W3Is a third preset value, i1Indicates the number of parameters in the third data,
Figure FDA0003657563820000021
in order to be a third preset function of the function,
Figure FDA0003657563820000022
is and is
Figure FDA0003657563820000023
The corresponding preset weight is set to be the weight,
Figure FDA0003657563820000024
according to
Figure FDA0003657563820000025
Determining the influence degree of the state of the person to be rescued,
Figure FDA0003657563820000026
representing the nth of the third data1A parameter, n1Has a value range of 1 to i1An integer of (d);
s4: the rescue station acquires fourth data, fifth data and sixth data inside the station; obtaining a fourth preset value according to the fourth data and a fourth preset algorithm, wherein the fourth preset value represents material allocation information of the rescue station; obtaining a fifth preset value according to the fifth data and a fifth preset algorithm, wherein the fifth preset value represents personnel information of a rescue station; a sixth preset value is obtained according to the sixth data and a sixth preset algorithm, and the sixth preset value represents route planning information of the rescue station; evaluating the rescue capacity value of the rescue station according to the fourth preset value, the fifth preset value and the sixth preset value;
the fourth preset algorithm is as follows:
Figure FDA0003657563820000027
wherein, W4Is a fourth preset value, i2Indicates the number of parameters in the fourth data,
Figure FDA0003657563820000028
in order to be the fourth pre-set function,
Figure FDA0003657563820000029
is prepared by reacting with
Figure FDA00036575638200000210
The corresponding preset weight is set according to the weight,
Figure FDA00036575638200000211
according to
Figure FDA00036575638200000212
The importance degree of the rescue is determined,
Figure FDA00036575638200000213
indicates the nth of the fourth data2A parameter, n2Has a value range of 1 to i2An integer of (d);
the fifth preset algorithm is as follows:
Figure FDA00036575638200000214
wherein, W5Is a fifth preset value, i3Indicates the number of parameters in the fifth data,
Figure FDA00036575638200000215
in order to be a fifth preset function of the function,
Figure FDA00036575638200000216
is prepared by reacting with
Figure FDA00036575638200000217
The corresponding preset weight is set according to the weight,
Figure FDA00036575638200000218
according to
Figure FDA00036575638200000219
The corresponding person determines that the person is,
Figure FDA00036575638200000220
indicates the nth of the fifth data3A parameter, n3Has a value range of 1 to i3An integer of (a);
the sixth preset algorithm is as follows:
W6=1-(f6(c))d (8)
wherein, W6Is a sixth preset value, f6(c) C represents the road surface smoothness of the road, and d represents the congestion condition of the road condition;
s5: if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station meet a second preset condition, the capability of the rescue station is sufficient; if the rescue difficulty value of the person to be rescued and the rescue ability value of the rescue station do not meet a second preset condition, indicating that the rescue station is insufficient in ability;
the second preset condition is theta12
Wherein, theta1Is the rescue difficulty value of the person to be rescued, theta2The rescue ability value of the rescue station of the person to be rescued;
the rescue station is in standby in situ, opens a third data interface and sends a support signal to a nearby rescue station or a rescue master station if the rescue difficulty value of the person to be rescued and the rescue capability value of the rescue station meet the third preset condition based on the condition that the capability of the rescue station is insufficient; if the rescue difficulty value of the person to be rescued and the rescue capacity value of the rescue station do not meet a third preset condition, reducing the rescue amount of the rescue station, opening a third data interface, and sending a support signal to a nearby rescue station;
the third preset condition is theta1>2θ2
Wherein, theta1Is the rescue difficulty value of the person to be rescued, theta2The rescue ability value of the rescue station of the person to be rescued;
the rescue station further comprises a fourth preset condition, and based on the step S4, if the rescue difficulty value of the person to be rescued and the rescue capability value of the rescue station meet the fourth preset condition, the capability of the rescue station is insufficient, the rescue station cannot be supported, a third data interface is opened, and a support signal is sent to a nearby rescue station or a rescue master station;
the fourth preset condition is theta12<0;
Wherein, theta1Is the rescue difficulty value of the person to be rescued, theta2The rescue ability value of the rescue station of the person to be rescued.
2. The rescue information processing method based on the data interface as claimed in claim 1, wherein the formula for evaluating the rescue difficulty value of the person to be rescued is as follows:
θ1=K1*W1+K2*W2+K3*W3 (1)
wherein, theta1Is the rescue difficulty value of the person to be rescued, W1At a first predetermined value, K1A predetermined weight, W, of a first predetermined value2At a second predetermined value, K2A preset weight, W, of a second preset value3At a third preset value, K3And is a preset weight of a third preset value.
3. The rescue information processing method based on the data interface as claimed in claim 1, wherein the formula for evaluating the rescue capability value of the rescue station is as follows:
θ2=K4*W4+K5*W5+K6*W6 (2)
wherein, theta2Rescue ability value of a rescue station for a person to be rescued, W4At a fourth preset value, K4Preset weight, W, for a fourth preset value5At a fifth preset value, K5Is a preset weight of a fifth preset value, W6Is a sixth preset value, K6Is a preset weight of a sixth preset value.
4. A rescue information processing device based on a data interface is characterized by comprising:
the device comprises a request receiving module, a first sending module and a second sending module, wherein the request receiving module is used for receiving an access request sent by a person to be rescued, and the access request carries identity card information of a requester;
the first data interface determining module is used for determining a first data interface based on the identity information of the person to be rescued and supporting receiving of first data;
the second data interface determining module is used for opening a second data interface and establishing communication connection between the person to be rescued and the rescue station based on the first preset value meeting the first preset condition;
the third data interface determining module is used for opening a third data interface and supporting the sending of a rescue request to other rescue stations on the basis that the first preset value does not meet the first preset condition, or the rescue difficulty value of the person to be rescued and the rescue capability value of the rescue station do not meet the second preset condition;
a memory for storing computer execution instructions;
a processor for executing the computer-executable instructions stored by the memory to cause the apparatus to perform the data interface-based rescue information processing method according to any one of claims 1 to 3.
5. A computer-readable medium characterized by comprising a program and instructions, when the program or instructions are run on a computer, the data interface-based rescue information processing method according to any one of claims 1 to 3 is implemented.
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