CN112288601A - Scenic spot management method, scenic spot management device and storage medium - Google Patents
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Abstract
The application discloses a scenic spot management method, a scenic spot management device and a storage medium, which are applied to electronic equipment and used for acquiring first position information of a user; judging whether the user is in a dangerous area or not according to the first position information; when the user is in a dangerous area, determining the target duration of the user in the dangerous area, and judging the dangerous state grade according to the target duration; when the dangerous state grade is a first-grade dangerous state grade, playing a first prompt voice; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user. By adopting the embodiment of the application, whether the tourist is in the dangerous area or not and the duration of the dangerous area can be obtained through obtaining, the current dangerous grade state is judged, corresponding emergency measures are taken, the tourist is timely reminded to ensure the safety of the tourist, and the cost of traditional manual inspection in the scenic spot can be reduced.
Description
Technical Field
The present application relates to the field of tourism management technologies, and in particular, to a scenic spot management method, device and storage medium.
Background
Tourism has become the core industry for many cities, each attracting many tourists through featured scenic spots. When tourists enjoy beautiful scenery in scenic spots, personal danger is caused by the frequent occurrence of mistaken entry into dangerous areas or undeveloped areas in the scenic spots. At present, the tourists are warned by a method of posting the notice, but some tourists easily ignore the notice to cause avoidable safety accidents. The traditional scenic spot management mode also has a manual patrol method, which needs to ensure that people are everywhere, and the patrol needs great labor cost.
Disclosure of Invention
The embodiment of the application provides a scenic spot management method, a scenic spot management device and a storage medium, whether visitors are in a dangerous area or not can be judged by acquiring position information of the visitors, current dangerous state grades are acquired, and emergency measures responding according to the dangerous state grades are taken to ensure that the visitors can be timely reminded and rescued, so that safety accidents are avoided, and meanwhile, the cost of traditional manual inspection can be reduced.
In a first aspect, an embodiment of the present application provides a scenic spot management method, which is applied to an electronic device, and the method includes:
acquiring first position information of a user;
judging whether the user is in a dangerous area or not according to the first position information;
when the user is in a dangerous area, determining the target duration of the user in the dangerous area;
judging a dangerous state grade according to the target duration, and playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade;
and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
In a second aspect, an embodiment of the present application provides a scenic spot management apparatus, including:
an acquisition unit configured to acquire first location information of a user;
the judging unit is used for judging whether the user is in a dangerous area or not according to the first position information;
the determining unit is used for determining the target duration of the user in the dangerous area when the user is in the dangerous area, and judging the dangerous state grade according to the target duration;
the processing unit is used for prompting a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
In a third aspect, an embodiment of the present application provides an electronic device, including: the device comprises a memory and a processor, wherein the memory is connected with the processor and is used for storing a computer program, and the processor calls the computer program to realize part or all of the steps in the first aspect of the embodiment of the application.
In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, where the computer-readable storage medium stores a computer program for electronic data exchange, where the computer program enables a computer to perform some or all of the steps described in the first aspect of the embodiment of the present application.
In a fifth aspect, embodiments of the present application provide a computer program product, wherein the computer program product comprises a non-transitory computer-readable storage medium storing a computer program, the computer program being operable to cause a computer to perform some or all of the steps as described in the first aspect of embodiments of the present application. The computer program product may be a software installation package.
The embodiment of the application has the following beneficial effects:
it can be seen that the scenic spot management method, apparatus, and storage medium described in the embodiments of the present application are applied to an electronic device, and obtain first location information of a user; judging whether the user is in a dangerous area or not according to the first position information; when the user is in a dangerous area, determining the target duration of the user in the dangerous area; judging a dangerous state grade according to the target duration, and playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user. So, can judge current danger level state through whether being in danger area and the length of time of obtaining being in danger area of acquireing to make corresponding emergency measures, in time remind the visitor to ensure visitor's safety and can reduce the cost of the traditional artifical inspection in scenic spot.
Drawings
In order to more clearly illustrate the embodiments of the present application 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 is obvious that the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic flowchart of a scenic spot management method provided by an embodiment of the present application.
Fig. 2 is a schematic flowchart of another scenic spot management method provided in this example of the present application according to an embodiment of the present application.
Fig. 3 is a schematic structural diagram of an electronic device according to an embodiment of the present application.
Fig. 4 is a block diagram of functional units of a scenic spot management apparatus according to an embodiment of the present application.
Detailed Description
In order to better understand the scheme of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all embodiments. 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 application.
The words "first", "second", etc. used in the description and claims of this application and in the drawings described above are used for distinguishing between different objects and not necessarily for describing a particular sequential order. Furthermore, the terms "include" and "have," as well as any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, article, or apparatus that comprises a list of steps or elements is not limited to only those steps or elements listed, but may alternatively include other steps or elements not listed, or inherent to such process, method, article, or apparatus.
Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. It is explicitly and implicitly understood by one skilled in the art that the embodiments described herein can be combined with other embodiments.
The electronic device according to the embodiment of the present application may include various handheld devices (such as a mobile phone, a tablet computer, a POS machine, etc.) having a wireless communication function, a desktop computer, an in-vehicle device, a wearable device (a smart watch, a smart bracelet, a wireless headset, an augmented reality/virtual reality device, smart glasses), an AI robot, a computing device, or other processing devices connected to a wireless modem, and various forms of User Equipment (UE), a Mobile Station (MS), a terminal device (terminal device), etc. For convenience of description, the above-mentioned devices are collectively referred to as electronic devices.
The embodiments of the present application will be described in detail below with reference to the accompanying drawings.
Referring to fig. 1, fig. 1 is a schematic flowchart of a scenic spot management method provided in an embodiment of the present application, and as shown in the drawing, the scenic spot management method is applied to an electronic device, and includes:
101. first position information of a user is acquired.
Specifically, in the scenic spot management, the user may be a visitor, and the location information of the user is acquired through an electronic device carried by the visitor. When the tourist enters the tourist attraction, the tourist can access and register at the entrance of the attraction by utilizing the attraction APP, and the personal identity information is bound to perform identity authentication and identification. By binding personal information and authorizing position information, the position information corresponding to the tourists can be directly obtained.
The geographic location information may include location coordinates and identity information of a corresponding user, and the identity information may include at least one of the following: name, age, identification number, cell phone number, home address, gender, occupation, etc., without limitation.
102. And judging whether the user is in a dangerous area or not according to the first position information.
Specifically, when the electronic device obtains the current location information of the user, the current location information may be analyzed, and whether the user is in the dangerous area is determined according to an analysis result. The specific analysis and judgment process may include the following steps:
and S21, acquiring scenic spot map information.
And S22, determining a dangerous area on the scenic spot map information, and acquiring the edge of the dangerous area.
S23, determining the distance between the user and the edge of the dangerous area according to the position information of the user, and judging whether the user is in the dangerous area according to the distance.
In the embodiment of the present application, the dangerous area may be preset, for example, may be determined by a scenic spot manager, and the dangerous area may be presented on a scenic spot map, for example, a cliff, a deep lake, an undeveloped area, a dangerous building, and the like may be determined as the dangerous area. After the dangerous area is determined, the edge of the dangerous area is marked off in the scenic spot map in the server, the dangerous area can be updated in real time, and the situation that the dangerous area formed by emergency cannot inform visitors in time to cause safety accidents is avoided. The electronic equipment firstly acquires map information of a scenic spot from the server, acquires the edge of a dangerous area from the map, then calculates the distance between the user and the edge of the dangerous area, and judges whether the user is in the range of the dangerous area according to the distance.
In a specific implementation, in step S23, when determining the distance between the guest and the edge of the dangerous area based on the position information of the user, the distance may be calculated using the coordinates. The specific calculation steps are as follows:
s231, in the scenic spot area, a mark place or a building can be selected as a coordinate origin;
s232, acquiring the geographic position coordinates of the user and all coordinates of the edge of the dangerous area;
s233, calculating all distance values between the geographic position of the user and the edge of the dangerous area;
s234, taking the minimum value of all the distance values as the distance between the user and the dangerous area;
s235, when the distance between the user and the dangerous area is smaller than a preset distance threshold value, judging that the user is in the dangerous area.
The distance threshold is set by a scenic spot manager or defaulted by a system, and the scenic spot manager can modify the distance threshold at any time according to conditions such as weather and the like to ensure that the user has a sufficient safety distance with the dangerous area.
In a possible embodiment, after acquiring the first location information of the user in step 101 and before determining whether the user is in the dangerous area according to the first location information in step 102, the method may further include the following steps:
a1, determining the number of people in a preset range of the first position information;
a2, when the number of people is smaller than a preset threshold value, executing the step of judging whether the user is in a dangerous area according to the first position information.
In the embodiment, the preset range and the preset threshold value can be set by system defaults or by a scenic spot manager in advance, the number of people around the position where the user is located is calculated and determined, and then the number of people is compared with the preset number of people threshold value, when the number of people is smaller than the preset threshold value, the user can be regarded as being in an unassisted state, and under the condition, the step of judging whether the user is in a dangerous area or not according to the first position information can be executed, so that the personal safety of the user is ensured.
103. And when the user is in the dangerous area, determining the target duration of the user in the dangerous area, and judging the dangerous state grade according to the target duration.
Specifically, when the electronic device determines that the user has entered the dangerous area through the above steps, the current state needs to be determined according to the time length that the user is in the dangerous area, for example, in the case that the user enters the dangerous area by mistake in a short time and can leave the dangerous area immediately, the user only needs to be reminded and does not need to be notified to a scenic spot manager for protection and viewing. In addition, the danger level status is also related to the current environment, and different environments have different effects on different dangerous areas.
Therefore, the multi-level dangerous state grades are set according to various possible conditions, the current dangerous state grade is determined according to the time length of the user in the dangerous area and the current environmental factors, different emergency management measures are set for different dangerous state grades, the safety of tourists can be effectively guaranteed, and the traditional manual patrol cost of people in real time and everywhere can be reduced.
Therefore, in step 103, when the user is in the dangerous area, determining a target duration of the user in the dangerous area, and determining a dangerous state grade according to the target duration, may include the following steps:
s31, determining an initial dangerous state value corresponding to the target duration according to a mapping relation between preset duration and a dangerous state value;
s32, acquiring target environment parameters;
s33, determining a target influence factor corresponding to the target environment parameter according to a mapping relation between preset environment parameters and the influence factors;
s34, adjusting the initial dangerous state value according to the target influence factor to obtain a target dangerous state value;
s35, determining a target dangerous state grade corresponding to the target dangerous state value according to a mapping relation between a preset dangerous state value and the dangerous state grade.
The environmental parameters may include rainfall, temperature, humidity, wind power, wind direction, and the like. In a specific implementation process, the electronic equipment determines an initial dangerous state value through the duration of the user in a dangerous area; then acquiring environmental parameters around the user, and determining a target influence factor corresponding to the target environmental parameter according to a preset mapping relation between the environmental parameters and the influence factors; adjusting the initial dangerous state value according to the obtained target influence factor to obtain a final dangerous state value; and determining a target dangerous state grade corresponding to the target dangerous state value according to a preset mapping relation between the dangerous state value and the dangerous state grade.
In a possible embodiment, the step S31 of determining the initial dangerous state value corresponding to the target duration according to the mapping relationship between the preset duration and the dangerous state value may include the following steps:
s311, setting a critical threshold T, a first threshold T0 and a second threshold T1;
s312, when the user enters a dangerous area, starting a timer, and recording time as t;
s313, when the time T is less than the critical threshold value T, the dangerous state is not triggered, namely the initial dangerous state value can be set to be 0;
s314, when the time T is larger than a first threshold value T0 and smaller than a second threshold value T1, setting the initial dangerous state value as a first initial dangerous state value;
s315, when the time T is larger than a second threshold value T1, setting the initial dangerous state value as a second initial dangerous state value;
the critical threshold T, the first threshold T0, and the second threshold T1 are set by the system of the scenic spot manager, and can be changed at any time according to the actual situation, for example, all the thresholds can be reduced in heavy fog days and heavy rain days. In addition, the first initial state value and the second initial state value may also be set by default, and it is required to ensure that the second initial state value is greater than the first initial state value.
In specific implementation, when the electronic device determines that the user enters the range of the dangerous area, the timer is started immediately, the time length T of the user in the dangerous area is recorded from 0, and when the user is far away from the range of the dangerous area, the timing is stopped. Whether the user mistakenly enters the dangerous area and is timely and safely away from the dangerous area is judged by setting a critical threshold value T. In this case, there is no need to initiate an emergency mechanism.
In one possible embodiment, the hazardous condition level may be provided in two levels, one hazardous condition and two hazardous conditions. In the present embodiment, the following steps 104 and 105 are performed.
104. And when the dangerous state grade is a first-grade dangerous state, playing a first prompt voice.
The first prompt voice may be set by a default of the system or by a scenic spot administrator, for example, the first prompt voice may be set as: you have stepped into the danger area and please leave it right away! Etc. for prompting the user that the user is currently in the hazardous area.
In a specific implementation, when the electronic device determines that the current dangerous state is the first-level dangerous state through step 103, playing the first prompt voice may include the following steps:
s41, selecting a reference point in the dangerous area;
s42, determining the first position information and the target distance between the reference points;
s43, determining a first playing parameter corresponding to the target distance according to a mapping relation between a preset distance and the playing parameter;
s44, playing the first prompt voice according to the first playing parameter.
The first playing parameter may include playing volume, playing frequency, and the like, and the electronic device may preset an initial first playing parameter, and then change and determine the first playing parameter according to a change of the target distance. In the specific implementation process, the electronic equipment firstly selects a reference point in the dangerous area, and then calculates the distance between the user and the reference point according to the first position information. After the distance between the user and the reference point is obtained, the specific numerical value of the first playing parameter is determined according to the mapping relation between the preset distance in the electronic equipment and the playing parameter. And setting the specific volume and frequency of the first prompt voice according to the obtained first playing parameter value.
When the electronic device selects the reference point, different selection modes are provided for different dangerous area division rules of the scenic spot, for example, in a scenic spot map divided by the dangerous area rules, for example, the dangerous area is divided into regular circles or rectangles, and the center coordinates of the dangerous area can be directly obtained to be used as a direct reference point for calculating the distance; in the map of the scene with irregular dangerous area division, the edge of the dangerous area is irregular, the central point is difficult to confirm, and then a reference point can be selected by directly utilizing the edge abscissa or ordinate of the dangerous area.
In one possible embodiment, the first prompting voice may be presented in the form of a notification display reminder, a mobile device vibration reminder, or the like. For example, in a scenic spot that needs to be kept quiet, the use of a cue voice may cause the viewing experience of itself and other guests to be noisy. Under the condition, the reminding mode in the scenic spot management method can be replaced by a method of reminding the user through a short message and waking up the vibration mode of mobile electronic equipment such as a mobile phone of the user, so that the user is quietly and effectively reminded of paying attention to the safety of the user, and the overall visual perception of visitors in the scenic spot is improved.
105. And when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
The second prompt voice may be set by a default of the system or by a scenic spot administrator, for example, the second prompt voice may be set as: you have been long stepping into a dangerous area with a great safety risk, please leave right away! If help is required to ask for help immediately! And the like for warning the user of great safety hazards.
In specific implementation, when the electronic device changes the dangerous state from the first-level dangerous state to the second-level dangerous state according to the duration of the user in the dangerous area, playing the second prompt voice may include the following steps:
s51, determining a target adjusting parameter corresponding to the target duration according to a mapping relation between preset duration and the adjusting parameter;
s52, adjusting the first playing parameter according to the target adjusting parameter to obtain a second playing parameter;
and S53, playing the second prompt voice according to the second playing parameter.
In the specific implementation, when the time that the user is in the dangerous area continuously increases, the dangerous state grade changes, at this time, the electronic device determines the adjustment parameter corresponding to the duration according to the mapping relationship between the preset duration and the adjustment parameter, adjusts according to the adjustment parameter on the basis of the first playing parameter to obtain the second playing parameter, and then plays the second prompt voice according to the second playing parameter.
In one possible embodiment, the change of the second prompt voice after adjustment from the first prompt voice may be embodied as: the playing volume of the prompt voice is increased, the playing frequency of the prompt voice is accelerated, and the playing content of the prompt voice is replaced.
In a possible embodiment, notifying the manager closest to the user in step 105 may include:
b1, acquiring all routes of the user and all management machines;
b2, determining the distance lengths of all the routes, taking the minimum distance length value, and selecting the management machine with the minimum distance length value as the management machine closest to the user;
and B3, sending notification information to the management machine.
The notification information includes first location information, a risk level, a user's attention, and the like. Wherein the first location information is used to convey a current location of the user; the dangerous state grade is used for making corresponding emergency rescue measures; the user's attention items refer to the attention items input by the user when the user binds personal identity information, for example, the attention items have heart diseases or have scarce blood types, and the corresponding attention items are sent to the management machine together so as to be capable of making corresponding rescue measures and the like according to the situation in time.
In the specific implementation process, a plurality of managers are simultaneously configured in the scenic spot range, and each manager is provided with one worker. The electronic equipment firstly acquires the routes of a user and all management machines, wherein the routes are not straight routes, but arrival routes, namely walking routes, and the straight distance is not directly calculated. Because calculating the linear distance causes great deviation to an actual route, if the linear distance is adopted for calculation when a user needs to be rescued, a notified management machine is not the management machine which can be reached at the fastest speed, and the safety risk is increased. After all the routes are acquired, the distance lengths of all the routes are calculated, the minimum distance length is obtained through comparison, management with the minimum distance length is used as a management machine closest to the user, and notification information is sent to the management machine.
For example, in a specific implementation, the embodiments of the present application may be implemented according to the following steps:
1. when a user enters a scenic spot, downloading the scenic spot APP binding user information, filling related notice and the like by the user, completing geographic position authorization and using the user only in the scenic spot;
2. the method comprises the steps that position information of a user is obtained through electronic equipment carried by the user at any time;
3. when a user enters a dangerous area in a scenic spot, starting a timer to record the time length of the user in the dangerous area, determining the current dangerous state grade of the user according to the time length and the current environment state, and setting a primary dangerous state and a secondary dangerous state;
4. when the dangerous state grade is a first-grade dangerous state, determining a first playing parameter according to the position information of the current user, and playing a prompt voice according to the first playing parameter;
5. and when the dangerous state grade is a secondary dangerous state, adjusting the dangerous state grade on the basis of the first playing parameter according to the duration of the current user in the dangerous area to obtain a second playing parameter, playing a prompt voice according to the second playing parameter, and sending the position information of the user, the dangerous state grade and the attention items filled by the user to the nearest management machine around. The user can obtain the help of scenic spot managers through the supervisor, and the scenic spot managers also can monitor the people flow state in the scenic spot through the supervisor, so that the management is facilitated, emergency scheme measures are made, and the like.
It can be seen that the scenic spot management method described in the embodiment of the present application is applied to an electronic device, and acquires first location information of a user; judging whether the user is in a dangerous area or not according to the first position information; when the user is in a dangerous area, determining the target duration of the user in the dangerous area; judging a dangerous state grade according to the target duration, and playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user. So, can judge current danger level state through whether being in danger area and the length of time of obtaining being in danger area of acquireing to make corresponding emergency measures, in time remind the visitor to ensure visitor's safety and can reduce the cost of the traditional artifical inspection in scenic spot.
In one possible embodiment, the scenic spot management method is completed by a matched positioning device and a management machine provided in the scenic spot. Specifically, when a tourist enters a scenic spot, the scenic spot provides each tourist with a positioning device, and personal related information of a user is bound in the positioning device; the positioning device is in communication connection with a management machine in a scenic spot, real-time geographical position information of a user is obtained through the positioning device, the dangerous state grade judging step is executed, communication connection is established with the management machine according to the judging result, and the management machine makes corresponding emergency measures. Meanwhile, the positioning device is provided with a reminding device unit, such as an audio player, and reminds a user through sound; the vibrator reminds the tourists of paying attention in a vibration mode and the like. The device can be represented as any electronic equipment which can be provided with a positioning chip, such as a positioning bracelet, a positioning patch, a positioning wearable device and the like. In this embodiment, the positioning device and the management machine provided in the scenic spot execute the above-mentioned scenic spot management method to obtain the position information of the user, which facilitates the management of the scenic spot. The scenic spot can more directly acquire the current user position, the people flow gathering area and the like through the positioning equipment, so that the safety condition of the scenic spot is controlled at any time, and the problem that the user cannot manage because the user does not have or forgets own mobile equipment is solved.
Referring to fig. 2, fig. 2 is a schematic flowchart of a scenic spot management method provided in an embodiment of the present application, and as shown in the drawing, the scenic spot management method is applied to an electronic device, and includes:
201. acquiring first position information of a user;
202. determining the number of people in a preset range of the first position information;
203. when the number of the people is smaller than a preset threshold value, judging whether the user is in a dangerous area or not according to the first position information;
204. when the user is in a dangerous area, determining the target duration of the user in the dangerous area, and judging the dangerous state grade according to the target duration;
205. when the dangerous state grade is a first-grade dangerous state grade, playing a first prompt voice;
206. and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
The specific implementation manner of the steps 201 to 206 may refer to the description related to the scenic spot management method described in fig. 1, and is not described herein again.
It can be seen that the scenic spot management method described in the embodiment of the present application is applied to an electronic device, obtains first location information of a user, determines the number of people in a preset range where the first location information is located, determines whether the user is in a dangerous area according to the first location information when the number of people is less than a preset threshold, and determines a target duration when the user is in the dangerous area; and judging the dangerous state grade according to the target duration, playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade, playing a second prompt voice when the dangerous state grade is a second-grade dangerous state grade, and informing the supervisor closest to the user. So, can judge current danger level state through whether being in danger area and the length of time of obtaining being in danger area of acquireing to make corresponding emergency measures, in time remind the visitor to ensure visitor's safety and can reduce the cost of the traditional artifical inspection in scenic spot.
In accordance with the foregoing embodiments, please refer to fig. 3, fig. 3 is a schematic structural diagram of an electronic device according to an embodiment of the present application, and as shown in the drawing, the electronic device includes a processor, a memory, a communication interface, and one or more programs, the one or more programs are stored in the memory and configured to be executed by the processor, and in an embodiment of the present application, the programs include instructions for performing the following steps:
acquiring first position information of a user;
judging whether the user is in a dangerous area or not according to the first position information;
when the user is in a dangerous area, determining the target duration of the user in the dangerous area, and judging the dangerous state grade according to the target duration;
when the dangerous state grade is a first-grade dangerous state grade, playing a first prompt voice;
and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
It can be seen that, in the electronic device described in the embodiment of the present application, first location information of a user is obtained; judging whether the user is in a dangerous area or not according to the first position information; when the user is in a dangerous area, determining the target duration of the user in the dangerous area; judging a dangerous state grade according to the target duration, and playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user. So, can judge current danger level state through whether being in danger area and the length of time of obtaining being in danger area of acquireing to make corresponding emergency measures, in time remind the visitor to ensure visitor's safety and can reduce the cost of the traditional artifical inspection in scenic spot.
Optionally, in the aspect of playing the first prompt voice, the program includes instructions for performing the following steps:
selecting a reference point in the dangerous area;
determining the first position information and the target distance between the reference points;
determining a first playing parameter corresponding to the target distance according to a mapping relation between a preset distance and the playing parameter;
and playing the first prompt voice according to the first playing parameter.
Optionally, in the aspect of playing the second prompt voice, the program includes instructions for performing the following steps:
determining a target adjusting parameter corresponding to the target time length according to a mapping relation between preset time length and adjusting parameters;
adjusting the first playing parameter according to the target adjusting parameter to obtain a second playing parameter;
and playing the second prompt voice according to the second playing parameter.
Optionally, in the aspect of determining the dangerous state level according to the target parameter, the program includes instructions for performing the following steps:
determining an initial dangerous state value corresponding to the target duration according to a mapping relation between preset duration and a dangerous state value;
acquiring target environment parameters;
determining a target influence factor corresponding to the target environment parameter according to a mapping relation between a preset environment parameter and the influence factor;
adjusting the initial dangerous state value according to the target influence factor to obtain a target dangerous state value;
and determining a target dangerous state grade corresponding to the target dangerous state value according to a preset mapping relation between the dangerous state value and the dangerous state grade.
Optionally, after the obtaining of the first position information of the user and before the determining, according to the first position information, whether the user is in a dangerous area, the program further includes instructions for performing the following steps:
determining the number of people in a preset range of the first position information;
and when the number of the people is smaller than a preset threshold value, executing the step of judging whether the user is in a dangerous area according to the first position information.
Optionally, in the management machine that notifies the nearest distance to the user, the program further includes instructions for:
and determining a management machine closest to the user, and sending the first position information and the dangerous state grade to the management machine.
Optionally, in the aspect of determining the manager closest to the user, the program further includes instructions for performing the following steps:
acquiring all routes of the user and all management machines;
and determining the distance lengths of all the routes, taking the minimum distance length value, and selecting the management machine with the minimum distance length value as the management machine closest to the user.
The above description has introduced the solution of the embodiment of the present application mainly from the perspective of the method-side implementation process. It is understood that the electronic device comprises corresponding hardware structures and/or software modules for performing the respective functions in order to realize the above-mentioned functions. Those of skill in the art will readily appreciate that the present application is capable of hardware or a combination of hardware and computer software implementing the various illustrative elements and algorithm steps described in connection with the embodiments provided herein. Whether a function is performed as hardware or computer software drives hardware depends upon the particular application and design constraints imposed on the solution. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present application.
In the embodiment of the present application, the electronic device may be divided into the functional units according to the method example, for example, each functional unit may be divided corresponding to each function, or two or more functions may be integrated into one processing unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit. It should be noted that the division of the unit in the embodiment of the present application is schematic, and is only a logic function division, and there may be another division manner in actual implementation.
Fig. 4 is a block diagram showing functional units of a scene management apparatus 400 according to an embodiment of the present application. The scenic spot management apparatus 400, the apparatus comprising: an acquisition unit 401, a judgment unit 402, a determination unit 403, and a processing unit 404, wherein,
the acquiring unit 401 is configured to acquire first location information of a user;
the judging unit 402 is configured to judge whether the user is in a dangerous area according to the first position information;
the determining unit 403 is configured to determine, when the user is in a dangerous area, a target duration of the user in the dangerous area, and determine that the user is in a dangerous state level according to the target duration;
the processing unit 404 is configured to prompt a first prompt voice when the dangerous state level is a first dangerous state level; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
It can be seen that, the scenic spot management apparatus described in the embodiment of the present application obtains first location information of a user; judging whether the user is in a dangerous area or not according to the first position information; when the user is in a dangerous area, determining the target duration of the user in the dangerous area; judging a dangerous state grade according to the target duration, and playing a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user. So, can judge current danger level state through whether being in danger area and the length of time of obtaining being in danger area of acquireing to make corresponding emergency measures, in time remind the visitor to ensure visitor's safety and can reduce the cost of the traditional artifical inspection in scenic spot.
Optionally, in terms of playing the first prompt voice, the processing unit 404 is specifically configured to:
selecting a reference point in the dangerous area;
determining the first position information and the target distance between the reference points;
determining a first playing parameter corresponding to the target distance according to a mapping relation between a preset distance and the playing parameter;
and playing the first prompt voice according to the first playing parameter.
Optionally, in terms of playing the second prompt voice, the processing unit 404 is specifically configured to:
determining a target adjusting parameter corresponding to the target time length according to a mapping relation between preset time length and adjusting parameters;
adjusting the first playing parameter according to the target adjusting parameter to obtain a second playing parameter;
and playing the second prompt voice according to the second playing parameter.
Optionally, in the aspect of determining the dangerous state grade according to the target parameter, the processing unit 404 is specifically configured to:
determining an initial dangerous state value corresponding to the target duration according to a mapping relation between preset duration and a dangerous state value;
acquiring target environment parameters;
determining a target influence factor corresponding to the target environment parameter according to a mapping relation between a preset environment parameter and the influence factor;
adjusting the initial dangerous state value according to the target influence factor to obtain a target dangerous state value;
and determining a target dangerous state grade corresponding to the target dangerous state value according to a preset mapping relation between the dangerous state value and the dangerous state grade.
Optionally, after the obtaining of the first position information of the user and before the determining, according to the first position information, whether the user is in a dangerous area, the determining unit 402 is further configured to:
determining the number of people in a preset range of the first position information;
and when the number of the people is smaller than a preset threshold value, executing the step of judging whether the user is in a dangerous area according to the first position information.
Optionally, in terms of the management machine of which the notification is closest to the user, the processing unit 404 is further configured to:
and determining a management machine closest to the user, and sending the first position information and the dangerous state grade to the management machine.
Optionally, in terms of determining the manager closest to the user, the processing unit 404 is specifically configured to:
acquiring all routes of the user and all management machines;
and determining the distance lengths of all the routes, taking the minimum distance length value, and selecting the management machine with the minimum distance length value as the management machine closest to the user.
It is to be understood that the functions of each program module of the data processing apparatus in this embodiment may be specifically implemented according to the method in the foregoing method embodiment, and the specific implementation process may refer to the relevant description of the foregoing method embodiment, which is not described herein again.
The present embodiment also provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program for electronic data exchange, wherein the computer program causes a computer to execute the embodiments of the present application to implement any one of the methods in the embodiments.
The present embodiment also provides a computer program product, which when run on a computer causes the computer to execute the relevant steps described above to implement any of the methods in the above embodiments.
In addition, embodiments of the present application also provide an apparatus, which may be specifically a chip, a component or a module, and may include a processor and a memory connected to each other; the memory is used for storing computer execution instructions, and when the device runs, the processor can execute the computer execution instructions stored in the memory, so that the chip can execute any one of the methods in the above method embodiments.
The electronic device, the computer storage medium, the computer program product, or the chip provided in this embodiment are all configured to execute the corresponding method provided above, so that the beneficial effects achieved by the electronic device, the computer storage medium, the computer program product, or the chip may refer to the beneficial effects in the corresponding method provided above, and are not described herein again.
Through the description of the above embodiments, those skilled in the art will understand that, for convenience and simplicity of description, only the division of the above functional modules is used as an example, and in practical applications, the above function distribution may be completed by different functional modules as needed, that is, the internal structure of the device may be divided into different functional modules to complete all or part of the above described functions.
In the several embodiments provided in the present application, it should be understood that the disclosed apparatus and method may be implemented in other ways. For example, the above-described embodiments of the apparatus are merely illustrative, and for example, a module or a unit may be divided into only one logic function, and may be implemented in other ways, for example, a plurality of units or components may be combined or integrated into another apparatus, or some features may be omitted, or not executed. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices or units, and may be in an electrical, mechanical or other form.
Units described as separate parts may or may not be physically separate, and parts displayed as units may be one physical unit or a plurality of physical units, may be located in one place, or may be distributed to a plurality of different places. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of the embodiment.
In addition, functional units in the embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit.
The integrated unit, if implemented in the form of a software functional unit and sold or used as a stand-alone product, may be stored in a readable storage medium. Based on such understanding, the technical solutions of the embodiments of the present application may be essentially or partially contributed to by the prior art, or all or part of the technical solutions may be embodied in the form of a software product, where the software product is stored in a storage medium and includes several instructions to enable a device (which may be a single chip, a chip, or the like) or a processor (processor) to execute all or part of the steps of the methods of the embodiments of the present application. And the aforementioned storage medium includes: various media capable of storing program codes, such as a usb disk, a removable hard disk, a Read Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk, or an optical disk.
Those skilled in the art will appreciate that all or part of the steps in the methods of the above embodiments may be implemented by associated hardware instructed by a program, which may be stored in a computer-readable memory, which may include: flash disks, Read-Only memories (ROMs), Random Access Memories (RAMs), magnetic or optical disks, and the like.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and shall be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims (10)
1. A scenic spot management method applied to an electronic device, the method comprising:
acquiring first position information of a user;
judging whether the user is in a dangerous area or not according to the first position information;
when the user is in a dangerous area, determining the target duration of the user in the dangerous area, and judging the dangerous state grade according to the target duration;
when the dangerous state grade is a first-grade dangerous state grade, playing a first prompt voice;
and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
2. The method of claim 1, wherein the playing the first prompt voice comprises:
selecting a reference point in the dangerous area;
determining the first position information and the target distance between the reference points;
determining a first playing parameter corresponding to the target distance according to a mapping relation between a preset distance and the playing parameter;
and playing the first prompt voice according to the first playing parameter.
3. The method according to claim 1 or 2, wherein the playing the second prompt voice comprises:
determining a target adjusting parameter corresponding to the target time length according to a mapping relation between preset time length and adjusting parameters;
adjusting the first playing parameter according to the target adjusting parameter to obtain a second playing parameter;
and playing the second prompt voice according to the second playing parameter.
4. The method according to any one of claims 1-3, wherein said determining a hazardous condition level according to said target duration comprises:
determining an initial dangerous state value corresponding to the target duration according to a mapping relation between preset duration and a dangerous state value;
acquiring target environment parameters;
determining a target influence factor corresponding to the target environment parameter according to a mapping relation between a preset environment parameter and the influence factor;
adjusting the initial dangerous state value according to the target influence factor to obtain a target dangerous state value;
and determining a target dangerous state grade corresponding to the target dangerous state value according to a preset mapping relation between the dangerous state value and the dangerous state grade.
5. The method according to any one of claims 1-4, wherein after said obtaining first location information of a user and before said determining whether said user is in a hazardous area according to said first location information, said method further comprises:
determining the number of people in a preset range of the first position information;
and when the number of the people is smaller than a preset threshold value, executing the step of judging whether the user is in a dangerous area according to the first position information.
6. The method of claim 1, wherein notifying the supervisor closest to the user comprises:
and determining a management machine closest to the user, and sending the first position information and the dangerous state grade to the management machine.
7. The method of claim 6, wherein determining the supervisor closest to the user comprises:
acquiring all routes of the user and all management machines;
and determining the distance lengths of all the routes, taking the minimum distance length value, and selecting the management machine with the minimum distance length value as the management machine closest to the user.
8. A scenic spot management apparatus, comprising:
an acquisition unit configured to acquire first location information of a user;
the judging unit is used for judging whether the user is in a dangerous area or not according to the first position information;
the determining unit is used for determining the target duration of the user in the dangerous area when the user is in the dangerous area, and judging the dangerous state grade according to the target duration;
the processing unit is used for prompting a first prompt voice when the dangerous state grade is a first-grade dangerous state grade; and when the dangerous state grade is a secondary dangerous state grade, playing a second prompt voice and informing the supervisor closest to the user.
9. An electronic device, comprising: a memory coupled to the processor, the memory for storing a computer program, and a processor for invoking the computer program to implement the scenic spot management method of any of claims 1-7.
10. A computer-readable storage medium for storing a computer program for causing a computer to execute the scenic spot management method of any one of claims 1 to 7.
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