Internet of Things integrated service management system for smart park
By building a park model, processing site information and recommending high-quality sites in the smart park Internet of Things comprehensive service management system, the problem of difficulty in efficiently recommending office locations in the existing system is solved, and more efficient office location recommendations and managerial personnel efficiency improvements are achieved.
Patent Information
- Application Number
- CN202510032450.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing smart park management system is difficult to efficiently recommend the most suitable office location to the settled enterprises, resulting in inefficient management personnel and poor recommendation results.
Design a smart park IoT comprehensive service management system, through park model construction, site information processing and high-quality site recommendation modules, obtain and evaluate the space value, convenience value and rental price of idle office rooms, recommend the best office location based on the company's intended office area and rental price, and generate a visiting route.
It improves the comprehensive scoring and recommendation efficiency of idle office rooms, enhances the satisfaction of the companies that have settled in, reduces the physical labor and recommendation time of park managers, and optimizes the office location recommendation process.
Smart Images

Figure CN119962823A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of smart management technology, and in particular to a smart park Internet of Things integrated service management system. Background Art
[0002] A smart park is a modern park that uses advanced information technology to deeply integrate cutting-edge technologies such as the Internet of Things, big data, and artificial intelligence. Through intelligent facility management, it can accurately monitor and efficiently control water, electricity, gas and other resources within the park, reducing energy consumption and operating costs. In terms of security, the smart park is equipped with advanced monitoring systems and intelligent security equipment, which can monitor various safety hazards in the park in real time and provide a safe and stable working environment for enterprises and employees. At the same time, the smart park also has an efficient traffic management system to optimize traffic flow within the park and improve travel efficiency. In addition, the smart park provides enterprises with a convenient information service platform to promote exchanges and cooperation between enterprises and enhance the innovation vitality and competitiveness of the entire park.
[0003] When enterprises move into a smart park, since each enterprise has different needs, the park managers need to accompany the prospective enterprise personnel to visit the park and select the most suitable office location. However, the park is large and the vacant rooms are scattered. Therefore, on-site visits are not only inefficient, but it is also difficult for park managers to make targeted recommendations to the settled enterprises based on the needs of the enterprise office location. For this reason, we propose a smart park Internet of Things comprehensive service management system. Summary of the invention
[0004] 1. Technical issues to be resolved In view of the deficiencies in the prior art, the present invention provides a smart park Internet of Things comprehensive service management system to solve the above-mentioned problems in the prior art.
[0005] (II) Technical solution To achieve the above objectives, the present invention is implemented through the following technical solutions: a smart park Internet of Things integrated service management system, including the following modules: The park model building module obtains the park's geographic information, uses GIS to build a park model based on the park's geographic information, obtains the locations of all vacant office rooms, and marks the locations of all vacant office rooms in the park model; The site information processing module obtains the space value of each vacant office room, obtains the convenience value of each vacant office room, obtains the quality coefficient through the space value and convenience value of each vacant office room, obtains the office area of each vacant office room, obtains the rental price of each vacant room, and marks the quality coefficient, office area and rental price of each vacant room in the park model; The high-quality venue recommendation module obtains the intended office area and intended rental price of the settled enterprises, marks the candidate office rooms in the park model according to the intended office area, intended rental price and quality coefficient of the enterprise, obtains the tour route according to the candidate office rooms and the park model, and the management personnel recommend the candidate office rooms to the enterprise personnel according to the tour route and adjust the park model according to the selection results.
[0006] Preferably, the space value of each vacant office room is obtained in the site information processing module, specifically: Step 1: Get the floor number of the vacant office room. If the floor number of the office room is less than or equal to 3, record the floor number of the office room as 5. If the floor number of the office room is greater than 3, determine whether the office room is equipped with an elevator. If the office room is equipped with an elevator, record the floor number of the office room as 10. If the office room is not equipped with an elevator, record the floor number of the office room as 2. Step 2: Obtain the decoration status of the vacant office room, and determine whether the vacant office room can be directly occupied. If the office room can be directly occupied, the decoration status of the office room is recorded as 10; if the office room cannot be directly occupied, the decoration status of the office room is recorded as 2; Step 3: Obtain the lighting direction of the vacant office room, and determine whether the lighting direction of the office room is facing north and south. If the lighting direction of the office room is facing north and south, the lighting direction of the office room is recorded as 10; if the lighting direction of the office room is not facing north and south, the lighting direction of the office room is recorded as 2; Step 4: Obtain the space value of the vacant office room through the floor, decoration and lighting direction of the vacant office room.
[0007] Preferably, the calculation method of the vacant office room space value is as follows: Among them, Kj represents the space value, Lc represents the floor, Zx represents the decoration situation, and Cg represents the lighting direction. , and are weights, , , .
[0008] Preferably, the convenience value of each vacant office room is obtained in the venue information processing module, specifically: Step 1: Obtain the location information of all parking lots in the park, measure the distance from the vacant office room to the entrance of each parking lot to obtain multiple parking reference distances, and sum up all parking distances to obtain the average value to obtain the parking lot distance; Step 2: Obtain the location information of all commercial areas in the park, measure the distance from the vacant office room to the center of each commercial area to obtain multiple commercial area reference distances, and sum up all the commercial area reference distances to obtain the average value to obtain the commercial area distance; Step 3: Get the distance from the vacant office room to the public meeting room on the same floor as the public meeting room distance, get the distance from the vacant office room to the elevator on the same floor as the elevator distance, get the distance from the vacant office room to the stairs on the same floor as the stair distance, and sum the public meeting room distance, stair distance and elevator distance to get the same-floor distance; Step 4: Get the location information of subway stations near the park, get the location information of bus stations near the park, measure the distance from the vacant office room to the subway station as the subway distance, measure the distance from the vacant office room to the bus station as the bus distance, and get the transportation distance by summing the subway distance and the bus distance; Step 5: Obtain the convenience value of the vacant office room through parking distance, commercial area distance, same-floor distance and traffic distance.
[0009] Preferably, the convenience value of the vacant office room is calculated as follows: Among them, Lb represents the convenience value, Tc represents the parking distance, Sy represents the commercial area distance, Tc represents the same-floor distance, and Jt represents the traffic distance. , , and are weights, , , , .
[0010] Preferably, the quality coefficient is calculated in the site information processing module as follows: Among them, Yz represents the quality coefficient, Kj represents the space value, and Lb represents the convenience value. and are weights, , .
[0011] Preferably, in the high-quality site recommendation module, the office rooms to be selected are marked in the park model according to the company's intended office area, intended rental price and quality coefficient, specifically: Step 1: Obtain the intended office area of the enterprise to be settled in, and mark the rooms with office areas greater than or equal to the intended office area of the enterprise in all the vacant office rooms in the park model as first-level qualified rooms; Step 2: Obtain the intended rental price of the settled enterprise, set a preset threshold for price fluctuation, obtain the price peak by summing the intended rental price of the settled enterprise and the preset threshold for price fluctuation, use the intended rental price of the settled enterprise as the price valley and the price peak to obtain the intended price range, and mark the rooms with rental prices within the intended price range among all the first-level qualified rooms as second-level qualified rooms; Step 3: Get the quality coefficients of all the second-level qualified rooms, arrange the quality coefficients of all the second-level qualified rooms in order from small to large, select the room with the smallest quality coefficient among all the second-level qualified rooms as the first room to be viewed, select the room with the middle quality coefficient among all the second-level qualified rooms as the second room to be viewed, select the room with the largest quality coefficient among all the second-level qualified rooms as the third room to be viewed, and take the first room to be viewed, the second room to be viewed and the third room to be viewed as a set of office rooms to be selected.
[0012] Preferably, in the high-quality site recommendation module, a tour route is obtained according to the office rooms to be selected and the park model, specifically: Step 1: Mark the location coordinates of the park manager's office in the park model, mark the location coordinates of the first room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the park manager's office as the starting point and the location coordinates of the first room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as a route; Step 2: Mark the location coordinates of the second room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the first room to be viewed as the starting point and the location coordinates of the second room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as the second route; Step 3: Mark the location coordinates of the third room to be viewed among the selected office rooms in the park model, take the location coordinates of the second room to be viewed as the starting point and the location coordinates of the third room to be viewed as the midpoint to obtain all routes in the park model, measure the distances of all routes and select the shortest one as the three-segment route, and obtain the tour route by combining the first, second and third routes.
[0013] Preferably, in the high-quality venue recommendation module, the management personnel recommend office rooms to be selected to the enterprise personnel according to the tour route and adjust the park model according to the selection results, specifically: Step 1: Obtain the tour route, and the management personnel guide the enterprise personnel to visit the selected office rooms according to the tour route; Step 2: Obtain the contract signing result after the company personnel visit. If the contract signing result is signed, obtain the location coordinates of the signing room, and delete the signed room from the marked vacant office rooms in the park model. If the contract signing result is not signed, establish a visit database, and store the company personnel information and the selected office rooms in the visit database.
[0014] (III) Beneficial effects The present invention provides a smart park Internet of Things integrated service management system, which has the following beneficial effects: (1) In the site information processing module, this solution obtains a quality coefficient through the space value and convenience value of each vacant office room, so as to facilitate the comprehensive scoring of each vacant office room, and then facilitate the subsequent selection of the best and most suitable vacant office room for visiting according to the intended price and office area of the enterprise personnel, which is beneficial to improving the satisfaction of the personnel of the intended enterprises, and is also beneficial for the park management personnel to make targeted site recommendations to the enterprises according to the needs of the enterprises' office locations.
[0015] (2) In the high-quality venue recommendation module, this solution marks the candidate office rooms in the park model based on the company's intended office area, intended rental price and quality coefficient, and then obtains the tour route based on the candidate office rooms and the park model, so that the park management personnel can make targeted venue recommendations to the company personnel according to the tour route, which is helpful for avoiding detours during the on-site visit to the room, thereby improving the efficiency of the company personnel visiting the vacant rooms, saving the park management personnel time for house viewing, and reducing the physical labor and recommendation labor of the park management personnel. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of a smart park Internet of Things integrated service management system of the present invention; Figure 2 This is a flow chart of a smart park Internet of Things integrated service management system of the present invention. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0018] See also Figure 1-Figure 2 The present invention provides a smart park Internet of Things integrated service management system, including the following modules: The park model building module obtains the park's geographic information, uses GIS to build a park model based on the park's geographic information, obtains the locations of all vacant office rooms, and marks the locations of all vacant office rooms in the park model; The site information processing module obtains the space value of each vacant office room, obtains the convenience value of each vacant office room, obtains the quality coefficient through the space value and convenience value of each vacant office room, obtains the office area of each vacant office room, obtains the rental price of each vacant room, and marks the quality coefficient, office area and rental price of each vacant room in the park model; The module for recommending high-quality sites obtains the intended office area and rental price of the enterprises to be settled in, marks the office rooms to be selected in the park model according to the intended office area, rental price and quality coefficient of the enterprises, obtains the tour route according to the office rooms to be selected and the park model, and the management personnel recommend the office rooms to be selected to the enterprise personnel according to the tour route and adjust the park model according to the selection results; The calculation method of the quality coefficient in the site information processing module is as follows: Among them, Yz represents the quality coefficient, Kj represents the space value, and Lb represents the convenience value. and are weights, , .
[0019] In this embodiment, the scheme establishes a park model and marks the location of the vacant office rooms in the park model building module, so that enterprise personnel and managers can understand the location of the vacant office rooms through online visits, which is beneficial to improving the initial understanding of the park by enterprise personnel, and also beneficial to improving the feelings and experience of enterprise personnel before moving in. By establishing the park model, it is also convenient to plan the subsequent tour route; In the site information processing module, this solution obtains a quality coefficient through the space value and convenience value of each vacant office room, so as to facilitate comprehensive scoring of each vacant office room, and then facilitate the subsequent selection of the best and most suitable vacant office room for visiting according to the intended price and office area of the enterprise personnel, which is beneficial to improve the satisfaction of the personnel of the intended enterprises, and also beneficial for the park management personnel to make targeted site recommendations to the settled enterprises according to the needs of the enterprise office location; In the high-quality venue recommendation module, this solution marks the office rooms to be selected in the park model according to the company's intended office area, intended rental price and quality coefficient, and then obtains the tour route based on the office rooms to be selected and the park model, so that the park management personnel can make targeted venue recommendations to the company personnel according to the tour route, which is beneficial to avoid taking a long detour during the on-site visit to check the room, and further helps to improve the efficiency of the company personnel to visit the vacant rooms, and also saves the time for the park management personnel to view the house, reducing the physical labor and recommendation labor of the park management personnel; It is worth mentioning that the weight values in this scheme can be obtained through the hierarchical analysis method, and the value of the preset threshold can be obtained through the weight analysis method, which will not be elaborated here.
[0020] In the site information processing module, the space value of each vacant office room is obtained, specifically: Step 1: Get the floor number of the vacant office room. If the floor number of the office room is less than or equal to 3, record the floor number of the office room as 5. If the floor number of the office room is greater than 3, determine whether the office room is equipped with an elevator. If the office room is equipped with an elevator, record the floor number of the office room as 10. If the office room is not equipped with an elevator, record the floor number of the office room as 2. Step 2: Obtain the decoration status of the vacant office room, and determine whether the vacant office room can be directly occupied. If the office room can be directly occupied, the decoration status of the office room is recorded as 10; if the office room cannot be directly occupied, the decoration status of the office room is recorded as 2; Step 3: Obtain the lighting direction of the vacant office room, and determine whether the lighting direction of the office room is facing north and south. If the lighting direction of the office room is facing north and south, the lighting direction of the office room is recorded as 10; if the lighting direction of the office room is not facing north and south, the lighting direction of the office room is recorded as 2; Step 4: Obtain the space value of the vacant office room by the floor, decoration and lighting direction of the vacant office room; The calculation method of the vacant office room space value is as follows: Among them, Kj represents the space value, Lc represents the floor, Zx represents the decoration situation, and Cg represents the lighting direction. , and are weights, , , .
[0021] In this embodiment, the space value of the vacant office room is obtained by combining the floor, decoration and lighting direction of the vacant office room, so that it is convenient to judge the quality of the vacant office room according to the specific situation of the vacant office room, and then it is convenient to calculate the quality coefficient of the vacant office room, and then it is convenient to select high-quality rooms for recommendation according to the needs of corporate personnel, which is beneficial to improve the visit satisfaction of corporate personnel and is facilitating the settlement of corporate personnel in the park.
[0022] In the venue information processing module, the convenience value of each vacant office room is obtained, specifically: Step 1: Obtain the location information of all parking lots in the park, measure the distance from the vacant office room to the entrance of each parking lot to obtain multiple parking reference distances, and sum up all parking distances to obtain the average value to obtain the parking lot distance; Step 2: Obtain the location information of all commercial areas in the park, measure the distance from the vacant office room to the center of each commercial area to obtain multiple commercial area reference distances, and sum up all the commercial area reference distances to obtain the average value to obtain the commercial area distance; Step 3: Get the distance from the vacant office room to the public meeting room on the same floor as the public meeting room distance, get the distance from the vacant office room to the elevator on the same floor as the elevator distance, get the distance from the vacant office room to the stairs on the same floor as the stair distance, and sum the public meeting room distance, stair distance and elevator distance to get the same-floor distance; Step 4: Get the location information of subway stations near the park, get the location information of bus stations near the park, measure the distance from the vacant office room to the subway station as the subway distance, measure the distance from the vacant office room to the bus station as the bus distance, and get the transportation distance by summing the subway distance and the bus distance; Step 5: Obtain the convenience value of the vacant office room through parking distance, commercial area distance, same-floor distance and traffic distance; The calculation method of the convenience value of the vacant office room is as follows: Among them, Lb represents the convenience value, Tc represents the parking distance, Sy represents the commercial area distance, Tc represents the same-floor distance, and Jt represents the traffic distance. , , and are weights, , , , .
[0023] In this embodiment, the convenience value of the vacant office room is obtained by combining the parking lot distance, commercial area distance, same-floor distance and traffic distance, so that it is convenient to judge the convenience of the office room according to the specific location of the vacant office room and the distance from the relevant venue, and then it is convenient to calculate the quality coefficient of the vacant office room, and then it is convenient to select high-quality rooms for recommendation according to the needs of corporate personnel, which is beneficial to improve the visit satisfaction of corporate personnel and is conducive to the settlement of corporate personnel in the park.
[0024] In the high-quality site recommendation module, the office rooms to be selected are marked in the park model according to the company's intended office area, intended rental price and quality coefficient, specifically: Step 1: Obtain the intended office area of the enterprise to be settled in, and mark the rooms with office areas greater than or equal to the intended office area of the enterprise in all the vacant office rooms in the park model as first-level qualified rooms; Step 2: Obtain the intended rental price of the settled enterprise, set a preset threshold for price fluctuation, obtain the price peak by summing the intended rental price of the settled enterprise and the preset threshold for price fluctuation, use the intended rental price of the settled enterprise as the price valley and the price peak to obtain the intended price range, and mark the rooms with rental prices within the intended price range among all the first-level qualified rooms as second-level qualified rooms; Step 3: Get the quality coefficients of all the second-level qualified rooms, arrange the quality coefficients of all the second-level qualified rooms in order from small to large, select the room with the smallest quality coefficient among all the second-level qualified rooms as the first room to be viewed, select the room with the middle quality coefficient among all the second-level qualified rooms as the second room to be viewed, select the room with the largest quality coefficient among all the second-level qualified rooms as the third room to be viewed, and take the first room to be viewed, the second room to be viewed and the third room to be viewed as a set of office rooms to be selected.
[0025] In this embodiment, the vacant office rooms in the park model are screened step by step based on the intended office area and rental price of the incoming enterprise to obtain the office rooms to be selected. The first room to be viewed, the second room to be viewed and the third room to be viewed are selected on the premise that the rooms meet the requirements of the incoming enterprise. This makes it convenient for enterprise personnel to visit the rooms in order of quality coefficient from low to high, which is beneficial to improving the satisfaction of enterprise personnel with the visited rooms and makes it easier for enterprise personnel to settle in the park.
[0026] In the high-quality venue recommendation module, the tour route is obtained based on the office rooms and park models to be selected, as follows: Step 1: Mark the location coordinates of the park manager's office in the park model, mark the location coordinates of the first room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the park manager's office as the starting point and the location coordinates of the first room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as a route; Step 2: Mark the location coordinates of the second room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the first room to be viewed as the starting point and the location coordinates of the second room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as the second route; Step 3: Mark the location coordinates of the third room to be viewed among the selected office rooms in the park model, take the location coordinates of the second room to be viewed as the starting point and the location coordinates of the third room to be viewed as the midpoint to obtain all routes in the park model, measure the distances of all routes and select the shortest one as the three-segment route, and obtain the tour route by combining the first, second and third routes.
[0027] In this embodiment, a tour route is formulated to visit the rooms in the order of the first room to be seen, the second room to be seen, and the third room to be seen, which is beneficial to improving the satisfaction of enterprise personnel with the visited rooms, thereby facilitating the enterprise personnel to settle in the park, and is also beneficial to avoid taking a long detour during the on-site visit to view the rooms, thereby improving the efficiency of enterprise personnel visiting vacant rooms, saving house viewing time for park managers, and reducing the physical labor and recommended labor of park managers.
[0028] In the high-quality site recommendation module, managers recommend office rooms to corporate personnel according to the tour route and adjust the park model based on the selection results, specifically: Step 1: Obtain the tour route, and the management personnel guide the enterprise personnel to visit the selected office rooms according to the tour route; Step 2: Obtain the contract signing result after the company personnel visit. If the contract signing result is signed, obtain the location coordinates of the signing room, and delete the signed room from the marked vacant office rooms in the park model. If the contract signing result is not signed, establish a visit database, and store the company personnel information and the selected office rooms in the visit database.
[0029] In this embodiment, if the contract signing result is signed, the signed room will be deleted from the marked vacant office rooms in the park model, which is beneficial to avoid the phenomenon of vacant office rooms in the park being signed repeatedly. If the contract signing result is not signed, a visit database is established, and the enterprise personnel information and the selected office rooms are included in the visit database for storage, so as to facilitate the grasp of the information of the visiting enterprise personnel, and then facilitate subsequent visitors to extract information from the designated vacant rooms when they visit the park again, which is also beneficial to avoid enterprise personnel repeatedly visiting vacant rooms.
[0030] The above embodiments may be implemented in whole or in part by software, hardware, firmware or any other combination thereof. When implemented using software, the above embodiments may be implemented in whole or in part in the form of a computer program product. A person of ordinary skill in the art may appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein may be implemented in electronic hardware, or in a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution.
[0031] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0032] The above description is only a specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application.
Claims
1. A smart park Internet of Things integrated service management system, characterized in that: Includes the following modules: The park model building module obtains the park's geographic information, uses GIS to build a park model based on the park's geographic information, obtains the locations of all vacant office rooms, and marks the locations of all vacant office rooms in the park model; The site information processing module obtains the space value of each vacant office room, obtains the convenience value of each vacant office room, obtains the quality coefficient through the space value and convenience value of each vacant office room, obtains the office area of each vacant office room, obtains the rental price of each vacant room, and marks the quality coefficient, office area and rental price of each vacant room in the park model; The high-quality venue recommendation module obtains the intended office area and intended rental price of the settled enterprises, marks the candidate office rooms in the park model according to the intended office area, intended rental price and quality coefficient of the enterprise, obtains the tour route according to the candidate office rooms and the park model, and the management personnel recommend the candidate office rooms to the enterprise personnel according to the tour route and adjust the park model according to the selection results.
2. According to claim 1, the smart park Internet of Things integrated service management system is characterized by: In the site information processing module, the space value of each vacant office room is obtained, specifically: Step 1: Get the floor number of the vacant office room. If the floor number of the office room is less than or equal to 3, record the floor number of the office room as 5. If the floor number of the office room is greater than 3, determine whether the office room is equipped with an elevator. If the office room is equipped with an elevator, record the floor number of the office room as 10. If the office room is not equipped with an elevator, record the floor number of the office room as 2. Step 2: Obtain the decoration status of the vacant office room, and determine whether the vacant office room can be directly occupied. If the office room can be directly occupied, the decoration status of the office room is recorded as 10; if the office room cannot be directly occupied, the decoration status of the office room is recorded as 2; Step 3: Obtain the lighting direction of the vacant office room, and determine whether the lighting direction of the office room is facing north and south. If the lighting direction of the office room is facing north and south, the lighting direction of the office room is recorded as 10; if the lighting direction of the office room is not facing north and south, the lighting direction of the office room is recorded as 2; Step 4: Obtain the space value of the vacant office room through the floor, decoration and lighting direction of the vacant office room.
3. According to claim 2, the smart park Internet of Things integrated service management system is characterized by: The calculation method of the vacant office room space value is as follows: Among them, Kj represents the space value, Lc represents the floor, Zx represents the decoration situation, and Cg represents the lighting direction. , and are weights, , , .
4. According to claim 1, the smart park Internet of Things integrated service management system is characterized by: In the venue information processing module, the convenience value of each vacant office room is obtained, specifically: Step 1: Obtain the location information of all parking lots in the park, measure the distance from the vacant office room to the entrance of each parking lot to obtain multiple parking reference distances, and sum up all parking distances to obtain the average value to obtain the parking lot distance; Step 2: Obtain the location information of all commercial areas in the park, measure the distance from the vacant office room to the center of each commercial area to obtain multiple commercial area reference distances, and sum up all the commercial area reference distances to obtain the average value to obtain the commercial area distance; Step 3: Get the distance from the vacant office room to the public meeting room on the same floor as the public meeting room distance, get the distance from the vacant office room to the elevator on the same floor as the elevator distance, get the distance from the vacant office room to the stairs on the same floor as the stair distance, and sum the public meeting room distance, stair distance and elevator distance to get the same-floor distance; Step 4: Get the location information of subway stations near the park, get the location information of bus stations near the park, measure the distance from the vacant office room to the subway station as the subway distance, measure the distance from the vacant office room to the bus station as the bus distance, and get the transportation distance by summing the subway distance and the bus distance; Step 5: Obtain the convenience value of the vacant office room through parking distance, commercial area distance, same-floor distance and traffic distance.
5. According to claim 4, the smart park Internet of Things integrated service management system is characterized by: The calculation method of the convenience value of the vacant office room is as follows: Among them, Lb represents the convenience value, Tc represents the parking distance, Sy represents the commercial area distance, Tc represents the same-floor distance, and Jt represents the traffic distance. , , and are weights, , , , .
6. The smart park Internet of Things integrated service management system according to claim 1 is characterized by: The calculation method of the quality coefficient in the site information processing module is as follows: Among them, Yz represents the quality coefficient, Kj represents the space value, and Lb represents the convenience value. and are weights, , .
7. The smart park Internet of Things integrated service management system according to claim 1 is characterized by: In the high-quality site recommendation module, the office rooms to be selected are marked in the park model according to the company's intended office area, intended rental price and quality coefficient, specifically: Step 1: Obtain the intended office area of the enterprise to be settled in, and mark the rooms with office areas greater than or equal to the intended office area of the enterprise in all the vacant office rooms in the park model as first-level qualified rooms; Step 2: Obtain the intended rental price of the settled enterprise, set a preset threshold for price fluctuation, obtain the price peak by summing the intended rental price of the settled enterprise and the preset threshold for price fluctuation, use the intended rental price of the settled enterprise as the price valley and the price peak to obtain the intended price range, and mark the rooms with rental prices within the intended price range among all the first-level qualified rooms as second-level qualified rooms; Step 3: Get the quality coefficients of all the second-level qualified rooms, arrange the quality coefficients of all the second-level qualified rooms in order from small to large, select the room with the smallest quality coefficient among all the second-level qualified rooms as the first room to be viewed, select the room with the middle quality coefficient among all the second-level qualified rooms as the second room to be viewed, select the room with the largest quality coefficient among all the second-level qualified rooms as the third room to be viewed, and take the first room to be viewed, the second room to be viewed and the third room to be viewed as a set of office rooms to be selected.
8. The smart park Internet of Things integrated service management system according to claim 7 is characterized by: In the high-quality venue recommendation module, the tour route is obtained based on the office rooms and park models to be selected, specifically: Step 1: Mark the location coordinates of the park manager's office in the park model, mark the location coordinates of the first room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the park manager's office as the starting point and the location coordinates of the first room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as a route; Step 2: Mark the location coordinates of the second room to be viewed among the selected office rooms in the park model, obtain all routes in the park model with the location coordinates of the first room to be viewed as the starting point and the location coordinates of the second room to be viewed as the end point, measure the distances of all routes and select the one with the shortest distance as the second route; Step 3: Mark the location coordinates of the third room to be viewed among the selected office rooms in the park model, take the location coordinates of the second room to be viewed as the starting point and the location coordinates of the third room to be viewed as the midpoint to obtain all routes in the park model, measure the distances of all routes and select the shortest one as the three-segment route, and obtain the tour route by combining the first, second and third routes.
9. The smart park Internet of Things integrated service management system according to claim 1, characterized in that: In the high-quality site recommendation module, managers recommend office rooms to corporate personnel according to the tour route and adjust the park model based on the selection results, specifically: Step 1: Obtain the tour route, and the management personnel guide the enterprise personnel to visit the selected office rooms according to the tour route; Step 2: Obtain the contract signing result after the company personnel visit. If the contract signing result is signed, obtain the location coordinates of the signing room, and delete the signed room from the marked vacant office rooms in the park model. If the contract signing result is not signed, establish a visit database, and store the company personnel information and the selected office rooms in the visit database.
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