Method and a device for low-carbon activity tracking to support corporate esg management
Patent Information
- Application Number
- KR1020230129977
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-09-27
- Publication Date
- 2026-08-05
- Estimated Expiration
- 2043-09-27
Smart Images

Figure 112023107431218-PAT00003_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a method and apparatus for tracking low-carbon activities. More specifically, the present invention relates to a method and apparatus for tracking low-carbon activities to support corporate ESG management. Background Technology
[0002] ESG (Environment, Social, Governance), which refers to a company's non-financial performance and efforts, has recently garnered significant attention due to climate change and the COVID-19 crisis. With the rapid global regulation and full-scale implementation of these initiatives, pressure on domestic companies to respond to related issues is increasing. However, due to a lack of specialized personnel and services in the ESG field, managers are currently handling numerous tasks related to analysis, response, and reporting manually. Furthermore, as the ESG market is still in its nascent stage, relevant standards and regulations are constantly being updated, making it difficult for companies to respond immediately and efficiently.
[0003] Accordingly, the need for digital innovation in ESG management has emerged, and efforts to integrate conventional digital technologies into the field are being attempted, primarily in advanced countries overseas. Notably, ESG-related services are being launched that utilize big data and AI technologies to identify rapidly changing ESG trends and recommend benchmarking cases tailored to user companies.
[0004] However, current ESG management services are limited to specific functions such as diagnosis and automated reporting, resulting in low utilization. Furthermore, they primarily provide ESG evaluations of listed companies and investment information based on them to rating agencies and investors, making it difficult for companies to identify ways to improve their ESG management indices. While expert consulting is necessary to address this, it requires significant time and cost.
[0005] In particular, the 'E' (Environment) aspect of ESG management is directly linked to carbon emission rights and occupies a significant portion of corporate ESG management evaluations; however, the current situation makes it difficult for companies to research carbon emission rights-related data or submit it to evaluation agencies to support their ESG management. The problem to be solved
[0006] The present invention was devised to solve the problem described above, and aims to provide a method and apparatus for tracking low-carbon activities that can support the company's ESG management by enabling the company to support low-carbon activities by providing rewards to user devices linked with low-carbon means of transportation such as bicycles, thereby improving the low-carbon activity index as the company's social and environmental contribution based on quantitative data. means of solving the problem
[0007] A method according to an embodiment of the present invention for solving the problem described above comprises, in a method for processing service information executed by a computer device: a step of registering corporate theme information for an ESG (Environment, Social, Governance) management support service received from a corporate server; a step of providing the corporate theme information to a user device; a step of collecting riding information corresponding to the corporate theme information from the user device; a step of calculating low-carbon activity points based on the analysis of the riding information; and a step of providing low-carbon activity information including the low-carbon activity points to the corporate server.
[0008] In addition, a method according to an embodiment of the present invention for solving the problem described above may be implemented as a computer program stored on a computer-readable medium to execute the method on a computer.
[0009] In addition, an apparatus according to an embodiment of the present invention for solving the problem described above comprises, in a computer device: a corporate theme registration unit for registering corporate theme information for an ESG (Environment, Social, Governance) management support service received from a corporate server; a theme information providing unit for providing the corporate theme information to a user device; a riding information collecting unit for collecting riding information corresponding to the corporate theme information from the user device; a low-carbon activity point calculation unit for calculating low-carbon activity points based on the analysis of the riding information; and a step of providing low-carbon activity information including the low-carbon activity points to the corporate server. Effects of the invention
[0010] According to an embodiment of the present invention, a computing device provides corporate theme information for ESG management support services of a corporate server to a user device, calculates low-carbon activity points from riding information collected from the user device, and provides rewards, thereby enabling the company to quantitatively collect and manage activity data related to carbon emission rights in ESG management and provide this to an evaluation agency server to facilitate the improvement of the low-carbon activity index and the acquisition of carbon emission rights.
[0011] Accordingly, companies can comprehensively support the low-carbon activities of members of society and support their ESG management by analyzing the low-carbon activity index as a social and environmental contribution based on quantitative data, thereby significantly overcoming the difficulties of conventional ESG management and improvement, particularly in terms of the environment. Brief explanation of the drawing
[0012] FIG. 1 is a drawing illustrating an example of an operating environment of a system according to one embodiment of the present specification. FIG. 2 is a block diagram for explaining the internal configuration of a computing device in one embodiment of the present specification. FIG. 3 is a block diagram illustrating a service processing unit and its configuration according to an embodiment of the present invention. FIG. 4 is a ladder diagram for explaining the operation of the entire system according to an embodiment of the present invention. FIG. 5 is a flowchart illustrating the operation method of a low-carbon activity point calculation unit according to an embodiment of the present invention. FIG. 6 is a diagram illustrating an example of a carbon reduction effect comparison method according to an embodiment of the present invention. FIGS. 7 and 8 are drawings illustrating an interface output from a user device according to an embodiment of the present invention. Specific details for implementing the invention
[0013] In describing the embodiments of this specification, if it is determined that a detailed description of known configurations or functions could obscure the essence of the embodiments of this specification, such detailed description is omitted. Additionally, parts of the drawings unrelated to the description of the embodiments of this specification have been omitted, and similar parts are denoted by similar reference numerals.
[0014] In the embodiments of this specification, when a component is described as being "connected," "combined," or "joined" with another component, this may include not only a direct connection but also an indirect connection in which another component exists in between. Furthermore, when a component is described as "comprising" or "having" another component, this means that, unless specifically stated otherwise, it does not exclude the other component but may include additional components.
[0015] In the embodiments of this specification, terms such as first, second, etc. are used solely for the purpose of distinguishing one component from another component and do not limit the order or importance of the components unless specifically stated otherwise. Accordingly, within the scope of the embodiments of this specification, the first component in an embodiment may be referred to as the second component in another embodiment, and likewise, the second component in an embodiment may be referred to as the first component in another embodiment.
[0016] In the embodiments of this specification, distinct components are intended to clearly explain their respective features and do not imply that the components are necessarily separated. That is, multiple components may be integrated to form a single hardware or software unit, or a single component may be distributed to form multiple hardware or software units. Therefore, such integrated or distributed embodiments are included within the scope of the embodiments of this specification, even if not otherwise mentioned.
[0017] In this specification, the term "network" may encompass both wired and wireless networks. In this context, the network may refer to a communication network where data exchange between devices, systems, and devices can be performed, and is not limited to a specific network.
[0018] The embodiments described herein may have aspects that are entirely hardware, partially hardware and partially software, or entirely software. In this specification, terms such as “unit,” “device,” or “system” refer to computer-related entities, such as hardware, a combination of hardware and software, or software. For example, in this specification, a unit, module, device, or system, etc., may be, but are not limited to, a running process, processor, object, executable, thread of execution, program, and / or computer. For example, both an application running on a computer and the computer may correspond to a unit, module, device, or system, etc., in this specification.
[0019] Furthermore, in this specification, the term "device" may refer not only to mobile devices such as smartphones, tablet PCs, wearable devices, and Head Mounted Displays (HMDs), but also to fixed devices such as PCs or home appliances equipped with display functions. Additionally, as an example, the term "device" may refer to an in-vehicle cluster or an IoT (Internet of Things) device. In other words, in this specification, the term "device" may refer to any device capable of running an application and is not limited to a specific type. For convenience of explanation, the term "device" is used below to refer to a device on which an application runs.
[0020] In this specification, the communication method of the network is not limited, and connections between each component may not be connected using the same network method. The network may include not only communication methods utilizing communication networks (e.g., mobile communication networks, wired internet, wireless internet, broadcasting networks, satellite networks, etc.) but also short-range wireless communication between devices. For example, the network may include any communication method that allows objects to network with each other and is not limited to wired communication, wireless communication, 3G, 4G, 5G, or any other method. For example, wired and / or networks include Local Area Network (LAN), Metropolitan Area Network (MAN), Global System for Mobile Network (GSM), Enhanced Data GSM Environment (EDGE), High Speed Downlink Packet Access (HSDPA), Wideband Code Division Multiple Access (W-CDMA), Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Bluetooth, Zigbee, Wi-Fi, VoIP (Voice over Internet Protocol), LTE Advanced, IEEE802.16m, WirelessMAN-Advanced, HSPA+, 3GPP Long Term Evolution (LTE), Mobile WiMAX (IEEE 802.16e), UMB (formerly EV-DO Rev. C), Flash-OFDM, iBurst and MBWA (IEEE 802.20) It may refer to a communication network based on one or more communication methods selected from the group consisting of systems, HIPERMAN, Beam-Division Multiple Access (BDMA), Wi-MAX (World Interoperability for Microwave Access) and ultrasonic communication, but is not limited thereto.
[0021] The components described in the various embodiments do not necessarily mean essential components, and some may be optional components. Accordingly, embodiments consisting of a subset of the components described in the embodiments are also included within the scope of the embodiments of this specification. Furthermore, embodiments including other components in addition to the components described in the various embodiments are also included within the scope of the embodiments of this specification.
[0022] Hereinafter, embodiments of the present specification will be examined in detail with reference to the drawings.
[0023] FIG. 1 is a diagram illustrating an example of an operating environment of a system according to an embodiment of the present specification. Referring to FIG. 1, a user device (110) and one or more servers (120, 130, 140) are connected through a network (1). FIG. 1 is an example for explaining the invention, and the number of user devices or servers is not limited to that shown in FIG. 1.
[0024] The user device (110) may be a fixed terminal or a mobile terminal implemented as a computer system. The user device (110) may be, for example, a smartphone, a mobile phone, a navigation system, a computer, a laptop, a digital broadcasting terminal, a PDA (Personal Digital Assistants), a PMP (Portable Multimedia Player), a tablet PC, a game console, a wearable device, an IoT (Internet of Things) device, a VR (Virtual Reality) device, an AR (Augmented Reality) device, etc. For example, in the embodiments, the user device (110) may refer to one of various physical computer systems capable of communicating with other servers (120-140) via a network (1) using substantially wireless or wired communication methods.
[0025] Each server may be implemented as a computer device or a plurality of computer devices that communicate with a user device (110) via a network (1) to provide commands, code, files, content, services, etc. For example, the server may be a system that provides each service to a user device (110) connected via the network (1). As a more specific example, the server may provide the service intended by the application (e.g., providing information) to the user device (110) through an application that is a computer program installed and running on the user device (110). As another example, the server may distribute a file for the installation and operation of the above-mentioned application to the user device (110) and receive user input information to provide a corresponding service.
[0026] FIG. 2 is a block diagram for explaining the internal configuration of a computing device (200) in an embodiment of the present specification. Such a computing device (200) may be applied to a user device (110) or a server (120-140) described above with reference to FIG. 1, and each device and server may have the same or similar internal configuration by adding or excluding some components.
[0027] Referring to FIG. 2, the computing device (200) may include memory (210), a processor (220), a communication module (230), and a transceiver (240). The memory (210) is a non-transient computer-readable recording medium and may include a permanent mass storage device such as RAM (random access memory), ROM (read only memory), a disk drive, an SSD (solid state drive), or a flash memory. Here, a permanent mass storage device such as a ROM, SSD, flash memory, or a disk drive may be included in the aforementioned device or server as a separate permanent storage device distinct from the memory (210). Additionally, the memory (210) may store an operating system and at least one program code (e.g., code for a browser installed and running on a user device (110), or code for an application installed on a user device (110), etc., to provide a specific service). These software components may be loaded from a computer-readable recording medium separate from memory (210). This separate computer-readable recording medium may include computer-readable recording media such as a floppy drive, disk, tape, DVD / CD-ROM drive, memory card, etc.
[0028] In another embodiment, software components may be loaded into memory (210) via a communication module (230) rather than a computer-readable recording medium. For example, at least one program may be loaded into memory (210) based on a computer program (e.g., the application described above) that is installed by files provided through a network (1) by developers or a file distribution system (e.g., the server described above) that distributes installation files for the application.
[0029] The processor (220) may be configured to process instructions of a computer program by performing basic arithmetic, logic, and input / output operations. Instructions may be provided to the processor (220) by memory (210) or a communication module (230). For example, the processor (220) may be configured to execute instructions received according to program code stored in a recording device such as memory (210).
[0030] The communication module (230) can provide a function for the user device (110) and the server (120-140) to communicate with each other through the network (1), and each of the device (110) and / or the server (120-140) can provide a function for communicating with other electronic devices.
[0031] The transmitting and receiving unit (240) may be a means for interfacing with an external input / output device (not shown). For example, the external input device may include devices such as a keyboard, mouse, microphone, camera, etc., and the external output device may include devices such as a display, speaker, haptic feedback device, etc.
[0032] As another example, the transmitting and receiving unit (240) may be a means for interfacing with a device in which the functions for input and output are integrated into one, such as a touchscreen.
[0033] Additionally, in other embodiments, the computing device (200) may include more components than those of FIG. 2 depending on the nature of the device to which it is applied. For example, when the computing device (200) is applied to a user device (110), it may be implemented to include at least some of the input / output devices described above, or it may include additional components such as a transceiver, a GPS (Global Positioning System) module, a camera, various sensors, a database, etc. As a more specific example, when the user device is a smartphone, it may be implemented to include additional components such as an accelerometer or gyroscope sensor, a camera module, various physical buttons, buttons using a touch panel, input / output ports, and a vibrator for vibration, which are generally included in smartphones.
[0035] FIG. 3 is a block diagram illustrating a service processing unit and its configuration according to an embodiment of the present invention.
[0036] Referring to FIG. 3, a computing device (200) according to an embodiment of the present invention may further include a service processing unit (250). The service processing unit (250) may be composed of a processor module that performs various service processes for service data processing according to an embodiment of the present invention among logic and input / output operations processed by a processor (220). The computing device (200) may provide generated service data to a user device (110) or one or more servers (120, 130, 140) by configuring the service processing unit (250) inside the processor (220) or by performing service processing using data processed by the service processing unit (250) from a device equipped with an external processor.
[0037] According to this processing, a user device (110) or one or more servers (120, 130, 140) may receive service data configured by the operation of a service processing unit (250) according to an embodiment of the present invention and use it to output through a display device or to transmit and receive data through an external network.
[0038] In such processing, the service processing unit (250) according to an embodiment of the present invention registers corporate theme information for ESG (Environment, Social, Governance) management support services received from a corporate server, provides the corporate theme information to a user device, collects riding information corresponding to the corporate theme information from the user device, calculates low-carbon activity points based on the analysis of the riding information, and provides low-carbon activity information including the low-carbon activity points to the corporate server. As a result, the company can quantitatively collect and manage carbon emission rights-related activity data in ESG management and provide this to an evaluation agency server to facilitate the improvement of the low-carbon activity index and the acquisition of carbon emission rights.
[0039] Depending on the operation of the service processing unit (250), the computing device (200) can operate as a low-carbon activity tracking device that provides ESG management support services, and can function as a service platform that provides data collection, processing, and reward settlement services in conjunction with corporate and user devices (110).
[0040] To this end, more specifically, with reference to FIG. 3, the service processing unit (250) may include a corporate theme registration unit (251), a theme information provision unit (252), a riding information collection unit (253), a low-carbon activity point calculation unit (254), an ESG information management unit (255), and a reward settlement processing unit (256), and the service process according to the embodiment of the present invention may be performed through the linked operation of each of these processing units.
[0041] The corporate theme register (251) receives corporate theme information received from the company's server or terminal, etc., and processes the registration on a separate database.
[0042] Here, corporate theme information can be configured in various formats to induce user activities for ESG management support. In particular, corporate theme information may include the company name, theme name, theme image, low-carbon activity conditions, and reward conditions; this indicates what rewards a user can receive when engaging in certain low-carbon activities and can identify which company supports these low-carbon activities.
[0043] In addition, these reward conditions may vary by company; for example, in the case of an automobile company, the reward conditions may be the provision of points related to vehicle services, and in the case of a large mart company, they may be the provision of mart gift certificates.
[0044] The company can configure such company theme information through a company server or company device, etc., transmit it to a service processing unit (250), and register it in a database through a company theme registration unit (251).
[0045] The theme information provision unit (252) can share registered corporate theme information from a company with one or more user devices (110). The user device (110) can access the service platform provided by the service processing unit (250) and check corporate theme information for each company, and can perform low-carbon activities corresponding to the corporate name, theme name, theme image, low-carbon activity conditions, and reward conditions confirmed from the corporate theme information, thereby receiving a reward for performing the activity.
[0046] And, to verify the performance of such low-carbon activities, the riding information collection unit (253) can acquire riding information collected from a user device (110) linked to a low-carbon means of transportation and transmit it to the low-carbon activity point calculation unit (254).
[0047] Here, low-carbon means of transportation may correspond to eco-friendly means of transportation that minimizes carbon emissions, and personal mobility such as bicycles and kickboards can be representative examples. However, the types of low-carbon means of transportation are not limited in the embodiments of the present invention, and various forms of low-carbon means of transportation, such as low-carbon electric buses and low-carbon electric vehicles, may be applicable.
[0048] However, since the carbon emissions for each low-carbon means of transportation may also differ, the riding information collection unit (253) according to the embodiment of the present invention may collect low-carbon means of transportation classification information linked with the user device (110) and corresponding carbon emission information together and provide them to the low-carbon activity point calculation unit (254).
[0049] Additionally, the riding information collection unit (253) can collect riding information including at least one of travel distance information, origin information, destination information, and travel route information in correspondence with a low-carbon transportation means linked to a user device (110), and this can be transmitted to a low-carbon activity point calculation unit (254) and used to calculate low-carbon activity points.
[0050] The low-carbon activity point calculation unit (254) extracts driving information necessary for calculating low-carbon activity points from riding information, and calculates low-carbon activity points based on the extracted driving information.
[0051] Here, various methods for calculating low-carbon activity points of the low-carbon activity point calculation unit (254) can be proposed.
[0052] First, the low-carbon activity point calculation unit (254) can calculate low-carbon activity points based on the reduced carbon emissions through comparison with the time of driving a vehicle.
[0053] To this end, the low-carbon activity point calculation unit (254) can obtain vehicle driving information corresponding to the riding information, compare a normal route based on the vehicle driving information with a movement route of the riding information, calculate a carbon emission reduction sensitivity based on the route overlap ratio of the comparison result, and apply a standard value of an evaluation agency corresponding to the carbon emission reduction sensitivity to calculate the low-carbon activity point.
[0054] In addition, the low-carbon activity point calculation unit (254) can apply different weights for each time period, as the actual reduced carbon emissions may differ depending on whether the travel time of the riding information is during commuting hours or weekend hours when calculating the low-carbon activity points.
[0055] Accordingly, the low-carbon activity point calculation unit (254) obtains time zone information corresponding to the riding information, and can determine the calculation weight of the low-carbon activity point differently based on the time zone information, and the time zone information may include at least one classification information among the commuting time zone, the evening commuting time zone, and the weekend time zone.
[0056] That is, the low-carbon activity point calculation unit (254) can calculate low-carbon activity points by applying various conditions and logic to calculate carbon emission reduction sensitivity from riding information, and for this processing, it may perform artificial intelligence-based carbon emission reduction sensitivity prediction processing using a Convolutional Neural Network (CNN).
[0057] In addition, the low-carbon activity point calculation unit (254) can use other application information linked with the user device (110) to additionally check the user's vehicle driving information, user's work time information, leisure time information, etc., and use this information to predict carbon emission reduction.
[0058] Additionally, the low-carbon activity point calculation unit (254) may determine in advance from the riding information whether the user traveled on a road suitable for cycling or whether it corresponds to an appropriate speed for a low-carbon means of transportation, and perform filtering processing for calculating the low-carbon activity point. For example, since the user may travel by taking a regular bus or car, the low-carbon activity point calculation unit (254) may filter out such cases.
[0059] Meanwhile, the ESG information management department (255) can provide the calculated low-carbon activity points to a corporate server or corporate terminal, and the corporate server or corporate terminal can perform ESG information management based on the low-carbon activity points, reporting to evaluation agencies, and user reward compensation.
[0060] The reward settlement processing unit (256) can process the reward settlement by comparing the low-carbon activity points calculated by the low-carbon activity point calculation unit (254) with the conditions of the corporate theme information, and if the conditions are met, providing the reward compensation information provided by the corporate server or terminal that provided the theme to the user device (110). As described above, the user can receive purchase points or gift certificates for each company.
[0061] Through this service structure, companies can easily increase their ESG management index and collect carbon credits, while users also benefit from relatively high rewards and a sense of accomplishment as they engage in riding that contributes to their health and the social environment rather than advertisements.
[0063] FIG. 4 is a ladder diagram for explaining the operation of the entire system according to an embodiment of the present invention.
[0064] Referring to FIG. 4, a computing device (200) according to an embodiment of the present invention can function as a service server providing a service platform, and may include a corporate server (300) and an evaluation agency server (400) corresponding to one or more of the aforementioned servers (120, 130, 140) to form an entire system network for an ESG management support service platform according to an embodiment of the present invention.
[0065] First, the corporate server (300) requests the computing device (200) to register corporate theme information (S1001).
[0066] Afterwards, the computing device (200) processes the registration of corporate theme information for ESG management support services in the database (S1003).
[0067] And, the computing device (200) provides corporate theme information to the user device (110) (S1005).
[0068] Afterwards, the user device (110) selects a corporate theme for ESG management support services through an application (S1007), and performs a ride of a low-carbon means of transportation while the corporate theme is selected (S1009).
[0069] Accordingly, the user device (110) transmits riding information corresponding to the corporate theme to the computing device (200) in real time (S1011).
[0070] And, the computing device (200) calculates low-carbon activity points based on the analysis of riding information (S1013).
[0071] Afterwards, the computing device (200) provides user-specific riding information or low-carbon activity point information to the enterprise server (300) (S1015).
[0072] Accordingly, the enterprise server (300) calculates reward settlement information for each user and transmits it to the computing device (200) (S1017).
[0073] And, the computing device (200) performs reward settlement by providing the reward provided by the company to each user device (110) (S1019).
[0074] Meanwhile, the corporate server (300) performs ESG management based on the aforementioned low-carbon activity points and transmits the relevant low-carbon activity reporting information to the evaluation agency server (400) (S1021).
[0075] And, the evaluation agency server (400) applies ESG management-related standard values to the low-carbon activity reporting information and reflects them in the low-carbon activity index of the corporate evaluation (S1023).
[0076] Here, the evaluation agency server (400) can provide carbon emission rights to the company server (300) based on the improvement of the low-carbon activity index of the company evaluation.
[0078] FIG. 5 is a flowchart for explaining the operation method of a low-carbon activity point calculation unit according to an embodiment of the present invention, and FIG. 6 is a diagram for explaining an example of a carbon reduction effect comparison method according to an embodiment of the present invention.
[0079] First, referring to FIG. 5, the low-carbon activity point calculation unit (254) according to an embodiment of the present invention first obtains user's vehicle driving information corresponding to the collected riding information (S101).
[0080] Here, the user's vehicle driving information can be collected from a vehicle-related application installed on the user device (110) or from a separate external server.
[0081] And, the low-carbon activity point calculation unit (254) compares a normal route based on vehicle driving information with a collected riding route (S103), and calculates the actual carbon emission reduction amount using at least one of a route overlap ratio, a movable route, and a travel distance (S105).
[0082] As illustrated in FIG. 6, the path that can be traveled by a car and the path that can be traveled by a bicycle may be different from each other. Accordingly, since the carbon emission reduction effect is greater when traveling by bicycle over a shorter path, the low-carbon activity point calculation unit (254) can calculate the actual carbon emission reduction amount by reflecting this condition information and considering the path overlap ratio compared to the car travel path.
[0083] And, referring again to FIG. 5, the low-carbon activity point calculation unit (254) performs low-carbon activity point conversion by applying a standard value for each evaluation agency corresponding to the calculated carbon emission reduction level (S107).
[0084] In other words, rather than simply considering the driving distance of low-carbon means of transportation, the actual degree of carbon emission reduction can be calculated by reflecting the distance traveled by the user through the use of low-carbon means, in addition to the usual distance traveled by car, routes, and carbon emissions by vehicle type; this can be calculated as a quantitative value based on the standard values presented by the evaluation agency.
[0086] FIGS. 7 and 8 are drawings illustrating an interface output from a user device according to an embodiment of the present invention.
[0087] FIG. 7 illustrates an example of a corporate theme selection interface. A user device (110) can display a corporate theme image, corporate theme name, low-carbon activity conditions, and reward conditions obtained from corporate theme information on a screen and output them on the interface, and the user can select and apply a corporate theme to perform.
[0088] As illustrated in Fig. 7, low-carbon activity conditions can be subdivided into various conditions such as travel distance, activity points, and vehicle replacement ratio, and rewards can also be subdivided into various conditions such as point accumulation, provision of gift certificates, and discount coupons for each company.
[0089] FIG. 8 is a diagram illustrating a riding information collection screen with applied corporate theme information. Referring to FIG. 8, the user device (110) can collect information such as the speed, distance, route, time, origin, and destination of a low-carbon means of transportation that has been linked and registered in advance. To do this, various sensors such as a GPS sensor, an accelerometer, a geomagnetic sensor, and a motion sensor can be utilized.
[0090] In addition, the riding information collection screen of the user device (110) can display riding information transmitted to the computing device (200), current low-carbon activity points predicted in response thereto, reward conditions, etc. in real time.
[0092] The embodiments described above may be implemented at least partially as computer programs and recorded on computer-readable recording media. Computer-readable recording media on which programs for implementing the embodiments are recorded include all types of recording devices in which data readable by a computer is stored. Examples of computer-readable recording media include ROM, RAM, CD-ROM, magnetic tape, optical data storage devices, etc. Additionally, computer-readable recording media may be distributed across networked computer systems, so that computer-readable code is stored and executed in a distributed manner. Furthermore, functional programs, codes, and code segments for implementing the embodiments will be readily understood by a person skilled in the art to which the embodiments pertain.
[0093] Although the present specification described above has been explained with reference to the embodiments illustrated in the drawings, this is merely illustrative and those skilled in the art will understand that various modifications and variations of the embodiments are possible therefrom. However, such modifications should be considered to be within the technical scope of protection of the present specification. Accordingly, the true technical scope of protection of the present specification should be determined to include other implementations, other embodiments, and equivalents to the claims based on the technical spirit of the appended claims.
Claims
Claim 1 A method for processing service information executed by a computer device comprises: a step of registering corporate theme information for an ESG (Environment, Social, Governance) management support service received from a corporate server; a step of providing said corporate theme information to a user device linked with a low-carbon means of transportation; a step of collecting riding information corresponding to said corporate theme information from said user device; a step of calculating low-carbon activity points based on an analysis of said riding information; and a step of providing low-carbon activity information including said low-carbon activity points to said corporate server, wherein said riding information includes travel distance information and travel route information, and the step of calculating said low-carbon activity points comprises: a step of obtaining vehicle driving information corresponding to said riding information; a step of comparing a normal route based on said vehicle driving information with a travel route of said riding information; and a step of calculating a carbon emission reduction value based on said comparison result, a route overlap ratio, a vehicle travelable route, a riding travelable route, and travel distance. Claim 2 A service information processing method according to claim 1, further comprising the step of providing corporate rewards based on the low-carbon activity information to the user device. Claim 3 A service information processing method according to claim 1, wherein the low-carbon activity points are provided from the corporate server to the evaluation agency server and reflected in the low-carbon activity index of the corporate ESG management evaluation corresponding to the corporate server. Claim 4 A service information processing method in which, in paragraph 3, the evaluation agency server calculates carbon emission rights information corresponding to the company server according to the low-carbon activity index and transmits it to the company server. Claim 5 In claim 1, the above riding information further includes origin information and destination information in a service information processing method. Claim 6 A service information processing method according to claim 5, wherein the step of calculating the low-carbon activity points further includes the step of converting the low-carbon activity points by applying a standard value of an evaluation agency corresponding to the carbon emission reduction level. Claim 7 A service information processing method according to claim 5, wherein the step of calculating the low-carbon activity point comprises: a step of obtaining time zone information corresponding to the riding information; and a step of determining a different weighting of the low-carbon activity point based on the time zone information, wherein the time zone information includes at least one classification information among a commuting time zone, an evening commuting time zone, and a weekend time zone. Claim 8 In claim 1, the riding information is a service information processing method collected from a low-carbon means of transportation linked to the user device. Claim 9 A computer program stored on a computer-readable recording medium to execute a method described in any one of paragraphs 1 through 8 on a computer. Claim 10 Computer device performing the method according to paragraph 1
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