Information processing device, information processing method, and program

The information processing device in soundproof rooms uses internal and external sensors to assess security and execute responsive actions, addressing the security gaps in conventional soundproof rooms by enhancing breach detection and notification.

JP7748084B2Active Publication Date: 2025-10-02UNIFA TECH CO LTD
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Patent Information

Application Number
JP2021114108
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-07-09
Publication Date
2025-10-02
Estimated Expiration
2041-07-09

AI Technical Summary

Technical Problem

Conventional soundproof rooms lack sufficient security measures to prevent the leakage of confidential information, especially when users handle sensitive data within.

Method used

An information processing device equipped with sensors and a determination unit to assess the security status of the room based on internal and external data, executing processes to enhance security, such as LED notifications, screen locking, or outputting warning sounds.

Benefits of technology

Enhances the security of soundproof rooms by determining and responding to potential security breaches, improving user confidence in handling confidential information.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Patent Text Reader

Abstract

To provide an information processing device information processing method and a program for improving the security of a housing forming a space in which a user can stay.SOLUTION: In a secure room SR (enclosure) that forms a space S in which a user U can stay, a security management device 1 (information processing device) operated by the user U includes an internal sensor data acquisition unit that acquires data from an internal sensor placed inside the secure room, an external sensor data acquisition unit that acquires data from an external sensor arranged outside the housing, a security status determination unit that determines the security status of the secure room on the basis of each data, and a processing execution unit that executes predetermined processing according to the determined security status.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to an information processing device, an information processing method, and a program. [Background technology]

[0002] In recent years, with the growing interest in teleworking among companies, soundproof rooms for teleworkers are being considered.

[0003] For example, Patent Document 1 describes a soundproof room in which an all-in-one air conditioner with a refrigeration cycle for cooling housed inside the cabinet is installed on the floor of the housing. In this soundproof room, the cabinet is formed with an air supply port on the front and an exhaust port on the bottom, and the floor material of the housing is formed with an opening corresponding to the position of the exhaust port so that hot air blown out from the exhaust port can be discharged to the outside of the housing through the opening. A fan is installed on the ceiling of this soundproof room to create an ascending air current inside the room and promote the upward movement of the cool air blown out from the air supply port. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Patent Publication No. 2021-017797 Summary of the Invention [Problem to be solved by the invention]

[0005] In conventional soundproof rooms such as those described above, the air conditioning inside the soundproof room can be adjusted, allowing users to work comfortably inside the soundproof room. However, users often handle confidential information when working, and in order to prevent the leakage of such information, it is necessary to improve the security of the soundproof room in which the users stay. However, the security of conventional soundproof rooms such as those described above is not sufficient.

[0006] Therefore, some aspects of the present invention have been made in consideration of such circumstances, and aim to provide information processing technology that can improve the security of an enclosure that forms a space in which a user can stay. [Means for solving the problem]

[0007] An information processing device according to one embodiment of the present invention is an information processing device operated by a user in a housing that forms a space in which the user can stay, and includes a first acquisition unit that acquires first data from a first sensor arranged inside the housing, a second acquisition unit that acquires second data from a second sensor arranged outside the housing, a determination unit that determines the security status of the housing based on the first data and the second data, and a processing execution unit that executes a predetermined process according to the determined security status.

[0008] An information processing method according to one aspect of the present invention is an information processing method executed by an information processing device operated by a user in a housing that forms a space in which the user can stay, and includes the steps of acquiring first data from a first sensor arranged inside the housing, acquiring second data from a second sensor arranged outside the housing, determining the security status of the housing based on the first data and the second data, and executing a predetermined process according to the determined security status.

[0009] A program according to one embodiment of the present invention causes an information processing device operated by a user in a housing that forms a space in which the user can stay to function as a first acquisition unit that acquires first data from a first sensor arranged inside the housing, a second acquisition unit that acquires second data from a second sensor arranged outside the housing, a determination unit that determines the security status of the housing based on the first data and the second data, and a processing execution unit that executes a predetermined process according to the determined security status.

[0010] In this invention, a "unit" does not simply mean a physical means, but also includes cases where the functions of the "unit" are realized by software. Furthermore, the functions of one "unit" or device may be realized by two or more physical means or devices, and the functions of two or more "units" or devices may be realized by one physical means or device. [Effects of the Invention]

[0011] According to the present invention, it is possible to improve the security of a housing that forms a space in which a user can stay. [Brief explanation of the drawings]

[0012] [Figure 1] 1 is a conceptual diagram illustrating an example of a security management system according to an embodiment of the present invention. [Figure 2] FIG. 2 is a diagram illustrating an example of functional blocks of a security management device according to an embodiment of the present invention. [Figure 3] FIG. 10 is a diagram illustrating an example of a relationship between a security status based on sound sensor data and notification content according to an embodiment of the present invention. [Figure 4] FIG. 10 is a diagram illustrating an example of a relationship between a security situation based on human sensor data and notification content according to an embodiment of the present invention. [Figure 5] 10 is a diagram showing an example of a relationship between a security situation based on open / close sensor data and human sensor data and notification content according to an embodiment of the present invention. FIG. [Figure 6] 10 is a diagram showing an example of the relationship between a security situation based on surveillance camera data and notification content according to an embodiment of the present invention. FIG. [Figure 7] 10 is a flowchart illustrating an example of a security status notification process according to an embodiment of the present invention. [Figure 8] 10 is a flowchart illustrating an example of a security mode control process according to an embodiment of the present invention. [Figure 9] FIG. 1 is a diagram illustrating an example of a hardware configuration of a computer according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0013] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings. The following embodiments are examples for explaining the present invention, and are not intended to limit the present invention to only these embodiments. Furthermore, the present invention can be modified in various ways without departing from the gist of the present invention. Furthermore, the same components in each drawing will be designated by the same reference numerals whenever possible, and redundant explanations will be omitted.

[0014] 1 is a conceptual diagram showing an example of a security management system according to an embodiment of the present invention. The security management system 100 is a system for improving the security of a secure room SR (enclosure) that forms a space S where a user can stay. The security management system 100 illustratively includes a security management device 1 (information processing device) that manages the security of the secure room SR that forms the space S where a user U can stay, and a management server 50 that is configured to be able to communicate with the security management device 1 via a communication network N. The communication network N is a wired or wireless communication network.

[0015] The secure room SR is made of, for example, wood, metal, or resin, and forms a space S where a user can stay. The secure room SR is equipped with a door D for a user U to enter and exit. At least a portion of the secure room SR is equipped with sound-absorbing materials, etc., and has a certain degree of soundproofing function.

[0016] The secure room SR is installed in a place where many people pass through, such as a train station, a commercial facility, a store, an airport, a hotel, an office, or outdoors. A user U can operate the security management device 1 in the secure room SR to perform a predetermined task.

[0017] For example, the security management device 1 can send and receive data to and from external devices via a predetermined network such as the Internet. Furthermore, a user U can use the security management device 1 to hold a video conference or a telephone conference with other users who operate external devices that have a video conference function or a telephone conference function. Thus, there is a demand for improving the security of the secure room SR so that the user U can use the secure room SR with peace of mind even when performing highly confidential business.

[0018] The security management device 1 is realized by, for example, a laptop computer, a desktop computer, or a smartphone. In this embodiment, the explanation will be given on the assumption that the security management device 1 is a device that is installed in the secure room SR in advance. However, the security management device 1 may also be a device that the user U brings in from outside the secure room SR.

[0019] There may be multiple secure rooms SR, and a security management device 1 may be provided for each of the multiple secure rooms SR. The management server 50 acquires and manages information relating to the security status of the secure rooms SR from the security management device 1 provided for one or more secure rooms SR. The management server 50 may be realized by, for example, one or more server devices.

[0020] The secure room SR is provided with various sensors as shown below. The secure room SR is provided, for example, with an internal sound sensor 2a arranged inside the secure room SR, an external sound sensor 2b arranged outside the secure room SR, an internal human presence sensor 3a arranged inside the secure room SR, an external human presence sensor 3b arranged outside the secure room SR, an opening / closing sensor 4 arranged on the door D of the secure room SR, and a monitoring camera 5 (imaging device) arranged inside the secure room SR.

[0021] The security management device 1 in the secure room SR is communicably connected to the sound sensor 2, human presence sensor 3, and opening / closing sensor 4 via a wireless network such as Bluetooth (registered trademark). The security management device 1 may also be communicably connected to the sound sensor 2, human presence sensor 3, and opening / closing sensor 4 via a wired network. The surveillance camera 5 is configured to be able to communicate with the management server 50 via a communication network N, for example.

[0022] 1 illustrates an internal sound sensor 2a, an external sound sensor 2b, an internal human presence sensor 3a, and an external human presence sensor 3b. However, in the following description, when these two types of sensors are described without distinction, some of the reference numerals will be omitted and they will simply be referred to as the "sound sensor 2" and the "human presence sensor 3." Note that in FIG. 1, one sound sensor 2 and one human presence sensor 3 are placed inside and one outside the secure room SR, but multiple sensors may be placed inside and one outside the secure room SR.

[0023] The internal sound sensor 2a detects sounds inside the secure room SR, generates sound data related to the sounds (first sound data), and outputs the data to the security management device 1. In addition, the external sound sensor 2b detects sounds inside the secure room SR, generates sound data related to the sounds (second sound data), and outputs the data to the security management device 1.

[0024] The internal human presence sensor 3a detects the location of the user U inside the secure room SR, generates location data related to the location (first location data), and outputs it to the security management device 1. The external human presence sensor 3b detects the location of another user outside the secure room SR, generates location data related to the location (second location data), and outputs it to the security management device 1. The human presence sensor 3 employs a method using, for example, infrared rays, ultrasonic waves, or visible light. The human presence sensor 3 may detect the location of a user by appropriately combining methods using infrared rays, ultrasonic waves, visible light, or the like.

[0025] The opening / closing sensor 4 is placed on the door D and detects the opening / closing (movement) of the door D. The opening / closing sensor 4 generates opening / closing data relating to the open / closed state of the door D and outputs it to the security management device 1. The opening / closing sensor 4 may be configured in any way, but for example, the sensor main body may be placed on the door frame side, and a magnet that pairs with the sensor main body may be placed on the door side. When the door moves, a change occurs in the distance between the sensor main body and the magnet, and thus the opening / closing of the door is detected.

[0026] The surveillance camera 5 captures images of the inside of the secure room SR to generate image data, and transmits the image data to the management server 50 via the communication network N. There may be multiple surveillance cameras 5. The surveillance cameras 5 may be placed not only inside the secure room SR, but also outside the secure room SR.

[0027] The security management system 1 determines the security status of the secure room SR (for example, normal status, warning status, or occurrence of a security violation) based on the security management device 1 and various data generated by the above-mentioned various sensors, and executes "predetermined processing" according to the determined security status. Note that the security status of the secure room SR may include states other than the above three states.

[0028] The "predetermined process" is a process that can notify the user U of the security status of the secure room SR. The "predetermined process" is, for example, (1) LED ( L ight E Mitting D In addition to the process of controlling the light emission state of the LED (i.e., the LED 6) in the security management system 1, the process also includes (2) prohibiting the user U from using the security management device 1 (for example, locking the screen of the security management device 1), (3) outputting a warning sound from a speaker provided in the security management device 1, or (4) notifying the management server 50 of the security status. The predetermined process may be performed by appropriately combining the above (1) to (4). In other words, in addition to the process of controlling the light emission state of the LED 6 in the security management system 1 (1), (2) locking the screen of the security management device 1 may be performed.

[0029] The LED 6 executes a notification (predetermined process) according to the security status of the secure room SR. For example, the LED 6 changes its own light emission color (e.g., green, yellow, or red) and adjusts its blinking frequency according to the security status of the secure room SR.

[0030] Fig. 2 is a diagram showing an example of functional blocks of the security management device 1 according to one embodiment of the present invention. As shown in Fig. 2, the security management device 1 illustratively includes an information processing unit 10 that executes information processing for determining the security status of the secure room SR and executing predetermined processing, and a recording unit 20 that records information for executing the information processing.

[0031] The information processing unit 10 functionally comprises an internal sensor data acquisition unit 12 (first acquisition unit), an external sensor data acquisition unit 13 (second acquisition unit), an open / close data acquisition unit 14, a security status determination unit 15 (determination unit), a process execution unit 16, a user authentication processing unit 17, a mode control unit 18 (first control unit), and a process content control unit 19 (second control unit). Note that each of the above units of the information processing unit 10 can be realized, for example, by using a storage area such as a memory or a hard disk, or by having a processor execute a program stored in the storage area.

[0032] The internal sensor data acquisition unit 12 acquires sensor data output by internal sensors (e.g., the internal sound sensor 2a, the internal human presence sensor 3a, the opening / closing sensor 4, and the monitoring camera 5) arranged inside the secure room SR. The external sensor data acquisition unit 13 acquires sensor data output by external sensors (e.g., the internal sound sensor 2a and the internal human presence sensor 3a) arranged outside the secure room SR.

[0033] The security situation determination unit 15 determines the security situation of the secure room SR based on the sensor data of the internal sensor and the sensor data of the external sensor. The process execution unit 16 executes a predetermined process according to the security situation determined by the security situation determination unit 15.

[0034] Here, examples of the security situation determination process and the execution process of the predetermined process in this embodiment will be described with reference to FIGS.

[0035] Fig. 3 is a diagram showing an example of the relationship between the security status based on sound sensor data and the notification content according to one embodiment of the present invention. As shown in Fig. 3, the security status determination unit 15 determines the security status of the secure room SR by comparing the difference between the sound pressure inside the secure room SR detected by the internal sound sensor 2a shown in Fig. 1 (first sound data) and the sound pressure outside the secure room SR detected by the external sound sensor 2b (second sound data) with a predetermined value (for example, at least one of 20 dB and 30 dB). Note that the "predetermined value" may be a fixed value such as 20 dB or 30 dB, or may be changeable as appropriate.

[0036] 3, for example, when the difference between the sound pressure inside the secure room SR and the sound pressure outside the secure room SR is greater than 30 dB, the security situation determination unit 15 determines that the security situation of the secure room SR is a "security violation" (for example, a state in which the voice of the user U inside is leaking outside). The process execution unit 16 controls the LED 6 to "blink red" in order to notify the user U that the security situation is a "security violation."

[0037] According to this configuration, the security management device 1 can determine the security status of the secure room SR based on the detection results of the internal sound sensor 2a and the external sound sensor 2b, and can execute predetermined processing based on the determination results. Therefore, it is possible to improve the security of the secure room SR based on the sound pressure inside and outside the secure room SR.

[0038] 4 is a diagram showing an example of the relationship between the security status based on the motion sensor data and the notification content according to one embodiment of the present invention. As shown in Fig. 4, the security status determination unit 15 determines the security status of the secure room SR based on the location data indicating the location of the user U generated by the internal motion sensor 3a shown in Fig. 1 and the location data indicating the locations of other users generated by the external motion sensor 3b.

[0039] 4, for example, when the internal human sensor 3a detects the location of the user U inside the secure room SR and also detects the location of another user outside the secure room SR, the security situation determination unit 15 determines that the security situation of the secure room SR is "warning" (for example, a state in which there is another person near the secure room SR and the user U inside the secure room SR should be careful about the volume of his / her voice). The process execution unit 16 controls the LED 6 to "blink yellow" in order to notify the user U that the security situation is "warning."

[0040] According to this configuration, the security management device 1 can determine the security status of the secure room SR based on the detection results of the internal motion sensor 3a and the external motion sensor 3b, and can execute predetermined processing based on the determination results. Therefore, it is possible to improve the security of the secure room SR based on the location of users inside and outside the secure room SR.

[0041] 5 is a diagram showing an example of the relationship between the security status based on the opening / closing sensor data and the human presence sensor data and the notification content according to one embodiment of the present invention. As shown in Fig. 5, the security status determination unit 15 determines the security status of the secure room SR based on the opening / closing data generated by the opening / closing sensor 4 regarding the opening and closing of the door D equipped in the secure room SR shown in Fig. 1, and the location data indicating the location of other users generated by the external human presence sensor 3b.

[0042] 5, for example, when the opening / closing sensor 4 detects that the door D has been opened and the external human presence sensor 3a detects the presence of another user outside the secure room SR, the security situation determination unit 15 determines that the security situation of the secure room SR is a "security violation." For example, the security situation determination unit 15 determines that the door D is open, there is another person near the secure room SR, and there is a risk of someone peeking into the secure room SR. In this case, the process execution unit 16 controls the LED 6 to "blink red" in order to notify the user U that the security situation is a "security violation."

[0043] According to this configuration, the security management device 1 can determine the security status of the secure room SR based on the detection results of the opening / closing sensor 4 and the external human presence sensor 3b, and can execute predetermined processing based on the determination results. Therefore, it is possible to improve the security of the secure room SR based on the opening / closing of the door D of the secure room SR and the location of other users outside the secure room SR.

[0044] As shown in FIG. 5, when the opening / closing sensor 4 detects that the door D has vibrated twice, the security status determination unit 15 may determine that the security status of the secure room SR is "normal" (for example, the door D has been opened and then closed).

[0045] 6 is a diagram showing an example of the relationship between the security status based on surveillance camera data and the notification content according to one embodiment of the present invention. As shown in FIG. 1, a surveillance camera 5 placed inside a secure room SR captures an image of the interior of the secure room SR to generate image data. The surveillance camera 5 transmits the image data to a management server 50 via a communication network N. The management server 50 analyzes the image data and determines the security status of the secure room SR. The management server 50 transmits security status data SSD relating to the security status of the secure room SR to the security management device 1 via the communication network N.

[0046] The process execution unit 16 shown in FIG. 1 executes a predetermined process according to the security situation based on the security situation data SSD acquired from the management server 50.

[0047] 6, for example, when it is confirmed that two or more users are present in the secure room SR by, for example, analyzing the video data of the surveillance camera 5, the security situation determination unit 15 determines that the security situation of the secure room SR is a "security violation" (for example, tailgating). Also, when it is confirmed that a user U has engaged in fraudulent activity by, for example, analyzing the video data of the surveillance camera 5, the security situation determination unit 15 determines that the security situation of the secure room SR is a "security violation."

[0048] In such a case, the process execution unit 16 controls the LED 6 to "blink red" in order to notify the user U that the security status is "security violation has occurred." In particular, if fraudulent activity by the user U is discovered, the process execution unit 16 may prohibit the user U from operating the security management device 1 in addition to or instead of controlling the light emission state of the LED 6.

[0049] According to this configuration, the security management device 1 can execute predetermined processing based on the security status of the secure room SR according to the image data of the surveillance camera 5. Therefore, it is possible to improve the security of the secure room SR based on the image data of the surveillance camera 5.

[0050] In the above description, it has been explained that the management server 50 analyzes the image data acquired from the surveillance camera 5 to determine the security status of the secure room SR, but this is not limiting. For example, the security status determination unit 15 may acquire image data directly from the surveillance camera 5 (without going through the management server 50) and determine the security status of the secure room SR.

[0051] 3 to 6, the light emission control of the LED 6 has been described as an example of the predetermined processing, but as mentioned above, the predetermined processing may include other processing such as prohibiting the user U from using the security management device 1. For example, when the security management system 1 determines that the security status of the secure room SR is "security violation has occurred," the screen of the security management device 1 may be locked.

[0052] 2, the user authentication processing unit 17 performs authentication processing for the user U. The user authentication processing unit 17 verifies the legitimacy of the user U, for example, by comparing image data including the user U acquired by a camera (not shown) provided in the security management device 1 or image data including the user U acquired by the monitoring camera 5 with a facial image of the user U acquired in advance.

[0053] The user authentication processing unit 17 may perform user authentication of the user U using a fingerprint authentication function provided in the security management device 1. Alternatively, the user authentication processing unit 17 may perform user authentication of the user U by having the user U hold up his / her own entry / exit management card or the like over an entry / exit management unit (not shown) arranged at the door D of the secure room SR.

[0054] The mode control unit 18 controls a plurality of modes for maintaining the security of the secure room SR based on the success or failure (predetermined condition) of user authentication of the user U. The processing content control unit 19 controls the processing content of the security management device 1 based on the security mode controlled by the mode control unit 18.

[0055] The "multiple modes" are previously associated with the security level of the secure room SR and the processing contents of the security management device 1 for each user U. Note that the association of the multiple modes for each user U described above may be fixed or may be changed as appropriate.

[0056] The "processing contents of the security management device 1" are arbitrary, but for example, in security mode A, which corresponds to security level A, the highest security level, all internal and external sensors are used (sensor data is acquired from all internal and external sensors) to determine the security status of the secure room SR.

[0057] In security mode B, which corresponds to security level B, which is lower in security level than security level A, the security management device 1 may use some of the internal sensors and external sensors (acquire sensor data from some of the internal sensors and external sensors) to determine the security status of the secure room SR.

[0058] In this way, for example, if it is pre-set that the highest security level A is to be applied to a user U who uses the secure room SR, the mode control unit 18 determines the security mode A that is pre-associated with the user U when the user authentication process for the user U is completed.

[0059] The security level may be set in three or more stages (for example, high, medium, and low), and the security mode may also be set in three or more stages (for example, A, B, and C). The processing contents of the security management device 1 set for each of the multiple security modes may be fixed, or may be changed as appropriate to be optimized for each user.

[0060] For example, the predetermined value to be compared with the detection result of the sound sensor 2 shown in Fig. 3, i.e., at least one of 20 dB and 30 dB, may be changed depending on the security level set for each user. More specifically, in the case of security level A, the predetermined value "30 dB" shown in Fig. 3 may be set to a smaller value such as "25 dB" in order to more strictly determine whether a "security violation has occurred."

[0061] The recording unit 20 records, for example, sensor data SD of internal and external sensors, security status data SSD regarding the security status of the secure room SR determined by the security status determination unit 15, execution process data EPD regarding the process executed by the process execution unit 16, mode control data MCD regarding multiple modes controlled by the mode control unit 18, and process content control data PCD regarding the process content controlled by the process content control unit 19.

[0062] <Security status notification processing> An example of security status notification processing according to one embodiment of the present invention will be described with reference to FIG.

[0063] 7, the security management device 1 acquires internal sensor data from an internal sensor placed inside the security room SR (step S1). The security management device 1 acquires external sensor data from an external sensor placed outside the security room SR (step S3). The security management device 1 determines the security situation of the security room SR based on the internal sensor data and the external sensor data (step S5). The security management device 1 executes a predetermined process (e.g., notification) according to the determined security situation (step S7).

[0064] As described above, the security management device 1 in this embodiment determines the security status of the secure room SR based on data detected by sensors placed inside and outside the secure room SR, and executes a predetermined process according to the security status. Therefore, the security management device 1 can, for example, notify the user U according to the security status of the secure room SR. This makes it possible to improve the security of the secure room SR.

[0065] <Security mode control process> An example of security mode control processing according to one embodiment of the present invention will be described with reference to FIG.

[0066] As shown in Fig. 8, when a user U enters a secure room SR, the management server 50 in the security management system 1 shown in Fig. 1 acquires image data including the user U from the surveillance camera 5 (step S11). The management server 50 performs user authentication of the user U based on the acquired image data (step S13). The security management device 1 acquires the result of the user authentication of the user U from the management server 50. The security management device 1 controls the security mode SM based on the acquired result of the user authentication (predetermined conditions) (step S15). The security management device 1 controls the processing content of the security management device 1 based on the controlled security mode SM (step S17).

[0067] As described above, the security management device 1 in this embodiment controls the security mode based on the result of user authentication of user U, and controls its own processing content according to the controlled security mode. This makes it possible to execute processing content of the security management device 1 according to the security level associated with user U. Therefore, processing content optimized for each user U is executed, making it possible to maintain a high security level in the secure room SR.

[0068] 9 is a diagram showing an example of the hardware configuration of a computer according to an embodiment of the present invention. With reference to FIG. 9, an example of the hardware configuration of a computer that can be used to configure the security management device 1 and management server 50 shown in FIG. 1 will be described.

[0069] 9, a computer 40 mainly comprises, as hardware resources, a processor 41, a main storage device 42, an auxiliary storage device 43, an input / output interface 44, and a communication interface 45, which are interconnected via a bus line 46 including an address bus, a data bus, a control bus, etc. Note that an interface circuit (not shown) may be interposed between the bus line 46 and each hardware resource as appropriate.

[0070] The processor 41 controls the entire computer. The processor 41 corresponds, for example, to the information processing unit 10 of the security management device 1 shown in FIG. 1. The main storage device 42 provides a working area for the processor 41 and is a volatile memory such as an SRAM (Static Random Access Memory) or a DRAM (Dynamic Random Access Memory). The auxiliary storage device 43 is a non-volatile memory such as an HDD, SSD, or flash memory that stores software programs and data. The programs and data are loaded from the auxiliary storage device 43 to the main storage device 42 via a bus line 46 at any time. The auxiliary storage device 43 corresponds, for example, to the recording unit 20 of the security management device 1 shown in FIG. 1.

[0071] The input / output interface 44 outputs or presents information and / or receives input of information, and may be a camera, keyboard, mouse, display, touch panel display, microphone, speaker, etc. The communication interface 45 is for transmitting and receiving various data to and from an external device or external database via a predetermined communication network. The communication interface 45 and the predetermined communication network may be connected by wire or wirelessly. The communication interface 45 may also acquire information related to the network, such as information related to Wi-Fi access points and information related to communication carrier base stations.

[0072] It will be apparent to those skilled in the art that the cooperation of the hardware resources and software exemplified above enables the computer 40 to function as desired means, execute desired steps, and achieve desired functions.

[0073] It should be noted that the above-described embodiments are intended to facilitate understanding of the present invention and are not to be construed as limiting the present invention. The present invention may be modified or improved without departing from the spirit thereof, and equivalents thereof are also included in the present invention. Furthermore, the present invention can be formed into various disclosures by appropriately combining multiple components disclosed in the above-described embodiments. For example, some components may be deleted from all the components shown in the embodiments. Furthermore, components may be appropriately combined in different embodiments. [Explanation of symbols]

[0074] 1...security management device, 2a...internal sound sensor, 2b...external sound sensor, 3a...internal human presence sensor, 3b...external human presence sensor, 4...open / close sensor, 5...surveillance camera, 6...LED, 10...information processing unit, 12...internal sensor data acquisition unit, 13...external sensor data acquisition unit, 14...open / close data acquisition unit, 15...security status determination unit, 16...processing execution unit, 17...user authentication processing unit, 18...mode control unit, 19...processing content control unit, 20...recording unit, 40...computer, 41...processor, 42...main recording device, 43...auxiliary recording device, 44...input / output interface, 45...communication interface, 46...bus line, 50...management server, 100...security management system

Claims

1. An information processing device operated by a user in a housing that forms a space in which the user can stay, a first acquisition unit that acquires first data from a first sensor disposed inside the housing; a second acquisition unit that acquires second data from a second sensor disposed outside the housing; a determination unit that determines a security status of the housing based on the first data and the second data; a processing execution unit that executes a predetermined process according to the determined security situation, the first data is first sound data relating to a sound pressure inside the housing, the second data is second sound data relating to a sound pressure outside the housing, the determination unit determines the security status based on a difference between the first sound data and the second sound data and a predetermined value related to sound pressure. Information processing device.

2. the first data is first location data relating to the location of the user inside the housing; the second data is second location data relating to the location of another user outside the housing; the determination unit determines the security status based on the first location data and the second location data. The information processing device according to claim 1 .

3. an opening / closing data acquisition unit that acquires opening / closing data related to the opening and closing of a door included in the housing; the determination unit determines the security status based on the opening / closing data and the second location data. The information processing device according to claim 2 .

4. the processing execution unit executes the predetermined processing according to the security situation based on image data generated by an imaging device disposed inside the housing capturing an image of the interior of the housing. The information processing device according to any one of claims 1 to 3.

5. a first control unit that controls a plurality of modes for maintaining security of the housing based on predetermined conditions; and a second control unit that controls the processing content of the information processing device based on the controlled mode. The information processing device according to any one of claims 1 to 4.

6. the processing content includes whether the information processing device uses at least one of the first sensor and the second sensor; The information processing device according to claim 5 .

7. In the plurality of modes, a security level of the housing is associated with the processing content for each user.

7. The information processing device according to claim 5 or 6.

8. An information processing method executed by an information processing device operated by a user in a housing that forms a space in which the user can stay, acquiring first data from a first sensor disposed within the housing; acquiring second data from a second sensor disposed external to the housing; determining a security status of the enclosure based on the first data and the second data; executing a predetermined process according to the determined security status; the first data is first sound data relating to a sound pressure inside the housing, the second data is second sound data relating to a sound pressure outside the housing, the determining step determines the security status based on a difference between the first sound data and the second sound data and a predetermined value related to sound pressure. Information processing methods.

9. an information processing device operated by a user in a housing that forms a space in which the user can stay; a first acquisition unit that acquires first data from a first sensor disposed inside the housing; a second acquisition unit that acquires second data from a second sensor disposed outside the housing; a determination unit that determines a security status of the housing based on the first data and the second data; a processing execution unit that executes a predetermined process according to the determined security status; It functions as the first data is first sound data relating to a sound pressure inside the housing, the second data is second sound data relating to a sound pressure outside the housing, the determination unit determines the security status based on a difference between the first sound data and the second sound data and a predetermined value related to sound pressure. program.

10. An information processing device operated by a user in a housing that forms a space in which the user can stay, a first acquisition unit that acquires first data from a first sensor disposed inside the housing; a second acquisition unit that acquires second data from a second sensor disposed outside the housing; a determination unit that determines a security status of the housing based on the first data and the second data; a processing execution unit that executes a predetermined process according to the determined security status; a first control unit that controls a plurality of modes for maintaining security of the housing based on predetermined conditions; a second control unit that controls the processing content of the information processing device based on the controlled mode; the processing content includes the information processing device using at least one of the first sensor and the second sensor; Information processing device.

11. In the plurality of modes, a security level of the housing is associated with the processing content for each user. The information processing device according to claim 10.

12. An information processing method executed by an information processing device operated by a user in a housing that forms a space in which the user can stay, acquiring first data from a first sensor disposed within the housing; acquiring second data from a second sensor disposed external to the housing; determining a security status of the enclosure based on the first data and the second data; executing a predetermined process according to the determined security situation; controlling a plurality of modes for maintaining security of the housing based on predetermined conditions; and controlling the processing content of the information processing device based on the controlled mode, the processing content includes the information processing device using at least one of the first sensor and the second sensor; Information processing methods.

13. an information processing device operated by a user in a housing that forms a space in which the user can stay; a first acquisition unit that acquires first data from a first sensor disposed inside the housing; a second acquisition unit that acquires second data from a second sensor disposed outside the housing; a determination unit that determines a security status of the housing based on the first data and the second data; a processing execution unit that executes a predetermined process according to the determined security status; a first control unit that controls a plurality of modes for maintaining security of the housing based on predetermined conditions; a second control unit that controls the processing content of the information processing device based on the controlled mode; It functions as the processing content includes the information processing device using at least one of the first sensor and the second sensor; program.

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