High-speed information and communication data processing method for intelligent apartment buildings
Patent Information
- Application Number
- KR1020240083518
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2026-09-09
- Estimated Expiration
- 2044-06-26
Smart Images

Figure 112024069219647-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a method for processing high-speed information and communication data in intelligent multi-unit residential buildings within the field of communication technology. More specifically, since mailboxes in multi-unit residential buildings are usually installed on the wall of the first floor of the common corridor past the main entrance and there is a problem that personal information can be easily stolen, falsified, or damaged when the main entrance is opened, the invention relates to an improved method for processing high-speed information and communication data in intelligent multi-unit residential buildings that strengthens the security level of the main entrance of each building and prevents the theft, falsification, or damage of personal information through mailboxes. Background Technology
[0002] In multi-unit residential buildings, where users include people of all ages and walks of life, the storage, processing, and collection of personal information are closely related to critical privacy issues; therefore, data processing is a very important factor.
[0003] In particular, issues such as the misuse, loss, theft, leakage, forgery, alteration, and damage of personal information have long been established as social issues, and various attempts are being made to prevent them.
[0004] For example, these include various forms such as electronic mailboxes, automatic vehicle access control, and access authentication systems for the main entrances of apartment buildings, all implemented to prevent mail theft and misuse.
[0005] Among these, the main entrance access authentication system mostly involves entering a password, and since most passwords are 4 digits long, they can be easily checked from the back or side when entering and are easily exposed, which has the disadvantage of being vulnerable to security breaches.
[0006] Moreover, since it is assumed that access to the main entrance does not cause direct damage, it is customary for password management to be lax and not thorough.
[0007] However, once the main entrance is opened and one enters, since mailboxes are installed for each household in most cases, the problem of misuse of personal information, such as theft, forgery, alteration, or damage, remains unresolved.
[0008] Furthermore, they track the receipt status of mail and sometimes link it to criminal activity.
[0009] Therefore, improvements to this are necessary. Prior art literature
[0010] Republic of Korea Patent Registration No. 10-2375615 (March 14, 2022) 'High-speed information and communication protection system for intelligent multi-unit housing' The problem to be solved
[0011] The present invention was created to address the various problems described above. Since mailboxes in multi-unit residential buildings are typically installed on the wall of the first floor of the common corridor past the main entrance, and there is a problem that personal information can be easily stolen, falsified, or damaged when the main entrance is opened, the main purpose of the invention is to provide an improved high-speed information and communication data processing method for intelligent multi-unit residential buildings that strengthens the security of the main entrance of each building and prevents the theft, falsification, or damage of personal information through mailboxes. means of solving the problem
[0012] The present invention, as a means to achieve the above-mentioned purpose, comprises a main entrance door controller (10) embedded in the main entrance door, an approach activation module (20) mounted on the main entrance door that continuously transmits a specific signal to activate a smart key that responds to the signal, a user terminal (30) equipped with a smart key activated by the approach activation module (20), a management server (40) that communicates with the main entrance door controller (10) via a wired connection to output a signal regarding the opening and closing of the main entrance door and stores and updates information regarding the user terminal (30), and a mailbox controller (50) installed in the mailbox (100) that automatically locks or unlocks the mailbox (100) according to a control signal from the main entrance door controller (10). In a method for processing ultra-high-speed information and communication data of an intelligent multi-unit residential building using a system comprising: a main entrance door controller (10) embedded in the main entrance door, an approach activation module (20) that continuously transmits a specific signal to activate a smart key that responds to the signal, a user terminal (30);
[0013] A step in which the user terminal (30) approaches the approach activation module (20) to a range of 2-3m; a step in which the user terminal (30) receives a specific signal transmitted by the approach activation module (20) when it enters the communication range; a step in which, when the specific signal is received, the user terminal (30) control unit activates the smart key function of the user terminal (30); a step in which, when the smart key function is activated, the user terminal (30) continuously transmits smart key information to the main entrance gate controller (10), and the main entrance gate controller (10) checks whether the received smart key information is a valid registrant through the management server (40); a step in which, when the verification is completed, the main entrance gate controller (10) opens the main entrance gate and simultaneously outputs a signal to the mailbox controller (50) to cause the mailbox controller (50) to unlock the mailbox (100). The present invention provides a method for processing ultra-high-speed information and communication data of an intelligent multi-unit building, characterized by including: a step in which the smart key function is deactivated when the user terminal (30) moves away from the approach activation module (20) and deviates from the communication range; a step in which, when the smart key function is deactivated, the user terminal (30) blocks the smart key information that was being transmitted to the main entrance door controller (10); and a step in which, when the smart key information is blocked, the main entrance door controller (10) closes the main entrance door and controls the mailbox controller (50) to lock the mailbox (100). Effects of the invention
[0014] According to the present invention, mailboxes in multi-unit residential buildings are usually installed on the wall of the first floor of the common corridor past the main entrance, and since there is a problem that personal information can be easily stolen, falsified, or damaged when the main entrance is opened, an improved effect can be obtained to strengthen the security of the main entrance of each building and prevent the theft, falsification, or damage of personal information through the mailbox. Brief explanation of the drawing
[0015] FIG. 1 is an exemplary block diagram showing a system implementation example for explaining a processing method according to the present invention. Figure 2 is a control configuration diagram to explain the mailbox management example of Figure 1. FIG. 3 is an exemplary illustration of a mailbox according to the present invention. Specific details for implementing the invention
[0016] Hereinafter, preferred embodiments according to the present invention will be described in more detail with reference to the attached drawings.
[0017] The processing method according to the present invention is carried out in a state equipped with a system as shown in FIG. 1.
[0018] That is, the main entrance door has a main entrance door controller (10) built in, and also has an approach activation module (20) installed.
[0019] At this time, the main entrance / exit controller (10) is a type of microcomputer, and the approach activation module (20) is a module that continuously transmits a specific signal to activate a key, also known as a 'smart key', that responds to this signal.
[0020] Here, the smart key is not a physical means, but a non-physical means implemented by software.
[0021] And, the smart key activated by the approach activation module (20) is installed in the user terminal (30).
[0022] The user terminal (30) generates a smart key by downloading and installing a specific program (app), and the smart key is normally kept in an inactive state, but when it receives a specific signal transmitted by the approach activation module (20), the control unit of the user terminal (30) is configured to activate the smart key.
[0023] In addition, the approach activation module (20) is a short-range communication module that only reaches within a range of 2-3m from the module location, so when it moves out of this distance, the smart key returns to its initial state, and when the smart key returns to its initial state, the main door controller (10) cuts off the door opening signal and the mailbox opening signal and switches both to a locked state.
[0024] Additionally, when the smart key is activated, the main entrance door controller (10) communicates with the user terminal (30) to check the status with the management server (40) and then outputs a signal to open the main entrance door.
[0025] In addition, the management server (40) is connected via a wire to the main access control device (10), is installed in the management room, and performs a series of management functions such as registering information related to the user terminal (30) and deleting the registered information to restrict authority when a reason such as loss occurs.
[0026] And, as shown in the example of FIG. 2, a mailbox controller (50) is installed in the mailbox (100), and the mailbox controller (50) is electrically connected to the main entrance controller (10).
[0027] Thus, at the moment the main entrance door controller (10) opens the main entrance door, the mailbox controller (50) is configured to receive a control signal and simultaneously unlock the mailbox (100).
[0028] Therefore, the mailbox (100) is always kept locked to maintain security, and is unlocked only when a legitimate person enters, thereby enhancing security so that personal information is not stolen.
[0029] More specifically, the ultra-high-speed information and communication data processing method of an intelligent multi-unit building according to the present invention comprises the steps of: a user terminal (30) approaching within a range of 2-3m from an approach activation module (20); receiving a specific signal transmitted by the approach activation module (20) when the user terminal (30) enters the communication range; when the specific signal is received, the user terminal (30) control unit activating the smart key function of the user terminal (30); when the smart key function is activated, the user terminal (30) continuously transmits smart key information to the main entrance controller (10), and the main entrance controller (10) verifies whether the received smart key information is a valid registrant through the management server (40); and when the verification is completed, the main entrance controller (10) opens the main entrance door and simultaneously outputs a signal to the mailbox controller (50) to cause the mailbox controller (50) to unlock the mailbox (100). The method includes a step in which the smart key function is deactivated when the user terminal (30) moves away from the approach activation module (20) and moves out of the communication range; a step in which, when the smart key function is deactivated, the user terminal (30) blocks the smart key information that was being transmitted to the main entrance door controller (10); and a step in which, when the smart key information is blocked, the main entrance door controller (10) closes the main entrance door and controls the mailbox controller (50) to lock the mailbox (100).
[0030] By doing this, security features are automatically enhanced, so there is no risk of passwords being stolen.
[0031] However, there may be a problem if the user terminal is lost. In this case, the issue can be resolved by registering the loss status in advance on the management server (40) and updating the information.
[0032] In addition, when the main entrance door is closed, the person using the corresponding user terminal (30) determines that they have returned to their household, and the management server (40) processes this as entry to manage the entry of the resident; further steps can be performed.
[0033] This allows the main entrance controller (10) to receive location information of the user terminal (30) along with smart key information and determine whether the user terminal (30) has entered the household or gone outside the household.
[0034] In addition, in the case of a mail carrier delivering mail, they can be registered as a special authorized person in the management server (40) and issued an authorized registration card so that the main entrance door controller and mailbox controller are automatically opened only for that registration card.
[0035] Meanwhile, the above mailbox (100) includes, as shown in the example of FIG. 3, a mailbox body (110) in the shape of a square box with an open front, a mailbox door (120) with one end hinged to the mailbox body (110) so as to be openable and closable on the open side of the mailbox body (110), a transparent window (130) formed in the mailbox door (120) to allow viewing of the interior, a handle (140) provided on the mailbox door (120), and an electronic locker (150) fixed to the mailbox body (110) and locking or unlocking the mailbox door (120) according to a control signal from a mailbox controller (50).
[0036] In this case, the mailbox body (110) and the mailbox door (120) are formed by pressing a thin sheet of iron and then electroplating it in a plating solution to increase corrosion resistance and durability.
[0037] At this time, the plating solution is composed of 35 wt% copper, 1.5 wt% titanium, 3.5 wt% nickel sulfate, 2.5 wt% 3-pyridine sulfonic acid, 3.5 wt% aluminum, 2.5 wt% oxamide, 1.5 wt% bismuth, and the remainder being water.
[0038] Here, copper is a representative corrosion and rust inhibitor, titanium strengthens corrosion resistance by creating an insoluble oxide film on the surface, nickel sulfate contributes to securing uniform plating quality by refining the structure of the plating solution, 3-pyridine sulfonic acid prevents the formation of microcracks within the plating surface while ensuring uniformity of the plating surface, aluminum acts as an oxygen contact barrier to suppress rust formation, oxamide strengthens plating adhesion, and bismuth strengthens plating and adhesion.
[0039] In addition, the protective and waterproof properties can be enhanced by coating the surface of the plated layer with a mixed resin comprising 10 parts by weight of CZ (N-cyclohexybenzothiazole-2-sulfenamide), 6.5 parts by weight of sodium xylenesulfonate, and 5.5 parts by weight of methylisothiazolinone (2-methyl-4-isothiazoline-3-one) per 100 parts by weight of polycarbonate resin.
[0040] By configuring it this way, it becomes possible to produce an affordable mailbox without using expensive aluminum.
[0041] At this time, CZ (N-cyclohexybenzothiazole-2-sulfenamide) increases surface slip properties to inhibit foreign matter adhesion, sodium xylenesulfonate increases adhesion stability and prevents fluffing, and methylisothiazolinone (2-methyl-4-isothiazoline-3-one) increases organic matter decomposition ability to increase surface adhesion and strengthen moisture resistance. Explanation of the symbols
[0042] 10: Main Entrance Controller 20: Approach Activation Module 30: User terminal 40: Management server 50: Mailbox controller
Claims
Claim 1 delete Claim 2 A method for processing ultra-high-speed information and communication data of an intelligent multi-unit residential building using a system comprising: a main entrance door controller (10) embedded in the main entrance door; an approach activation module (20) mounted on the main entrance door and continuously transmitting a specific signal to activate a smart key that responds to the signal; a user terminal (30) equipped with a smart key activated by the approach activation module (20); a management server (40) that communicates with the main entrance door controller (10) via a wired connection to output a signal regarding the opening and closing of the main entrance door and stores and updates information regarding the user terminal (30); and a mailbox controller (50) installed in the mailbox (100) and automatically locking or unlocking the mailbox (100) according to a control signal from the main entrance door controller (10); wherein the user terminal (30) approaches within a range of 2-3m from the approach activation module (20); A step of receiving a specific signal transmitted by the approach activation module (20) when the user terminal (30) enters the communication range; a step of the user terminal (30) control unit activating the smart key function of the user terminal (30) when the specific signal is received; a step of the user terminal (30) continuously transmitting smart key information to the main entrance gate controller (10) when the smart key function is activated, and the main entrance gate controller (10) verifying whether the received smart key information is a valid registrant through the management server (40); a step of the main entrance gate controller (10) opening the main entrance gate and simultaneously outputting a signal to the mailbox controller (50) to cause the mailbox controller (50) to unlock the mailbox (100); a step of deactivating the smart key function when the user terminal (30) moves away from the approach activation module (20) and exits the communication range. When the smart key function is deactivated, the user terminal (30) blocks the smart key information being transmitted to the main entrance door controller (10); when the smart key information is blocked, the main entrance door controller (10) closes the main entrance door and controls the mailbox controller (50) to lock the mailbox (100) as well;The method further includes the step of managing the entry and exit of residents by determining that the person using the user terminal (30) has returned to the household when the main entrance door is closed, and the management server (40) processes the entry to manage the entry and exit of residents by transmitting location information of the user terminal (30) together with smart key information when the user terminal (30) transmits smart key information to the main entrance door controller (10); in the case of a mail carrier delivering mail, the mail carrier is registered as a specially authorized person with the management server (40) and an authorized registration card is issued so that the main entrance door controller and the mailbox controller are automatically opened only for the registered card; and the mailbox (100) comprises a mailbox body (110) in the shape of a square box with an open front, a mailbox door (120) with one end hinged to the mailbox body (110) so as to be openable on the open side of the mailbox body (110), and a door formed on the mailbox door (120) so as to be able to see inside. It includes a transparent window (130), a handle (140) provided on the mailbox door (120), and an electronic locker (150) fixed to the mailbox body (110) and locking or unlocking the mailbox door (120) according to a control signal from a mailbox controller (50); the mailbox body (110) and the mailbox door (120) are formed by pressing a thin steel plate and electroplating it in a plating solution to increase corrosion resistance and durability; the plating solution consists of 35 wt% copper, 1.5 wt% titanium, 3.5 wt% nickel sulfate, 2.5 wt% 3-pyridine sulfonic acid, 3.5 wt% aluminum, 2.5 wt% oxamide, 1.5 wt% bismuth, and the remainder being water; and a polycarbonate resin is applied to the surface of the plated layer thus plated. Per 100 parts by weight, 10 parts by weight of CZ (N-cyclohexybenzothiazole-2-sulfenamide), 6.5 parts by weight of sodium xylenesulfonate, and methylisothiazolinone (2-methyl-4-isothiazoline-3-one); A method for processing ultra-high-speed information and communication data for an intelligent multi-unit residential building, characterized by enhancing protection and water resistance by coating with a mixed resin mixed in 5.5 parts by weight.
Citation Information
Patent Citations
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