Body and coffin matching system and matching method

The system addresses manual decision-making and confidentiality issues in body mix-up prevention by using RFID tags and a core server to ensure reliable body-coffin matching, maintaining funeral information security.

JP7760555B2Active Publication Date: 2025-10-27ALPHA CLUB MUSASHINO CO LTD
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Patent Information

Application Number
JP2023106368
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-06-28
Publication Date
2025-10-27
Estimated Expiration
2043-06-28

AI Technical Summary

Technical Problem

Existing body mix-up prevention systems rely on manual decision-making, which can lead to misidentification risks, and involve external management that compromises funeral information confidentiality.

Method used

A system and method where the entire operation and management are handled by a funeral company, using RFID tags and a core server to mechanically verify body-coffin matches through a network of RFID readers and a control PC, ensuring confidentiality and preventing mix-ups.

Benefits of technology

The system ensures the confidentiality of funeral information and reliably prevents body mix-ups during coffin removal and cremation by mechanically verifying body-coffin matches.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a corpse and coffin matching system and a matching method capable of ensuring confidentiality of funeral information and reliably preventing corpse confusion due to a human determination mistake.SOLUTION: A corpse and coffin matching system comprises: a core server 1 managed by a system operator; a mobile terminal 10 for inputting corpse information to the core server 1; a router 2 installed in a funeral facility; a hub 3 connected to the router 2; an HHT control AP 4, a control PC 5, information reading means 6, and alarm means 8 connected to the hub 3; a corpse identification band 11 attached to the corpse and carrying the corpse information; an RFID tag which is attached to the coffin and on which the corpse information is recorded; and a handy terminal 9 that receives the corpse information from the core server 1 via the HHT control AP 4, writes the same to the corpse identification band 11 and the RFID tag 13, and reads the corpse information from the corpse identification band 11 and the RFID tag 13.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a matching system and method for matching a body with a coffin, which can reliably prevent the misidentification of bodies during coffin removal and cremation. [Background technology]

[0002] In a typical funeral, the body is placed in a coffin at a funeral home, but it is not uncommon for multiple funerals to be held at the same funeral home on the same day. The funeral reception date, funeral number, name of the deceased, scheduled date and time of the funeral procession, and actual date and time of the funeral procession, etc., all agreed upon by the funeral home, are entered and saved in the funeral home's computer, but whether the body is placed in the coffin correctly (whether the body is placed in the predetermined coffin) and whether the body is taken out at the correct designated time (whether the coffin is correctly selected) are all determined by the staff in charge. Needless to say, errors in human judgment are not without risk, which could lead to some kind of trouble.

[0003] To solve this problem, a system to prevent body mix-ups has been proposed (Utility Model Registration No. 3226655). This system involves a tag attached to the body with a 2D code containing body identification information, and a tag attached to the coffin with the same 2D code, which is checked sequentially on a smartphone carried by a funeral company employee. This system aims to prevent body mix-ups by manually determining whether or not the bodies have been mixed up. Furthermore, the system is operated and managed by a management company other than the funeral company using an external server, which raises concerns about the confidentiality of funeral information. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Utility Model Registration No. 3226655 Summary of the Invention [Problem to be solved by the invention]

[0005] As mentioned above, in the case of previously proposed body mix-up prevention systems, the possibility of misjudgment cannot be eliminated because all decisions regarding whether or not a body has been mixed up are made manually in an attempt to prevent body mix-ups. Furthermore, the operation and management of the system is carried out by a management company other than the funeral company using an external server, which poses problems regarding the confidentiality of funeral information.

[0006] The present invention has been made to solve the problems with such conventional systems, and aims to provide a system and method for matching bodies and coffins that ensures the confidentiality of funeral information because the entire system is operated and managed by a funeral company, and that can reliably prevent body mix-ups caused by human error by mechanically making the final decision on whether or not the bodies have been mixed up at the time of coffin removal. [Means for solving the problem]

[0007] The invention described in claim 1 for solving the above problem comprises a core server managed by a system operator, a mobile terminal for inputting body information including information on the deceased, funeral number, funeral hall, funeral date and time, funeral procession date and time, etc., into the core server, a router installed in a funeral facility and connected to the core server, a hub connected to the router, an HHT control AP connected to the hub, a control PC, an RFID reader / writer including an antenna as information reading means, and a warning means; a one-dimensional or two-dimensional code attached to the body, and after the body is transported to the funeral facility, the code The above body information Can be linked A body identification band and a body information band attached to the coffin be linked to The corpse information is received from the backbone server via the RFID tag and the HHT control AP, and the corpse information is linked to the corpse identification band. Together , and write the body information to the RFID tag. By doing so, the body information and the RFID tag are linked. It consists of a handheld terminal, The linking of the body information with the code of the body identification band is performed by the handheld terminal that receives the body information from the backbone server reading the code of the body identification band and storing the code as a code corresponding to the body information, The coffin and the corpse information are linked by writing the corpse information to the RFID tag using the handheld terminal, The corpse identification band and the RFID tag are linked at the time of placing the body in a coffin by comparing the corpse information linked to the code of the corpse identification band recorded in the handy terminal with the corpse information recorded in the RFID tag, thereby matching the coffin with the corpse placed in it. is.

[0008] In one embodiment, the core server and the router are connected via VPN. Also, in another embodiment, the hub, HHT control AP, RFID reader / writer, and warning means are PoE-powered types, and the HHT control AP, RFID reader / writer, and warning means are connected to the hub via LAN cables. In one embodiment, the antenna is placed at the funeral home's coffin exit, or at the funeral home's coffin exit and hearse. The antenna placed at the funeral home's coffin exit is preferably a mat-type antenna.

[0009] The invention described in claim 6 for solving the above problem is a method for matching a body and a coffin using the body and coffin matching system described in any one of claims 1 to 5, inputting the body information from the mobile terminal to the core server; The handheld terminal receives the body information from the backbone server via the HHT control AP, It contains a one-dimensional or two-dimensional code and is attached to the body. The body identification band code Load the The code is stored as a code corresponding to the body information. Body information and the body identification band Code A linking step; a step of inputting the body information into the RFID tag attached to the coffin using the handheld terminal, and linking the coffin to the RFID tag; When placing the body in a coffin, the handheld terminal compares the body information recorded on the handheld terminal, which is linked to the code of the body identification band, with the body information recorded on the RFID tag, thereby linking the body to which the body identification band is attached with the RFID tag and the coffin to which it is attached; , At the time of the funeral, The RFID reader / writer reads the body information recorded on the RFID tag, and the control PC compares the body information read by the RFID reader / writer with the body information stored in the backbone server. and A step of activating the warning means to stop the coffin from being carried out if there is a discrepancy as a result of the comparison, or if all steps have not been completed; This is a method of matching a body and a coffin.

[0010] The invention described in claim 7 to solve the above problem comprises a core server managed by a system operator, a mobile terminal for inputting body information including information on the deceased, funeral number, funeral facility, funeral date and time, funeral procession date and time, etc., into the core server, a one-dimensional or two-dimensional code attached to the body, and after the body is brought into the funeral home, the code The above body information Can be linked Body identification bands, an RFID tag attached to the coffin to record the body information; A first router installed in the funeral facility and connected to the backbone server, a first hub connected to the first router, a first HHT control AP connected to the first hub, a first control PC, a first RFID reader / writer including a first antenna as information reading means, and a first warning means, which receives the body information from the backbone server via the first HHT control AP and outputs the body information and the body identification band. Code Linking with Together , and write the body information to the RFID tag. By doing so, the body information and the RFID tag are linked. Handy terminal and The system is configured to include a second router installed in a cremation facility and connected to the backbone server, a second hub connected to the second router, a second HHT control AP connected to the second hub, a second control PC, a second RFID reader / writer including a second antenna as information reading means, and a second warning means, The linking of the body information with the code of the body identification band is performed by the handheld terminal that receives the body information from the backbone server reading the code of the body identification band and storing the code as a code corresponding to the body information, The coffin and the corpse information are linked by writing the corpse information to the RFID tag using the handheld terminal, The corpse identification band and the RFID tag are linked at the time of placing the body in the coffin by comparing the corpse information linked to the code of the corpse identification band recorded in the handy terminal with the corpse information recorded in the RFID tag, thereby matching the coffin with the corpse placed in the coffin. This is a body and coffin matching system that features the following:

[0011] In one embodiment, the backbone server is connected to the first router and the second router via VPN. Also, in one embodiment, the first hub, first HHT control AP, first RFID reader / writer, and first warning means, as well as the second hub, second HHT control AP, second RFID reader / writer, and second warning means are of PoE power supply type, and the first HHT control AP, first RFID reader / writer, and first warning means are connected to the first hub via a LAN cable, and the second HHT control AP, second RFID reader / writer, and second warning means are connected to the second hub via a LAN cable.

[0012] In one embodiment, the first antenna is attached to the coffin exit of the funeral facility or to the coffin exit of the funeral facility and the hearse, and the second antenna is attached to the entrance of the crematorium. The first antenna attached to the coffin exit of the funeral facility and the second antenna attached to the entrance of the crematorium are preferably mat-type antennas.

[0013] The invention described in claim 12 for solving the above problem is a method for matching a body and a coffin using the body and coffin matching system described in any one of claims 7 to 11, inputting the body information from the mobile terminal to the core server; The handheld terminal receives the body information from the backbone server via the HHT control AP, With one-dimensional or two-dimensional code The corpse identification band attached to the corpse Code and reads the body information and the body identification band. Code and A linking step; a step of inputting the body information into the RFID tag attached to the coffin using the handheld terminal, and linking the coffin to the RFID tag; When placing the body in a coffin, the handheld terminal compares the body information recorded on the handheld terminal, which is linked to the code of the body identification band, with the body information recorded on the RFID tag, thereby linking the body to which the body identification band is attached with the RFID tag and the coffin to which it is attached; , At the time of the funeral, first via the antenna The RFID reader / writer reads the body information recorded on the RFID tag, and the control PC receives the body information read by the RFID reader / writer. A step of comparing the body information stored in the core server; A step of activating the warning means to stop the coffin from being carried out if there is a discrepancy as a result of the comparison, or if all steps have not been completed; When entering the cremation facility, the The second RFID reader / writer RFID tags is recorded in Read the body information, The second control PC reads the body information read by the second RFID reader / writer, A step of collating the body information stored in the core server; If there are any discrepancies as a result of the comparison, or if not all steps have been completed, second activating a warning means to stop the cremation; This is a method of matching a body and a coffin. [Effects of the Invention]

[0014] The body and coffin matching system and matching method of the present invention are as described above, and because the entire system is operated and managed by a funeral company, the confidentiality of funeral information can be ensured.In addition, the body is linked to the body information, and the coffin is linked to the body information using an RFID tag.Furthermore, at the time of coffin removal or cremation, the body information on the RFID tag is mechanically compared with the body information stored on the core server, which has the effect of reliably preventing the occurrence of body mix-ups at the time of coffin removal or cremation. [Brief explanation of the drawings]

[0015] [Figure 1] 1 is a simplified diagram showing the overall configuration of a first embodiment of a body and coffin matching system according to the present invention. [Figure 2] 1 is a flow chart showing the processing flow in a first embodiment of a body and coffin matching method according to the present invention. [Figure 3] 1 is a simplified diagram showing the overall configuration of a second embodiment of the body and coffin matching system according to the present invention. [Figure 4] FIG. 2 is a flow chart showing the processing flow in a second embodiment of the body and coffin matching method according to the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0016] The corpse and coffin matching system according to the present invention will be described in more detail with reference to the accompanying drawings. The corpse and coffin matching system according to the first embodiment of the present invention includes a core server 1 managed by a system operator (funeral company), a mobile terminal 10 used by funeral directors to input corpse information into the core server 1, a router 2 installed at each funeral facility and connected to the core server 1, and a hub 3 connected to the router 2.

[0017] Connected to the hub 3 are an HHT control AP (access point) 4, a control PC 5, an RFID reader / writer 6 as information reading means, and an alarm means 8. A handheld terminal 9 is connected to the HHT control AP 4 via WiFi, and an antenna 7 is connected to the RFID reader / writer 6. The system also includes a body identification band 11 to be attached to the body, and an RFID tag 13 to be attached to the coffin 12. The body identification band 11 is typically attached to the ankle, and includes a one-dimensional or two-dimensional code that does not contain any information at the time of attachment. Preferably, the body identification band 11 is color-coded by gender (e.g., blue for men and red for women).

[0018] The core server 1 is connected to a router 2 installed at each funeral facility, but the number of funeral facilities, i.e., the number of routers 2, may increase or decrease.In addition, to prevent leakage of communication content, it is preferable to connect the core server 1 and router 2 via a VPN network 15 (an Internet VPN that utilizes existing Internet lines).

[0019] Of the above devices, the hub 3, HHT control AP 4, RFID reader / writer 6, and warning means 8 are preferably PoE powered. Needless to say, PoE is a technology that makes it possible to provide power and an Internet connection environment without the need for a power source by connecting devices with a LAN cable. In the case of this system, by connecting the HHT control AP 4, RFID reader / writer 6, and warning means 8 with a LAN cable to the hub 3, which is connected with a LAN cable to the router 2, it becomes possible to supply power to these devices and place them in an Internet access environment.

[0020] The mobile terminal 10 is a portable terminal such as a laptop or tablet carried by a sales representative, and body information including information about the deceased, funeral number, funeral venue, funeral date and time, funeral procession date and time, etc. is input from this mobile terminal 10 to the core server 1.

[0021] The handheld terminal 9 is a handheld type capable of wireless communication, and is provided at each funeral facility and handled by a staff member at each funeral facility. As will be described later, the staff member at each funeral facility operates the handheld terminal 9 to receive corpse information from the backbone server 1 via the HHT control AP 4 connected via WiFi, associates the corpse information with the corpse identification band 11 (its code), and inputs the corpse information into the RFID tag 13.

[0022] As described above, the body identification band 11 is attached to the body without containing any information before the body enters the funeral facility, and after entry, the handheld terminal 9 links it to the body information received from the core server 1. More specifically, the handheld terminal 9 reads the body identification band 11 that does not contain any information, and the handheld terminal 9 links the body identification band 11 to the body information (linking that "the code of this body identification band is this body information").

[0023] The RFID tag 13 is attached to the coffin 12 when it arrives at the funeral facility. After that, body information is input into the RFID tag 13 from the handheld terminal 9, and the body information is linked to the coffin 12. Then, when the body is placed in the coffin, the handheld terminal 9 reads the body identification band 11 and the RFID tag 13, and the body identification band 11 and the RFID tag 13 are linked (body verification). After the body identification band 11 and the RFID tag 13 have been linked, the body identification band 11 may be removed.

[0024] Antenna 7, connected to RFID reader / writer 6 via a coaxial cable, is installed at the funeral home entrance, which is the coffin exit. A mat-type antenna that can be installed on the floor of the entrance is preferable as it is not conspicuous. At the time of the funeral, the RFID reader / writer 6 reads the corpse information entered in the RFID tag via this antenna 7, and the control PC 5 checks whether it matches the corpse information stored in the main server 1.

[0025] Antenna 7 may also be attached to the hearse along with the funeral home entrance (coffin exit). In this case, it becomes possible to compare the body information in the core server 1 with the body information entered in the RFID tag at both the funeral home entrance and the hearse, making it possible to more reliably avoid misidentifying the body. The antenna 7 attached to the coffin exit is connected to the RFID reader / writer 6 by a wired method such as a coaxial cable, but the antenna 7 attached to the hearse sends and receives information with the RFID reader / writer 6 by wireless communication.

[0026] The body information in the core server 1 is compared with the body information entered on the RFID tag read by the antenna 7 by a control PC 5 installed in each funeral facility, and if the comparison results in a mismatch in any piece of information, or if all steps have not been completed, a sound and light warning means 8 is activated to stop the coffin from being carried out.

[0027] The method for matching a body and a coffin using the first embodiment of the body and coffin matching system according to the present invention is as follows: - A corpse information input step (S1) of inputting corpse information from a mobile terminal to a core server; - A step (S2) in which the handheld terminal receives corpse information from the core server via the HHT control AP, reads the corpse identification band attached to the corpse, and associates the corpse information with the corpse identification band; - A step (S3) of linking the coffin and the RFID tag by inputting body information into the RFID tag attached to the coffin using a handheld terminal, and linking the coffin and the RFID tag; - A step (S4) of linking the body to the RFID tag by checking the body information recorded on the body identification band using a handheld terminal at the time of placing the body in the coffin, and linking the body to the RFID tag; - A step (S5) of reading the body information on the RFID tag via an antenna at the time of the funeral procession and comparing it with the body information stored in the core server; - A step of executing the collation result (S6) in which, if there is a discrepancy as a result of the collation, or if all steps have not been completed, a warning means is activated to stop the coffin from being removed; It consists of:

[0028] The method for matching a body and a coffin, which is carried out using the first embodiment of the system according to the present invention, will be described in more detail below, step by step.

[0029] Corpse information input step (S1) First, the corpse information is input from the mobile terminal 10 to the core server 1. As mentioned above, the corpse information includes at least information about the deceased, funeral number, funeral venue, funeral date and time, and funeral procession date and time, and may also include information about the crematorium and cremation date and time. The corpse information is decided at the funeral arrangements location (usually a funeral company), and is then immediately sent from the mobile terminal 10 to the core server 1.

[0030] Step S2: Linking the body to the identification band In this step, the funeral facility staff operates the handheld terminal 9 to receive body information from the core server 1 via the HHT control AP 4, reads the body identification band 11, and links the received body information to the body identification band 11 attached to the body (linking the information within the handheld terminal 9 that "the code of this body identification band will be this body information").

[0031] Step S3: Binding the coffin to the RFID tag Next, the corpse information is input into the RFID tag 13 attached to the coffin using the handy terminal 9, and the coffin and the RFID tag are linked.

[0032] Step S4: Linking the body to the RFID tag At the time of placing the body in the coffin, the body information read from the body identification band 11 is linked to the body information read from the RFID tag (body matching). That is, the handheld terminal 9 reads and compares the body information on the body identification band 11 with the body information on the RFID tag, and the body is linked to the RFID tag. The body identification band 11 may be removed after this linking is complete.

[0033] Step of verifying corpse information at the time of funeral procession (S5) At the time of the funeral, the body information on the RFID tag 13 is read by the RFID reader / writer 6, which is an information reading means, and this is compared with the body information stored in the main server 1 in the control PC 5.

[0034] Matching result execution step (S6) If the result of the above comparison shows any discrepancy, or if all steps have not been completed (for example, if the body information is not linked to the body identification band), an operation signal is sent from the control PC 5 to the warning means 8, which operates to issue a warning using light and sound. Thus, the coffin procession is temporarily stopped and the body is identified.

[0035] The second embodiment of the body and coffin matching system of the present invention includes a core server 1 managed by a system operator (funeral company), a mobile terminal 10 used by funeral directors to input body information into the core server 1, a first router 22 installed at each funeral facility and connected to the core server 1, a first hub 23 connected to the first router 22, a second router 32 installed at each cremation facility and connected to the core server 1, and a second hub 33 connected to the second router 32 (see Figure 3).

[0036] The system within the funeral home in the body and coffin matching system according to the second embodiment is the same as that of the first embodiment. That is, within the funeral home, a first hub 23 is connected to a first HHT control AP (access point) 24, a first control PC 25, a first RFID reader / writer 26 including a first antenna 27 as information reading means, and a first warning means 28.

[0037] In addition, the handheld terminal 9 is connected to the first HHT control AP 24 via WiFi, and the first antenna 27 is connected to the first RFID reader / writer 26. The system further includes a corpse identification band 11 attached to the corpse and an RFID tag 13 attached to the coffin 12.

[0038] In the body and coffin matching system of the second embodiment, furthermore, within the cremation facility, a second hub 33 is connected to a second HHT control AP (access point) 34, a second control PC 35, a second RFID reader / writer 36 including a second antenna 37 which is an information reading means, and a second warning means 38.

[0039] The backbone server 1 is connected to a second router 32 installed at each crematorium facility, but the number of crematorium facilities, i.e., the number of second routers 32, may increase or decrease.In addition, to prevent leakage of communication content, it is preferable that the backbone server 1 and second router 32 be connected via a VPN network 15 (an Internet VPN that utilizes existing Internet lines).

[0040] Of the above devices, the second hub 33, second HHT control AP 34, second RFID reader / writer 36, and second warning means 38 are preferably of the PoE power supply type. In the case of this system, the second HHT control AP 34, second RFID reader / writer 36, and second warning means 38 are connected by LAN cable to the second hub 33, which is connected by LAN cable to the second router 32, making it possible to supply power to these devices while placing them in an internet usage environment.

[0041] The second antenna 37, connected to the second RFID reader / writer 36 via a coaxial cable, is installed at the entrance (entrance) of the crematorium, and it is preferable that it be a mat-type antenna that can be installed on the floor of the entrance because it is not conspicuous. Upon entry, the second RFID reader / writer 36 reads the corpse information entered in the RFID tag via this second antenna 37, and the second control PC 35 checks whether it matches the corpse information stored in the main server 1.

[0042] The second antenna 37 may also be attached to the hearse as well as to the entrance (entrance) for the coffin at the crematorium. In that case, it becomes possible to compare the body information in the core server 1 with the body information entered in the RFID tag at both the entrance and the hearse, making it possible to more reliably avoid mixing up the bodies. The second antenna 37 attached to the entrance is connected to the second RFID reader / writer 36 by a wired method such as a coaxial cable, but the second antenna 37 attached to the hearse sends and receives information by wirelessly communicating with the second RFID reader / writer 36.

[0043] The body information in the core server 1 is compared with the body information entered in the RFID tag read by the second antenna 37 by a second control PC 35 installed in each cremation facility, and if the comparison results in a mismatch in any piece of information, or if all steps have not been completed, a second warning means 38 using sound and light is activated to stop the cremation.

[0044] The method of matching a body and a coffin using the second embodiment of the body and coffin matching system of the present invention is the same as the method of matching a body and a coffin using the first embodiment from steps (S1) to (S6), with the addition of a step (S7) of comparing the body information on the RFID tag with the body information stored on the core server when the body enters the crematorium, and a step (S8) of executing the comparison result (see Figure 4).

[0045] Step (S8) of verifying body information when entering the crematorium When entering the crematorium, the body information on the RFID tag 13 is read by the second RFID reader / writer 36, which is an information reading means, and this is compared with the body information stored in the main server 1 in the second control PC 35.

[0046] Step of executing matching results at the crematorium (S9) If the above comparison reveals any discrepancy, or if all steps have not been completed, the second control PC 35 sends an operation signal to the second warning means 38, which then activates and issues a warning using light and sound. Thus, the cremation is temporarily stopped and the body is identified. [Industrial Applicability]

[0047] The body and coffin matching system and matching method of the present invention are as described above, and because the entire system is operated and managed by a funeral company, the confidentiality of funeral information can be ensured.In addition, the body is linked to the body information, and the coffin is linked to the body information using an RFID tag.Furthermore, at the time of coffin removal or cremation, the body information on the RFID tag is mechanically compared with the body information stored on the core server, which has the effect of reliably preventing the occurrence of body mix-ups at the time of coffin removal or cremation, and has great industrial applicability. [Explanation of symbols]

[0048] 1. Core server 2. Router 3. Hub 4 HHT control AP 5 Control PC 6 RFID reader / writer 7 Antenna 8 Warning measures 9 Handheld terminal 10 Mobile devices 11 Body Identification Band 12 Coffins 13 RFID tags 15 VPN network

Claims

1. The system comprises a backbone server managed by a system operator, a mobile terminal for inputting body information including information on the deceased, funeral number, funeral hall, funeral date and time, and funeral procession date and time into the backbone server, a router installed in a funeral facility and connected to the backbone server, a hub connected to the router, an HHT control AP, a control PC, an RFID reader / writer including an antenna as information reading means, and a warning means connected to the hub, a body identification band having a one-dimensional or two-dimensional code and attached to the body, and the code is linked to the body information after the body is brought into the funeral facility, an RFID tag attached to the coffin and linked to the body information, and a handy terminal that receives the body information from the backbone server via the HHT control AP, links the body information to the body identification band, and writes the body information to the RFID tag, thereby linking the body information to the RFID tag. The linking of the body information with the code of the body identification band is performed by the handheld terminal that receives the body information from the backbone server reading the code of the body identification band and storing the code as a code corresponding to the body information, The coffin and the corpse information are linked by writing the corpse information to the RFID tag using the handheld terminal, This is a body and coffin matching system characterized in that the body identification band and the RFID tag are linked together at the time of coffin placement by comparing the body information linked to the code of the body identification band recorded in the handheld terminal with the body information recorded in the RFID tag, thereby matching the coffin with the body placed in it.

2. The body and coffin matching system according to claim 1, wherein the backbone server and the router are connected via a VPN.

3. The body and coffin matching system described in claim 1, wherein the hub, HHT control AP, RFID reader / writer and warning means are PoE powered types, and the HHT control AP, RFID reader / writer and warning means are connected to the hub via a LAN cable.

4. The body and coffin matching system of claim 1, wherein the antenna is positioned at the funeral home's coffin exit, or at the funeral home's coffin exit and the hearse.

5. The body and coffin matching system according to claim 4, wherein the antenna placed at the coffin exit of the funeral facility is a mat-type antenna.

6. A method for matching a body and a coffin using the body and coffin matching system according to any one of claims 1 to 5, inputting the body information from the mobile terminal to the core server; receiving the corpse information from the backbone server via the HHT control AP in the handheld terminal, reading the code of the corpse identification band attached to the corpse, which includes a one-dimensional or two-dimensional code, and storing the code as corresponding to the corpse information, thereby linking the corpse information with the code of the corpse identification band; a step of inputting the body information into the RFID tag attached to the coffin using the handheld terminal and linking the coffin to the RFID tag; At the time of placing the body in the coffin, the handheld terminal compares the body information linked to the code of the body identification band recorded on the handheld terminal with the body information recorded on the RFID tag, thereby linking the body to which the body identification band is attached with the RFID tag and the coffin to which it is attached; At the time of funeral procession, the RFID reader / writer reads the corpse information recorded on the RFID tag, and the control PC compares the corpse information read by the RFID reader / writer with the corpse information stored in the core server; A step of activating the warning means to stop the coffin from being carried out if there is a discrepancy as a result of the comparison, or if all steps have not been completed; A method of matching bodies and coffins.

7. A core server managed by the system operator, and a mobile terminal for inputting body information including information on the deceased, funeral number, funeral facility, funeral date and time, and funeral procession date and time into the core server. A body identification band having a one-dimensional or two-dimensional code attached to the body, the code being linked to the body information after the body is brought into the funeral facility; an RFID tag attached to the coffin to record the body information; a first router installed at the funeral facility and connected to the backbone server; a first hub connected to the first router; a first HHT control AP, a first control PC, a first RFID reader / writer including a first antenna as an information reading means, and a first warning means connected to the first hub; and a handy terminal that receives the body information from the backbone server via the first HHT control AP, links the body information to the code of the body identification band, and writes the body information to the RFID tag, thereby linking the body information to the RFID tag. The cremation facility is configured to include a second router that is installed in the cremation facility and connected to the backbone server, a second hub that is connected to the second router, a second HHT control AP that is connected to the second hub, a second control PC, a second RFID reader / writer including a second antenna that is an information reading means, and a second warning means, The linking of the body information with the code of the body identification band is performed by the handheld terminal that receives the body information from the backbone server reading the code of the body identification band and storing the code as a code corresponding to the body information, The coffin and the corpse information are linked by writing the corpse information to the RFID tag using the handheld terminal, The body identification band and the RFID tag are linked at the time of coffin placement by comparing the body information linked to the code of the body identification band recorded in the handheld terminal with the body information recorded in the RFID tag, thereby matching the coffin with the body placed in it.This is a body and coffin matching system.

8. The body and coffin matching system of claim 7, wherein the backbone server, the first router, and the second router are each connected via VPN.

9. The body and coffin matching system of claim 7, wherein the first hub, first HHT control AP, first RFID reader / writer and first warning means, and the second hub, second HHT control AP, second RFID reader / writer and second warning means are PoE powered, the first HHT control AP, first RFID reader / writer and first warning means are connected to the first hub via a LAN cable, and the second HHT control AP, second RFID reader / writer and second warning means are connected to the second hub via a LAN cable.

10. The body and coffin matching system of claim 7, wherein the first antenna is attached to the coffin exit of the funeral facility or to the coffin exit of the funeral facility and the hearse, and the second antenna is attached to the entrance of the crematorium.

11. The body and coffin matching system of claim 10, wherein the first antenna attached to the coffin exit entrance of the funeral facility and the second antenna attached to the entrance entrance of the cremation facility are mat-type antennas.

12. A method for matching a body and a coffin using the body and coffin matching system according to any one of claims 7 to 11, inputting the body information from the mobile terminal to the core server; receiving the corpse information from the backbone server via the HHT control AP in the handheld terminal, reading the code of the corpse identification band attached to the corpse, and linking the corpse information with the corpse identification band; a step of inputting the body information into the RFID tag attached to the coffin using the handheld terminal and linking the coffin to the RFID tag; When placing the body in a coffin, the handheld terminal compares the body information recorded on the handheld terminal, which is linked to the code of the body identification band, with the body information recorded on the RFID tag, thereby linking the body to the RFID tag and the coffin to which it is attached; At the time of funeral procession, the RFID reader / writer reads the corpse information recorded on the RFID tag via the first antenna, and the control PC compares the corpse information read by the RFID reader / writer with the corpse information stored in the core server; A step of activating the warning means to stop the coffin from being carried out if there is a discrepancy as a result of the comparison, or if all steps have not been completed; When entering the cremation facility, the second RFID reader / writer reads the body information recorded on the RFID tag via the second antenna, and the second control PC compares the body information read by the second RFID reader / writer with the body information stored in the core server; If there is a discrepancy as a result of the comparison, or if all steps have not been completed, the second warning means is activated to stop the cremation; A method of matching bodies and coffins.

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