Machine control panel
The equipment control panel automates the restoration of interlocking and shut-off settings in fire monitoring systems, reducing human error and workload, thereby ensuring reliable fire monitoring operations post-inspection.
Patent Information
- Application Number
- JP2022175267
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-11-01
- Publication Date
- 2026-01-28
- Estimated Expiration
- 2042-11-01
AI Technical Summary
Conventional methods for restoring interlocking and shut-off settings in fire monitoring systems after operational inspections are prone to human error and workload burdens, leading to potential operational failures during fire monitoring.
An equipment control panel with a status setting confirmation unit and a status storage processing unit that automatically stores, displays, and compares setting states before and after inspections, ensuring accurate restoration of settings during mode transitions.
Reduces inspector workload and minimizes human error by automating the restoration of interlocking and shut-off settings, ensuring consistent and reliable fire monitoring operations.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to an equipment control panel suitable for checking the operation of disaster prevention equipment. [Background technology]
[0002] There is an automatic fire alarm system that is configured with a fire receiver, transmitter, repeater, audio device, detector, smoke control equipment, etc., and that quickly detects a fire that occurs in a fire monitoring area within a building that is a fire prevention target, and performs firefighting operations, evacuation guidance, etc. (See, for example, Non-Patent Document 1.) In an automatic fire alarm system, when the detector detects heat or smoke, it sends a fire signal to the fire receiver.
[0003] The fire receiver that receives the fire signal will issue an alarm and activate an audio device depending on the location of the fire to notify people in the building of the fire. Furthermore, the fire receiver that receives the fire signal will activate smoke control and exhaust equipment depending on the location of the fire to prevent the spread of flames or smoke.
[0004] In this way, the fire receiver performs centralized control of various disaster prevention devices included in the automatic fire alarm system. Note that such centralized control can also be performed by other equipment, such as a general control panel. Therefore, in this disclosure, equipment such as the fire receiver and the general control panel that perform centralized control of various disaster prevention devices will be collectively referred to as an equipment control panel.
[0005] During inspection work on automatic fire alarm systems, for example, when checking the operation of detectors, commands from the equipment control panel may be blocked to prevent other devices from operating in conjunction with the system. Specific examples of blocking interlocking operations include blocking interlocking to prevent interlocking of smoke control devices such as shutters, stopping audio alarms, blocking area sound to prevent area bells from ringing, and blocking alarm transmission to prevent output of alarms to other equipment.
[0006] In the operation inspection mode, in order to shut off the linked operation as needed, the shutoff settings are individually configured so that no operation command is output to specific devices. When returning from the operation inspection mode to the fire monitoring mode, the shutoff settings must be canceled and the original settings must be restored so that the linked operation can be performed during normal fire monitoring.
[0007] If the settings for interlocking and shutoff are forgotten to be reset, a situation will occur in which normal interlocking operation will not occur during fire monitoring. Therefore, to prevent this from happening, before conducting an operation inspection, the setting status in fire monitoring mode is written down by hand in a setting status table, and when the operation inspection is completed, the inspector returns the setting status to the original status while referring to the setting status table. [Prior art documents] [Non-patent literature]
[0008] [Non-Patent Document 1] Nohmi Bosai Co., Ltd. website, Automatic Fire Alarm System (URL: https: / / www.nohmi.co.jp / product / materiel / fid.html) Summary of the Invention [Problem to be solved by the invention]
[0009] However, the conventional techniques have the following problems. From a disaster prevention perspective, it is recommended that all operations be disabled when in fire monitoring mode. However, depending on the actual installation environment, due to operational constraints, for example, it is conceivable that interlocking operations of smoke control equipment installed in a certain location may be intentionally disabled even when in fire monitoring mode.
[0010] Therefore, it may not be appropriate to uniformly release the shutdown in fire monitoring mode, and when returning to fire monitoring mode after the operational inspection is completed, it is important to ensure that the settings are returned to the state they were in before the operational inspection, depending on the installation environment.
[0011] Currently, a setting status table is used to restore the settings to the state before the operation inspection, and this is done manually by inspectors. However, this type of restoration work places a burden on the inspectors, and in some cases there is a risk of human error, such as making mistakes when filling out the setting status table or forgetting to reset the interlock and cutoff settings.
[0012] The present disclosure has been made to solve the above-mentioned problems, and aims to provide an equipment control panel that can easily restore the interlocking and shut-off settings during fire monitoring. [Means for solving the problem]
[0013] The equipment control panel according to the present disclosure is an equipment control panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and checks the operation of the plurality of disaster prevention devices by outputting a start command to the disaster prevention devices in an operation inspection mode that checks the operation of the plurality of disaster prevention devices, and has a status setting confirmation unit that accepts an operation input for switching the setting of whether or not to forcibly cut off the start command for each of the plurality of disaster prevention devices, and displays a list of setting states regarding whether or not to forcibly cut off the start command, and further has a status storage processing unit that stores the setting state at the time of receiving a storage command signal in a storage unit. The state storage processing unit stores the setting state when the fire monitoring mode is switched to the operation inspection mode as the monitoring setting state in the storage unit, and also stores the current setting state regarding whether or not to forcibly cut off the start command in the storage unit, and is capable of providing the operator with a list display of the monitoring setting state and a list display of the current setting state. It is something. In addition, the equipment control panel disclosed herein is an equipment control panel that controls multiple disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and that checks the operation of the multiple disaster prevention devices by outputting a start command to the disaster prevention devices in an operation inspection mode in which the operation of the multiple disaster prevention devices is checked, and has a state setting confirmation unit that accepts operation inputs to switch the setting as to whether or not to forcibly cut off the start command for each of the multiple disaster prevention devices, and displays a list of setting states regarding whether or not to forcibly cut off the start command, and further has a state memory processing unit that stores the setting state at the time when a memory command signal is received in the memory unit, and the state memory processing unit receives a trigger signal indicating the time when the mode is switched from the fire monitoring mode to the operation inspection mode as a memory command signal, and stores the setting state in the fire monitoring mode in the memory unit as the monitoring time setting state, and when a comparison command signal is received, displays a list of the current setting states, and identifies items in the current setting states that differ from the monitoring time setting state. In addition, the equipment control panel according to the present disclosure is an equipment control panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and that checks the operation of the plurality of disaster prevention devices by outputting a start command to the disaster prevention devices in an operation inspection mode in which the operation of the plurality of disaster prevention devices is checked, and has a state setting confirmation unit that accepts an operation input to switch the setting as to whether or not to forcibly cut off the start command for each of the plurality of disaster prevention devices, and further has a state memory processing unit that stores the setting state at the time when the memory command signal is received in the memory unit, and the state memory processing unit receives a trigger signal indicating the time when the mode was switched from the fire monitoring mode to the operation inspection mode as a memory command signal, stores the setting state in the fire monitoring mode as the monitoring time setting state in the memory unit, and when it receives a trigger signal indicating the time when the mode was switched from the operation inspection mode to the fire monitoring mode, monitors the setting state after returning to the fire monitoring mode as the post-return setting state, and if a state in which the post-return setting state and the monitoring time setting state do not completely match continues for a predetermined determination time, it sends an abnormality report to a predetermined reporting destination indicating the mismatch state. In addition, the equipment control panel of the present disclosure is an equipment control panel that controls multiple disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and that checks the operation of the multiple disaster prevention devices by outputting a start-up command to the disaster prevention devices in an operation inspection mode in which the operation of the multiple disaster prevention devices is checked, and has a status setting confirmation unit that accepts an operation input to switch the setting to whether or not to forcibly cut off the start-up command for each of the multiple disaster prevention devices, and further has a status memory processing unit that stores the setting state at the time when a memory command signal is received in the memory unit, and the status memory processing unit stores the setting state at the time when the memory command signal is received in the memory unit in association with the date and time when the memory command signal was received. [Effects of the Invention]
[0014] According to the present disclosure, it is possible to obtain an equipment control panel that can easily restore the interlocking and shutoff settings during fire monitoring. [Brief explanation of the drawings]
[0015] [Figure 1]1 is an overall configuration diagram of an automatic fire alarm system including a fire receiver corresponding to an appliance control panel according to a first embodiment of the present disclosure. [Figure 2] FIG. 10 is an explanatory diagram showing an example of a setting status table used during an operation inspection work. [Figure 3] 1 is a functional block diagram of a device operating panel according to a first embodiment of the present disclosure. [Figure 4] FIG. 10 is an explanatory diagram showing a specific example of a distinguishable display performed by a state storage processing unit according to the first embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0016] Hereinafter, preferred embodiments of the equipment control panel of the present disclosure will be described with reference to the drawings. The equipment control panel according to the present disclosure has a technical feature in that it has a function of storing the current setting state regarding whether or not to forcibly cut off the start command when a storage command signal is received. Note that, in the following, a detailed explanation will be given using a fire receiver as an example of an equipment control panel, and an automatic fire alarm system equipped with a fire receiver as a specific example.
[0017] Embodiment 1 First, we will explain the overall picture of automatic fire alarm systems. 1 is an overall configuration diagram of an automatic fire alarm system including a fire receiver corresponding to an equipment control panel according to a first embodiment of the present disclosure. The fire receiver 10 is connected to an addressable transmitter 20, fire detectors 31 and 32, a detector repeater 40, and a smoke control repeater 50 via a signal line SG1.
[0018] A plurality of fire detectors are connected to the detector repeater 40. Two fire detectors 41 and 42 are shown in Fig. 1. A fire door 51, a smoke exhaust machine 52, a shutter 53, and a hanging wall 54 are connected to the smoke prevention and exhaust control repeater 50.
[0019] The fire control signal receiver 10 is also connected to the audio devices 61 and 62 and the audio device repeater 70 via a signal line SG2. A plurality of audio devices are connected to the audio device repeater 70. In FIG. 1, two audio devices 71 and 72 are shown as an example.
[0020] The fire control panel 10 is also connected to an emergency broadcast panel 80. A plurality of speakers are connected to the emergency broadcast panel 80. In FIG. 1, two speakers 81 and 82 are shown as an example.
[0021] Here, the fire detectors 31, 32 and the fire detectors 41, 42 correspond to a plurality of fire detectors that detect the occurrence of a fire in each of the preset fire monitoring areas. A plurality of fire detectors constitutes a detector group.
[0022] In addition, the fire door 51, the smoke exhauster 52, the shutter 53, and the hanging wall 54 correspond to a plurality of terminal equipment that operate in conjunction with the detection results of the plurality of fire detectors and function to prevent the spread of fire, smoke, etc. A terminal equipment group is made up of a plurality of terminal equipment.
[0023] The sound devices 61, 62 and the sound devices 71, 72 correspond to a plurality of local sound devices that notify the occurrence of a fire in each of the predetermined areas. The plurality of local sound devices constitute a sound installation group.
[0024] The speakers 81 and 82 correspond to a plurality of broadcasting facilities that output messages such as a fire outbreak and evacuation guidance in each of the predetermined areas. A plurality of broadcasting facilities constitute a broadcasting facility group.
[0025] Address information for identifying each individual fire detector is assigned in advance to each of the multiple fire detectors. Each of the multiple fire detectors can transmit a fire signal including the address information assigned to it to the fire control panel 10. Meanwhile, the fire control panel 10 can transmit required information to a desired fire detector by adding address information to the signal.
[0026] Furthermore, each of the multiple terminal devices is assigned address information in advance to identify the individual terminal device. Therefore, the fire control device 10 can transmit a start command to operate the desired terminal device by adding the address information and transmitting the information.
[0027] Furthermore, each of the multiple audio devices is assigned address information in advance to identify the individual audio device. Therefore, the fire control device 10 can transmit a start command to activate the desired audio device by adding the address information and transmitting the information.
[0028] Furthermore, each of the multiple broadcasting facilities is assigned address information in advance to identify the individual broadcasting facility. Therefore, by adding the address information and transmitting the information, the fire alarm receiver 10 can send a start command via the emergency broadcast panel 80 to output a desired voice message from the desired broadcasting facility.
[0029] With this configuration, the fire receiver 10 collects fire signals from a plurality of fire detectors installed in various predetermined fire monitoring areas and the addressable transmitter 20. Then, the fire receiver 10 can issue a fire alarm and activate a group of terminal equipment based on the collected fire signals.
[0030] Furthermore, based on the collected fire signals, the fire receiver 10 can ring the bell of an audio device installed in an area where an alarm is required, and can output a desired audio message from a broadcasting device installed in an area where evacuation guidance by audio message is required. Note that each of the multiple audio devices and each of the multiple broadcasting devices is specified in advance as to which fire detector detection result it will operate in conjunction with.
[0031] Also, although not shown in the figure, the fire receiver 10 can output a notification signal based on the collected fire signal, activate fire extinguishing equipment to begin fire extinguishing work, or transmit a fire signal to a higher-level device via a network.
[0032] In this embodiment 1, each disaster prevention device included in the terminal equipment group, audio equipment group, and broadcasting equipment group shown in Figure 1 corresponds to equipment that operates in conjunction with each other in response to a start-up command from the fire receiver 10 when a fire signal is collected from the sensor group or addressable transmitter 20.
[0033] In the operation inspection mode, the operation of each device included in the automatic fire alarm system is checked. In this operation inspection mode, unlike the normal fire monitoring mode, interlocking operation is forcibly prohibited and activation commands are blocked from being output from the fire receiver, and then the operation of each detector or other device may be checked individually.
[0034] The operation of the equipment may be checked by operating the fire receiver 10 to output a start command to each piece of equipment. Alternatively, a start command may be output from the fire receiver 10 to a group of detectors, causing the group of detectors to operate in the same state as when a fire is detected, and then the group of terminal equipment may be operated in conjunction with the fire signal to check the operation of the group of terminal equipment. Alternatively, smoke or heat may actually be applied to the group of detectors to output a fire signal, causing the group of terminal equipment to operate in conjunction with the fire signal to check the operation of the group of terminal equipment.
[0035] As explained at the beginning, currently, a setting status table is used to return to the setting status before the operation inspection regarding whether or not to forcibly shut off the start command, and when returning from the operation inspection mode to the fire monitoring mode, the setting status is restored manually by the inspector.
[0036] Figure 2 is an explanatory diagram showing an example of a setting status table used during operation inspection work. The setting status table shown in Figure 2 specifically shows the following items as cutoff target items that can be switched on or off by forcibly cutting off the output of a start command from the fire control panel: · Bulk interlocked alarm transmission cutoff: When "cutoff" is set, the alarm transmission signal for activating the fire extinguishing equipment and the alarm transmission signal for notifying the higher-level device that a fire has been detected are cut off.
[0037] ·Broadcasting equipment group blocking: When "Block" is set, message output from the broadcasting equipment group is blocked. - Sound equipment group shutoff: When "Shutoff" is set, the sound output from the sound equipment group is shut off. Individual linked shutdown: When "shutdown" is set, the activation of the fire door 51, smoke exhaust fan 52, shutter 53, and hanging wall 54 within the terminal equipment group is individually shut off.
[0038] If all the items are set to the "normal position" side, no cutoff will be performed and a command to start the linked operation will be output.
[0039] In conventional inspection work, inspectors would use such a setting status table to record the status of each item before the inspection, whether it was "normal" or "shut off," and then when returning to fire monitoring mode, they would record the status of each item after the inspection again, confirming that the status before the inspection and the status after the inspection were consistent.
[0040] The equipment control panel of this embodiment 1 aims to reduce the workload of inspectors regarding such manual checking work and to eliminate forgetting to reset the settings due to human error, and its detailed configuration will be explained using drawings.
[0041] 3 is a functional block diagram of an equipment control panel according to the first embodiment of the present disclosure. The equipment control panel in the present disclosure corresponds to the fire receiver 10 or the general control panel as shown in FIG. 1, and performs monitoring control in a fire monitoring mode and inspection control in an operation inspection mode.
[0042] 3, corresponding to FIG. 1, the equipment control panel is shown as the fire control panel 10. Also, in FIG. 3, a person who gives operational input to the fire control panel 10 is described as an operator, and the operator means people including an inspector.
[0043] The fire receiver 10, which corresponds to an equipment operation panel, is configured to include a fire detection processing unit 11, a status setting confirmation unit 12, and a status storage processing unit 13. The fire detection processing unit 11 has the following function 1. Function 1: In fire monitoring mode, when a fire signal is received from the transmitter group 201 or the detector group 202, the function controls the activation of the linked operation target device 100, and performs a series of disaster prevention operations such as transmitting information, fire extinguishing operations, alarm processing, and processing to prevent the spread of fire, smoke, etc.
[0044] Here, as described above, the linked operation target devices 100 include the higher-level device 101, the fire extinguishing equipment 102, the terminal equipment group 103, the broadcasting equipment group 104, and the audio equipment group 105. By having Function 1, when the fire receiver 10 receives a fire signal while monitoring a fire monitoring area, it can output a start command to the desired linked operation target devices 100, thereby carrying out appropriate disaster prevention work.
[0045] Moreover, the status setting confirmation unit 12 has the following functions 2 to 4. Function 2: Based on operational input from the operator, the function switches between fire monitoring mode, which monitors the fire monitoring area, and operation inspection mode, which allows inspectors to check the operation of disaster prevention equipment.
[0046] When switching modes, the state setting confirmation unit 12 takes into consideration various interlock conditions and performs switching control so as not to switch modes unless the interlock conditions are met.
[0047] An example of an interlock condition is when a fire is occurring, and when a fire signal is received from the transmitter group 201 or the detector group 202, the mode cannot be switched from the fire monitoring mode to the operation inspection mode.
[0048] The function 2 allows the operator to switch to a desired mode. Note that the mode switching control function can be configured to be performed by the fire determination processing unit 11 or the state storage processing unit 13 instead of by the state setting confirmation unit 12.
[0049] Function 3: A function to receive operational input from the operator to switch the setting for each device included in the linked operation target device 100 as to whether or not to forcibly shut off the startup command output when performing linked operation, and to execute processing to switch the setting state for linked operation.
[0050] Function 3 makes it possible to select the devices whose linked operation should be cut off in both fire monitoring mode and operation confirmation mode.
[0051] Function 4: A function that provides the operator with a list of settings related to whether or not to forcibly shut off the startup command in response to an operation input from the operator. By having Function 4, the operator can easily check the current setting status.
[0052] Moreover, the state storage processing unit 13 has the following functions 5 to 9. Function 5: A function of storing the setting state at the timing of receiving the storage command signal in the storage unit. When storing the setting state, the state storage processing unit 13 can store the setting state in the storage unit as a setting state associated with the date and time when the storage command signal was received.
[0053] By having Function 5, the operator can store the setting status at a desired timing as data in the memory unit without having to write it down by hand, and can read it out as needed. Furthermore, by storing the setting status associated with the date and time, the operator can easily check what the setting status was at any point in time.
[0054] Function 6: A function that receives a trigger signal indicating the timing when the mode is switched from fire monitoring mode to operation inspection mode as a memory command signal, and stores the current setting status in fire monitoring mode in the memory unit as the monitoring setting status.
[0055] By having function 6, the setting state in fire monitoring mode before the operation inspection work is performed can be automatically stored in the memory unit as the monitoring setting state.
[0056] Function 7: When a comparison command signal is received, the current setting status is displayed in a list, and items in the current setting status that differ from the setting status during monitoring are identified and displayed. Function 8: When a state restoration signal is received while the identification display is being performed by Function 7, this function switches the settings to restore the current setting state to the setting state at the time of monitoring.
[0057] Function 7 allows the operator to easily compare the current settings, especially in the operation check mode, with the settings during monitoring, and easily restore the settings to those in fire monitoring mode. Furthermore, function 8 allows the operator to easily restore the settings to those in fire monitoring mode with a single, integrated operation.
[0058] In Function 8, a case has been described in which the setting is switched to restore the current setting state to the monitoring setting state when a state restoration signal is given to the state storage processing unit 13 by an operation input by the operator. However, as an alternative function to Function 8, the state storage processing unit 13 can also automatically switch the setting to restore the current setting state to the monitoring setting state by receiving a trigger signal indicating the timing of the mode change from the operation inspection mode to the fire monitoring mode as a state restoration signal.
[0059] Function 9: When a trigger signal indicating the timing of returning from operation inspection mode to fire monitoring mode is received, the setting state after returning to fire monitoring mode is monitored as the post-return setting state, and if the state where the post-return setting state and the monitoring setting state do not completely match continues for a pre-set judgment time, an abnormality report indicating the mismatch is sent to a pre-set reporting destination.
[0060] By having function 9, even if the setting state is forgotten to be restored, the mismatch state can be reported immediately after the judgment time has elapsed, and it is possible to prevent the fire monitoring mode from continuing due to the mismatch state.
[0061] The equipment control panel according to the present disclosure has a technical feature in that it is provided with a state storage processing unit 13, which will be further explained using FIG. 4. FIG. 4 is an explanatory diagram showing a specific example in which the state storage processing unit 13 according to the first embodiment of the present disclosure has performed an identification display of a function 7. In FIG. 4, whether the function is blocked or normal is indicated for the same items as in the setting state table shown in FIG. 2 above. Also, in FIG. 4, the "state before inspection" in FIG. 2 is the "monitoring setting state," and the "state after inspection" in FIG. 2 is the "current setting state."
[0062] In Figure 4, function 7 is executed by the state storage processing unit 13, and the "monitoring setting state" and "current setting state" stored by function 6 are displayed, and the set state is identified by being surrounded by an oval.
[0063] Specifically, the "Monitoring setting status" in Figure 4 shows an example in which, in the most recent fire monitoring mode before the operational inspection, only the "shutter" was set to "blocking," and the other items were set to "normal positioning."
[0064] Furthermore, in the "Current setting status" in Figure 4, the setting parts that differ from the "Monitoring setting status" are that the "Audio equipment group blocking" item is set to "Blocked" and the "Shutter" item is set to "Positioned", and these are displayed in reverse to distinguish them.
[0065] In other words, Figure 4 shows an example of a situation where, when returning from the operation inspection mode to the fire monitoring mode, the "Shutter" item, which should be set to "Shutoff," is set to "Normal position," and the "Sound equipment group shutdown" item, which should be set to "Normal position," is forgotten to be set back to "Shutoff." This is an example of a situation where a mismatch occurs.
[0066] The operator can change the settings for each item individually by visually checking the identification display as shown in Figure 4 so that the "current setting state" matches the "monitoring setting state." Alternatively, the operator can use function 8 to match the "current setting state" with the "monitoring setting state" by sending a "state restoration signal" to the state storage processing unit 13.
[0067] As a minimum function, the state memory processing unit 13 has a function 5 for storing the setting state at the time when the memory command signal is received in the memory unit, thereby realizing an equipment control panel that can easily restore the interlocking / shutoff setting state during fire monitoring.
[0068] Furthermore, by utilizing this function 5, it is possible to store the setting state at a desired timing in the storage unit even when the mode is not being switched. In particular, by storing the setting state associated with the date and time in the storage unit in chronological order, it is possible to easily manage what the setting state was at what point in time.
[0069] As described above, according to embodiment 1, by providing a status storage processing unit, it is possible to reduce the workload of inspectors who manually fill in and check the setting status table, and to realize an equipment control panel that can easily restore the interlocking and shut-off setting status during fire monitoring. [Explanation of symbols]
[0070] 10 Fire receiver, 11 Fire detection processing unit, 12 Status setting confirmation unit, 13 Status memory processing unit, 20 Addressable transmitter, 31 Fire detector, 40 Detector repeater, 41 Fire detector, 50 Smoke prevention and exhaust control repeater, 51 Fire door, 52 Smoke exhaust machine, 53 Shutter, 54 Wall, 61 Sound device, 70 Sound device repeater, 71 Sound device, 80 Emergency broadcast panel, 81 Speaker, 100 Device to be linked, 101 Upper device, 102 Fire extinguishing equipment, 103 Terminal equipment group, 104 Broadcast equipment group, 105 Sound equipment group, 201 Transmitter group, 202 Detector group.
Claims
1. Multiple disaster prevention devices installed in the fire monitoring area, An equipment operation panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and outputs a start command to the disaster prevention devices in an operation inspection mode for checking the operation of the plurality of disaster prevention devices, a status setting confirmation unit that receives an operation input for switching a setting as to whether or not to forcibly cut off the activation command for each of the plurality of disaster prevention devices, and displays a list of setting states as to whether or not to forcibly cut off the activation command; a state storage processing unit that stores the setting state at the timing of receiving the storage command signal in the storage unit; The state storage processing unit The setting state when the fire monitoring mode is switched to the operation inspection mode is stored in the storage unit as a monitoring setting state, and the current setting state regarding whether or not the start command is forcibly cut off is stored in the storage unit; An equipment operation panel capable of providing an operator with a list display of the monitoring setting states and a list display of the current setting states.
2. Multiple disaster prevention devices installed in the fire monitoring area, An equipment operation panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and outputs a start command to the disaster prevention devices in an operation inspection mode for checking the operation of the plurality of disaster prevention devices, a status setting confirmation unit that receives an operation input for switching a setting as to whether or not to forcibly cut off the activation command for each of the plurality of disaster prevention devices, and displays a list of setting states as to whether or not to forcibly cut off the activation command; a state storage processing unit that stores the setting state at the timing of receiving the storage command signal in the storage unit; The state storage processing unit receiving a trigger signal indicating a timing at which the mode is switched from the fire monitoring mode to the operation inspection mode as the storage command signal, and storing the setting state in the fire monitoring mode as a monitoring setting state in the storage unit; When a comparison command signal is received, the current setting status is displayed in a list, and items in the current setting status that differ from the setting status at the time of monitoring are identified and displayed. Equipment operation panel.
3. Multiple disaster prevention devices installed in the fire monitoring area, An equipment operation panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and outputs a start command to the disaster prevention devices in an operation inspection mode for checking the operation of the plurality of disaster prevention devices, a state setting confirmation unit that receives an operation input for switching a setting as to whether or not the activation command for each of the plurality of disaster prevention devices is to be forcibly cut off; a state storage processing unit that stores the setting state at the timing of receiving the storage command signal in the storage unit; The state storage processing unit receiving a trigger signal indicating a timing at which the mode is switched from the fire monitoring mode to the operation inspection mode as the storage command signal, and storing the setting state in the fire monitoring mode as a monitoring setting state in the storage unit; When a trigger signal indicating the timing of switching from the operation inspection mode to the fire monitoring mode is received, the setting state after returning to the fire monitoring mode is monitored as a setting state after returning, If the state where the post-recovery setting state and the monitoring setting state do not completely match continues for a predetermined determination time, an abnormality notification indicating the mismatch state is sent to a predetermined notification destination. Equipment operation panel.
4. Multiple disaster prevention devices installed in the fire monitoring area, An equipment operation panel that controls a plurality of disaster prevention devices installed in a fire monitoring area in a fire monitoring mode, and outputs a start command to the disaster prevention devices in an operation inspection mode for checking the operation of the plurality of disaster prevention devices, a state setting confirmation unit that receives an operation input for switching a setting as to whether or not the activation command for each of the plurality of disaster prevention devices is to be forcibly cut off; a state storage processing unit that stores the setting state at the timing of receiving the storage command signal in the storage unit; The state storage processing unit stores the setting state at the timing of receiving the storage command signal in the storage unit in association with the date and time when the storage command signal was received. Equipment operation panel.
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