System for collectively controlling and processing occupancy information
The system addresses occupancy determination challenges by using sensors and switches to manage hotel room status, improving guest interactions, safety, and energy efficiency.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- BOTEM
- Filing Date
- 2025-01-15
- Publication Date
- 2026-07-23
Smart Images

Figure KR2025000877_23072026_PF_FP_ABST
Abstract
Description
Batch control processing system for occupancy information
[0001] The present invention relates to a system for processing user occupancy information regarding a target space.
[0002] When the door to a specific room, such as a hotel guest room, is closed, it is difficult to determine whether the occupant is present. Consequently, if a manager opens the door to check the room's condition, it can lead to an uncomfortable relationship with the occupant. Furthermore, incidents such as safety accidents, fires, drug-related theft, murder, or suicide frequently occur due to guests leaving their rooms unoccupied for extended periods.
[0003] In addition to such major accidents, the waste of energy caused by unnecessary electricity usage is emerging as a serious problem. For example, there are many cases where guests leave lights, air conditioners, and other electronic devices on when checking out of a guest room. In such cases, electricity is wasted unnecessarily because the lights remain on even though there is no need to keep them on since there is no one in the room. This is pointed out as a problem in the current global context, where carbon emissions must be reduced to overcome global warming.
[0004] In addition, when a guest turns off the card key, it can be recognized that the guest has checked out. However, since more than two card keys are provided for the convenience of guests, there is a problem in that the guest may check out with the extra card key without turning off the card key, making it impossible to accurately determine the occupancy information.
[0005] The present invention has been devised to solve the aforementioned problems. The objective of the present invention is to enhance the efficiency of guest room or room management by transmitting occupancy and vacancy information based on whether a user is present in a hotel guest room or a specific room via an online communication network or displaying it offline on a display, thereby resolving the inconvenience caused by friction between the manager and the user when the user utilizes the room and reducing service costs.
[0006] In addition, another objective of the present invention is to prevent accidents by checking room users online or offline, and at the same time, to reduce carbon emissions to prevent global warming.
[0007] In addition, another objective of the present invention is to provide a room occupancy information batch control processing system capable of wireless operation by minimizing the power consumption of each component.
[0008] Meanwhile, the problems that the present invention aims to solve are not limited to those mentioned above, and other problems can be clearly understood by a person skilled in the art from the description below.
[0009] To solve the above problem, a system for processing batch control by counting occupancy information according to an embodiment of the present invention comprises: a pair of direction recognition sensors installed on both inner and outer sides of the entrance of a target space and configured to detect the entry and exit of a body; an occupancy information indicator installed on the outer surface of the entrance door of the target space, configured to receive a status data signal regarding the occupancy status of a body via wired or wireless connection from the direction recognition sensors, and configured to check the occupancy or vacancy status by illuminating a lamp or displaying it on a display according to the status data signal; and a motion sensor batch control switch installed within the target space, configured to receive a status data signal regarding the occupancy status of a body via wired or wireless connection from the direction recognition sensors, and configured to turn on or off the lighting and other electronic devices within the target space according to the status data signal.
[0010] The occupancy information batch control processing system of the present invention, configured as described above, has the effect of increasing the efficiency of room management by enabling a manager to accurately determine the occupancy status of hotel rooms, etc., both online and offline.
[0011] Furthermore, by accurately detecting whether there is at least one person present or none at all, it is possible to conserve resources and prevent various safety accidents that may occur within the space by supplying or cutting off power sources for electrical devices installed in that space. In particular, it can prevent safety accidents by delivering an alarm message if no exit count occurs for an extended period after an entry count has been recorded in a specific space.
[0012] In addition, it has the advantage of being wireless, making installation and maintenance easy, and enabling implementation at a low cost.
[0013] FIG. 1 is a schematic diagram of a batch control processing system for occupancy information according to one embodiment of the present invention.
[0014] FIG. 2 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to a first embodiment of the present invention.
[0015] FIG. 3 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to a second embodiment of the present invention.
[0016] FIG. 4 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to a third embodiment of the present invention.
[0017] FIG. 5 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to the fourth embodiment of the present invention.
[0018] FIG. 6 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to the fifth embodiment of the present invention.
[0019] Hereinafter, embodiments of the present invention will be described in detail with reference to the attached drawings. However, the present invention is not limited by the following embodiments. In addition, the same reference numerals are used for identical components in the drawings, and redundant descriptions thereof are omitted.
[0020] FIG. 1 is a schematic diagram showing a batch control processing system for occupancy information according to an embodiment of the present invention. As shown in FIG. 1, the batch control processing system for occupancy information of the present invention includes a pair of direction recognition sensors (101), an occupancy information indicator (102), and a motion sensor batch control switch (103).
[0021] A pair of direction recognition sensors (101) may be installed on both inner sides of the entrance of the target space (100) and are configured to detect the entry and exit of bodies and count the number of bodies within the target space (100). These direction recognition sensors (101) are also configured to transmit status data via wired or wireless means to an occupancy information indicator (102) and a motion sensor batch control switch (103) when a body enters or exits.
[0022] The occupancy information indicator (102) can be installed on the outer surface of the door of the target space (100), and is configured so that if there is a body in the target space (100), a red lamp lights up, and if there is no body in the target space (100), a green lamp lights up, thereby allowing the occupancy or vacancy status to be checked.
[0023] The motion sensor batch control switch (103) is a switch linked to the motion sensor and can be installed within the target space (100). It is connected to an electronic device, such as a lighting device, within the target space (100), and is configured so that when the count becomes 1 due to the entry signal of the direction recognition sensor (101), the light is automatically turned on, and when the count becomes 0, the light is automatically turned off. This motion sensor batch control switch (103) is also configured to transmit an occupancy signal, which is a data signal regarding 'presence of motion,' to an occupancy information indicator (102) when motion is detected by the motion sensor linked to the switch.
[0024] A batch control processing system for occupancy information according to one embodiment of the present invention having the configuration described above can be implemented as a wireless system or a wired system.
[0025] If the occupancy information indicator (102) of the occupancy information batch control processing system is a battery-powered wireless system, wake-up mode and sleep mode functions are set. When a body approaches within close range of a motion sensor mounted on the occupancy information indicator (102) and the body is detected, it switches to wake-up mode for a predetermined time and the occupancy information indicator (102) displays the occupancy status. However, after a predetermined time has elapsed, it switches to sleep mode and turns off the occupancy status display of the occupancy information indicator (102). However, even in the case of a wireless system, it is possible to determine whether the room is occupied or vacant by manually pressing a button.
[0026] When the direction recognition sensor (101) of the occupancy information batch control processing system is a battery-type wireless system, when the movement of the body is detected by the motion sensor mounted on the direction recognition sensor (101), it is woken up for a predetermined time, and when the predetermined time has elapsed, only the motion sensor detection area system operates, and the remaining area is switched to sleep mode to cut off power.
[0027] In contrast, when a streamlined system is used, wake-up mode and sleep mode are not set.
[0028] Hereinafter, various embodiments of the operation method of the occupancy information batch control processing system of the present invention as described above will be explained in detail with reference to the drawings.
[0029]
[0030] Example 1
[0031] FIG. 2 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to a first embodiment of the present invention.
[0032] Referring to FIG. 2, when an entry signal is generated by a direction recognition sensor (201) installed on the inner side of both sides of the entrance of the target space (100) of FIG. 1 due to the entry of a body, this signal is transmitted to a motion sensor collective control switch (203) via a wired or wireless method, and the motion sensor collective control switch (203) in the target space (100) calculates the received entry signal as a +1 count and changes the light switch to the ON state. The direction recognition sensor (201) also transmits the entry signal to the occupancy information indicator (202) in the same way, and the occupancy information indicator (202) also calculates the +1 count in the same way so that the red LED blinks, thereby displaying the entry information. Conversely, when an exit count (0) due to the exit of a body is generated by the direction recognition sensor (201) of the entrance, an exit signal is transmitted to the motion sensor collective control switch (203), and the light switch is calculated as a -1 count, and if the count is 0, it changes to the OFF state. The direction recognition sensor (201) transmits an exit count signal to the occupancy information indicator (202) in the same way so that the green LED flashes, thereby displaying the exit information.
[0033] Meanwhile, in cases where a fuselage enters or exits consecutively, or exits immediately after entering or enters immediately after exiting, the aforementioned calculation algorithm is not applied to reduce duplicate counting errors of the fuselage. More specifically, when a fuselage enters consecutively (i.e., when consecutive counts of +1, +2, and +3 occur), an algorithm is applied in which counts occurring within a predetermined time interval between the first and second fusels are ignored or deleted and not calculated, while counts occurring after a predetermined time has elapsed—that is, when the direction recognition of the second and third fusels is detected after a time interval of approximately 1.5 seconds—are calculated. Conversely, when a fuselage exits consecutively (i.e., when consecutive counts of -1, -2, and -3 occur), an algorithm is applied that sets the predetermined time interval shorter than the consecutive entry time interval, i.e., to approximately 0.5 seconds or 1 second. Since the movement patterns of the fuselage during entry and exit are different, the entry and exit times are applied differentially.
[0034] According to the above method, when one person enters a maximum-count 2-person or 3-person room, the count of 2 people is not calculated. Additionally, setting a short time difference when checking out is a means to reduce the error where a maximum-count 2-person room is counted as one person checking out when two people check in and then two people check out, and is a means to induce as many counts as possible to make the count zero.
[0035] However, in cases where the entry signal and the exit signal are continuously repeated by the direction recognition sensor, the motion sensor batch control switch and the occupancy information indicator that receive them adopt a count calculation method that minimizes errors in count calculation by setting the time difference between entry and exit to a minimum time, for example, 0 to 0.1 seconds, when the entry signal is received and the exit signal is received immediately.
[0036] The above method is a method to reduce the calculation accuracy and error of the direction recognition sensor (201), so that when one body moves, count +1 is calculated, and the next body is recognized and count calculation is performed only after a predetermined time (e.g., about 1.5 seconds) has elapsed, and if a body is detected within a predetermined time, it is deleted from the count calculation.
[0037]
[0038] Example 2
[0039] FIG. 3 is a flowchart relating to an example of operation of a batch control processing system for occupancy information according to a second embodiment of the present invention, and is an example of operation relating to a method of setting a maximum count to prevent an error caused by overcounting according to the second embodiment of the present invention.
[0040] As shown in FIG. 3, it is assumed that an error occurs when the direction recognition sensor (301) at the entrance detects that one person has entered, but the count becomes two due to factors such as arms, legs, or bags. At this time, both the occupancy information indicator (302) and the motion sensor batch control switch (303) have their maximum count set to one person (max=1). Therefore, even if a count error occurs with two people at the direction recognition sensor (301), the occupancy information indicator (302) receives only a count of 1 according to the set maximum count, and subsequently, when one person exits, the exit count becomes 0, thereby preventing the count error.
[0041] In this way, if the maximum count is set to +1, even if the entry count reaches +2 or +3, it is not counted, and the entry count is calculated as +1. Conversely, when exiting, the maximum exit count is set to a number greater than the maximum entry count; thus, if multiple counts occur during exit, they are calculated as 0, and the entire body is considered to have exited. Accordingly, count errors caused by various variables such as arms, legs, and bags can be eliminated during entry.
[0042] The above example of operation for preventing errors due to overcounting can be applied in the same way when the maximum count of the occupancy information indicator (302) and the motion sensor batch control switch (303) is set to 2 (max=2) or when the maximum count of the occupancy information indicator (302) and the motion sensor batch control switch (303) is set to 3 (max=3).
[0043] In this regard, to minimize counting errors based on single, double, and triple rooms in hotel rooms and similar spaces, a maximum count is applied only upon entry (i.e., only when the body moves in the direction of entry), so that calculations are performed only up to the number set as the maximum count. For example, a single room is set to a maximum count of +1, a double room to a maximum count of +2, and a triple room to a maximum count of +3. However, the maximum count for checkout is set to be greater than or equal to the maximum count for checkout, so that when multiple checkout counts occur, the resulting calculated count becomes 0.
[0044]
[0045] Example 3
[0046] FIG. 4 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to the third embodiment of the present invention, and is an example of operation regarding a technology for compensating for a negative count error upon entry according to the third embodiment of the present invention.
[0047] As shown in FIG. 4, it is assumed that a negative count error occurred when two people entered the room through the direction recognition sensor (401) at the entrance, but the count was recorded as one person. Subsequently, when one person exits through the direction recognition sensor (401), a count of 0 signal is transmitted to the motion sensor batch control switch (403) due to the exit, causing an error where the light turns off. Additionally, a count of 0 signal is transmitted to the occupancy information indicator (402), causing an exit information display error (i.e., the room is displayed as vacant with a green LED lit).
[0048] However, in the above case, since only one person has exited after two people have entered, the count error can be corrected for the one person remaining in the room by detecting the person using the motion sensor collective control switch (403). At this time, when the count is 0 upon exiting, the motion sensor of the motion sensor collective control switch (403) stops operating for a predetermined time, and after a predetermined time (e.g., about 10 seconds) has elapsed, when a person is detected by the motion sensor of the motion sensor collective control switch (403), the signal that was last changed to an exit signal (OUTPUT signal) by the direction recognition sensor (401) is switched back to an entry signal (INPUT signal), and the light changes from off to on, thereby correcting the count from 0 to +1. In addition, an occupancy signal is transmitted from the motion sensor collective control switch (403) to the occupancy information indicator (402), and the entry information of the occupancy information indicator (402) is corrected to +1 count.
[0049] The operation example according to the third embodiment of the present invention described above can be similarly applied to a technique for compensating for an overcount error upon exiting, as described below.
[0050] It is assumed that in the case where the maximum entry count is set to 2 people, the direction recognition sensor (401) at the entrance detects that 2 people have entered and 1 person has exited, but the exit count is 2 people, causing an over-counting error. Subsequently, a count 0 signal is transmitted to the motion sensor batch control switch (403) due to exiting, causing an error where the light turns off. Additionally, a count 0 signal is transmitted to the occupancy information indicator (402), causing an exit information display error (i.e., the green LED is lit to indicate vacancy).
[0051] However, in the above case, since only one person has left after two people have entered the room, the count error can be corrected for the one person remaining in the room by detecting the body through the motion sensor batch control switch (403). At this time, when the body is detected by the motion sensor of the motion sensor batch control switch (403), the light turns on and the count is corrected from 0 to +1. In addition, an occupancy signal is transmitted from the motion sensor batch control switch (403) to the occupancy information indicator (402), and the occupancy information of the occupancy information indicator (402) is corrected to +1 count.
[0052]
[0053] Example 4
[0054] FIG. 5 is a flowchart illustrating an example of operation of a batch control processing system for occupancy information according to the fourth embodiment of the present invention, and is an example of operation regarding a technique for compensating for a count calculation reception error of a direction recognition sensor (501) and a motion sensor batch control switch (503) of an entrance / exit according to the fourth embodiment of the present invention.
[0055] As shown in FIG. 5, if a body is detected by the motion sensor of the motion sensor batch control switch (503) in the target space before passing the direction recognition sensor (501) of the entrance, a +1 count detection error occurs in the motion sensor batch control switch (503). Subsequently, if the body passes the direction recognition count sensor (501), an additional +1 count occurs in the motion sensor batch control switch (503), causing an error where the motion sensor batch control switch (503) calculates the count as +2. As a means to prevent such errors, if the body enters within a predetermined time, for example, about 5 seconds, the motion sensor batch control switch (503) corrects the count to +1, and if the body enters after a predetermined time (about 5 seconds), it calculates the count as +2. Meanwhile, if the body is detected by the motion sensor batch control switch (503) and the entry signal is not detected by the direction recognition sensor (501), it is determined that a long time has elapsed without movement of the body, and the entry signal (INPUT signal) is processed as +1 count.
[0056] However, when a +2 count is calculated based on motion detection by the motion sensor batch control switch (503) and motion detection by the direction recognition sensor (501) after the above-mentioned predetermined time (about 5 seconds) has elapsed, the occupancy information indicator (502) calculates only the +1 count that passed through the direction recognition sensor (501), so the count numbers of the motion sensor batch control switch (503) (+2 count) and the occupancy information indicator (502) (+1 count) are not the same. In this way, when the motion is not detected by the direction recognition sensor (501) before the motion actually enters or exits, even if the motion is detected by the motion sensor of the motion sensor batch control switch (503) before the motion actually enters or exits, the light turns on, and a +1 count occurs, the motion detection signal by the motion sensor batch control switch (503) is not sent to the occupancy information indicator (502) as +1 count information, and even if it is sent, it is not received.
[0057] In the above situation, when one person exits through the direction recognition sensor (501) and the count becomes 0, a count error occurs. In this case, the occupancy information indicator (502) acts as the mother and transmits count information based on the count calculated by the occupancy information indicator (502) to the motion sensor batch control switch (503) to compensate for the count error. For example, when the count of the motion sensor batch control switch (503) becomes +2 and the count of the occupancy information indicator (502) becomes +1, the occupancy information indicator (502) acts as the mother and synchronizes the motion sensor batch control switch (503) to +1. At this time, if no entry signal is generated by the direction recognition sensor (501) within a predetermined time, the light turns off and the count is forcibly reset to 0. In addition, in the logic of receiving signals of the entry direction and exit direction from the direction recognition sensor (501) at the motion sensor batch control switch (503) and calculating a count to turn on the light when the count is positive and turn off the light when the count is zero, in the case of the forced reset logic that forcibly turns off the light by resetting the forced calculation of the accumulated count due to the positive count error to zero, the forced reset time when the body enters but does not exit is set to a predetermined long time, and the forced reset time when the body enters but exits is set to a predetermined short time, so that the forced reset count is calculated to zero and the light is turned off early.
[0058] The operation example according to the fourth embodiment of the present invention described above can be similarly applied to an operation example of a forced extinguishing system through an indicator as described below.
[0059] When the light is turned on due to an error in the sensor of the motion sensor batch control switch in the target space during system use, or when the light is turned on due to an error in the direction recognition sensor of the entrance, the light off signal is sent to the motion sensor batch control switch using the button of the occupancy information indicator, and the count +1 caused by the error can be forcibly returned to 0 by forcibly resetting the count.
[0060] After the motion sensor batch control switch is forcibly reset as described above, the motion sensor of the motion sensor batch control switch stops operating until the next entry count occurs through the direction recognition sensor of the entrance.
[0061] Meanwhile, if movement of a body is detected by the motion sensor of the motion sensor batch control switch after an exit signal is generated via the direction recognition sensor at the entrance, it is determined to be a count error, the lights are switched back to the ON state, and the motion sensor movement signal is transmitted from the motion sensor batch control switch to the occupancy information indicator. Accordingly, the occupancy information indicator receives the information as a count of +1 and changes to the entry display.
[0062] However, as a means to prevent the motion sensor of the motion sensor collective control switch from being incorrectly detected and the signal being transmitted to the occupancy information indicator due to an inaccurate movement pattern of the body at the entrance, the motion sensor of the motion sensor collective control switch may maintain a reception blocking state in which it does not receive a movement signal for a predetermined time (e.g., about 10 seconds) after the exit signal is generated, and may be able to receive movement by the motion sensor after a predetermined time has elapsed.
[0063] In addition, the condition under which the occupancy information indicator can receive count +1 information from the motion sensor batch control switch is within a predetermined time (e.g., about 10 minutes for wireless, no predetermined time for wired) when the count is 0 after exiting, and once the predetermined time has elapsed, the occupancy information indicator switches to sleep mode and cannot receive count information. However, in the case of a wired system, a sleep mode to reduce battery consumption is not required, so the signal can be received at any time.
[0064]
[0065] Example 5
[0066] FIG. 6 is a flowchart regarding the operation method of a batch control processing system for occupancy information according to the fifth embodiment of the present invention, and is an example of operation regarding automatic reset and light off of a motion sensor batch control switch according to the fifth embodiment of the present invention.
[0067] As shown in FIG. 6, after one person enters through the direction recognition sensor (601) of the entrance, one person exits, and the count calculation becomes 0. However, in a count error state where the count calculation of the occupancy information indicator (602) and the motion sensor collective control switch (603) is +1 or +2 and not 0, if no body is detected by the motion sensor of the motion sensor collective control switch (603) until a predetermined time (e.g., time set by the user) elapses in a state of +1 or +2 count, the motion sensor collective control switch (603) corrects the count error by setting the count calculation to 0 and forcibly turns off the light. After that, the motion sensor collective control switch (603) transmits an empty signal to the occupancy information indicator (602) to change the occupancy information of the occupancy information indicator (602) to an empty state.
[0068] The technical concept of the present invention should not be interpreted as being limited to the above-described embodiments. Not only is the scope of application diverse, but various modifications are possible at the level of a person skilled in the art without departing from the essence of the invention claimed in the claims. Accordingly, such improvements and modifications fall within the scope of protection of the present invention insofar as they are obvious to a person skilled in the art.
Claims
1. In a system that processes batch control by counting occupancy information, A pair of direction recognition sensors installed on the inner and outer sides of the entrance to the target space and configured to detect the entry and exit of the body; An occupancy information indicator installed on the outer surface of the entrance door of the above-mentioned target space, configured to receive a status data signal regarding the occupancy status of the body via wired or wireless connection from the direction recognition sensor, and to allow verification of the occupancy or vacancy status by illuminating a lamp or displaying it on a display according to the status data signal; A motion sensor batch control processing system for occupancy information, comprising a motion sensor batch control switch installed within the above-mentioned target space, receiving a status data signal regarding the occupancy status of a body via wired or wireless connection from the direction recognition sensor, and configured to turn lighting and other electronic devices on or off according to the status data signal via wired or wireless connection to a motion sensor batch control switch within the above-mentioned target space.
2. In Paragraph 1, A batch control processing system for occupancy information, characterized in that the above-mentioned occupancy information indicator lights up a red lamp when the occupancy status is occupied and lights up a green lamp when the vacancy status is empty.
3. In Paragraph 1, A system for processing batch control of occupancy information, characterized in that the above-mentioned occupancy information indicator and the above-mentioned motion sensor batch control switch set a maximum entry count to perform calculations only up to the number set as the maximum entry count, and set a maximum exit count to be greater than or equal to the maximum entry count to induce the count to become 0 upon exit.
4. In Paragraph 1, A system for processing collective control of occupancy information, characterized in that when an entry signal is generated by the pair of direction recognition sensors and a body count +1 occurs continuously, the count calculation method of the motion sensor collective control switch receiving the signal via wired or wireless connection and the occupancy information indicator is such that, when the first body and the second body enter due to continuous body entry, a predetermined time difference is maintained, the count generated within the predetermined time is deleted, and the count generated after the predetermined time has elapsed is calculated.
5. In Paragraph 4, A batch control processing system for occupancy information characterized by inducing the count to become 0 by calculating a continuous count when a body count of -1 occurs continuously when an exit signal is generated by the above pair of direction recognition sensors, by setting the above predetermined time shorter or to 0 seconds than when an entry signal occurs continuously.
6. In Paragraph 4 or 5, A system for processing batch control of occupancy information, characterized in that when an entry signal and an exit signal are alternately and continuously repeated by the above-mentioned pair of direction recognition sensors, the count calculation method of the motion sensor batch control switch and the occupancy information indicator that receive this is a method of minimizing count calculation errors by setting the time difference between entry and exit to 0 seconds or shorter than the time difference between the continuous entry count and the continuous exit count when the entry signal is received and the exit signal is received immediately.
7. In Paragraph 1, The above motion sensor batch control switch is linked to the motion sensor and is configured to change the on / off state of the light by modifying the count based on whether the motion sensor detects a moving object, thereby forming a batch control processing system for occupancy information.
8. A system for processing collective control of occupancy information according to claim 7, wherein, when the count is 0 upon exiting, the motion sensor stops operating for a predetermined time, and after the predetermined time has elapsed, the motion sensor collective control switch calculates a count of +1 when a body is detected by the motion sensor and switches from an exit signal to an entry signal, and changes the motion sensor collective control switch from an off state to an on state.
9. An occupancy information batch control processing system according to claim 8, characterized in that it transmits an occupancy signal based on a modification operation of the count to the occupancy information indicator, and transmits an vacancy signal based on a modification operation of the count to the occupancy information indicator when a body is not detected by the motion sensor for a predetermined period of time.
10. An occupancy information batch control processing system according to claim 1, characterized in that when a body enters while the count of the motion sensor batch control switch and the occupancy information indicator is 0, the body does not pass through the direction recognition sensor, and the body is detected first by the motion sensor of the motion sensor batch control switch, and then the entry is detected by the direction recognition sensor, if the entry is completed within a predetermined time, the counting operation is modified to +1 instead of +2.
11. In Paragraph 1 A system for processing collective control of occupancy information, characterized by transmitting the occupancy signal to the motion sensor collective control switch via wired or wireless means when an occupancy signal is generated by the direction recognition sensor, calculating only the bodies that pass through the +count algorithm at the motion sensor collective control switch, and when the count becomes +1, the motion sensor collective control switch immediately maintains an ON state, and when an exit signal is generated by the direction recognition sensor, transmitting the exit signal to the motion sensor collective control switch via wired or wireless means, calculating only the bodies that pass through the -count algorithm at the motion sensor collective control switch, and when the count becomes 0, the motion sensor collective control switch immediately turns OFF.
12. An occupancy information batch control processing system according to claim 1, wherein when the light of the motion sensor batch control switch is on in the vacancy information indicator state, the occupancy information indicator transmits an exit signal according to the count calculated by the motion sensor batch control switch, and the motion sensor batch control switch turns the light off and resets the count to 0 if no motion is detected for a predetermined period of time.
13. In Paragraph 1, The above-mentioned occupancy information batch control processing system is characterized by being implemented as a wireless system or a wired system.
14. In Paragraph 13, A batch control processing system for occupancy information, characterized in that when implemented as a wireless system, if a body is detected by a motion sensor mounted on the direction recognition count sensor, it is set to a wake-up mode for a predetermined time to count the entry of the body, and when the predetermined time elapses, it is switched to a sleep mode to cut off power.
15. In Paragraph 13, A batch control processing system for occupancy information, characterized in that when implemented as a wireless system, if a body is detected by a motion sensor mounted on the occupancy information indicator, it is set to a wake-up mode for a predetermined time to display the occupancy status, and when the predetermined time elapses, it is switched to a sleep mode to turn off the display of the occupancy status.
16. In Paragraph 13, A batch control processing system for occupancy information that displays occupancy status by manual button operation, even when implemented as the above-mentioned wireless system.
17. In Paragraph 13, A batch control processing system for occupancy information, characterized by not setting a wake-up mode and a sleep mode when implemented with the above-mentioned streamlined system.
18. In Paragraph 1, A batch control processing system for occupancy information, characterized in that when an entry signal is generated by the direction recognition sensor, the occupancy information indicator calculates a + count to indicate entry, and when an exit signal is generated by the direction recognition sensor, the occupancy information indicator calculates a - count to indicate exit when the count becomes 0.
19. In Paragraph 1, A system for processing collective control of occupancy information, characterized in that when the collective control switch for motion sensors is manually forcibly turned off, the motion sensor function of the collective control switch for motion sensors is stopped, and when an entry signal is generated by the direction recognition sensor, the stopping of operation is released.
20. In Paragraph 1, A system for processing collective control of occupancy information, characterized by using a button of the occupancy information indicator to transmit a light-off signal to the motion sensor collective control switch, thereby stopping the operation of the motion sensor of the motion sensor collective control switch when the lights are collectively turned off, and releasing the operation stop when an entry signal is generated by the direction recognition sensor.
21. An occupancy information batch control processing system according to claim 1, characterized in that when the count of the motion sensor batch control switch becomes +2 and the count of the occupancy information indicator becomes +1, the occupancy information indicator becomes the mother and synchronizes the motion sensor batch control switch to +1.
22. A system for processing batch control of occupancy information according to claim 1, characterized in that when a count error occurs due to a + accumulation count in the motion sensor batch control switch according to the body pattern, a forced reset is operated so that the count becomes 0.
23. A batch control processing system for occupancy information according to claim 22, characterized in that, when setting the forced reset time of the exit signal state based on the final signal of the direction recognition sensor, the time is set to be shorter than the forced reset time of the entry signal state based on the final signal of the direction recognition sensor.
24. In Paragraph 1 A system for processing batch control of occupancy information, characterized by determining that a +1 count is established by determining that a body has entered when a body enters at an entry count of 0, and when the body is not detected by the direction recognition sensor and no signal is received, and the body is detected by the motion sensor of the motion sensor batch control switch.