A machine trigger method, device, storage medium and machine trigger system
By detecting the rotation position and sequence of the rotating mechanisms and sending trigger commands through the control module, the problem of limited mechanism placement is solved, enabling flexible layout of mechanisms in escape room games.
Patent Information
- Application Number
- CN202110977423.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-08-24
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2041-08-24
AI Technical Summary
In existing escape room games, the direct triggering relationship between mechanisms limits the flexibility of their placement, thus restricting their arrangement within the escape room.
By detecting the position and sequence of rotating parts in the rotating mechanism, and using the control module as a relay point, trigger commands are sent to control the operation of multiple candidate mechanisms, thus realizing a non-direct triggering mechanism.
It increases the flexibility of setting up mechanisms in secret rooms, allowing for more flexible layouts and gameplay designs.
Smart Images

Figure CN115715881B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of mechanism control, and in particular to a mechanism triggering method and device, a storage medium and a mechanism triggering system. BACKGROUND
[0002] Real-person escape room is an entity game that adds real object experience elements on the basis of online escape room game. That is, a realistic scene is created in a specific space through decoration and design, and then different tasks and story plots are given to players, requiring players to find clues, cooperate with the team, solve puzzles layer by layer, and finally complete the task and walk out of the escape room within a specified time. Real-person escape room breaks the limitations and shackles of computer games, and presents the essence of escape room in its original form, allowing players to experience the real scene and make the game more entertaining. At the same time, real-person escape room maintains the characteristics of escape room in exercising reasoning and logical thinking ability, and can better train team cooperation ability for a team, which is a new and more effective team building project.
[0003] In the research and practice of the prior art, the inventors of the present application found that in the existing mechanism control, after the decryption of mechanism A, mechanism B is directly triggered to open or close by mechanism A. However, direct triggering requires that mechanism A and mechanism B are directly connected, that is, mechanisms with a direct triggering relationship need to be arranged at adjacent positions, which limits the arrangement position of the mechanism in the escape room and reduces the flexibility of the mechanism in arrangement. SUMMARY
[0004] The embodiments of the present application provide a mechanism triggering method and device, which can avoid the limitation of the arrangement position of the mechanism in the escape room and improve the flexibility of the mechanism in arrangement.
[0005] To solve the above technical problems, the embodiments of the present application provide the following technical solutions:
[0006] A mechanism triggering method applied to a rotating mechanism arranged in a game space of an offline game, the rotating mechanism comprising a plurality of rotating parts, comprising:
[0007] detecting the rotating positions of the plurality of rotating parts in the rotating process;
[0008] if the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position, sending a first triggering instruction to a control module connected with the rotating mechanism, so that the control module sends a second triggering instruction to a target mechanism in a plurality of candidate mechanisms connected with the control module when receiving the first triggering instruction, and the second triggering instruction is used to trigger the target mechanism to perform a corresponding operation.
[0009] A mechanical trigger device is applied to a rotating mechanical device in a game space of an offline game, the rotating mechanical device comprises a plurality of rotating parts, and the rotating mechanical device comprises:
[0010] a detection module configured to detect rotating positions of the rotating parts in a rotating process;
[0011] a sending module configured to send a first trigger instruction to a control module connected to the rotating mechanical device if the rotating position of each rotating part of the rotating parts meets a preset rotating position, and trigger the control module to send a second trigger instruction to a target mechanical device of a plurality of candidate mechanical devices connected to the control module when the first trigger instruction is received, the second trigger instruction being used to trigger the target mechanical device to perform a corresponding operation.
[0012] In some embodiments, the sending module comprises:
[0013] a sending sub-module configured to send the first trigger instruction to the control module if the rotating position of each rotating part of the rotating parts meets the preset rotating position; and / or
[0014] if a rotating sequence of the rotating parts is a preset rotating sequence, the first trigger instruction is sent to the control module connected to the rotating mechanical device.
[0015] In some embodiments, the rotating mechanical device is a rotating disc mechanical device, and the rotating part is a sub-disc rotating around a central axis of the rotating disc mechanical device.
[0016] The sending sub-module comprises:
[0017] a first sending unit configured to send the first trigger instruction to the control module connected to the rotating mechanical device if the rotating position of the sub-disc is in a preset rotating position; and / or
[0018] if a rotating sequence of the sub-disc is a preset rotating sequence, the first trigger instruction is sent to the control module connected to the rotating mechanical device.
[0019] In some embodiments, the sub-disc comprises a first sub-disc in the center of the rotating disc structure and a second sub-disc sequentially sleeved outward from the first sub-disc, and a magnetic attraction switch and a magnet are arranged in the first sub-disc and the second sub-disc.
[0020] The first sending unit is configured to:
[0021] when the magnetic attraction switch and the magnet in the adjacent two sub-discs correspond to each other, the first trigger instruction is sent to the control module connected to the rotating mechanical device.
[0022] In some embodiments, the rotating mechanical device is a clock mechanical device, the clock mechanical device comprises a dial plate, and the rotating part is a pointer rotating around a central axis of the dial plate.
[0023] The sending sub-module comprises:
[0024] The second sending unit is configured to send a first trigger instruction to a control module connected to the rotating organ if the rotating position of the pointer is a preset rotating position; and / or
[0025] The trigger sub-module is configured to trigger the control module to determine a sending organ that sends the first trigger instruction when the first trigger instruction is received.
[0026] In some embodiments, the clock organ further comprises a plurality of control knobs, and one control knob corresponds to one pointer.
[0027] The detection module comprises:
[0028] The detection sub-module is configured to receive a rotating operation of the control knob and detect a rotating position of the pointer corresponding to the control knob rotating around a central axis of the dial.
[0029] In some embodiments, the sending module comprises:
[0030] The trigger sub-module is configured to trigger the control module to determine a sending organ that sends the first trigger instruction when the first trigger instruction is received.
[0031] The control sub-module is configured to control the control module to determine a target organ from a plurality of candidate organs connected to the control module based on a preset organ trigger logic and the sending organ, and send a second trigger instruction to the target organ, the second trigger instruction being used to trigger the target organ to perform a corresponding operation.
[0032] In some embodiments, the target organ is any one of an electromagnetic lock organ, a spotlight organ and a loudspeaker organ, and the control sub-module comprises:
[0033] The third sending unit is configured to send the second trigger instruction to the electromagnetic lock organ to trigger the electromagnetic lock organ to unlock or lock when the target organ is the electromagnetic lock organ.
[0034] The fourth sending unit is configured to send the second trigger instruction to the spotlight organ to trigger the spotlight organ to illuminate or extinguish when the target organ is the spotlight organ.
[0035] The fifth sending unit is configured to send the second trigger instruction to the loudspeaker organ to trigger the loudspeaker organ to play or stop playing when the target organ is the loudspeaker organ.
[0036] A computer readable storage medium stores a plurality of instructions, the instructions being adapted to be loaded by a processor to perform the steps in the organ trigger method.
[0037] The application discloses a mechanism triggering system, which is applied to a game space of an offline game, and comprises a rotating mechanism, a control module connected with the rotating mechanism and a plurality of candidate mechanisms connected with the control module.
[0038] The rotating mechanism is used for detecting rotating positions of the plurality of rotating parts in a rotating process, and a first triggering instruction is sent to the control module connected with the rotating mechanism if the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position.
[0039] The control module is used for sending a second triggering instruction to a target mechanism in the plurality of candidate mechanisms connected with the control module when the first triggering instruction is received.
[0040] The target mechanism is used for triggering the target mechanism to perform a corresponding operation when the second triggering instruction is received.
[0041] The application provides a mechanism triggering method, device, storage medium and mechanism triggering system, the rotating positions of the plurality of rotating parts in a rotating process are detected, a first triggering instruction is sent to the control module connected with the rotating mechanism if the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position, the control module is triggered to send a second triggering instruction to a target mechanism in the plurality of candidate mechanisms connected with the control module when the first triggering instruction is received, and the second triggering instruction is used for triggering the target mechanism to perform a corresponding operation. The control module is used as a relay point, the first triggering instruction is received by the control module, and the second triggering instruction is sent to control the target mechanism to trigger, so that the setting position of the mechanism in a secret room is limited, and the flexibility of the mechanism in setting is improved. BRIEF DESCRIPTION OF DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the application, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative effort.
[0043] Figure 1a The scene schematic diagram of the mechanism triggering system provided by the embodiments of the application.
[0044] Figure 1b The flowchart of the mechanism triggering method provided by the embodiments of the application.
[0045] Figure 1c The first top view of the rotating disc mechanism provided by the embodiments of the application.
[0046] Figure 1d A first side view of the rotating machine provided by the embodiment of the present application.
[0047] Figure 1e A second plan view of the rotating machine provided by the embodiment of the present application.
[0048] Figure 1f A second side view of the rotating machine provided by the embodiment of the present application.
[0049] Figure 1g A schematic view of the clock machine provided by the embodiment of the present application.
[0050] Figure 1h A schematic view of the game space provided by the embodiment of the present application.
[0051] Figure 1i A schematic view of the storage cabinet with the clock machine provided by the embodiment of the present application.
[0052] Figure 2 Another flowchart of the machine triggering method provided by the embodiment of the present application.
[0053] Figure 3 A structural schematic view of the machine triggering device provided by the embodiment of the present application. DETAILED DESCRIPTION
[0054] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0055] The embodiments of the present application provide a machine triggering method, device and rotating machine.
[0056] Please refer to Figure 1a , Figure 1aThe scene schematic diagram of the trigger system provided by the embodiments of the present application is shown in the figure. The trigger system comprises a rotating mechanism 100, a control module 200, and a plurality of candidate mechanisms 300 connected with the control module 200. The trigger system is applied to a game space of an offline game. The rotating mechanism comprises a plurality of rotating parts. The rotating mechanism 100 is used to detect the rotating positions of the plurality of rotating parts in the rotating process. If the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position, a first trigger instruction is sent to the control module 200 connected with the rotating mechanism 100. The control module 200 sends a second trigger instruction to a target mechanism in the plurality of candidate mechanisms 300 connected with the control module 200 when the first trigger instruction is received. The second trigger instruction is used to trigger the target mechanism to perform a corresponding operation. The rotating mechanism 100 and the candidate mechanisms 300 can be connected with the control module 200 through a communication network. The communication network can comprise a wireless network and a wired network. The wireless network comprises a combination of one or more of a wireless wide area network, a wireless local area network, a wireless metropolitan area network, and a wireless personal network. Network entities such as routers and gateways are not shown in the figure. The control module 200 can be applied to a client device such as a mobile phone, a computer, or a personal digital assistant, or can be applied to a server. The control module 200 interacts with the rotating mechanism 100 and the candidate mechanisms 300 through the communication network to exchange trigger instructions.
[0057] The trigger system can comprise a trigger device. The trigger device can be integrated in a rotating mechanism arranged in a game space of an offline game. Figure 1a The rotating mechanism is used to detect the rotating positions of the plurality of rotating parts in the rotating process. If the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position, a first trigger instruction is sent to the control module connected with the rotating mechanism. The control module is used to send a second trigger instruction to a target mechanism in the plurality of candidate mechanisms connected with the control module when the first trigger instruction is received. The target mechanism is used to trigger the target mechanism to perform a corresponding operation when the second trigger instruction is received. In this way, the control module is used as a relay point. The control module receives the first trigger instruction and sends the second trigger instruction to control the target mechanism to be triggered. The position of the mechanism in the setting position of the secret room is not limited, and the flexibility of the mechanism in the setting position is improved.
[0058] It should be noted that, Figure 1aThe schematic diagram of the mechanism triggering system shown is merely an example. The mechanism triggering system and scenario described in this application embodiment are for the purpose of more clearly illustrating the technical solutions of this application embodiment and do not constitute a limitation on the technical solutions provided in this application embodiment. As those skilled in the art will know, with the evolution of mechanism triggering systems and the emergence of new business scenarios, the technical solutions provided in this application embodiment are also applicable to similar technical problems.
[0059] In this embodiment, the description will be from the perspective of the mechanism triggering device, which can be integrated into a server with storage unit and microprocessor installed, thus having computing power.
[0060] Please see Figure 1b , Figure 1b This is a flowchart illustrating a mechanism triggering method provided in an embodiment of this application. The mechanism triggering method includes:
[0061] In step 101, the rotational position of the plurality of rotating components during the rotation process is detected.
[0062] In offline escape room games, users are placed in an escape room-like game space and find clues to trigger mechanisms.
[0063] Specifically, for the rotating mechanisms in the game space that include multiple rotating components, users can collect clues to determine the rotation method of the mechanism. The rotation method can be the position of multiple rotating components during the rotation process, thereby triggering other mechanisms. Therefore, it is necessary to detect the rotation position of multiple rotating components during the rotation process to determine whether the triggering conditions for other mechanisms are met.
[0064] In step 102, if the rotation position of each of the plurality of rotating parts satisfies the preset rotation position, a first trigger command is sent to the control module connected to the rotating mechanism. Upon receiving the first trigger command, the control module sends a second trigger command to the target mechanism among the plurality of candidate mechanisms connected to the control module. The second trigger command is used to trigger the target mechanism to perform a corresponding operation.
[0065] If the rotation position of each of the plurality of rotating components satisfies a preset rotation position, it proves that the rotation positions of the plurality of rotating components, when controlled by the user, satisfy the triggering conditions of other mechanisms. Therefore, a first trigger command can be sent to the control module connected to the rotating mechanism. Upon receiving the first trigger command, the trigger control module sends a second trigger command to the target mechanism among the plurality of candidate mechanisms connected to the control module. The second trigger command is used to trigger the target mechanism to perform a corresponding operation.
[0066] In some embodiments, the step of sending the first trigger instruction to the control module connected to the rotating machine if the rotating position of each rotating member in the plurality of rotating members meets the preset rotating position, comprises:
[0067] (1) if the rotating position of each rotating member in the plurality of rotating members meets the preset rotating position; and / or
[0068] (2) if the rotating sequence of the plurality of rotating members is the preset rotating sequence, sending the first trigger instruction to the control module connected to the rotating machine.
[0069] Wherein, the rotating position of the rotating member meeting the preset rotating position to trigger other machines is only the first trigger mode of the rotating machine; the second trigger mode can also be determined whether the rotating sequence of the user in the rotating rotating machine meets the preset rotating sequence, and when the preset rotating sequence is met, the other machine is triggered; the third trigger mode can also be triggered when both the preset rotating sequence and the preset rotating position are met.
[0070] For example, the rotating machine includes three rotating members A, B and C, the preset rotating position is that A rotates to a position, B rotates to b position, and C rotates to c position, and the preset sequence is that B is rotated first, then C is rotated, and finally A is rotated. When the trigger mode is the first trigger mode, only when A rotates to a position, B rotates to b position, and C rotates to c position, the target machine can be triggered by the control module; when the trigger mode is the second trigger mode, only when the user rotates B first, then rotates C, and finally rotates A, the target machine can be triggered by the control module; when the trigger mode is the third trigger mode, the user needs to rotate B first, then rotate C, and finally rotate A, and at the same time, ensure that A rotates to a position, B rotates to b position, and C rotates to c position, so that the target machine is triggered by the control module.
[0071] In some embodiments, the rotating machine is a rotating disc machine, and the rotating member is a sub-disc rotating around the center axis of the rotating disc machine.
[0072] if the rotating position of each rotating member in the plurality of rotating members meets the preset rotating position; and / or
[0073] if the rotating sequence of the plurality of rotating members is the preset rotating sequence, the step of sending the first trigger instruction to the control module connected to the rotating machine, comprises:
[0074] (1.1) if the rotating position of the sub-disc is in the preset rotating position; and / or
[0075] (1.2) If the rotation sequence of the sub-turntable is a preset rotation sequence, a first trigger instruction is sent to a control module connected to the rotation machine.
[0076] As shown in Figure 1c and Figure 1d , Figure 1c is a first plan view of the rotation machine provided by the embodiments of the present application, Figure 1d is a first side view of the rotation machine provided by the embodiments of the present application. Figure 1d The rotation machine shown is a plurality of sub-turntables 11 stacked from bottom to top, and the size of the sub-turntables 11 from bottom to top decreases in turn. Therefore, a user can rotate each sub-turntable, and if the rotation position of the sub-turntable is at a preset rotation position; and / or if the rotation sequence of the sub-turntable is a preset rotation sequence, a first trigger instruction is sent to a control module connected to the rotation machine.
[0077] In some embodiments, the sub-turntable includes a first sub-turntable at the center of the turntable structure, and a second sub-turntable sequentially sleeved outward from the first sub-turntable, and a magnetic attraction switch and a magnet are arranged in the first sub-turntable and the second sub-turntable;
[0078] The step of sending a first trigger instruction to a control module connected to the rotation machine if the rotation position of each rotation member of the plurality of rotation members meets a preset rotation position includes:
[0079] When the magnetic attraction switch and the magnet in the adjacent two sub-turntables correspond, a first trigger instruction is sent to a control module connected to the rotation machine.
[0080] As shown in Figure 1e and Figure 1f , Figure 1e is a second plan view of the rotation machine provided by the embodiments of the present application, Figure 1f is a second side view of the rotation machine provided by the embodiments of the present application. The rotation machine includes a first sub-turntable 111 and a second sub-turntable 112 sequentially sleeved outward from the first sub-turntable 111. It can be understood that the first sub-turntable 111 is a disc, and the second sub-turntable 112 is a ring. And a magnetic attraction switch 21 and a magnet 22 are arranged in the first sub-turntable 111 and the second sub-turntable 112, and the preset rotation position is the position where the magnetic attraction switches and the magnets between adjacent discs and rings and between adjacent rings are aligned.
[0081] Specifically, a magnetic switch can be a magnetic reed switch. Its working principle involves two overlapping, magnetizable reeds (usually composed of iron and nickel) sealed in a glass tube. The two reeds are interlocked with a small gap (about a few micrometers). The contacts on the two reeds are plated with a very hard metal, typically rhodium and ruthenium. This hard metal layer greatly increases the switching frequency and product lifespan. The glass tube is filled with a high-purity inert gas (such as nitrogen). Some reed switches are even made into a vacuum state to improve their high-voltage performance. The reed acts as a magnetic conductor. When not in operation, the two reeds are not in contact. When a magnetic field generated by a permanent magnet or electromagnetic coil passes through, the applied magnetic field causes different polarities near the endpoints of the two reeds. When the magnetic force exceeds the reed's own elasticity, the two reeds attract each other, conducting the circuit. When the magnetic field weakens or disappears, the reed releases due to its elasticity, and the contacts separate, opening the circuit. Based on this, a corresponding magnet can be set to trigger the magnetic reed switch to turn on or off.
[0082] Specifically, in Figure 1d In the turntable mechanism formed by the stacked sub-turntables shown, the magnetic switch 21 and the magnet 22 can be set on the upper and lower surfaces of two adjacent sub-turntables 11, so that the magnet 22 of the lower sub-turntable 11 can be opposite to the magnetic switch 21 of the upper sub-turntable 11 to trigger the mechanism.
[0083] In some embodiments, the rotating mechanism is a clock mechanism, the clock mechanism includes a dial, and the rotating element is a pointer that rotates about the central axis of the dial;
[0084] If the rotational position of each of the plurality of rotating components satisfies a preset rotational position; and / or
[0085] If the rotation sequence of the plurality of rotating components is a preset rotation sequence, the step of sending a first trigger command to the control module connected to the rotating mechanism includes:
[0086] (1.1) If the pointer's rotation position is at a preset rotation position; and / or
[0087] (1.2) If the rotation sequence of the pointer is a preset rotation sequence, a first trigger command is sent to the control module connected to the rotating mechanism.
[0088] Please refer to Figure 1g , Figure 1g This is a schematic diagram of a clock mechanism provided in an embodiment of this application. The clock mechanism includes a dial 31 and a pointer 32 that rotates about the central axis of the dial 31. The pointer 32 may specifically include an hour hand, a minute hand, and a second hand.
[0089] Specifically, since the rotating member is the pointer 32, the triggering manner of the clock mechanism is to control the rotating position of the pointer 32 to be at a preset rotating position; and / or the rotating sequence of the pointer is a preset rotating sequence, and a first triggering instruction is sent to the control module connected with the rotating mechanism.
[0090] In some embodiments, the clock mechanism further comprises a plurality of control knobs, and one control knob corresponds to one pointer.
[0091] The step of detecting the rotating position of the rotating member in the rotating process comprises:
[0092] The rotating operation of the control knob is received, and the rotating position of the pointer corresponding to the control knob rotating around the central axis of the dial is detected.
[0093] In order to avoid the damage of the pointer caused by the misoperation when directly controlling the rotation of the pointer, the control knob can be set, and each control knob controls the rotation of one pointer, so that the user indirectly controls the rotation of the pointer by rotating the control knob, thereby avoiding the damage of the pointer caused by the misoperation when directly controlling the rotation of the pointer.
[0094] In some embodiments, the step of triggering the control module to send a second triggering instruction to a target mechanism in the plurality of candidate mechanisms connected with the control module when the first triggering instruction is received comprises:
[0095] (1) triggering the control module to determine the sending mechanism when the first triggering instruction is received;
[0096] (2) controlling the control module to determine the target mechanism from the plurality of candidate mechanisms connected with the control module based on the preset mechanism triggering logic and the sending mechanism, and send a second triggering instruction to the target mechanism, the second triggering instruction being used to trigger the target mechanism to perform corresponding operation.
[0097] Since the control module is connected with the rotating mechanism and the plurality of candidate mechanisms, and the rotating mechanism triggers which target mechanism in the plurality of candidate mechanisms, the target mechanism is determined by the control module according to the sending mechanism of the first triggering instruction and the preset mechanism triggering logic.
[0098] For example, the rotating mechanism is used to trigger the lighting or extinguishing of the spotlight mechanism, when the rotating mechanism triggers the sending of the first triggering instruction to the control module, the control module determines that the sending mechanism is the rotating mechanism, and the preset triggering logic is that the rotating mechanism triggers the spotlight mechanism, so the spotlight mechanism is determined as the target mechanism, and then the control module sends the second triggering instruction to the target mechanism, which is used to trigger the target mechanism to perform corresponding operation.
[0099] In some embodiments, the target mechanism is any one of an electromagnetic lock mechanism, a spotlight mechanism, and a loudspeaker mechanism.
[0100] The step of sending the second trigger instruction to the target mechanism, the second trigger instruction being used to trigger the target mechanism to perform a corresponding operation, comprises:
[0101] (1.1) When the target mechanism is an electromagnetic lock mechanism, sending a second trigger instruction to the electromagnetic lock mechanism, the second trigger instruction being used to trigger the electromagnetic lock mechanism to unlock or lock;
[0102] (1.2) When the target mechanism is a spotlight mechanism, sending a second trigger instruction to the spotlight mechanism, the second trigger instruction being used to trigger the spotlight mechanism to light up or turn off;
[0103] (1.3) When the target mechanism is a loudspeaker mechanism, sending a second trigger instruction to the loudspeaker mechanism, the second trigger instruction being used to trigger the loudspeaker mechanism to play or stop playing.
[0104] Wherein, the electromagnetic lock mechanism is similar to a door lock, and unlocking or locking of the electromagnetic lock mechanism controls whether a door or a drawer can be opened; the spotlight mechanism is used for lighting up or turning off to prompt a user in a light way; the loudspeaker mechanism is used for playing or stopping playing to prompt a user in a sound way.
[0105] Specifically, please refer to Figure 1h , Figure 1h A schematic diagram of a game space provided by an embodiment of the present application, wherein a rotating disc mechanism and a collection cabinet are arranged in the game space, and at least one of an electromagnetic lock mechanism, a spotlight mechanism, and a loudspeaker mechanism can be arranged in the collection cabinet. The electromagnetic lock mechanism can control whether a drawer in the collection cabinet can be opened; the spotlight mechanism can be arranged in a transparent glass window of the collection cabinet and is used for lighting up game props arranged in the glass window; and the loudspeaker mechanism can be arranged in an interior of the collection cabinet and is used for playing or stopping playing a preset audio file.
[0106] In some embodiments, please refer to Figure 1i , Figure 1i A schematic diagram of a collection cabinet with a clock mechanism provided by an embodiment of the present application. Wherein, the clock mechanism can be arranged behind a transparent glass plate, and a maintenance opening of the clock mechanism can be reserved behind a door of the collection cabinet, and is used for disassembling, maintaining, and replacing the clock mechanism.
[0107] From the above, the embodiment of the application detects the rotating position of the plurality of rotating members in the rotating process. If the rotating position of each rotating member in the plurality of rotating members meets the preset rotating position, a first trigger instruction is sent to a control module connected with the rotating organ, triggering the control module to send a second trigger instruction to a target organ in a plurality of candidate organs connected with the control module when the first trigger instruction is received. The second trigger instruction is used to trigger the target organ to perform corresponding operation. The embodiment of the application takes the control module as a relay point, receives the first trigger instruction by the control module, and sends the second trigger instruction to control the target organ to trigger, which can avoid the limitation of the setting position of the organ in the secret chamber, and improve the flexibility of the organ in the setting.
[0108] The method described in combination with the above embodiment will be further described in detail below by taking the rotating organ as a clock organ as an example.
[0109] In this embodiment, reference is made to the following description.
[0110] Please refer to Figure 2 , Figure 2 Another flowchart of the organ trigger method provided by the embodiment of the application. The method flowchart can include:
[0111] In step 201, the rotating operation of the control knob is received, and the rotating position of the pointer corresponding to the control knob rotating around the center axis of the dial is detected.
[0112] Please refer to Figure 1g , Figure 1g The schematic diagram of the clock organ provided by the embodiment of the application, which includes a dial 31 and a pointer 32 rotating around the center axis of the dial 31. The pointer 32 can specifically include hour hand, minute hand and second hand. In order to avoid the damage of the pointer caused by the misoperation when directly controlling the rotation of the pointer, the control knob can be set, each control knob controls the rotation of a pointer, so that the user indirectly controls the rotation of the pointer by rotating the control knob, avoiding the damage of the pointer caused by the misoperation when directly controlling the rotation of the pointer.
[0113] In step 202, if the rotating position of the pointer is in the preset rotating position; and / or if the rotating sequence of the pointer is the preset rotating sequence, a first trigger instruction is sent to a control module connected with the rotating organ.
[0114] Wherein, the rotation position of the rotating member meeting the preset rotation position to trigger other mechanisms is only the first triggering mode of the rotating mechanism; the second triggering mode can also be determined whether the rotation sequence of the user in rotating the rotating members of the rotating mechanism meets the preset rotation sequence, and when the preset rotation sequence is met, the other mechanisms are triggered; the third triggering mode can also be triggered when both the preset rotation sequence and the preset rotation position are met.
[0115] For example, the rotating mechanism includes three rotating members A, B and C, the preset rotation position is that A is rotated to a position, B is rotated to b position, and C is rotated to c position, and the preset sequence is that B is rotated first, then C is rotated, and finally A is rotated. When the triggering mode is the first triggering mode, only when A is rotated to a position, B is rotated to b position, and C is rotated to c position, the target mechanism can be triggered by the control module; when the triggering mode is the second triggering mode, only when the user first rotates B, then rotates C, and finally rotates A, the target mechanism can be triggered by the control module; when the triggering mode is the third triggering mode, the user needs to first rotate B, then rotate C, and finally rotate A, and at the same time, A is rotated to a position, B is rotated to b position, and C is rotated to c position, so that the target mechanism is triggered by the control module.
[0116] Specifically, since the rotating member is a pointer 32, the triggering mode of the clock mechanism is that the rotation position of the pointer 32 is in the preset rotation position; and / or the rotation sequence of the pointer is the preset rotation sequence, and a first trigger instruction is sent to the control module connected with the rotating mechanism.
[0117] In step 203, the control module determines the sending mechanism that sends the first trigger instruction when the control module receives the first trigger instruction.
[0118] Wherein, since the control module is connected with the rotating mechanism and the plurality of candidate mechanisms, and the rotating mechanism triggers which target mechanism in the plurality of candidate mechanisms
[0119] In step 204, the control module determines the target mechanism from the plurality of candidate mechanisms connected with the control module based on the preset mechanism triggering logic and the sending mechanism.
[0120] Wherein, the target mechanism is determined by the control module according to the sending mechanism of the first trigger instruction and the preset mechanism triggering logic.
[0121] For example, the rotating mechanism is used to trigger the lighting or extinguishing of the spotlight mechanism, and when the rotating mechanism triggers the first trigger logic to be sent to the control module, the control module determines that the sending mechanism is the rotating mechanism, and the preset triggering logic is that the rotating mechanism triggers the spotlight mechanism, and then the spotlight mechanism is determined as the target mechanism, so that the control module sends a second trigger instruction to the target mechanism to trigger the target mechanism to perform corresponding operations.
[0122] In step 205, when the target organ is an electromagnetic lock organ, a second trigger instruction for triggering the electromagnetic lock organ to unlock or lock is sent to the electromagnetic lock organ.
[0123] The electromagnetic lock organ is similar to a door lock, and the unlocking or locking of the electromagnetic lock organ controls whether the door or drawer can be opened
[0124] In step 206, when the target organ is a spotlight organ, a second trigger instruction for triggering the spotlight organ to light up or turn off is sent to the spotlight organ.
[0125] The spotlight organ is used for lighting or turning off to prompt the user in a light way.
[0126] In step 207, when the target organ is a loudspeaker organ, a second trigger instruction for triggering the loudspeaker organ to play or stop playing is sent to the loudspeaker organ.
[0127] The loudspeaker organ is used for playing or stopping playing to prompt the user in a sound way.
[0128] As described above, the embodiment of the present application first detects the rotation position of the plurality of rotating members in the rotation process; if the rotation position of each rotating member in the plurality of rotating members meets the preset rotation position, a first trigger instruction is sent to the control module connected with the rotating organ, triggering the control module to send a second trigger instruction to the target organ in the plurality of candidate organs connected with the control module when receiving the first trigger instruction, the second trigger instruction being used to trigger the target organ to perform corresponding operation. The embodiment of the present application takes the control module as a relay point, receives the first trigger instruction by the control module, and sends the second trigger instruction to control the target organ to trigger, which can avoid the limitation of the setting position of the organ in the secret chamber, and improve the flexibility of the organ in setting.
[0129] In order to better implement the organ trigger method provided by the embodiment of the present application, the embodiment of the present application further provides an apparatus based on the above-mentioned organ trigger method. The meanings of the terms are the same as those in the above-mentioned organ trigger method, and the specific implementation details can be referred to the description in the method embodiment.
[0130] Please refer to Figure 3 , Figure 3 The structure diagram of the organ trigger apparatus provided by the embodiment of the present application, wherein the organ trigger apparatus can include a detection module 301 and a sending module 302, etc.
[0131] The detection module 301 is used for detecting the rotation position of the plurality of rotating members in the rotation process;
[0132] The sending module 302 is configured to send a first trigger instruction to a control module connected to the rotating organ if a rotating position of each rotating member in the plurality of rotating members meets a preset rotating position, so as to trigger the control module to send a second trigger instruction to a target organ in a plurality of candidate organs connected to the control module when the first trigger instruction is received, and the second trigger instruction is used to trigger the target organ to perform a corresponding operation.
[0133] In some embodiments, the sending module 302 comprises:
[0134] The sending sub-module is configured to:
[0135] The first trigger instruction is sent to the control module connected to the rotating organ if a rotating sequence of the plurality of rotating members is a preset rotating sequence.
[0136] In some embodiments, the rotating organ is a rotating disc organ, and the rotating member is a sub-rotating disc rotating around a central axis of the rotating disc organ.
[0137] The sending sub-module comprises:
[0138] The first sending unit is configured to:
[0139] The first trigger instruction is sent to the control module connected to the rotating organ if a rotating sequence of the sub-rotating disc is a preset rotating sequence.
[0140] In some embodiments, the sub-rotating disc comprises a first sub-rotating disc in the center of the rotating disc structure, and a second sub-rotating disc sequentially sleeved outward from the first sub-rotating disc, and a magnetic attraction switch and a magnet are arranged in the first sub-rotating disc and the second sub-rotating disc.
[0141] The first sending unit is configured to:
[0142] The first trigger instruction is sent to the control module connected to the rotating organ when the magnetic attraction switch and the magnet in the adjacent two sub-rotating discs correspond.
[0143] In some embodiments, the rotating organ is a clock organ, and the clock organ comprises a dial plate, and the rotating member is a pointer rotating around a central axis of the dial plate.
[0144] The sending sub-module comprises:
[0145] The second sending unit is configured to:
[0146] If the rotation sequence of the pointer is a preset rotation sequence, a first trigger instruction is sent to a control module connected to the rotation organ.
[0147] In some embodiments, the clock organ further includes a plurality of control knobs, and one control knob corresponds to one pointer;
[0148] The detection module 301 includes:
[0149] The detection sub-module is configured to receive a rotation operation of the control knob, and detect a rotation position of the pointer corresponding to the control knob rotating around the central axis of the dial.
[0150] In some embodiments, the sending module 302 includes:
[0151] The trigger sub-module is configured to trigger the control module to determine a sending organ that sends the first trigger instruction when the first trigger instruction is received.
[0152] The control sub-module is configured to control the control module to determine a target organ from a plurality of candidate organs connected to the control module based on a preset organ trigger logic and the sending organ, and send a second trigger instruction to the target organ, the second trigger instruction being used to trigger the target organ to perform a corresponding operation.
[0153] In some embodiments, the target organ is any one of an electromagnetic lock organ, a spotlight organ and a loudspeaker organ, and the control sub-module includes:
[0154] The third sending unit is configured to send the second trigger instruction to the electromagnetic lock organ when the target organ is the electromagnetic lock organ, the second trigger instruction being used to trigger the electromagnetic lock organ to unlock or lock.
[0155] The fourth sending unit is configured to send the second trigger instruction to the spotlight organ when the target organ is the spotlight organ, the second trigger instruction being used to trigger the spotlight organ to illuminate or extinguish.
[0156] The fifth sending unit is configured to send the second trigger instruction to the loudspeaker organ when the target organ is the loudspeaker organ, the second trigger instruction being used to trigger the loudspeaker organ to play or stop playing.
[0157] From the above, the embodiment of the present application detects the rotating positions of the plurality of rotating members in the rotating process by the detection module 301; if the rotating position of each rotating member of the plurality of rotating members meets the preset rotating position, the sending module 302 sends a first trigger instruction to the control module connected with the rotating organ, triggers the control module to send a second trigger instruction to a target organ in the plurality of candidate organs connected with the control module when the first trigger instruction is received, and the second trigger instruction is used to trigger the target organ to perform corresponding operations. The embodiment of the present application takes the control module as a relay point, receives the first trigger instruction by the control module, and sends the second trigger instruction to control the target organ to trigger, which can avoid the limitation of the setting position of the organ in the secret room, and improve the flexibility of the organ in the setting.
[0158] Those skilled in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructions, or by related hardware controlled by the instructions, which can be stored in a computer readable storage medium and loaded and executed by a processor.
[0159] Therefore, the embodiment of the present application provides a computer readable storage medium, which stores a plurality of computer programs. The computer programs can be loaded by a processor to execute the steps in any organ triggering method provided by the embodiment of the present application. For example, the computer programs can execute the following steps:
[0160] Detect the rotating positions of the plurality of rotating members in the rotating process; if the rotating position of each rotating member of the plurality of rotating members meets the preset rotating position, the sending module 302 sends a first trigger instruction to the control module connected with the rotating organ, triggers the control module to send a second trigger instruction to a target organ in the plurality of candidate organs connected with the control module when the first trigger instruction is received, and the second trigger instruction is used to trigger the target organ to perform corresponding operations.
[0161] The specific implementation of each operation can be referred to the previous embodiments, which will not be described here.
[0162] The storage medium can include a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc.
[0163] Since the computer programs stored in the storage medium can execute the steps in any organ triggering method provided by the embodiment of the present application, the beneficial effects of any organ triggering method provided by the embodiment of the present application can be achieved, which will be described in detail in the previous embodiments, and will not be described here.
[0164] The above describes in detail the method, device, computer readable storage medium and system for triggering the mechanism provided by the embodiments of the application. The principles and implementation manners of the application are described by using specific examples. The above description of the embodiments is only used to help understand the method of the application and its core idea. Meanwhile, for those skilled in the art, according to the idea of the application, the specific implementation manners and application ranges can be changed. Therefore, the content of the specification should not be understood as a limitation of the application.
Claims
1. A method of triggering a mechanism, characterized by The application discloses a rotating machine applied to game space setting of offline games. Detecting rotating positions of the multiple rotating members in the rotating process; If the rotating position of each rotating member in the multiple rotating members meets a preset rotating position, a first trigger instruction is sent to a control module connected with the rotating machine, and the control module is triggered to send a second trigger instruction to a target machine in multiple candidate machines connected with the control module when the first trigger instruction is received, and the second trigger instruction is used to trigger the target machine to perform corresponding operations. When the rotating machine is a rotating disc machine, and the rotating member is a sub-rotating disc rotating around a central shaft of the rotating disc machine, the sub-rotating disc comprises a first sub-rotating disc in the structural center of the rotating disc machine and a second sub-rotating disc sequentially sleeved outward from the first sub-rotating disc, and a magnetic attraction switch and a magnet are arranged in the first sub-rotating disc and the second sub-rotating disc, the magnet is used to trigger conduction of the magnetic attraction switch, and the step of sending the first trigger instruction to the control module connected with the rotating machine if the rotating position of each rotating member in the multiple rotating members meets the preset rotating position comprises the following steps. When the magnetic attraction switches in the adjacent two sub-rotating discs correspond to the magnets, the first trigger instruction is sent to the control module connected with the rotating machine.
2. The method of claim 1, wherein, The step of sending the first trigger instruction to the control module connected with the rotating machine if the rotating position of each rotating member in the multiple rotating members meets the preset rotating position comprises the following steps. If the rotating position of each rotating member in the multiple rotating members meets the preset rotating position; and / or If the rotating sequence of the multiple rotating members is a preset rotating sequence, the first trigger instruction is sent to the control module connected with the rotating machine.
3. The method of claim 2, wherein, If the rotating position of each rotating member in the multiple rotating members meets the preset rotating position; and / or If the rotating sequence of the multiple rotating members is a preset rotating sequence, the first trigger instruction is sent to the control module connected with the rotating machine. If the rotating position of the sub-rotating disc is in the preset rotating position; and / or If the rotating sequence of the sub-rotating disc is a preset rotating sequence, the first trigger instruction is sent to the control module connected with the rotating machine.
4. The method of claim 1, wherein, The step of triggering the control module to send the second trigger instruction to the target machine in the multiple candidate machines connected with the control module when the first trigger instruction is received comprises the following steps. The control module is triggered to determine a sending machine sending the first trigger instruction when the first trigger instruction is received. The control module is controlled to determine the target machine from the multiple candidate machines connected with the control module based on preset machine trigger logic and the sending machine, and the second trigger instruction is sent to the target machine, and the second trigger instruction is used to trigger the target machine to perform corresponding operations.
5. The method of claim 4, wherein, The target machine is any one of an electromagnetic lock machine, a spotlight machine and a loudspeaker machine. The step of sending the second trigger instruction to the target machine, and the second trigger instruction is used to trigger the target machine to perform corresponding operations comprises the following steps. When the target organ is an electromagnetic lock organ, a second trigger instruction for triggering the electromagnetic lock organ to unlock or lock is sent to the electromagnetic lock organ; When the target organ is a spotlight organ, a second trigger instruction for triggering the spotlight organ to light up or turn off is sent to the spotlight organ; When the target organ is a loudspeaker organ, a second trigger instruction for triggering the loudspeaker organ to play or stop playing is sent to the loudspeaker organ.
6. A mechanism trigger device characterized by comprising: The rotation organ applied to the game space setting of offline games comprises a plurality of rotating parts, which comprises: a detection module for detecting the rotating positions of the plurality of rotating parts during rotation; a sending module for sending a first trigger instruction to a control module connected with the rotation organ if the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position, so as to trigger the control module to send a second trigger instruction to a target organ in a plurality of candidate organs connected with the control module when the first trigger instruction is received, the second trigger instruction being used to trigger the target organ to perform corresponding operations; When the rotation organ is a rotating disc organ and the rotating part is a sub-rotating disc rotating around the central axis of the rotating disc organ, the sub-rotating disc comprises a first sub-rotating disc at the structural center of the rotating disc organ and a second sub-rotating disc sequentially sleeved outward from the first sub-rotating disc, and a magnetic attraction switch and a magnet are arranged in the first sub-rotating disc and the second sub-rotating disc, the magnet being used to trigger the conduction of the magnetic attraction switch or not, and the sending module being used to: send a first trigger instruction to a control module connected with the rotation organ when the magnetic attraction switches in the adjacent two sub-rotating discs correspond to the magnets.
7. A computer-readable storage medium, characterized in that, The computer readable storage medium stores a plurality of instructions, which are suitable for being loaded by the processor to execute the steps in the organ trigger method of any one of claims 1 to 5.
8. A mechanism triggering system, characterized by, The organ trigger system applied to the game space of offline games comprises a rotation organ, a control module connected with the rotation organ, and a plurality of candidate organs connected with the control module, and the rotation organ comprises a plurality of rotating parts; The rotation organ is used to detect the rotating positions of the plurality of rotating parts during rotation, and send a first trigger instruction to a control module connected with the rotation organ if the rotating position of each rotating part of the plurality of rotating parts meets a preset rotating position; The control module is used to send a second trigger instruction to a target organ in a plurality of candidate organs connected with the control module when the first trigger instruction is received; The target organ is used to trigger the target organ to perform corresponding operations when the second trigger instruction is received; and the computer readable storage medium stores a plurality of instructions, which are suitable for being loaded by the processor to execute the steps in the organ trigger method of any one of claims 1 to 5. When the rotating machine is a rotating disc machine and the rotating member is a sub-disc rotating around a central shaft of the rotating disc machine, the sub-disc comprises a first sub-disc at the center of the structure of the rotating disc machine and a second sub-disc sequentially sleeved outward from the first sub-disc, and the first sub-disc and the second sub-disc are both provided with a magnetic attraction switch and a magnet, the magnet is used to trigger the conduction of the magnetic attraction switch or not, and the rotating machine is used to send a first trigger instruction to a control module connected with the rotating machine when the magnetic attraction switches in adjacent two sub-discs correspond to the magnets.
Citation Information
Patent Citations
Mobile device of bangle type, control method thereof, and UI display method
CN105144026A
Control system of intelligent secret room mechanism
CN108181851A