Remote networking system for supporting interaction based on behavior and response pattern
The remote networking system addresses the lack of interaction in telemedicine by collecting and synchronizing motion and specification data for real-time feedback, enhancing telemedicine's efficiency and adaptability.
Patent Information
- Application Number
- PCT/KR2025/009712
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-09
- Filing Date
- 2025-07-07
- Publication Date
- 2026-01-15
AI Technical Summary
Existing telemedicine systems lack effective methods for communication and interaction between doctors and patients, requiring efficient data transmission, versatility, and immediate feedback reflection.
A remote networking system that includes an acquiring unit to collect motion and specification information, a feedback unit for remote feedback, and a communication unit to synchronize and control operations, enabling real-time interaction and tailored feedback.
Ensures real-time interaction with accurate feedback, increasing versatility and adaptability for diverse user groups and environments, enhancing healthcare, education, and training applications.
Smart Images

Figure KR2025009712_15012026_PF_FP_ABST
Abstract
Description
A remote networking system that supports interactions based on behavior and response patterns.
[0001] The present invention is to contribute to the development of remote interaction and communication technology by collecting and analyzing data on behavior and response patterns through a remote networking system to support interaction. More specifically, the present invention is a technical field related to a remote networking system that supports interaction according to behavior and response patterns, which provides remote interaction through responses and actions between users through analysis of specification data and real-time behavior data.
[0002] As the World Health Organization (WHO) recommends the use of digital platforms to maintain essential medical services during pandemics, governments around the world have implemented support policies, including easing legal restrictions on telemedicine and expanding coverage. The telemedicine market is rapidly growing, fueled by the convergence of technology and healthcare.
[0003] The widespread adoption of personal smart devices and 5G networks is creating the ICT infrastructure necessary for telemedicine. Furthermore, advancements in telemedicine-related technologies and devices are complementing the medical limitations of telemedicine. For example, the proliferation of smartphones, high-speed internet, and wearable devices has increased the accessibility and efficiency of telemedicine, driving the growth of a wide range of telemedicine services, including virtual consultations, remote monitoring, and telemedicine platforms.
[0004] Telemedicine, in particular, seeks to improve access to health care in remote areas or areas where medical services are scarce.
[0005] The global telemedicine market size reached $55.48 billion in 2022, and is projected to reach $759.87 billion by 2030.
[0006] Telemedicine refers to providing medical services by overcoming the spatial and, to some extent, temporal limitations of limited medical resources through ICT technology. The types of services provided by telemedicine are diverse, and representative services include 'telemedicine' that diagnoses or prescribes diseases through video, phone, chat, email, etc., 'telemedicine' that remotely monitors a patient's health and clinical information, and 'telemedicine' that utilizes robots or performs surgery through collaboration between medical professionals from a distance.
[0007] As the market size increases and the need for remote medical services increases, developments are being made in devices and services in the remote medical market. As a prior document for remote medical treatment, there is "Complex Medical Device (Registration No. 10-1435581, hereinafter referred to as Patent Document 1)".
[0008] The invention of Patent Document 1 includes a stethoscope for receiving diagnostic sound waves inside the body of a subject of diagnosis, a body temperature measuring unit for measuring the body temperature of a contact area, a control unit connected to the stethoscope and body temperature measuring unit and determining a disease or a physical condition of the subject of diagnosis based on inputs received from the stethoscope and body temperature measuring unit, and an output unit for outputting the disease or physical condition of the patient determined by the control unit.
[0009] In addition, there exists a "diagnostic treatment device for urinary incontinence and sexual dysfunction with a non-face-to-face remote medical treatment function (Registration No. 10-2464054, hereinafter referred to as Patent Document 2)".
[0010] The invention according to patent document 2 comprises: a main body having a space formed inside, a fastening hole formed on the front, a connecting tube protruding from the fastening hole to the space, an air hose connecting an air pump and the connecting tube to the space, and air moving to the fastening hole through the connecting tube; a probe support having a fastening protrusion formed on an outer circumferential surface, a fastening tube having an air passage formed therein that communicates with the fastening hole, an air hole formed in the middle portion in communication with the air passage through which air is discharged, and a support pillar formed with the middle portion protruding upward; a soft cover having an insertion hole formed therein into which the support pillar and the middle portion are inserted, an expansion hole formed therein, the middle portion convex toward the outside and becoming narrower in width as it goes up and down, and a fixing groove formed on the upper portion of the expansion hole into which the support pillar inserted into the insertion hole is fitted and fixed; A case that is connected to a fastening member on one side and a fastening projection on the other side to connect a fastening tube and a fastening member; the soft cover is inflated by air generated by an air pump and moved inward through an air hose, a connecting pipe, a fastening member, an air passage of a fastening tube, and an air hole, and is characterized in that the middle of the expansion hole is inflated outward.
[0011] In addition, there is also “Portable medical diagnostic device and disease diagnosis method using the same (Publication No. 10-2022-0063705, hereinafter referred to as Patent Document 3).”
[0012] In the case of patent document 3, by obtaining a shadowless image with shadows removed, not only is an accurate diagnosis of the affected area possible, but the ergonomic design allows for natural grasping and use, and by obtaining and fusing various bio-signals and analyzing them for diagnosis, accurate diagnosis and health management of various diseases are possible.
[0013] The invention according to Patent Document 3 enables each component to operate in an IoT-based sensor network, thereby enabling smooth fusion and management of various bio-signals and information, and information processing (data processing).
[0014] In the case of previous patent documents, doctors only receive data from remote patients and diagnose or manage them. However, there is a need for specific methods for communication or interaction between doctors and patients for remote treatment.
[0015] The remote networking system supporting interaction based on action and response patterns according to the present invention has been developed to solve the above-mentioned conventional problems, and presents the following tasks to be solved.
[0016] First, it is necessary to implement an efficient system that minimizes delays in data transmission for interaction between remote locations and delivers accurate information without data loss.
[0017] Second, it increases versatility and adaptability to operate under diverse user groups and environmental conditions.
[0018] Third, it effectively processes feedback received from remote locations and enables feedback to be quickly and accurately reflected in the actions of the person delivering the feedback, enabling its use in fields such as healthcare, education, and training that require immediate reflection of feedback.
[0019] The problems to be solved by the present invention are not limited to those mentioned above, and other problems not mentioned can be clearly understood by those skilled in the art from the description below.
[0020] The remote networking system supporting interaction according to action and response patterns according to the present invention has the following problem-solving means to solve the above-mentioned problem.
[0021] A remote networking system supporting interaction according to an action and response pattern according to the present invention may be characterized by including an acquiring unit that is provided to a part of a body of an action transmitter (hereinafter, the part of the body of the action transmitter is referred to as an “action transmission part”) to acquire motion information and predetermined specification information of the action transmission part; a feedback unit that is located at a remote location from the acquiring unit and performs networking, and is provided to a part of a body of a feedback responder at the remote location (hereinafter, the part of the body of the feedback responder is referred to as an “action reception part”) to acquire feedback information of the action reception part; and a communication unit that transmits the motion information and the predetermined specification information to the remote location, and receives the feedback information of the feedback unit to selectively control an operation of the acquiring unit.
[0022] A remote networking system supporting interaction according to an action and response pattern according to the present invention may further include a networking unit that transmits the feedback information to the acquiring unit, receives the motion information and the specification information of the acquiring unit, synchronizes the specification information with the feedback unit, and selectively controls the movement of the feedback unit according to the motion information.
[0023] The acquiring unit of the remote networking system that supports interaction according to the action and response pattern according to the present invention may be characterized by including a motion information acquisition unit that acquires motion information according to a predetermined action of the action transmitter from the action transmission unit; and a specification information acquisition unit that acquires predetermined specification information of the action transmitter from the action transmission unit.
[0024] The feedback unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may be characterized by including a feedback information acquisition unit that acquires the feedback information from the action receiving portion.
[0025] The communication unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may be characterized by including a transmission information transmission unit that transmits the motion information and the specification information acquired from the acquiring unit to the networking unit on the remote site.
[0026] The networking unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may be characterized by including a feedback information transmission unit that transmits the feedback information obtained through the feedback unit to the communication unit.
[0027] The communication unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may be characterized by including a feedback information receiving unit that receives the feedback information from the feedback information transmitting unit; and a feedback output unit that outputs the feedback information received through the feedback information receiving unit to the acquiring unit.
[0028] The networking unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may be characterized by including a transmission information receiving unit that receives the motion information and the specification information from the transmission information transmitting unit; and a synchronization unit that outputs the specification information received through the transmission information receiving unit to the feedback unit and synchronizes a predetermined specification of the feedback unit with the specification information.
[0029] The networking unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may further include a motion reflection unit that selectively outputs the motion information received through the transmission information receiving unit to the feedback unit.
[0030] The feedback unit of the remote networking system supporting interaction according to the action and response pattern according to the present invention may include a synchronization unit that outputs the motion information and the predetermined specification information, and may be characterized in that the feedback responder obtains the feedback information according to the motion information and the predetermined specification information from the action receiving portion.
[0031] A remote networking system supporting interaction according to the action and response patterns of the present invention having the above configuration provides the following effects.
[0032] First, we aim to ensure that remote user interaction is as close to real-time interaction as possible by collecting motion information and specification information of the action transmitter in real time and transmitting it to a remote location, enabling the responder to provide appropriate feedback based on the data.
[0033] Second, it precisely analyzes the physical and behavioral characteristics of the action transmitter and provides customized feedback based on this, enabling support tailored to the individual needs of the user.
[0034] Third, it increases the scope and efficiency of remote interaction by enabling rapid and accurate responses through efficient data synchronization and real-time feedback.
[0035] The effects of the present invention are not limited to those mentioned above, and other effects not mentioned will be clearly understood by those skilled in the art from the description below.
[0036] FIG. 1 is a conceptual diagram illustrating each component of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention.
[0037] FIG. 2 is another conceptual diagram illustrating each component of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention.
[0038] FIG. 3 illustrates that specification information is acquired through an acquiring unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention, specification information is received through a transmission information transmitter and a transmission information receiver, and specification information is synchronized to a feedback unit through a synchronization unit.
[0039] FIG. 4 illustrates motion information being acquired through an acquiring unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention, motion information being received through a transmission information transmitter and a transmission information receiver, and motion information being reflected in a feedback unit through a motion reflection unit.
[0040] FIG. 5 illustrates feedback information obtained through a feedback unit of a remote networking system that supports interaction according to an action and response pattern according to one embodiment of the present invention, wherein the feedback information is received through a feedback information transmitter and a feedback information receiver, and the feedback information is output to an acquiring unit through a feedback output unit.
[0041] FIG. 6 is a view showing a motion information acquisition unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention, which acquires motion information of an action transmission part.
[0042] FIG. 7 is a diagram showing a specification information acquisition unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention, acquiring specification information of an action transmission portion.
[0043] FIG. 8 is a block diagram of each unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention.
[0044] FIG. 9 illustrates an action transmission portion of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention, in which motion information is acquired through an acquiring unit by being introduced into an acquiring unit.
[0045] FIG. 10 illustrates a feedback unit of a remote networking system that supports interaction according to an action and response pattern according to one embodiment of the present invention, which is provided to an action receiving portion and provided to the action receiving portion through motion reflection of the feedback unit.
[0046] FIG. 11 illustrates synchronization of specification information to a feedback unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention.
[0047] FIG. 12 is a conceptual diagram of a storage unit of a remote networking system that supports interaction according to action and response patterns according to one embodiment of the present invention.
[0048]
[0049] The remote networking system supporting interactions based on action and response patterns according to the present invention can be modified in various ways and has various embodiments. Specific embodiments are illustrated in the drawings and described in detail in the detailed description. However, this is not intended to limit the present invention to specific embodiments, but rather to encompass all modifications, equivalents, and alternatives falling within the technical spirit and scope of the present invention.
[0050] FIG. 1 is a conceptual diagram illustrating each component of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention. FIG. 2 is another conceptual diagram illustrating each component of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention. FIG. 3 illustrates that specification information is acquired through an acquiring unit of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention, that the specification information is received through a transmission information transmitter and a transmission information receiver, and that the specification information is synchronized to a feedback unit through a synchronization unit. FIG. 4 illustrates that motion information is acquired through an acquiring unit of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention, that the motion information is received through a transmission information transmitter and a transmission information receiver, and that the motion information is reflected to a feedback unit through a motion reflection unit. FIG. 5 illustrates feedback information acquired through a feedback unit of a remote networking system supporting interaction according to an action and response pattern according to an embodiment of the present invention, wherein feedback information is received through a feedback information transmitter and a feedback information receiver, and is output to an acquiring unit through a feedback output unit. FIG. 6 illustrates a motion information acquisition unit of a remote networking system supporting interaction according to an action and response pattern according to an embodiment of the present invention acquiring motion information of an action transmission portion. FIG. 7 illustrates a specification information acquisition unit of a remote networking system supporting interaction according to an action and response pattern according to an embodiment of the present invention acquiring specification information of an action transmission portion. FIG. 8 is a block diagram of each unit of a remote networking system supporting interaction according to an action and response pattern according to an embodiment of the present invention.FIG. 9 illustrates that an action transmission portion of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention is introduced into an acquiring unit and motion information is acquired through the acquiring unit. FIG. 10 illustrates that a feedback unit of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention is provided to an action receiving portion and provided to the action receiving portion through motion reflection of the feedback unit. FIG. 11 illustrates that specification information is synchronized to a feedback unit of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention. FIG. 12 is a conceptual diagram of a storage unit of a remote networking system that supports interaction according to an action and response pattern according to an embodiment of the present invention.
[0051] In the case of a remote networking system that supports interaction according to an action and response pattern according to the present invention, specification information and motion information on an action of an action transmitter are acquired and shared by transmitting the same to a feedback responder at a remote location, and the feedback responder generates feedback information using the specification information and motion information and transmits the feedback information to the action transmitter so that interaction regarding actions and responses can be performed between the two, and the system includes an acquiring unit (100), a feedback unit (200), and a communication unit (300).
[0052] Here, in the case of the acquiring unit (100), as shown in FIGS. 1 and 2, it is provided to a part of the body of the action transmitter (1) (a part of the body of the action transmitter is hereinafter referred to as the 'action transmission part (10)'), so that motion information and predetermined spec information of the action transmission part (10) can be acquired.
[0053] As shown in Figures 1 and 2, a part of the body of the action transmitter (1) is provided to a part of the user's body.
[0054] The acquiring unit (100) senses and recognizes specification information such as length, thickness, width, etc. of a part of the user's body and behavioral information such as movement.
[0055] In order to obtain specification information, sensing for one location is not sufficient, and multiple sensors may be arranged to obtain specification information for multiple locations with respect to the action transmission part (10).
[0056] In addition, sensing for a single location is not sufficient to obtain behavior information, and multiple sensors may be arranged to sense movement for multiple locations to obtain behavior information for the behavior transmission portion (10).
[0057] In the case of the feedback unit (200), it is configured to be placed remotely from the acquiring unit (100), networked, and provided to a part of the body of a feedback responder (2) at the remote location (a part of the body of the feedback responder is hereinafter referred to as an 'action receiving part') to obtain feedback information of the action receiving part (20).
[0058] As described above, the feedback unit (200) is provided to the action receiving part (20) of the feedback responder (2) remote from the user.
[0059] The feedback unit (200) obtains feedback information from the feedback responder (2) in accordance with the motion information and specification information of the acquiring unit (100).
[0060] In the case of feedback information, it may correspond to information about movement, and may correspond to information about changes in movement and specifications according to motion information of the action transmitter (1).
[0061] In the case of the feedback unit (200), feedback information can be obtained through a sensor to obtain feedback information of the feedback responder (2).
[0062] The communication unit (300) is configured to transmit motion information and predetermined specification information to a remote location and selectively control the operation of the acquiring unit (100) by receiving feedback information from the feedback unit (200).
[0063] The communication unit (300) is configured to transmit information about the acquiring unit (100) to a remote location and receive information at the remote location, and can also control the operation or movement of the acquiring unit (100).
[0064] In the case of the acquiring unit (100), it may correspond to a body, device, or apparatus provided to one action transmitter (1), and the communication unit (300) may provide a networking role for transmitting and receiving information.
[0065] In the case of a remote networking system that supports interaction according to an action and response pattern according to the present invention, a networking unit (networking unit, 400) that synchronizes motion information to a feedback unit (200), provides specification information, and transmits feedback information to an acquiring unit (100) is further included.
[0066] As described above, the networking unit (400) transmits feedback information to the acquiring unit (100).
[0067] The networking unit (400) is networked with the communication unit (300) and can receive motion information and specification information of the acquiring unit (100) through the communication unit (300).
[0068] Additionally, the networking unit (400) reflects the received motion information to the feedback unit (200) and synchronizes the specification information to the feedback unit (200).
[0069] The acquiring unit (100) of a remote networking system that supports interaction according to action and response patterns according to the present invention is configured to include a motion information acquisition unit (110) and a specification information acquisition unit (120).
[0070] The acquiring unit (100) may correspond to a tool for collecting and acquiring actions and specifications according to the purpose, as illustrated in FIGS. 1 and 2.
[0071] The motion information acquisition unit (110) acquires motion information according to a predetermined action of the action transmitter (1) from the action transmission unit (10).
[0072] In addition, the specification information acquisition unit (120) acquires predetermined specification information of the action transmitter (1) from the action transmission unit (10).
[0073] In the case of motion information, it can be said to be a variable value that changes according to the action of the action transmitter (1).
[0074] At this time, the given action may include all movements made through the action transmission part (10), such as intentional actions, conscious actions and unconscious actions, and impulsive actions of the action transmitter (1), as well as changes in the motion and state of the action transmission part (10).
[0075] In the case of specification information, it can be said to be a fixed value for the body of the action transmitter (1), and can have personal and individual values for each body part.
[0076] Motion information and specification information can be acquired through multiple sensors arranged in the acquiring unit (100) as illustrated in FIG. 9.
[0077] The feedback unit (200) of a remote networking system that supports interaction according to an action and response pattern according to the present invention is configured to include a feedback information acquisition unit (210) that acquires feedback information from an action receiving portion.
[0078] The feedback unit (200) is provided to the feedback responder (2) and is preferably provided to the action receiving portion (20).
[0079] In the case of the feedback unit (200), as shown in FIGS. 1 and 2, it may correspond to a tool that is provided to the action receiving portion (20) to output motion information and specification information and obtain feedback information from the action receiving portion (20).
[0080] In the case of feedback information acquired by the feedback information acquisition unit (210), it can be said to be a variable value that is output and changed according to the motion information and specification information of the action transmitter (1).
[0081] Feedback information may include all movement information, change information on movement, and change information on state obtained through the action receiving part (20), such as intentional actions, conscious actions, unconscious actions, and impulsive actions of the feedback respondent (2).
[0082] The communication unit (300) of a remote networking system that supports interaction according to an action and response pattern according to the present invention is configured to include a transmission information transmission unit (310), a feedback information reception unit (320), and a feedback output unit (330).
[0083] The transmission information transmitter (310) transmits motion information and specification information acquired from the acquiring unit (100) to a networking unit (400) at a remote location.
[0084] As illustrated in FIGS. 3 and 4, the transmission information transmitter (310) transmits motion information according to a predetermined action of the acquiring unit (100) and specification information of the action transmitter (1) to the acquiring unit (100).
[0085] The feedback information receiving unit (320) receives feedback information from the feedback information transmitting unit (440).
[0086] Additionally, the feedback output unit (330) outputs feedback information received through the feedback information receiving unit (320) to the acquiring unit (100).
[0087] In the case of the feedback information receiving unit (320), as illustrated in FIG. 5, feedback information obtained from the action receiving portion (20) is received, and the feedback output unit (330) outputs the received feedback information to the feedback unit (200).
[0088] Feedback information output to the acquiring unit (100) through the feedback output unit (330) can be reflected to the acquiring unit (100) through the feedback reflection unit (130).
[0089] The feedback reflection unit (130) can be adjusted to reflect feedback information to the acquiring unit (100), for example, through hydraulic pressure, etc.
[0090] The networking unit (400) of a remote networking system that supports interaction according to action and response patterns according to the present invention is configured to include a transmission information receiving unit (410), a synchronization unit (420), a motion reflection unit (430), and a feedback information transmitting unit (440).
[0091] The transmission information receiving unit (410) receives motion information and specification information from the transmission information transmitting unit (310).
[0092] The synchronization unit (420) outputs the specification information received through the transmission information receiving unit (410) to the feedback unit (200), and synchronizes a predetermined specification of the feedback unit (200) with the specification information.
[0093] As illustrated in FIG. 3, the specification information acquired from the acquiring unit (100) is received through the transmission information receiving unit (410) according to the transmission of the transmission information transmitting unit (310), and the synchronization unit (420) synchronizes the specification information with the feedback unit (200).
[0094] As illustrated in FIG. 7, the specification information may have a thickness (T), a length (H), and a width (W) for the action transmission portion (10) of the action transmitter (1), and the synchronization unit (420) may synchronize and adjust the width (w, w') and the length (h, h') of the feedback unit (200) according to the specifications of the action transmission portion (10), as illustrated in FIG. 11.
[0095] Additionally, in the case of the thickness (T) of the action transmission portion (10), it is synchronized with the feedback unit (200), and the thickness of the feedback unit (200) can be adjusted.
[0096] Synchronization of this feedback unit (300) with the specification information of the action transmission part (10) can be achieved through adjustment of the synchronization part (220).
[0097] The motion reflection unit (430) selectively outputs motion information received through the transmission information receiving unit (410) to the feedback unit (200).
[0098] As shown in Fig. 4, the motion reflection unit (430) also receives motion information acquired from the acquiring unit (100) through the transmission information receiving unit (410) according to transmission by the transmission information transmitting unit (310), and the synchronization unit (420) outputs the motion information to the feedback unit (200).
[0099] In the case of motion information, it may correspond to motion information of the action transmission part (10), and in the case of output motion information, it is output within the action reception part (20).
[0100] For example, motion information output through the feedback unit (200) can cause movement or action to be output within the action receiving portion (20), and the motion reflection portion (430) can also correct the motion value for the motion information so that the motion can be reflected within the action receiving portion (20).
[0101] The feedback information transmitter (440) transmits feedback information obtained through the feedback unit (200) to the communication unit (300).
[0102] Motion information for the motion reflection unit (430) can be output to the feedback unit (200) through the synchronization unit (220), as illustrated in FIG. 10.
[0103] The feedback unit (200) of a remote networking system that supports interaction according to an action and response pattern according to the present invention is configured to further include a synchronizer (220).
[0104] The synchronization unit (220) outputs motion information and certain specification information and transmits them to the feedback responder (2).
[0105] It is preferable that the feedback information obtained through the feedback unit (200) is obtained by the feedback responder (2) according to motion information and predetermined specification information from the action receiving part (20).
[0106] For feedback information, feedback information may vary depending on motion information and specification information.
[0107] Additionally, it is desirable that the feedback information change in real time according to the information transmission about the motion information.
[0108] Motion information, specification information, and feedback information of the communication unit (300) and networking unit (400) of a remote networking system that supports interaction according to action and response patterns according to the present invention can be stored in storage (3).
[0109] Information stored in storage (3) is stored through a storage unit (500), and the storage unit (500) may include a division unit (510), a building unit (520), an overflow unit (530), and a sanding unit (540).
[0110] In the case of the division (510), data information consisting of 0 and 1 corresponding to data, which is motion information, specification information, and feedback information, is arbitrarily separated.
[0111] The information to be separated at this time is determined arbitrarily, and for arbitrary values, it is stored only in storage (3).
[0112] In the case of the building section (520), it is a configuration in which data information is stacked and piled up.
[0113] Data information is made up of multiple separate files, and in the case of data information, each file has an electromagnetic wave of a different wavelength depending on the size of the information contained therein.
[0114] In the case of the meeting unit (530), it is a configuration that arbitrarily omits multiple pieces of stacked data information.
[0115] It is advisable to keep any missing information separately.
[0116] The sanding unit (540) transmits missing information to the storage unit (500).
[0117] It is preferable that the information transmitted to the storage unit (500) be transmitted separately for multiple stacked data information with missing information and for the missing information.
[0118] The scope of the present invention is determined by the matters described in the patent claims, and the parentheses used in the patent claims are not written for optional limitation, but are used to indicate clear components, and the description within the parentheses should also be interpreted as essential components.
Claims
1. An acquiring unit provided to a part of the body of an action transmitter (a part of the body of the action transmitter is hereinafter referred to as an “action transmission part”) to acquire motion information and predetermined specification information of the action transmission part; A feedback unit that is located remotely from the acquiring unit, is networked, and is provided to a part of the body of a feedback responder at the remote location (a part of the body of the feedback responder is hereinafter referred to as an “action receiving part”) to obtain feedback information of the action receiving part; and A remote networking system that supports interaction according to behavior and response patterns, characterized in that it includes a communication unit that transmits the motion information and the predetermined specification information to the remote location and selectively controls the operation of the acquiring unit by receiving the feedback information of the feedback unit.
2. In paragraph 1, the system, A remote networking system that supports interaction according to action and response patterns, characterized in that it further includes a networking unit that transmits the feedback information to the acquiring unit, receives the motion information and the specification information of the acquiring unit, synchronizes the specification information with the feedback unit, and selectively controls the movement of the feedback unit according to the motion information.
3. In the second paragraph, the acquiring unit, A motion information acquisition unit that acquires motion information according to a predetermined action of the action transmitter from the action transmission unit; and A remote networking system that supports interaction according to action and response patterns, characterized by including a specification information acquisition unit that acquires predetermined specification information of the action transmitter from the action transmission unit.
4. In the third paragraph, the feedback unit, A remote networking system that supports interaction according to action and response patterns, characterized by including a feedback information acquisition unit that acquires the feedback information from the action receiving portion.
5. In paragraph 4, the communication unit, A remote networking system that supports interaction according to behavior and response patterns, characterized in that it includes a transmission information transmission unit that transmits the motion information and the specification information acquired from the acquiring unit to the networking unit on the remote location.
6. In paragraph 5, the networking unit, A remote networking system that supports interaction according to behavior and response patterns, characterized by including a feedback information transmission unit that transmits the feedback information obtained through the feedback unit to the communication unit.
7. In paragraph 6, the communication unit, A feedback information receiving unit that receives the feedback information from the feedback information transmitting unit; and A remote networking system that supports interaction according to behavior and response patterns, characterized by including a feedback output unit that outputs the feedback information received through the feedback information receiving unit to the acquiring unit.
8. In paragraph 7, the networking unit, a transmission information receiving unit that receives the motion information and the specification information from the transmission information transmitting unit; and A remote networking system that supports interaction according to behavior and response patterns, characterized in that it includes a synchronization unit that outputs the specification information received through the transmission information receiving unit to the feedback unit and synchronizes a predetermined specification of the feedback unit with the specification information.
9. In paragraph 8, the networking unit, A remote networking system that supports interaction according to action and response patterns, characterized in that it further includes a motion reflection unit that selectively outputs the motion information received through the transmission information receiving unit to the feedback unit.
10. In the first paragraph, the feedback unit, Including a synchronization unit that outputs the above motion information and the above specified specification information, A remote networking system that supports interaction according to action and response patterns, characterized in that the feedback responder obtains the feedback information according to the motion information and the predetermined specification information from the action receiving part.
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