WO2014190886A1 - Système d'interaction intelligent et système logiciel associé - Google Patents

Système d'interaction intelligent et système logiciel associé Download PDF

Info

Publication number
WO2014190886A1
WO2014190886A1 PCT/CN2014/078437 CN2014078437W WO2014190886A1 WO 2014190886 A1 WO2014190886 A1 WO 2014190886A1 CN 2014078437 W CN2014078437 W CN 2014078437W WO 2014190886 A1 WO2014190886 A1 WO 2014190886A1
Authority
WO
WIPO (PCT)
Prior art keywords
module
controlled device
control
terminal
software
Prior art date
Application number
PCT/CN2014/078437
Other languages
English (en)
Chinese (zh)
Inventor
李兴文
Original Assignee
上海科斗电子科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN2013202965749U external-priority patent/CN203340098U/zh
Application filed by 上海科斗电子科技有限公司 filed Critical 上海科斗电子科技有限公司
Publication of WO2014190886A1 publication Critical patent/WO2014190886A1/fr

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/10Current supply arrangements
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • G05B19/41845Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by system universality, reconfigurability, modularity
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • G05B19/4185Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by the network communication
    • G05B19/41855Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by the network communication by local area network [LAN], network structure
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/25Pc structure of the system
    • G05B2219/25314Modular structure, modules

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to an interactive system.
  • electronic technology the intelligence of peripheral devices is getting higher and higher, bringing convenience to people's lives.
  • various intelligent devices have their own completely independent or relatively independent operating systems when interacting with people. Adapting to the operating system of more and more intelligent devices, the workload is getting bigger and bigger, and the burden is getting heavier. It is necessary to provide an intelligent interactive system that simplifies the interaction between humans and intelligent devices.
  • An intelligent interactive system comprising a portable smart device, further comprising a controlled device terminal; the portable smart device comprising a processor system, and a storage device and a wireless communication system coupled to the processor system;
  • the device terminal includes a signal processing circuit system, at least one wireless signal communication module matched with the wireless communication system, and a function execution mechanism for performing an action; the signal processing circuit system respectively connecting the wireless signal communication module and the a function executing mechanism; the signal processing circuit system is further connected to a memory storing at least characteristic information of the controlled device terminal; the wireless signal communication module is associated with the memory, and calling feature information stored in the memory;
  • An intelligent control software system running in the portable smart device, wherein the intelligent control software system scans the controlled device terminal in the effective signal area through the wireless communication system; after scanning to the controlled device terminal, through the wireless Signal communication module Reading the characteristic information stored in the memory, thereby identifying the controlled device terminal.
  • An intelligent control software system comprising: a controlled device terminal scanning module, scanning a controlled device terminal in an effective signal region by the wireless communication system; further comprising a feature information comparison module, being read by the wireless signal communication module The characteristic information stored in the memory, thereby identifying the controlled device terminal; further comprising a control command sending module, transmitting a control command to the controlled device terminal through the wireless communication system.
  • the control instruction sending module comprises a control instruction selecting sub-module and an instruction transmitting sub-module, wherein the sub-module selects the control instruction by the control instruction, and the selected control instruction is sent by the instruction sending sub-module.
  • the method further includes an identity verification module, where the identity verification module verifies the identity of the controlled device terminal, and after verification, writes feature information of the controlled device terminal into the memory. Establish a matching relationship or perform other feature identification.
  • a communication relay system as a controlled device terminal, comprising: a network communication module and an infrared communication module, and a signal processing system; wherein the network communication module and the infrared communication module are respectively connected to the signal processing system.
  • the invention comprises a network communication module as a wireless signal communication module and an infrared communication module; and a signal processing system as a signal processing circuit system; the network communication module and the infrared communication module are respectively connected to the signal processing system.
  • the smart home system software is configured to run in the portable smart device, wherein the smart home system software is provided with a remote control code import interface, and the remote control code is imported through the remote control code import interface; the smart home system software There is also a function button icon, and the function button icon is associated with the remote control code.
  • a software interface is provided in the smart home system software, wherein the software interface includes a control interface including an execution terminal layout map in the room; the execution terminal layout map is provided with an execution terminal icon, and the execution terminal icon Associated with the function button icon.
  • the robot as the terminal of the controlled device is characterized in that the signal processing circuit system and the memory of the controlled device terminal adopt the signal processing circuit system and the memory of the robot; the function execution mechanism includes at least two types that can be carried on the robot body.
  • Control device; the controllable device provided on the robot body comprises at least two of a projector, a display screen, a speaker, an electric lamp, and an electric wheel drive system.
  • 1 is a schematic view of a whole structure of the present invention
  • FIG. 2 is a schematic structural diagram of a circuit module of the present invention
  • FIG. 3 is a partial software flow chart of the present invention
  • Figure 5 is a schematic diagram of the switching of the working mode module of the present invention
  • Figure 6 is a schematic view of the overlapping area of the antenna;
  • Figure 7 is a schematic diagram of the directional antenna overlapping area
  • Figure 8 is a schematic diagram of the software mode switching principle
  • Figure 9 is a schematic diagram of the infrared signal enhancement system structure.
  • an intelligent interactive system includes a portable smart device 1 and a controlled device terminal 2; the portable smart device 1 includes a processor system 11, and a storage device 12 and wirelessly coupled to the processor system 11 Pass Letter system 13.
  • the controlled device terminal 2 includes a signal processing circuit system 21, at least one wireless signal communication module 23 matching the wireless communication system 13, and a function execution mechanism 3 for performing an action; the signal processing circuit system 21 is respectively connected to the wireless signal communication The module 23 and the function executing mechanism 3; the signal processing circuit system 21 is further connected with a memory 22 storing at least characteristic information of the controlled device terminal 2; the wireless signal communication module 23 is associated with the memory 22 via the signal processing circuit system 21, and calls the memory Feature information stored in 22; an intelligent control software system is run in the portable smart device 1, and the intelligent control software system scans the controlled device terminal 2 in the effective signal area through the wireless communication system 13; after scanning to the controlled device terminal 2, The feature information stored in the memory 22 is read by the wireless signal communication module 23, thereby identifying the controlled device terminal 2.
  • an intelligent control software system includes a controlled device terminal scanning module a1, which scans the controlled device terminal 2 in the effective signal region through the wireless communication system 13; and further includes a feature information comparison module a2, through the wireless signal communication module 23 reads the feature information stored in the memory 22, thereby identifying the controlled device terminal 2; and further includes a control command transmitting module a3 for transmitting a control command to the controlled device terminal 2 via the wireless communication system 13.
  • the control command sending module a3 includes a control command selecting sub-module and an instruction transmitting sub-module, and the control module selects the sub-module to select the control command, and the selected control command is sent by the command sending sub-module.
  • An identity verification module a0 is also included.
  • the identity verification module a0 verifies the identity of the controlled device terminal 2, and writes the feature information of the controlled device terminal 2 into the memory 22 after verification. Establish a matching relationship or perform other feature identification.
  • the identity verification module a0 verifies the identity of the controlled device terminal 2, and after verifying, writes the feature information of the controlled device terminal 2 into the memory 22 to establish a matching relationship with the controlled device terminal 2;
  • the feature information comparison module a2 compares and analyzes the feature information of the controlled device terminal 2, and according to the analysis result, selects the control command by the control command of the control command sending module a3 to select the control command.
  • the selected control command is sent by the instruction sending sub-module to send the control command.
  • the control command is executed by the function executing mechanism 3.
  • the intelligent control software system allows the identity of the controlled device terminal 2 to be controlled by the identity of the authentication module aO but not yet matched by the controlled device terminal 2.
  • the signal processing circuitry 21 of the controlled device terminal 2 allows control by the authenticated portable smart device 1 and execution of control commands by the function executive 3.
  • the authentication may be at least two of authentication methods such as password verification, digital certificate verification, fingerprint verification, voice verification, iris verification, and FC information verification. Establish a matching relationship after authentication.
  • the signal processing circuitry 21 of the controlled device terminal 2 allows the already-matched portable smart device 1 to perform control and execute control commands through the function executive 3.
  • the function actuator 3 of the controlled device terminal 2 may be at least two of a display screen, a television set, a speaker, an air conditioner, a curtain, an electric light, a robot, a power door, a power window, and a projector.
  • the controlled device terminal 2 can be connected to the function executing mechanism 3 by wire or wirelessly.
  • the control command may be at least one of a display screen, a television, a speaker, an air conditioner, a curtain, a light, a robot, a power door, a power window, and a projector control command.
  • the intelligent control software system of the portable smart device 1 allows two or more controlled device terminals 2 to be connected at the same time.
  • the intelligent control software system is provided with a controlled device terminal management module a4, and the feature information comparison module a2 transmits the identified characteristic information of the controlled device terminal 2 to the controlled device terminal management module a4 ;
  • the controlled device terminal management module a4 allows or has already Associated with the feature information of at least two controlled device terminals 2, and is responsible for calling the feature information of one of the controlled device terminals 2;
  • the feature information of the controlled device terminal 2 invoked by the controlled device terminal management module a4 is sent to the control command sending module a3, Further, a control command associated with the called feature information of the controlled device terminal 2 is transmitted by the control command transmitting module a3. Control of the controlled device terminal 2 corresponding to the called feature information of the controlled device terminal 2 is implemented.
  • the signal processing circuitry 21 of the controlled device terminal 2 includes a microprocessor system 11 for storing feature information of the matched portable smart device 1; before the portable smart device 1 effectively controls the controlled device terminal 2
  • the microprocessor system 11 reads the feature information of the portable smart device 1 through the wireless signal communication module 23, and compares it with the feature information of the matched portable smart device 1 stored in the memory 22. Contrast pass allows control, and control does not allow control. To achieve two-way detection.
  • the memory 22 may also store the feature information of the matched portable smart device 1 in advance.
  • the signal processing circuitry 21 allows matching of the unmatched portable smart devices 1 by authentication and reading the feature information of the portable smart device 1 into the memory 22.
  • the intelligent control software system is provided with a controlled device terminal control system a5 for controlling the controlled device terminal 2, and the controlled device terminal control system a5 includes a controlled device terminal management module a4 and a control command transmitting module a3. Moreover, at least two controlled device terminal control systems a5 are allowed to be provided in the intelligent control software system. Which of the at least two controlled device terminal control systems a5 is specifically enabled by the intelligent control software system may adopt a scanning type of inquiry, such as first asking whether a controlled device terminal control system a5 and the scanned controlled device terminal are 2 match, no match, then ask the next controlled device terminal control system a5. If matched, the matching controlled device terminal control system a5 is enabled. It is also possible to set a selection module for selecting the controlled device terminal control system a5 to be enabled before the controlled device terminal control system a5.
  • the intelligent control software system allows storing the characteristic information of the matched controlled device terminal 2, and a feature information is associated with at least one controlled device terminal control system a5; and the intelligent control software system scans the matched controlled device terminal. At least one controlled device terminal control system a5 associated with its feature information is activated. In order to control the controlled device terminal 2. Feature information of the controlled device terminal 2 of the controlled device terminal control system a5, It can be handled by the controlled device terminal management module a4, and the control command transmission can be handled by the control command transmitting module a3. It may be provided that a controlled device terminal control system a5 is associated with at least two feature information. At least two different controlled device terminals 2 can activate the same controlled device terminal control system a5.
  • the manner of establishing association with the at least two feature information may be that the controlled device terminal management module a4 allows or has been associated with at least two controlled device terminal 2 feature information.
  • a control function of at least two controlled device terminals 2 is integrated in a controlled device terminal control system a5. To achieve control of two or more controlled device terminals 2.
  • the controlled device terminal control system a5 is provided with a control command interface, and the control command interface receives at least one of a menu control command, a gesture control command, and a voice control command.
  • the control command interface is associated with at least one control command that can be invoked by the control command sending module a3. In order to initiate the transmission of the control command, the control is implemented.
  • the menu control command is input by the touch screen or keyboard of the portable smart device 1.
  • the gesture control command is input by the touch screen or camera of the portable smart device 1.
  • the voice control command is input by the microphone of the portable smart device 1.
  • the portable smart device 1 is preferably a mobile phone or a smart watch.
  • the controlled device terminal control system a5 pre-sets or allows preset control commands.
  • a preset control command is issued to control the controlled device terminal 2.
  • Yes at least two control commands are preset in the controlled device terminal control system a5. It is the controlled device terminal 2 that completes two or more actions.
  • the controlled device terminal 2 is a device having a wireless communication function and a battery. To ensure the flexibility of placement.
  • the portable smart device 1 can be at least two of a portable smart device 1 such as a mobile phone, a tablet computer, a palmtop computer, a smart watch, smart glasses, and a smart wristband.
  • the portable smart device 1 may further include the wireless communication system 13, the processor system 11, the storage device 12, and the storage battery on at least two of a watch, a bracelet, a ring, a brooch, a belt buckle, a badge, a pendant, and a necklace. structure.
  • the wireless communication system 13 of the portable smart device 1 is at least two of a Bluetooth module, a wifi module, and an FC module. It can also be a mobile phone network communication module. For example, GSM, CDMA, etc.
  • the wireless signal communication module 23 of the controlled device terminal 2 is at least two of a Bluetooth module, a wifi module, and an FC module.
  • the feature information of the portable smart device 1 may be at least one of a device feature code of the Bluetooth connection device, a device feature code of the wifi connection, a device feature code of the FC connection, a device password, and a device name. It can also be digital certificate information running in the portable smart device 1. The digital certificate information may be a verification algorithm program of the digital certificate in the portable smart device 1.
  • the feature information of the controlled device terminal 2 may be at least one of a Bluetooth feature-connected device feature code, a wifi-connected device feature code, an FC-connected device feature code, a device password, and a device name. It may also be digital certificate information running in the controlled device terminal 2.
  • characteristic information of at least two sets of controlled device terminals 2 that have been matched is stored; the wireless communication system 13 scans at least two controlled device terminals 2, and The scanned feature information of at least two controlled device terminals 2 is sent to the processor system 11, and the feature information comparison module a2 of the intelligent control software system calls at least two sets of pre-stored control devices in the storage device 12 that have been matched and controlled.
  • the feature information of the device terminal 2 is compared, and it is verified that both the controlled device terminals 2 are the matched controlled device terminals 2, and then the controlled device terminal control system a5 is called and controlled. To ensure that the call is correct and to ensure security.
  • different controlled device terminal control systems a5 may be enabled based on the combination of at least two different controlled device terminals 2 scanned around. Or, according to the combination of at least two different controlled device terminals 2 in the periphery, the different control menus in the same controlled device terminal control system a5, different control functions, or at least one of different control commands are activated. operating.
  • At least two working mode modules bl are disposed in the intelligent control software system, and at least one control command and at least one controlled device terminal 2 are associated with the information in the working mode module b1;
  • the working mode switching module b0 scans the feature information comparison module a2 to the feature information of the already-matched controlled device terminal 2, and enables the working mode module bl associated with the scanned feature information.
  • the operating mode module bl calls the associated control command to control the controlled device terminal 2.
  • the work mode switching module b0 enables the other work mode module bl. It is possible to enable another operating mode module bl after at least three controlled device terminals 2 are disconnected. In order to adapt to the surrounding environment.
  • the working mode switching module b0 scans the feature information of the already-matched controlled device terminal 2 according to the feature information comparison module a2, starts the working mode module bl associated with the feature information, and then calls the control command in the working mode module bl, and then controls The operating state of the function actuator 3.
  • the state transition of one or more of the function actuators 3 can be conveniently performed by the above design.
  • the signal processing circuitry 21 connects at least two functional actuators 3. In order to coordinate and cooperate with various function actuators.
  • the setting of the working mode switching module b0 allows the state of more than two function actuators 3 to be controlled at one time. More convenient and faster.
  • the intelligent control software system can be provided with the following working mode module bl: a wake-up mode setting module for getting up, a home mode setting module suitable for leaving home, a home mode setting module suitable for going home, applicable to At least two of the sleep mode setting modules for sleep.
  • Different working mode modules bl changing the working mode of some or all of the display screens, televisions, speakers, air conditioners, curtains, lights, robots, electric gates, electric windows, etc. connected to the controlled device terminal 2 . To adapt to the law of activity that needs to be applied.
  • the working mode switching module b0 determines whether there is a matching controlled device terminal 2 within the valid range, the time of the last scan to the already-matched controlled device terminal 2 is taken as a parameter, and the time limit value is set, and the time limit is exceeded.
  • the value is regarded as the controlled device terminal 2 that has not been matched within the valid range.
  • the time limit can be from 0.5 minutes to 10 minutes. Or 2 minutes to 1 hour. The controlled device terminal 2 is considered to be present even if the matched controlled device terminal 2 is not scanned within the limited time.
  • the intelligent control software system also has a time-time software module, and the timing software module divides the time into at least two time segments, the time segment is associated with the working mode switching module bO, and the working mode switching module bO is provided with the work associated with the time segment. Mode module bl. The working mode module bl associated with it is enabled during the time period.
  • the working mode switching module bO is simultaneously associated with the time period and whether it scans to the already-matched controlled device terminal 2 two information. In turn, a richer, more mode control is achieved.
  • the timed software module divides the time divided into time periods, and at least two time periods of going to work and getting off work. Alternatively, the timing software module divides the time period into time periods, at least two time periods during the day and night. The timed software module divides the time into time periods, including spring, summer, fall, and winter.
  • the timing software module can divide the large time period and divide the small time period from the large time period. For example, the time period of spring, summer, autumn, and winter is divided, and in the spring, summer, autumn, and winter periods, at least two small time periods are divided during the day and at night.
  • the storage device 12 of the portable smart device 1 stores a greeting
  • the function executing mechanism 3 connected to the signal processing circuit system 21 includes a speaker, in the state of being scanned from the unscanned controlled device terminal 2 to the already matched
  • the portable smart device 1 sends a signal to the signal processing circuitry 21 to issue a greeting through the speaker. This operation can be performed by the operating mode module bl.
  • At least two kinds of greetings are stored in the storage device 12, one of which is a welcome greeting, and a welcome greeting is sent through the speaker after scanning to the already-matched controlled device terminal 2.
  • the storage device 12 stores a greeting
  • the function executing mechanism 3 connected to the signal processing circuit system 21 includes a speaker, and then scans to the already-matched controlled device terminal 2 state to the unscanned controlled device terminal. After the 2 state, the portable smart device 1 transmits a signal to the signal processing circuitry 21, and the signal processing circuitry 21 issues a greeting through the speaker. This operation can be performed by the operating mode module bl.
  • the storage device 12 stores at least two kinds of greetings, one of which is a farewell greeting, which is sent out through the speaker after scanning to the state of the controlled device terminal 2 that has been matched to the state of the controlled device terminal 2 that has not been scanned. Greetings are welcome.
  • the portable smart device 1 intermittently scans the controlled device terminal 2 in the effective signal area of the wireless communication system 13 through the wireless communication system 13.
  • the time for the feature information comparison module a2 to scan twice is within 10 seconds. To avoid being too slow to respond.
  • the feature information comparison module a2 scans twice for more than 1 second. In order to avoid waste of power caused by frequent scanning, the working intensity of the portable smart device 1 CPU can be reduced. Further preferably, the time of two scans is between 1 second and 4 seconds.
  • the controlled device terminal 2 is provided with at least two wireless signal communication modules 23, and each of the two wireless signal communication modules 23 is provided with an antenna, which is an antenna 421 and an antenna 422, respectively.
  • Effective signals of at least two antennas 421, 422 The area exists in the overlapping area 400 in the space; the controlled device terminal management module a4 of the intelligent control software system, when the feature information comparison module a2 scans the signals of the antennas of at least two matched controlled device terminals 2, Valid, and select the corresponding working mode module bl, or select the corresponding control command in the corresponding working mode module bl. In turn, the intelligent control software system responds to the set functions.
  • the controlled device terminal management module a4 is regarded as invalid when the feature information comparison module a2 scans a signal sent from an antenna of only one of the matched controlled device terminals 2.
  • the operating mode module bl is not switched, or the control command in the working mode module bl is not activated.
  • the function of the intelligent control software system response setting is not enabled.
  • the wireless signal communication module 23 of the controlled device terminal 2 is provided with an antenna, and the antenna is a directional antenna. In order to facilitate the scanning of the portable smart device 1.
  • the directional antenna has a signal angle between 80 degrees and 200 degrees. In order to divide the identification area.
  • the controlled device terminal 2 is provided with at least two directional antennas, and the effective signal regions of at least two directional antennas have overlapping regions 400 in the space. Through the above design, an effective functional area can be divided more effectively and accurately in the space, thereby allowing the intelligent interactive system to call different working mode modules bl or control commands according to different functional areas where the portable smart device 1 is located, and realize the function. The operating state of the actuator 3 or the intelligent control software system is switched or a different command is issued.
  • the controlled device terminal 2 is provided with at least three directional antennas, and an effective signal area of at least three directional antennas has a superimposed area 400 in space. Also, in the farthest overlapping area 400 outside the room, less than 10 meters from the inside of the wall of the room. It is preferably less than 1 meter.
  • the controlled device terminal 2 is further provided with a battery system, which may be at least two of a dry battery system, a battery system, a solar battery system or a wireless charging system.
  • the controlled device terminal 2 is further provided with an identity verification device 24, the identity verification device 24 is connected to the signal processing circuit system 21, and the memory 22 stores the identity verification data; the signal processing circuit system 21 obtains the identity verification information through the identity verification device 24; The circuitry 21 matches the acquired authentication information with the authentication data stored in the memory 22. If the match is successful, it is considered as verification.
  • the function actuator 3 is allowed to operate after the verification is passed.
  • the authentication device 24 may be at least two of a password input device, a fingerprint recognition device, an iris recognition device, and a voice recognition device.
  • the above design requires the verification of the feature information of the portable smart device 1 and the authentication of the authentication information. Increased confidentiality. At the same time, because there are two kinds of verification, at least one of the verifications allows for simplification.
  • a fingerprint scanning mechanism of a fingerprint identification device is disposed on the door, and the door lock on the door adopts a power door lock, and the control end of the electric door lock is connected to the signal processing circuit system 21 by wire or wirelessly, and then the electric door lock is used as a function executing mechanism. 3.
  • the door can be at least two of a door, a door, a safe door, and a closet door.
  • the fingerprint recognition device is preferably disposed on the door handle. In order to complete the fingerprint scan when the door handle is pulled.
  • the controlled device terminal 2 is connected to a microphone, and the microphone is connected to the signal processing circuit system 21. In order to perform voice control or to conduct a dialogue with the controlled device terminal 2. Or through the controlled device terminal 2, make voice calls with other people via the Internet.
  • the intelligent control software system is provided with at least two software modes, and a software mode selection module c0 is provided, and the software mode selection module c0 selects the software mode.
  • the software mode is associated with the setting parameters of the controlled device terminal control system a5.
  • the setting parameters are set in the controlled device terminal control system a5 by enabling the software mode.
  • the setting parameters of the controlled device terminal control system a5 associated with at least two software modes are different to achieve different response effects.
  • the software mode selection module c0 is associated with a master information database, and the owner information database is allowed to store, or has stored, information on the owner or the holder, including at least two kinds of information such as gender, age, blood type, hobby, occupation, and marital status, software.
  • the mode selection module cO uses the information in the owner information database as a reference factor for selecting the software mode. To adapt to different groups of people.
  • the software mode affects or determines the parameter settings of the controlled device terminal control system a5, which in turn affects or determines the software operating mode of the intelligent control software system.
  • the identity mode cl can be included in the software mode.
  • the identity mode cl may include at least two of a child mode, an elderly mode, a youth mode, a student mode, a worker mode, a father mode, and a mother mode.
  • the identity mode cl in the software model is a software working mode for a population of this type of identity.
  • the selection of the mode contained in the identity mode cl can be performed by the software mode selection module cO.
  • the identity mode cl is set in the manner that the intelligent control software system has at least two identity modes cl, and the software mode selection module cO acquires at least two of gender, age, blood type, hobby, occupation, marital status, and income status.
  • the software mode selection module cO selects an identity mode cl corresponding thereto according to the identity information. For example, one of the child mode, the old mode, the middle-aged mode, the youth mode, the student mode, the worker mode, the father mode, and the mother mode can be selected.
  • the way to get identity information can be human input or obtained through social networks.
  • the identity information associated with the ID may be obtained through the owner's social network ID.
  • a human body monitoring device that is coupled to the portable smart device 1 and that transmits the monitored body information to the processor system 11 of the portable smart device 1.
  • the human body monitoring device can also be disposed on the portable smart device 1.
  • the information detected by the human body monitoring device includes at least two of heartbeat, body temperature, blood pressure, blood information, walking steps, sound, language, brain waves, or at least two.
  • the human body monitoring device judges the physical state of the person, such as health, illness, drowsiness, hunger, fatigue, excitement, etc., through the detected information.
  • the intelligent control software system is provided with at least two software modes, and is provided with a software mode selection module c0, and the software mode selection module cO selects the software mode.
  • the software mode selection module cO uses the monitored human body information as a factor in selecting a software mode to be operated.
  • the software mode selection module cO is associated with a body state database, the body state database is allowed to store, or has stored body information of the owner or the holder, including at least heartbeat, body temperature, blood pressure, blood information, walking steps, sounds, and language. Two kinds of human body information.
  • the body state database may include historical information and current information of the body information.
  • the software mode selection module cO uses the information in the body state database as a reference factor for selecting the software mode. To suit the owner or holder of different physical states.
  • the software mode affects or determines the parameter settings of the controlled device terminal control system a5, which in turn affects or determines the software operating mode of the intelligent control software system.
  • the way to obtain human body information can be human input, or data acquisition and storage of the human body monitoring device.
  • the state mode c2 is also included in the software mode.
  • the body state mode c2 may include at least two of a health mode, an illness mode, a doze mode, starvation, and fatigue. At least two physical states of health, illness, drowsiness, hunger, fatigue, and excitement of the owner or holder monitored by the corresponding human monitoring device.
  • the physical state mode c2 in the software mode is a software working mode for a person who is suitable for such a physical state.
  • the software mode selection module cO selects the body state mode c2 corresponding to the body state based on the physical state of the person determined by the human body monitoring device. The selection of the mode included in the body state mode c2 can be performed by the software mode selection module cO.
  • the intelligent control software system has at least two software modes, and has a software mode selection module c0, and the software mode selection module cO selects the software mode.
  • the software mode selection module cO takes the monitored mood information as a factor in selecting a software mode to work.
  • the human body monitoring device judges the mood state of the person through the detected information, such as anger, loss, pleasure, happiness, and the like.
  • mood states such as anger, loss, pleasure, and happiness through one or more of heartbeat, body temperature, blood pressure, blood information, walking steps, voice, language, brain waves, etc. Said.
  • the software mode selection module cO associates with a mood state database, the mood state database allows storage, or has stored the owner or holder mood state information. Historical information and current information of mood state information may be included.
  • the mood mode c3 is also included in the software mode.
  • the mood state mode c3 may include at least two of an angry mode, a lost mode, a joy mode, and a happy mode. At least two moods of anger, loss, pleasure, and happiness of the owner or holder of the portable smart device 1 are corresponding. Switch modes according to different moods. Mode mode The selection of the mode included in c3 can be performed by the software mode selection module cO.
  • the software mode selection module cO selects the mood state mode c3 corresponding to the mood based on the mood of the person determined by the human body monitoring device.
  • the way to combine can be:
  • At least two identity modes cl are provided in the intelligent control software system. At least one identity mode cl has at least two body state modes c2. At least one state of mind mode c2 is provided with at least two mood state modes c3.
  • the identity mode cl is not set.
  • At least one state of mind mode c2 is provided with at least two mood state modes c3.
  • At least two mood state modes c3 in the intelligent control software system. At least one mood state mode c3 has at least two body state modes c2.
  • the working mode switching module b0 selects the working mode module bl and then calls the control command to implement the control.
  • the control command to implement the control.
  • the working mode switching module b0 When the child is in a state of excitement and happiness, the flashing light is turned on by the working mode switching module b0. If the old man is in a state of fatigue and loss, the warm light is turned on by the working mode switching module b0.
  • the specific implementation manner may be: at least one of the identity mode cl, the physical state mode c2, and the mood state mode c3 in the software mode, associated with the working mode switching module b0, and further associated with the working mode module bl.
  • at least one of the identity mode cl, the body state mode c2, and the mood state mode c3 may include at least two working mode switching modules b0.
  • the working mode switching module bo contained therein is selected after the software mode is determined.
  • the working mode switching module bo starts the associated working mode module bl when scanning the characteristic information of the already controlled controlled device terminal 2. Further control is implemented.
  • At least one of the identity mode cl, the body state mode c2, the mood state mode c3, includes a database consisting of at least two working mode switching modules b0. At least one of the identity mode cl, the body state mode c2, the mood state mode c3 calls the working mode switching module b0 included therein, thereby implementing control.
  • the intelligent control software system allows the database to have learning functions and modify or generate software patterns based on the learned information. So that the modified software mode, or the new model generated is more user-friendly.
  • the intelligent control software system has a host evaluation information input port, and the host evaluation information input port can be a key input port or a voice input port.
  • the master evaluation information input port supports the function that is turned on when an automatically enabled function is executed.
  • the owner is allowed to evaluate the function of the auto-start performed, in order to collect the owner's living habit information and generate a database of the owner's living habits.
  • the software mode selection module cO is associated with the owner's living habit database, and will be the owner's lifestyle database. As a factor in choosing the software model to work with.
  • the work mode switching module bO is associated with the owner's lifestyle database, and the owner's lifestyle data is used as a selection factor for the work mode switching module bO.
  • the key input port can be, for example, a satisfaction evaluation button displayed on the display screen for the owner to select.
  • the voice input port can be obtained by the microphone to obtain the master evaluation language.
  • the intelligent control software system also has a software mode learning module and a software mode learning module, and at least two learning functions are reserved, which allows the software mode to be modified or set by the learning function.
  • the software mode currently selected by the software mode selection module cO is modified or set.
  • the learning function includes recording the satisfaction evaluation of the owner of the portable smart device 1 for the function automatically activated by the intelligent control software system, and the statistics of the number of satisfaction evaluations.
  • the learning function includes recording the environmental parameters set by the owner of the portable smart device 1. For example, at least two of the indoor temperature, light intensity, speaker volume, and ambient humidity that are set daily.
  • the learning function includes recording the style type parameter of the media played by the owner of the portable smart device 1. For example, the types of movies, television, and music.
  • the learning function includes recording the frequency at which the owner of the portable smart device 1 plays different styles and types of media. And the mood mode or health mode when playing different styles of media. Therefore, it is known that the owner of the portable smart device 1 likes to play which style and type of media in various mood modes or health modes.
  • the intelligent control software system stores the software mode corresponding to the controlled device terminal 2 and associates it with the feature information stored in the storage device 12. In order to facilitate access of a controlled device terminal 2, the intelligent control software system quickly activates the corresponding software mode. There is no need for human selection to start.
  • the intelligent control software system is further associated with a media database, and the media database includes at least two or two of music, movies, web sites, voice conversations, and dance action resources.
  • the intelligent control software system is provided with a media play selection module.
  • the media play selection module selects at least two of the owner or holder identity information, the human body information, and the mood state information of the portable smart device 1 as a selection condition, and selects resources in the media database for playing.
  • the media play selection module can also play resources in the media database for playback according to the software mode selected by the software mode selection module cO.
  • the manner in which the dance action resource is played is performed by the movable device connected to the controlled device terminal 2. For example, at least two of electric curtains and sweeping robots.
  • the intelligent control software system determines at least two of the host's mood, the degree of physical fatigue, and the degree of physical health based on the information detected by the human body monitoring device. According to the judgment, the resources in the media database are called for playing.
  • the controlled device terminal 2 can adopt a smart home control terminal, and the signal processing circuit system 21 and the memory 22 all adopt the signal processing circuit system 21 and the memory 22 of the smart home control terminal.
  • Functional actuator 3 The smart home control terminal is a wired or wirelessly connected execution terminal, and the execution terminal may be at least two of a display screen, a television, a speaker, an air conditioner, a curtain, an electric light, a robot, an electric door, and a power window connected to the smart home control terminal. .
  • the execution terminal of the smart home is provided with a wireless signal module, and the wireless home signal is connected to the smart home control terminal through the wireless signal module.
  • the intelligent intelligent device 1 runs the intelligent control software system, and the intelligent control software system functions as the smart home control software. Or the intelligent control software system is associated with a smart home control software.
  • the intelligent control software system control instruction sending module a3 is connected with the control signal input interface of the smart home control software to complete the association between the intelligent control software system and the intelligent home control software.
  • the smart home control software sends a control command to the smart home control terminal through the portable smart device 1 , and the smart home control terminal sends a control signal to the execution terminal of the smart home.
  • the smart home control terminal adopts a communication transfer system, that is, the controlled device terminal adopts a communication transfer system.
  • the communication relay system includes a network communication module and an infrared communication module, and a signal processing system; the network communication module and the infrared communication module are respectively connected to the signal processing system.
  • the communication relay system includes a network communication module as a wireless signal communication module 23 and an infrared communication module; and a signal processing system as the signal processing circuit system 21; the network communication module and the infrared communication module are respectively connected to the signal processing system.
  • the communication connection system is connected to the portable smart device 1 through a communication relay system. It is connected to the function actuator 3 via an infrared communication module. The way of communication connection is infrared communication connection.
  • the communication relay system also includes a radio communication module. It is communicatively connected to the function actuator 3 via a radio communication module. The way the communication is connected is a radio communication connection.
  • the portable intelligent device 1 is used as a control terminal, and the network communication module of the communication relay system is connected through the network; the control signal generated by the portable smart device 1 is sent to the network communication module via the network, and the control signal received by the network communication module is sent to the signal processing.
  • the signal processing system converts the control signal and sends it to the infrared communication module, and the infrared communication module sends an infrared remote control signal to the outside;
  • the execution terminal functions as a function execution mechanism 3, and the execution terminal is provided with an infrared remote control receiving system, and the infrared remote control receiving system After receiving the infrared remote control signal, the controlled action is performed, thereby implementing control of the execution terminal.
  • the control signal transmitted by the network is converted into an infrared remote control signal to control the execution terminal. Since a large part of the existing home appliances already has an infrared remote control function, the control can be realized as long as the converted infrared remote control signal is matched with the execution terminal having the infrared remote control function. It is not necessary to modify the execution terminal. Thereby greatly reducing the construction difficulty and reducing the engineering cost.
  • the network communication module may be one of a wired network communication module, a wireless network communication module, and a mobile phone network communication module.
  • the execution terminal may be at least two of a DVD, a lamp, a television, a ceiling light, a desk lamp, a fan, an air conditioner, a curtain, a door, a window, a set top box, a washing machine, a microwave oven, a projector, an electric heater, an electronic fish tank, a sweeping robot, a water dispenser, and the like.
  • the communication relay system is provided with a casing, and the network communication module and the infrared communication module are disposed in the casing.
  • the light-emitting port is arranged on the outer casing, and the infrared light-emitting element of the infrared communication module is disposed behind the light-transmitting port.
  • At least two infrared light emitting elements are disposed on the infrared communication module. In order to enhance the signal strength. Preferably, it is 3 to 8 infrared light-emitting elements. And 3 ⁇ 8 infrared illuminating elements are enclosed in a ring shape. The orientation of at least two of the infrared illuminating elements is different.
  • the communication relay system is fixed at a height of 2m or more. It can be fixed in the upper middle of the wall, or on the ceiling.
  • a light transmissive cover is arranged on the light transmission port.
  • the translucent cover can be made of a translucent cover made of an infrared filter material. The inside of the translucent cover is frosted so that the light can be diverged around, allowing light to be received in all corners of the space.
  • the light transmission port adopts an annular light transmission port.
  • the light-transmissive port is a spherical mask body. In order to emit optical signals in all directions below.
  • the light transmission port of the communication relay system can be set to face downward.
  • the communication relay system emits optical signals from top to bottom.
  • the communication transfer system is provided with an upwardly facing light transmission port.
  • the communication relay system emits an optical signal from the bottom to the top with a ceiling above, allowing the optical signal to be reflected by the ceiling and sent to the execution terminal. This design makes it easier to install and power the communication relay system.
  • a converging lens is disposed on the light transmissive opening to enhance the intensity of the spot formed on the ceiling.
  • the housing may be provided with an upwardly facing light transmission opening and an annular light transmission opening.
  • An annular light-transmissive opening is provided below the light-transmissive opening.
  • the infrared communication module of the communication relay system is provided with at least two infrared light-emitting elements, one of which is located in one room and the other of which is located in another room.
  • a battery system is also included in the power system of the communication relay system. Because the system consumes less energy, it can continuously supply power to the communication relay system through the battery system. It is also possible to use the battery system as a redundant mechanism to maintain a normal operation for a period of time in the event of a circuit failure, so that the user can prepare accordingly.
  • an infrared signal enhancement system d is further included, including at least one infrared signal receiving module d1 and at least one infrared signal transmitting module d2, and a signal enhancement module d3 having a signal enhancement function; the infrared signal receiving module dl is connected to the signal enhancement.
  • the signal input end of the module d3, the infrared signal transmitting module d2 is connected to the signal output end of the signal enhancement module d3.
  • two infrared signal receiving modules dl and two infrared signal transmitting modules d2 are provided.
  • An infrared signal receiving module dl and an infrared signal transmitting module d2 are located on one side; another infrared signal receiving module dl and another infrared signal transmitting module d2 are located on the other side. So that both sides can send and receive signals.
  • the signal enhancement module d3 is provided with a frequency selection module for selecting a signal band to be enhanced for signal enhancement.
  • the infrared signal enhancement system d is provided with a casing, and the infrared signal receiving module d1, the infrared signal transmitting module d2 and the signal enhancement module d3 are disposed in the casing.
  • the layout of the room may be relatively messy, which may cause blocking of the infrared remote control signal and affect the control effect. When the room is too large, it will also cause the problem of weakening the infrared signal.
  • the infrared signal strength is enhanced by adding an infrared signal enhancement system d to ensure control quality.
  • the infrared signal enhancement system d is placed separately from the communication relay system and the distance is within 15 meters. In order to optimize the signal layout effect. Infrared signal receiving system of infrared signal enhancement system d The infrared receiving head of dl is located in one room, and the infrared emitting head of infrared signal transmitting module d2 is located in another room. This allows infrared signals to be transmitted across the room. In order to control the electrical appliances in multiple rooms through a communication relay system.
  • the communication relay system is also connected with a camera system, and the signal output end of the camera system is connected to the network communication module.
  • the image in the space is sent to the portable smart device 1 through the network communication module to form control state feedback. Let the controller know how to execute the terminal status.
  • the communication relay system further includes an infrared receiving module, and the infrared receiving module is connected to the signal processing system, and the signal processing system converts the infrared signal received by the infrared receiving module into a network signal and sends the signal to the portable smart device through the network communication module.
  • the infrared receiving module of the communication relay system is provided with at least two infrared receiving elements, one infrared receiving element being located in one room and the other infrared receiving element being located in another room. In order to provide feedback signals for two or more rooms through a communication relay system.
  • An infrared transmitting device is disposed on the execution terminal, and the infrared transmitting device is provided with a controlled state monitoring terminal for monitoring the working state of the device, and converting the working state into an infrared signal through the infrared transmitting device; the transmitted infrared signal is infrared
  • the receiving module transmits to the portable smart device 1 through the communication relay system, so that the portable smart device 1 obtains status information of the executing terminal.
  • the controlled state monitoring terminal is connected to the signal output end of the infrared remote control receiving system on the terminal, and monitors the output signal of the infrared remote receiving system to realize monitoring.
  • the portable smart device 1 is provided with a micro processor system 11 in which a remote control code is stored, and when the execution terminal is controlled, the microprocessor system 11 calls the remote control code stored in the storage device 12. And through the communication relay system into an infrared remote control signal to achieve control.
  • the above design stores the remote control code in the portable smart device 1, which is advantageous for enhancing the versatility of the device. For example, when carrying the portable smart device 1 to other people's homes, after networking with the communication relay system, control can be implemented for relatively common televisions, air conditioners or other devices. In addition, storing the remote control code in the portable smart device 1 can reduce the hardware requirements for the communication relay system. When software rewriting or other adjustments are made, it is not necessary to adjust the communication relay system as long as the software in the portable smart device 1 is adjusted. It is convenient to use, and can allow each communication relay system to be differentiated little or even without differentiation, so that the communication relay system has enhanced versatility.
  • Store the remote control code in The manner in the portable smart device 1 may be that a remote control code of the infrared remote control receiving system of the execution terminal is acquired, and then the remote control code is stored into the storage device 12 for retrieval.
  • the intelligent control software system is associated with a smart home system software running in the portable smart device 1.
  • the smart home system software is provided with a remote control code import interface, and the remote control code is imported through the remote control code import interface; the smart home system software also has a function button icon. , the function button icon is associated with the remote control code.
  • the smart home system software has at least three function buttons and is stored in a function button library.
  • the function button can be associated with the remote control code by acquiring a remote control code and then calling a function button to complete the association and store. It is also possible to first call a function button, then acquire a remote control code, and then complete the association and store.
  • the function button can be a visual graphic button or a text button labeled with text. Graphic buttons can be graphical buttons for lights, doors, curtains, windows, and more.
  • the smart home system software that is run has a remote code learning function; when the smart home system software turns on the remote code learning function, the code learning is performed by executing the remote controller provided by the terminal: when the button of the remote controller is pressed, the remote controller
  • the infrared remote control signal is transmitted, and the infrared remote control signal is received by the infrared receiving module and transmitted to the signal processing system, and the signal processing system converts the infrared signal received by the infrared receiving module into a network signal and sends it to the portable smart device 1 through the network communication module; the portable smart device
  • the microprocessor system 11 of the microprocessor 11 stores the information about the remote control code carried; when controlling the execution terminal, the microprocessor system 11 calls the stored remote control code and passes through the communication relay system. Converted to an infrared remote control signal for control.
  • the smart home system software has a function button icon, and according to the remote control code obtained when pressing a function button with a command meaning of the remote controller, determining the command meaning of the remote control code, and saving the remote control code, and calling the corresponding command Meaning of the function button icon, to associate.
  • the infrared remote control receiving system of the execution terminal has the function of controlling the opening and closing of the execution terminal, and the opening function and the closing function of the infrared remote receiving system are different for the corresponding remote control code.
  • the remote control codes for the opening and closing of electrical appliances such as TVs, air conditioners or electric lights are all set to the same remote control code.
  • it is more suitable to design in the form of using different remote control codes, so that it is convenient to perform control without feedback, that is, without knowing the open state of the execution terminal.
  • a software interface is provided in the smart home system software, and the control interface includes a control terminal layout diagram in the room; an execution terminal icon is distributed in the execution terminal layout diagram, and the execution terminal icon is associated with the function button icon.
  • the function terminal icon may be directly executed by executing the terminal icon, or may be associated with a terminal icon, and the function key icon associated with the remote control code of the execution terminal corresponding to the execution terminal icon is arranged in the sub menu. .
  • the smart home system software has an execution terminal icon library, and the execution terminal icon library has a TV icon, a ceiling light icon, a desk lamp icon, a fan icon, an air conditioner icon, a curtain icon, a door icon, a window icon, a set top box icon, a washing machine icon, a microwave oven.
  • the execution terminal icon library has a TV icon, a ceiling light icon, a desk lamp icon, a fan icon, an air conditioner icon, a curtain icon, a door icon, a window icon, a set top box icon, a washing machine icon, a microwave oven.
  • the color, brightness, or other indication when an execution terminal is on is different from the color, brightness, or other indication when the terminal is off.
  • a status bar is provided on the side of the execution terminal icon to display the controlled state.
  • An indoor layout map is set in the control interface, and the execution terminal icon represents the execution terminal arranged in the indoor layout map. After the execution terminal icon is retrieved from the execution terminal icon library, it is placed in the indoor layout map. The placement can be done according to the position in the actual room, in order to enhance the realism.
  • the execution terminal icon pattern may be a photo pattern of the execution terminal.
  • the smart home system software has a non-executive terminal icon library, and the non-executive terminal icon library has at least two of uncontrolled items such as wallpaper, floor, bed, table, bathtub, and the like.
  • the non-executable terminal icon is retrieved from the non-executable terminal icon library, it is placed in the indoor layout map.
  • the way of placing it can be placed according to the position in the actual room, in order to enhance the realism.
  • the non-executive terminal icon pattern may also be a photo pattern of the execution terminal.
  • the control interface also has an upper menu of the indoor layout map, a room layout map, and at least two rooms in the room layout map, at least one of which is associated with an indoor layout map.
  • the control interface also has a menu of the upper level of the layout of the room, a floor plan, and at least two floors in the floor plan, at least one of which is associated with the room layout. You can nest the room layout in the floor plan. It can also be accessed by clicking on the floor plan to enter the corresponding room layout.
  • the control interface also has a menu of the upper level of the floor plan, the building picture. You can nest the floor plan in the building plan. It can also be accessed by clicking on the building map to the corresponding floor plan.
  • the communication relay system is further provided with a microprocessor system as the signal processing circuit system 21, the microprocessor system is connected to the memory 22, the memory 22 stores the remote control code transmitting information, and the microprocessor system feeds back the remote control code transmission information to the portable smart device. 1.
  • a microprocessor system as the signal processing circuit system 21, the microprocessor system is connected to the memory 22, the memory 22 stores the remote control code transmitting information, and the microprocessor system feeds back the remote control code transmission information to the portable smart device. 1.
  • a different identification code is set in the remote control code of the different execution terminal, and the remote control code within twenty groups having the same identification code is stored in the memory 22 to form a historical remote control code library.
  • the remote control code in the historical remote control code library is chronologically identified. For accurate analysis.
  • Microprocessor system will store memory 22
  • the information in the stored historical remote control code library is fed back to the portable smart device 1, and the portable smart device 1 analyzes the current working state of the execution terminal.
  • the smart home system software has a human error correction menu. After entering the artificial state error correction menu, the terminal status can be performed by human identification. In order to correct the possible errors of the device.
  • the smart home control terminal is connected to a microphone, and the microphone is connected to the signal processing circuit system 21. To facilitate voice control, or to talk to the smart home control terminal. Or through the smart home control terminal, through the Internet to make voice calls with other people.
  • the intelligent intelligent device 1 runs an intelligent control software system, and the intelligent control software system functions as a robot control software.
  • the intelligent control software system is associated with a robot control software.
  • the intelligent control software system control command sending module a3 is docked with the control signal input interface of the robot control software to complete the association between the intelligent control software system and the robot control software.
  • the controlled device terminal 2 employs a robot, a signal processing circuit system 21, and a memory 22, both of which employ a robotic processor system and a memory.
  • the robot is controlled by an intelligent control software system or by robot control software.
  • the robot control software may refer to robot control software running in the portable smart device 1, or may be a processor system running in the robot.
  • the function actuator 3 includes at least two controllable devices carried on the robot.
  • the controllable devices provided on the robot include at least two of a projector, a display screen, a speaker, an electric lamp, and an electric wheel drive system.
  • the electric wheel drive system preferably employs a universal wheel. In order to flexibly adjust the direction.
  • the signal processing circuit system 21 connects at least two of a projector, a display screen, a speaker, an electric lamp, an electric wheel drive system, an infrared signal transmitting device, and a video camera.
  • the pedals feature a retractable or foldable foot pedal. So that it can be put away when not in use.
  • the robot head is of a rotatable structure and is provided with a driving device, and the control end of the driving device is connected to the signal processing circuit system 21. Controlled by signal processing circuitry 21.
  • the robot is equipped with a battery system.
  • the battery system is connected to a wireless charging device, and the charging antenna of the wireless charging device is vertically set.
  • a power supply antenna with a wireless charging base is placed on the wall, and the antenna is placed vertically.
  • the wireless charging device is provided with a pair of code circuits.
  • the wireless charging base is provided with a code matching system matched with the code circuit. Charging after the code is completed. If the code fails, it will not be charged.
  • the code circuit transmits or receives the code signal through the wireless signal, and the antenna of the code circuit uses a charging antenna.
  • the code system transmits or receives the code signal through the wireless signal, and the power supply antenna is used for the antenna of the code system.
  • a microphone is provided on the robot body, and the microphone is connected to the signal processing circuit system 21. To facilitate voice control or to talk to the robot. Or make a voice call with other people through the robot.
  • the owner's information of the already-matched portable smart device 1 is stored in the memory 22 of the robot, including gender, age, blood type, hobby, occupation, marital status. At least two kinds of information in the state.
  • the controlled device terminal 2 is further associated with a media database, and the media database includes at least two or two of music, movies, web addresses, voice conversations, and dance action resources.
  • the controlled device terminal 2 calls the resources in the media database to play according to at least two of the owner information of the portable smart device 1 and the monitored body information.
  • the way to play the dance action resources is to perform through the physical parts of the robot.
  • the controlled device terminal 2 judges at least two of the host's mood, degree of physical fatigue, and physical health based on the information detected by the human body monitoring device. According to the judgment, the resources in the media database are called for playing.
  • the controlled device terminal 2 remotely controls the device having the infrared remote control signal receiver through the infrared signal transmitting device. Such as televisions, air conditioners, projectors, etc.
  • the controlled device terminal further includes a laser remote control receiving system having a laser remote control function.
  • the laser remote control receiving system includes a diffusing plate, a signal processing mechanism and an infrared receiving component, and the photosensitive surface of the infrared receiving component faces the diffusing plate. It is used to receive the scattered light signal from the laser spot on the diffuser.
  • the movement state of the laser spot formed on the astigmatism plate is reflected by the infrared receiving component, and the infrared receiving component converts the corresponding electrical signal and sends it to the signal processing mechanism, and the signal processing mechanism receives the electric signal according to the received signal.
  • the signal output control command controls the controlled device terminal to issue a control signal.
  • the signal processing circuit system and the signal processing mechanism may be shared by some signal circuits or shared by all signal processing circuits.
  • the laser remote control receiving system is provided with an infrared receiving component, and the signal processing mechanism passes the intensity change of the optical signal received by the infrared receiving component, such as optical signal enhancement or optical signal attenuation, as a control signal, and according to the control command corresponding to the control signal , output control commands.
  • the laser remote control receiving system is provided with at least two infrared receiving components, and the signal processing mechanism compares the intensity difference of the optical signals received by the at least two infrared receiving components or the presence or absence of the optical signals as a control signal, and controls according to the corresponding control signals Command, output control command.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Quality & Reliability (AREA)
  • Manufacturing & Machinery (AREA)
  • General Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Selective Calling Equipment (AREA)
  • Manipulator (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Small-Scale Networks (AREA)

Abstract

L'invention concerne un système d'interaction intelligent et un système logiciel associé qui se rapportent au domaine technique de l'électronique, et en particulier à un système d'interaction. Le système d'interaction intelligent comprend un dispositif intelligent portable, et comprend de plus un terminal de dispositif commandé ; le dispositif intelligent portable comprend un système processeur, ainsi qu'un dispositif de stockage et un système de communication sans fil connecté au système processeur ; le terminal de dispositif commandé comprend un système circuit de traitement de signal, au moins un module de communication de signal sans fil correspondant au système de communication sans fil, et comprend aussi un mécanisme d'exécution de fonction permettant d'exécuter une action ; le système circuit de traitement de signal est connecté respectivement à un module de communication de signal sans fil et au mécanisme d'exécution de fonction ; un système logiciel de commande intelligent s'exécute dans le dispositif intelligent portable, et le système logiciel de commande intelligent balaye le terminal de dispositif commandé dans une zone de signal efficace grâce au système de communication sans fil ; et après le balayage du terminal de dispositif commandé, des informations de caractéristique stockées dans le stockage sont lues par l'intermédiaire du module de communication de signal sans fil, de façon à identifier le terminal de dispositif commandé.
PCT/CN2014/078437 2013-05-27 2014-05-26 Système d'interaction intelligent et système logiciel associé WO2014190886A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201320296574.9 2013-05-27
CN2013202965749U CN203340098U (zh) 2013-01-21 2013-05-27 红外中转智能家居系统
CN201410027473 2014-01-21
CN201410027473.0 2014-01-21

Publications (1)

Publication Number Publication Date
WO2014190886A1 true WO2014190886A1 (fr) 2014-12-04

Family

ID=51987997

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/078437 WO2014190886A1 (fr) 2013-05-27 2014-05-26 Système d'interaction intelligent et système logiciel associé

Country Status (2)

Country Link
CN (13) CN104793499A (fr)
WO (1) WO2014190886A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104794791A (zh) * 2015-04-27 2015-07-22 乔风成 一种带指纹识别的中央控制门锁
CN105447933A (zh) * 2015-08-31 2016-03-30 深圳市启虹智能科技有限公司 非接触式生物识别保险柜

Families Citing this family (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106157036A (zh) * 2015-04-14 2016-11-23 广州杰赛科技股份有限公司 一种基于心跳特征的鉴权装置
CN105167700B (zh) * 2015-07-28 2019-02-19 小米科技有限责任公司 参数设置方法及装置
WO2017028141A1 (fr) * 2015-08-16 2017-02-23 张焰焰 Procédé et terminal mobile pour se connecter à un compte
WO2017031652A1 (fr) * 2015-08-22 2017-03-02 张焰焰 Procédé et terminal mobile permettant d'indiquer des informations lors d'une authentification à quatre facteurs d'une session d'ouverture de compte
CN105303387B (zh) * 2015-10-14 2021-01-15 珠海格力电器股份有限公司 空调器及其解锁方法
CN105320872A (zh) * 2015-11-05 2016-02-10 上海聚虹光电科技有限公司 基于虹膜识别的机器人操作权限设定方法
CN105416439B (zh) * 2015-11-24 2018-03-30 大连楼兰科技股份有限公司 基于智能眼镜的车辆拆解与组装方法
CN105447545A (zh) * 2015-12-29 2016-03-30 智坤(江苏)半导体有限公司 一种通用身份标识识别装置及其应用
US9894836B2 (en) * 2016-01-14 2018-02-20 Deere & Company Machine operation enhancement
CN106023988A (zh) * 2016-02-29 2016-10-12 深圳前海勇艺达机器人有限公司 一种用终端发送语音控制命令的方法
CN106225111B (zh) * 2016-07-08 2019-05-24 南京百诚机电科技工程有限公司 一种通过虹膜进行识别的中央空调系统
CN108027609A (zh) * 2016-07-26 2018-05-11 深圳市赛亿科技开发有限公司 管家机器人及控制方法
CN107734213A (zh) * 2016-08-11 2018-02-23 漳州立达信光电子科技有限公司 智能家用电子装置与系统
US10506192B2 (en) * 2016-08-16 2019-12-10 Google Llc Gesture-activated remote control
CN107784354B (zh) 2016-08-17 2022-02-25 华为技术有限公司 机器人的控制方法及陪伴机器人
RU2643177C1 (ru) * 2016-12-14 2018-01-31 Самсунг Электроникс Ко., Лтд. Микроволновое беспроводное зарядное устройство с фокусировкой микроволнового поля
CN106454467A (zh) * 2016-12-17 2017-02-22 南京九致信息科技有限公司 电视设备遥控系统及其控制方法
CN106815526A (zh) * 2016-12-27 2017-06-09 苏州春禄电子科技有限公司 一种基于区块链技术的安全型数据库存储系统
CN106842967B (zh) * 2016-12-28 2021-04-06 青岛海尔科技有限公司 一种基于定位信息的家电设备的控制方法及装置
WO2018148879A1 (fr) * 2017-02-15 2018-08-23 深圳市前海中康汇融信息技术有限公司 Robot intelligent de type à projection holographique et procédé de commande associé
CN108663952A (zh) * 2017-03-31 2018-10-16 戚峰 智能管家机器人
CN108733020B (zh) * 2017-04-19 2021-10-01 奥迪股份公司 用于车辆的远程控制设备和方法
CN107122654A (zh) * 2017-04-26 2017-09-01 杜敬红 智能切换方法和系统
WO2018195942A1 (fr) * 2017-04-28 2018-11-01 深圳市元征科技股份有限公司 Procédé et appareil de conduite automatique de chariot de lieux de sport
CN107830604A (zh) * 2017-09-28 2018-03-23 歌尔科技有限公司 一种室内温度控制方法、装置、系统及机器人
CN107942700A (zh) * 2017-12-15 2018-04-20 广东工业大学 一种家电控制系统、方法及计算机可读存储介质
CN110196671B (zh) * 2018-02-27 2021-05-25 杭州海康威视数字技术股份有限公司 一种设备管理方法、装置及系统
CN109919269A (zh) * 2019-03-08 2019-06-21 大唐东营发电有限公司 一种基于二维码的防误动系统
CN110147922A (zh) * 2019-04-02 2019-08-20 北京雷石天地电子技术有限公司 一种ktv智能服务方法及系统
CN110125946B (zh) * 2019-04-23 2021-08-27 北京淇瑀信息科技有限公司 自动通话方法、装置、电子设备及计算机可读介质
CN110986298A (zh) * 2019-12-19 2020-04-10 海信(山东)空调有限公司 一种控制参数的调整方法、装置及电子设备
US11981288B2 (en) 2021-08-24 2024-05-14 Ford Global Technologies, Llc Activating vehicle components based on intent of individual near vehicle
CN116982883A (zh) * 2022-04-25 2023-11-03 追觅创新科技(苏州)有限公司 清洁操作的执行方法及装置、存储介质及电子装置
CN116909161B (zh) * 2023-09-11 2023-12-12 南昌理工学院 基于可穿戴设备的智能家居控制方法、系统

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2005122103A1 (fr) * 2004-06-09 2005-12-22 Koninklijke Philips Electronics N.V. Recepteur de telecommande
CN1753046A (zh) * 2004-09-24 2006-03-29 三星电子株式会社 集成遥控器及控制多个设备的方法
CN101465042A (zh) * 2007-12-20 2009-06-24 侯国涛 家用电器远程无线管理装置
CN101763715A (zh) * 2008-10-24 2010-06-30 杨林 智能家居中转红外控制的设备
CN201820390U (zh) * 2010-03-25 2011-05-04 亚力赛博(北京)科技有限公司 可构建寓教于乐型机器人
CN202711051U (zh) * 2012-09-03 2013-01-30 张民 一种家庭智能控制系统
CN203340098U (zh) * 2013-01-21 2013-12-11 上海科斗电子科技有限公司 红外中转智能家居系统

Family Cites Families (28)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060047604A1 (en) * 2004-08-31 2006-03-02 Kraft-Oz Oded S Methods and apparatus providing portable application and data
CN1761218A (zh) * 2004-10-13 2006-04-19 尤其生 全ip网络智能家居系统
DE102005010914A1 (de) * 2005-01-21 2006-08-10 Siemens Ag Verfahren zur Gebäudesteuerung und Gebäudeüberwachung
CN1794308A (zh) * 2006-01-10 2006-06-28 上海电器科学研究所(集团)有限公司 双向无线电遥控器
CN1925443A (zh) * 2006-09-22 2007-03-07 中山大学 一种数字家庭设备智能控制系统
US20080238709A1 (en) * 2007-03-28 2008-10-02 Faramarz Vaziri One-way communication apparatus with dynamic key generation
CN101282254B (zh) * 2007-04-02 2011-06-01 华为技术有限公司 家庭网络设备管理方法、系统及装置
CN101458516A (zh) * 2007-12-11 2009-06-17 翁东旭 远程控制智能家居控制系统
CN101362334A (zh) * 2008-09-25 2009-02-11 塔米智能科技(北京)有限公司 一种智能机器人及其运作方法
CN101478461A (zh) * 2008-11-06 2009-07-08 上海电器科学研究所(集团)有限公司 便携式遥控器及其所控对象任意选定的方法
TWI415006B (zh) * 2009-01-20 2013-11-11 Mstar Semiconductor Inc 射頻識別標籤及其運作方法
CN101859134B (zh) * 2009-04-09 2013-06-12 广州市聚晖电子科技有限公司 智能家居远程控制系统及方法
CN201383100Y (zh) * 2009-04-09 2010-01-13 广州市聚晖电子科技有限公司 智能家居远程控制系统
CN101887342B (zh) * 2009-05-13 2012-08-08 海尔集团公司 一种智能终端交互界面显示方法及系统
CN101799677A (zh) * 2009-07-13 2010-08-11 秦皇岛富通尼特智能科技有限公司 一种家庭智能终端的远程控制系统及方法
CN102024317B (zh) * 2009-09-17 2012-09-19 Tcl集团股份有限公司 一种遥控器及其实现方法
CN101730094B (zh) * 2009-11-30 2012-12-05 广州市聚晖电子科技有限公司 一种终端设备接入安防系统业务平台及信息传送方法
CN101782768A (zh) * 2010-02-09 2010-07-21 华南理工大学 一种基于上下文感知的智能家居系统
CN201886563U (zh) * 2010-09-14 2011-06-29 上海科斗电子科技有限公司 与智能家居系统配套的智能门铃
CN201792338U (zh) * 2010-09-19 2011-04-13 泰怡凯电器(苏州)有限公司 智能机器人系统
CN102109840A (zh) * 2010-12-10 2011-06-29 深圳市科陆电子科技股份有限公司 一种家居家电智能控制系统及控制方法
CN102081395B (zh) * 2010-12-29 2012-12-12 中山大学 智能家居控制方法
CN102025747A (zh) * 2010-12-29 2011-04-20 中兴通讯股份有限公司 家庭信息机及其认证方法
CN102184014B (zh) * 2011-05-12 2013-03-20 浙江大学 基于移动设备指向的智能家电交互控制方法及装置
CN103067431A (zh) * 2011-10-21 2013-04-24 海尔集团公司 设备控制系统及方法
CN103093162B (zh) * 2011-10-28 2016-01-20 中国科学院深圳先进技术研究院 智能机器人系统及利用射频识别定位的方法
CN103293968A (zh) * 2012-02-29 2013-09-11 陈瑞 一种智能机器人系统
CN203259876U (zh) * 2013-03-01 2013-10-30 李冀 一种移动机器人智能家居控制系统

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2005122103A1 (fr) * 2004-06-09 2005-12-22 Koninklijke Philips Electronics N.V. Recepteur de telecommande
CN1753046A (zh) * 2004-09-24 2006-03-29 三星电子株式会社 集成遥控器及控制多个设备的方法
CN101465042A (zh) * 2007-12-20 2009-06-24 侯国涛 家用电器远程无线管理装置
CN101763715A (zh) * 2008-10-24 2010-06-30 杨林 智能家居中转红外控制的设备
CN201820390U (zh) * 2010-03-25 2011-05-04 亚力赛博(北京)科技有限公司 可构建寓教于乐型机器人
CN202711051U (zh) * 2012-09-03 2013-01-30 张民 一种家庭智能控制系统
CN203340098U (zh) * 2013-01-21 2013-12-11 上海科斗电子科技有限公司 红外中转智能家居系统

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104794791A (zh) * 2015-04-27 2015-07-22 乔风成 一种带指纹识别的中央控制门锁
CN105447933A (zh) * 2015-08-31 2016-03-30 深圳市启虹智能科技有限公司 非接触式生物识别保险柜

Also Published As

Publication number Publication date
CN204791023U (zh) 2015-11-18
CN104793526A (zh) 2015-07-22
CN204631493U (zh) 2015-09-09
CN104793527A (zh) 2015-07-22
CN204695082U (zh) 2015-10-07
CN104793502A (zh) 2015-07-22
CN104793499A (zh) 2015-07-22
CN104793501A (zh) 2015-07-22
CN104793503A (zh) 2015-07-22
CN104793500A (zh) 2015-07-22
CN104793584A (zh) 2015-07-22
CN104793583A (zh) 2015-07-22
CN104793585A (zh) 2015-07-22

Similar Documents

Publication Publication Date Title
WO2014190886A1 (fr) Système d'interaction intelligent et système logiciel associé
CN103942938B (zh) 以便携式智能设备为控制中枢的智能交互系统
CN105528067A (zh) 具有判断主人心情功能的可穿戴设备
CN104767785A (zh) 便携式智能设备控制系统及其控制系统软件
JP6694053B2 (ja) レーダ対応センサフュージョン
CN108111948A (zh) 在语音接口设备处的服务器提供的视觉输出
JP2022504302A (ja) 家庭電器に制御用ユーザインタフェースを提供する方法及びシステム
US20150139483A1 (en) Interactive Controls For Operating Devices and Systems
TW201636887A (zh) 智慧控制裝置與系統
EP3948514B1 (fr) Système et procédé pour visualiser l'état d'un occupant et gérer des dispositifs de bâtiment
CN111673772B (zh) 一种基于生物识别认证的智能家居机器人权限管理系统
KR20190106925A (ko) 인공지능 로봇 및 그의 제어 방법
KR101515178B1 (ko) 얼굴에 기반하는 사용자 인터페이스를 제공하는 로봇 및 로봇의 제어 방법
WO2023040827A1 (fr) Procédé de commande de maison intelligente
CN115268293A (zh) 一种基于全屋智能家电控制的触屏控制面板
AU2013100081A4 (en) Home Environment Automated Real Time (HEART) System
CN218478416U (zh) 一种智能交互轿厢及电梯
US20230025392A1 (en) Method and system for a hub device
WO2022009826A1 (fr) Dispositif d'affichage
Kaila Technologies enabling smart homes
CN115718433A (zh) 智能设备的控制方法、装置、智能系统和存储介质
CN107870574A (zh) 一种基于图像感应传感的智能家居控制面板
WO2019232719A1 (fr) Appareil de télévision à intelligence artistique

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14803981

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 14803981

Country of ref document: EP

Kind code of ref document: A1