WO2019134337A1 - 一种基于铺装物的数据采集处理系统及方法 - Google Patents

一种基于铺装物的数据采集处理系统及方法 Download PDF

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Publication number
WO2019134337A1
WO2019134337A1 PCT/CN2018/089076 CN2018089076W WO2019134337A1 WO 2019134337 A1 WO2019134337 A1 WO 2019134337A1 CN 2018089076 W CN2018089076 W CN 2018089076W WO 2019134337 A1 WO2019134337 A1 WO 2019134337A1
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WIPO (PCT)
Prior art keywords
module
data
pavement
pressure
magnetic
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PCT/CN2018/089076
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English (en)
French (fr)
Inventor
王长贵
Original Assignee
王长贵
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.)
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Publication date
Priority claimed from CN201810013023.4A external-priority patent/CN107997931A/zh
Priority claimed from CN201810013021.5A external-priority patent/CN108151849A/zh
Priority claimed from CN201810013043.1A external-priority patent/CN108022575A/zh
Application filed by 王长贵 filed Critical 王长贵
Publication of WO2019134337A1 publication Critical patent/WO2019134337A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G19/00Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups
    • G01G19/44Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for weighing persons

Definitions

  • the invention relates to the field of big data, in particular to a sound collection and playback system and method based on pavement, a data acquisition and processing system and method based on pavement, and an auxiliary motion system and method based on pavement.
  • the data collection is implemented by a specific measurement product.
  • the weight collection needs to be weighed by means of a weight device, and the motion data such as the number of steps needs to be counted by means of a gravity sensor of the smart device terminal.
  • These measurement products have not been combined with the surrounding environment, such as laying floors, walls, etc. to achieve measurement and presentation of data.
  • melody or music needs to be generated by an instrument, and after the melody or music is generated, it is played through a local sound playing device.
  • the generation and playback of these melody or music have not been combined with the surrounding environment, such as laying floors, walls, etc. to produce melody or music and play it.
  • paving materials such as ceramic tiles, natural stone, synthetic flooring, etc. are generally laid on the ground and/or the wall surface to support and decorate the ground and/or the wall surface.
  • the human body moves on the pavement or the object moves on the pavement, due to the friction between the pavement and the human body and the object, the moving speed of the object and the movement of the human body are seriously hindered.
  • the friction between the pavement and the object is sometimes insufficient to provide sufficient stability. It is therefore necessary to improve the prior art.
  • the invention provides a pavement-based data acquisition and processing system, which aims to solve the problem that the data collection in the prior art has not been combined with the surrounding environment such as the laid floor, wall, etc. to realize the measurement and presentation of data.
  • the present invention provides a pavement-based data acquisition and processing system, which includes at least one data acquisition module, a cloud processing module, and a terminal device module, and the data acquisition module, the cloud processing module, and the terminal device module.
  • a communication connection between the two the data acquisition module comprising at least one paving material and at least one magnetic sensing element disposed on the paving, the magnetic sensing element collecting and stepping on the paving.
  • the pressure data of the organism is transmitted to the cloud processing module, and the cloud processing module aggregates and analyzes the pressure data to obtain a data processing result, and transmits the data processing result to the terminal.
  • Equipment module is included in the cloud processing module.
  • the data acquisition module further comprises at least one weight sensing element disposed on the paving and communicatively coupled to the cloud processing module, the weight sensing element collecting stepping on Weight data of the organism on the pavement and transmitting the weight data to the cloud processing module.
  • between the magnetic sensing element and the magnetic sensing element of the same data acquisition module, between the magnetic sensing element and the weight sensing element, between the weight sensing element and the weight sensing element The mains connection or the series connection.
  • the pavement-based data acquisition and processing system comprises a plurality of data acquisition modules, wherein the different data acquisition modules are electrically connected in parallel or in series.
  • the cloud processing module includes an early warning unit, and when the cloud processing module analyzes that the pressure data and/or the weight data is abnormal, the early warning unit sends the early warning information to the terminal processing module.
  • the pavement-based data collection and processing system further includes a local collection module, wherein the local collection module is in communication with the plurality of data collection modules and the cloud processing module, and the local collection module collects the plurality of Pressure data and weight data collected by the data collection module, and the pressure data and weight data are transmitted to the cloud processing module.
  • the local collection module is in communication with the plurality of data collection modules and the cloud processing module, and the local collection module collects the plurality of Pressure data and weight data collected by the data collection module, and the pressure data and weight data are transmitted to the cloud processing module.
  • the paving comprises a bracket and a pedal
  • the bracket is disposed on the bottom of the pedal to support the pedal
  • the magnetic sensing element and/or the weight sensing component are disposed on the bracket and stepped on Between the boards.
  • the present invention further provides a pavement-based data collection and processing method, which provides the pavement-based data collection and processing system according to any of the above items, comprising the steps of:
  • the magnetic sensing element collects pressure data of a creature stepping on the pavement
  • the weight sensing element collects weight data of a creature stepping on the paving
  • the pressure data and/or Or weight data is transmitted to the cloud processing module
  • the cloud processing module aggregates and analyzes the pressure data and/or the weight data to generate a data processing result.
  • the cloud processing module transmits the data processing result to the terminal device module.
  • the step S3 further includes a step S31: the local collection module collects the pressure data and the weight data collected by the plurality of data collection modules, and transmits the pressure data and the weight data to the cloud processing module.
  • the local collection module collects the pressure data and the weight data collected by the plurality of data collection modules, and transmits the pressure data and the weight data to the cloud processing module.
  • the pavement-based data collection and processing method further includes step S51: when the cloud processing module analyzes that the pressure data and/or the weight data is abnormal, the early warning unit sends the warning information to the terminal. Processing module.
  • the technical solution of the present invention adds a sensing element including a magnetic sensing element to the pavement, and the magnetic sensing element collects pressure data of a living creature, particularly a human body, which is stepped on the pavement, and each of the pressure data
  • the pressure collection point set constitutes a pressure plane for characterizing each biometric, and transmits the collected pressure data to the cloud processing module, and the cloud processing module collects and analyzes the pressure data to obtain a biological body, particularly a human body.
  • the unique characteristics of the pace and walking posture and then assess the health of the organism, especially the human body, and send the data processing results to the terminal equipment module, early warning, and preventive measures.
  • the system can be used by non-designated creatures or unauthorized creatures when a non-designated creature or unauthorized creature tramples on the pavement.
  • the pressure data is compared with the pressure data of the cloud processing module, and the non-designated biological or unauthorized organisms are identified to achieve the function of anti-theft, anti-thief and security warning.
  • the pavement is further provided with a weight sensing element, which collects weight data of the creature stepping on the pavement, the weight data including the weight of the creature and the number of steps on the pavement, and the like.
  • the weight data collected each time is transmitted to the cloud processing module.
  • the cloud processing module summarizes and analyzes the weight data, and the aggregation and analysis process includes, but is not limited to, summing the daily steps, and merging the daily and/or monthly weight into a line graph.
  • the terminal device module communicates with the cloud processing module to perform data interaction, and the cloud processing module can transmit the data processing result to the terminal device module for viewing by the user, and the terminal device module can also send a request to view the current and past Pressure data, weight data, and data processing results in the cloud processing module.
  • the invention provides a sound collecting and playing system based on pavement, which aims to solve the problem that melody or music generation and playing can not be combined with surrounding environment, such as laying floor, wall, etc. to generate melody or music and play. .
  • a sound collection and playback system based on a pavement comprises at least one sound collection module, a cloud processing module and a terminal playing module, the data collecting module, the cloud processing module and the terminal playing module.
  • the sound collection module comprising at least one pavement and at least one pressure sensing element disposed on the pavement, the pressure sensing element collecting the pavement under pressure
  • the pressure data is transmitted to the cloud processing module, and the cloud processing module aggregates and analyzes the pressure data to generate a pressure-sound conversion result, and converts the pressure-sound As a result, the transmission is played to the terminal playing module.
  • the sound collection module comprises a plurality of pressure sensing elements, and the pressure sensing elements and the pressure sensing elements are electrically connected in parallel or in series.
  • the pavement-based sound collection and playback system comprises a plurality of sound collection modules, wherein the plurality of sound collection modules are electrically connected in parallel or in series.
  • the pavilion-based sound collection and playback system further includes a local collection module, wherein the local collection module is in communication with the plurality of sound collection modules and the cloud processing module, and the local collection module collects the plurality of The pressure data collected by the sound collection module is sent to the cloud processing module or directly played on the pressure data.
  • the local collection module is in communication with the plurality of sound collection modules and the cloud processing module, and the local collection module collects the plurality of The pressure data collected by the sound collection module is sent to the cloud processing module or directly played on the pressure data.
  • the paving comprises at least one bracket and a bearing plate, the bracket is disposed at a bottom of the bearing plate to support the bearing plate, and the pressure sensing element is disposed on the bracket and the bearing Between the boards.
  • the paving comprises a plurality of brackets and a bearing plate, and each of the pressure sensing elements is disposed on each of the brackets.
  • the bracket is cylindrical, the bracket has a height of 15-25 mm, and the bracket has a cylinder diameter of 15-25 mm.
  • the present invention further provides a fabric-based sound collection and playback method, which provides a pavement-based sound collection and playback system according to any of the above, comprising the following steps:
  • the pressure sensing element collects pressure data when the pavement is pressed, and transmits the pressure data to the cloud processing module, and the cloud processing module aggregates and analyzes the pressure data to generate a pressure-sound conversion result. ;
  • the cloud processing module transmits the pressure-sound conversion result to the terminal playing module for the user to play.
  • the local collection module collects the pressure data collected by the plurality of sound collection modules, and transmits the pressure data to the cloud processing module or directly performs sound playback on the pressure data.
  • the pavement-based sound collection and playback method further comprises a step S5: the terminal device module performs sound setting after the pressure-sound conversion result is played.
  • the technical solution of the present invention is to install a pressure sensing element in the paving, the pressure sensing element collects pressure data when the pavement is pressed, and the pressure data is specifically a pressure value, and will be collected each time.
  • the pressure data is transmitted to the cloud processing module, and the cloud processing module 20 generates a pressure-sound conversion result by collecting and analyzing the pressure data, and the pressure-sound conversion result is specifically a series of pressure values, and the The pressure-sound conversion result transmission is played to the terminal playing module.
  • the pressure data may be unintentionally generated when the human body walks, or may be generated when the human body intentionally moves on the pavement such as dancing or practicing yoga.
  • the technical solution of the invention has a very strong entertainment effect.
  • the invention provides an auxiliary motion system based on pavement, which aims to solve the problem that the friction of the pavement is too large when the human body moves or the object moves, and the friction of the pavement is too small when the object is fixed.
  • a pavement-based auxiliary motion system includes at least one pavement, a first magnetic module and a second magnetic module, and the first magnetic module is disposed on the paving
  • the second magnetic module is disposed on the external moving body, and the first magnetic module is opposite or identical to the magnetic pole of the second magnetic module.
  • the first magnetic module comprises an electromagnetic generator and/or a super magnet.
  • the second magnetic module comprises an electromagnetic generator and/or a super magnet.
  • the pavement-based auxiliary motion system further includes a pole converter electrically coupled to the electromagnetic generator to convert the magnetic poles of the electromagnetic generator.
  • the pavement comprises a bracket and a bearing plate
  • the bracket is disposed at a bottom of the bearing plate to support the bearing plate
  • the first magnetic module is disposed on the bracket and the bearing plate between.
  • the pavement comprises a plurality of brackets and a bearing plate
  • the first magnetic module comprises a plurality of electromagnetic generators and/or super-strong magnets, each of the electromagnetic generators or super-strong magnets It is disposed on each of the brackets.
  • the pavement-based auxiliary motion system comprises a plurality of pavements, the electromagnetic generators of the plurality of pavements being electrically connected in parallel or in series.
  • the auxiliary motion system of the pavement further includes a terminal device module, and the terminal device module is communicatively coupled to the electromagnetic generator to control the breaking and magnetic field strength of the electromagnetic generator.
  • the present invention also provides a pavement-based auxiliary motion method, which provides the pavement-based auxiliary motion system according to any of the above, comprising the steps of:
  • the pavement-based auxiliary motion method further comprises a step S4 of controlling the breaking and magnetic field strength of the plurality of first magnetic modules and/or the second magnetic modules by the terminal device module.
  • the external moving body of the technical solution of the present invention may be a human body or an object.
  • the technical solution of the present invention provides a first magnetic module in the paving and a second magnetic module on the external moving body. Since the first magnetic module is disposed in the paving, the paving material is laid on the ground or the wall surface, and the second magnetic module is disposed on the external moving body, according to the principle of “same-sex reciprocal attraction” of the magnetic substance, when When the magnetic poles of the first magnetic module and the second magnetic module are the same, and the external moving body is an object, the friction between the paving object and the object can be reduced even because the mutual repulsive action of the first magnetic module and the second magnetic module The object can be suspended on the paving object, so that the movement of the object is more convenient and convenient; when the external moving body is a human body, the paving can be reduced due to the mutual repulsion between the first magnetic module and the second magnetic module.
  • the friction between the object and the human body can even suspend the human body on the paving object, thereby providing the human body, especially the elderly and the patient, with the function of assisting walking, and having certain entertainment functions.
  • the object can be firmly fixed to the paving object due to mutual attraction of the first magnetic module and the second magnetic module, in particular, the paving set
  • FIG. 1 is a schematic diagram of a frame of an embodiment of a data collection and processing system based on a pavement according to the present invention
  • FIG. 2 is a schematic perspective view of a data acquisition module of the present invention
  • FIG. 3 is a schematic view showing the cooperation structure of the bracket and the magnetic sensor element and the weight sensing element of the present invention
  • FIG. 4 is a schematic diagram of a frame of another embodiment of a pavement-based data acquisition and processing system according to the present invention.
  • FIG. 5 is a flow chart of steps of an embodiment of a data collection and processing method based on a pavement according to the present invention
  • FIG. 6 is a schematic diagram of a frame of an embodiment of a sound collecting and playing system based on a pavement according to the present invention
  • FIG. 7 is a schematic perspective view of a sound collection module of the present invention.
  • Figure 8 is a schematic view showing the cooperation structure of the bracket and the pressure sensing element of the present invention.
  • FIG. 9 is a schematic diagram of a frame of another embodiment of a sound collecting and playing system based on a pavement according to the present invention.
  • FIG. 10 is a flow chart of steps of an embodiment of a method for sound collection and playback based on a pavement according to the present invention
  • FIG. 11 is a schematic view showing a fitting structure between a pavement and a pressure sensing element according to an embodiment of the pavement-based auxiliary motion system of the present invention
  • Figure 12 is a perspective view showing the structure of the stent of the present invention.
  • FIG. 13 is a schematic diagram of a frame between a terminal device module, a first magnetic module, and a second magnetic module according to the present invention
  • Figure 14 is a flow chart showing the steps of a pavement-based assisted motion method of the present invention.
  • the directional indication is only used to explain in a certain posture (as shown in the drawing)
  • the relative positional relationship between the components, the motion situation, and the like if the specific posture changes, the directional indication also changes accordingly.
  • first”, “second”, etc. in the embodiments of the present invention, the description of the "first”, “second”, etc. is used for the purpose of description only, and is not to be construed as an Its relative importance or implicit indication of the number of technical features indicated.
  • features defining “first” or “second” may include at least one of the features, either explicitly or implicitly.
  • the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of the technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. It is also within the scope of protection required by the present invention.
  • a pavement-based data acquisition and processing system includes at least one data acquisition module, a cloud processing module, and a terminal device module, a data acquisition module, a cloud processing module, and a terminal device module.
  • the data acquisition module includes at least one pavement and at least one pressure sensing element disposed on the pavement, the pressure sensing element collecting pressure data of the creature stepping on the pavement, The pressure data is transmitted to the cloud processing module, and the cloud processing module aggregates and analyzes the pressure data to obtain a data processing result, and transmits the data processing result to the terminal device module.
  • the present invention provides a pavement-based data collection and processing system 100, which includes at least one data acquisition module 10, a cloud processing module 20, and a terminal device module. 30.
  • the data collection module 10, the cloud processing module 20, and the terminal device module 30 are connected in communication, and the data collection module 10 includes at least one pavement 101 and at least one disposed on the pavement 101.
  • a magnetic sensor element 104 the magnetic sensor element 104 collects pressure data of a creature stepping on the pavement 101, and transmits the pressure data to the cloud processing module 20, the cloud processing module
  • the data processing result is obtained by collecting and analyzing the pressure data, and transmitting the data processing result to the terminal device module 30.
  • the communication connection referred to in the present invention includes a wireless communication connection, such as a WIFI communication connection, a Bluetooth communication connection, a cellular network communication connection, or a wired communication connection, such as an Internet communication connection, a LAN communication connection, and a Zigbee communication connection. Wait.
  • the pavement 101 referred to in the present invention includes, but is not limited to, ceramic tiles, natural stone such as marble, and synthetic flooring.
  • the organisms referred to in the present invention include, but are not limited to, humans, animals such as pets.
  • Magnetic sensor elements referred to in the present invention include, but are not limited to, magnetoresistive sensors.
  • a plurality of magnetoresistive sensors may be disposed on the same pavement 101, and the plurality of magnetoresistive sensors detect pressure values at different positions, and pressure values at a plurality of different position points form a pressure plane.
  • the data processing results include, but are not limited to, extracting unique pressure characteristics of the organism from the pressure data, summing the results of the daily steps, and plotting the daily and/or monthly weight gains.
  • the terminal device module 30 can be a mobile phone, a tablet computer, a notebook computer, or the like.
  • the terminal device module 30 can not only receive the data processing result, but also can request to view the pressure data and the data processing result in the cloud processing module 20 at the time and in the past.
  • the terminal device module 30 can control the sensing area and sensing time of the plurality of data acquisition modules 10 by controlling the magnetic sensor element 104 to be turned off. At the same time of energy saving, the effect of intelligent control is achieved.
  • the technical solution of the present invention adds a magnetic sensing element 104 in the pavement 101, and the magnetic sensing element 104 collects pressure data of a living creature, particularly a human body, which is stepped on the pavement 101, and various pressure points in the pressure data.
  • the collection constitutes a pressure plane that characterizes each biometric, and transmits the collected pressure data to the cloud processing module 20, and the cloud processing module 20 collects and analyzes the pressure data to obtain a biological body, particularly a human body.
  • Unique characteristics such as pace and walking posture, and then evaluate the health of the organism, especially the human body, and send the data processing result to the terminal equipment module 20, early warning, and preventive measures.
  • the system 100 can assign a non-designated creature or non-special when a non-designated creature or unauthorized creature is stepping on the pavement 101.
  • the pressure data of the authorized organism is compared with the pressure data of the cloud processing module, and the non-designated biological or unauthorized organism is identified to achieve the function of anti-theft, anti-thief and security warning.
  • the data acquisition module 101 further includes at least one weight sensing element 105 disposed on the pavement 101 and associated with the cloud processing module. 20 communication connection, the weight sensing element 105 collects weight data of the creature stepped on the pavement 101 and transmits the weight data to the cloud processing module 20.
  • the weight sensing element 105 collects weight data of the creature stepping on the pavement 101.
  • the weight data includes, but is not limited to, the weight of the creature and the number of steps on the pavement, and the weight sensing element 105 will collect the weight each time.
  • the data is transferred to the cloud processing module 20.
  • the cloud processing module 20 summarizes and analyzes the weight data, and the aggregation and analysis process includes, but is not limited to, summing the daily steps, and merging the daily and/or monthly weight into a line graph. It can be understood that other sensing elements such as temperature sensing elements, infrared sensing elements and the like can also be disposed on the pavement 101.
  • the temperature sensing element is configured to collect temperature data of the creature stepped on the pavement 101 and transmit the temperature data to the cloud processing module 20.
  • the infrared sensing element is configured to collect heat data of a creature stepped on the pavement 101 and transmit the heat data to the cloud processing module 20.
  • the cloud processing module 20 transmits the temperature data and the heat data to the terminal device module 30.
  • the pavement-based data acquisition and processing system 100 includes the plurality of data acquisition modules 10 described above, and the different data acquisition modules 10 are electrically connected in parallel or in series.
  • the plurality of data collection modules 10 are laid on the ground outside the room and the outside, and the pressure data and the weight data of different positions when the living body moves on the plurality of data collection modules 10 can be collected, and the pressure data of the same organism or different organisms is more widely used. Weight data.
  • the plurality of data acquisition modules 10 can also be laid on the wall surface, such as laying on the indoor and outdoor climbing wall surface, and can collect the weight data and pressure data of the user during rock climbing.
  • the pavement 101 includes at least one bracket 102 and a pedal 103, and the bracket 102 is disposed at the bottom of the pedal 103 to support the pedal 103, the magnetic transmission
  • the sensing element 104 and/or the weight sensing element 105 are disposed between the bracket 102 and the pedal 103.
  • the magnetic sensing element 104 and/or the weight sensing element 105 are specifically disposed on the bracket 102 for supporting the top of the pedal 103.
  • An accommodation space (not shown) for accommodating the magnetic sensor element 104 and/or the weight sensing element 105 is disposed in the bracket 102 and the pedal 103 at the contact position of the bracket 102 and the pedal 103. In order to facilitate the routing of the magnetic sensing element 104 and/or the weight sensing element 105.
  • the bracket 102 has a cylindrical shape, the bracket has a height of 15-25 mm, and the bracket has a cylinder diameter of 15-25 mm. Provides sufficient support without taking up space.
  • the same data acquisition module 10 includes one or more magnetic sensing elements 104, and includes one or more magnetic sensing elements 104, magnetic sensing elements 104 and magnetic sensing elements 104 of the same data acquisition module 10 Between the magnetic sensing element 104 and the weight sensing element 105, the weight sensing element 105 and the weight sensing element 105 are electrically connected in parallel or in series. When the weight sensing element 105 and the weight sensing element 105 are electrically connected in parallel between the magnetic sensing element 104 and the magnetic sensing element 104, between the magnetic sensing element 104 and the weight sensing element 105, The work between the respective magnetic sensor elements 104 and the weight sensing elements 105 does not affect each other. When one of the sensing elements fails, the other sensing elements can work normally.
  • the pavement-based data collection and processing system 100 further includes a local collection module 40, and the local collection module 40 communicates with the plurality of data collection modules 10 and the cloud processing module 20
  • the local collection module 40 collects the pressure data and the weight data collected by the plurality of data collection modules 10, and transmits the pressure data and the weight data to the cloud processing module 20.
  • the local collection module 40 can be a mobile phone, a tablet computer, a notebook computer, or the like.
  • the local collection module 40 can be combined with the terminal device module 30.
  • the local collection module 40 is the terminal device module 30.
  • the local collection module 40 can also exist independently of the terminal device module 30 without interfering with each other.
  • the local collection module 40 collects local pressure data and weight data in advance for the user to view in advance, and the user can decide whether to upload the pressure data and the weight data, or selectively upload part of the pressure data and weight data to the cloud processing module. 20.
  • the cloud processing module 20 includes an early warning unit (not shown).
  • the early warning unit sends the warning information to the Terminal processing module.
  • the warning unit sends the warning information to the terminal device module 20 to remind the user to pay attention to whether the body has a lesion. If the old person in the home accidentally falls, the weight sensing element 105 detects the weight abnormality on the pavement 101, and sends an early warning message to the terminal device module 20, the terminal device Module 20 holders such as elderly children or hospitals can take appropriate measures in a timely manner.
  • the pavement 101 can be laid on a glass walkway for sightseeing to detect the overall weight of the glass plank road visitor.
  • the warning unit sends an alert message to the terminal device module 20 to remind The scenic staff promptly stopped visitors from continuing to board the glass path.
  • the present invention also provides a pavement-based data collection and processing method 200, which provides the above-described pavement-based data collection and processing system 100, which includes the following steps:
  • the magnetic sensing element 104 collects pressure data of a creature stepping on the pavement 101, and the weight sensing element 105 collects weight data of a creature stepped on the pavement 101, and The pressure data and/or weight data is transmitted to the cloud processing module 20;
  • the cloud processing module 20 aggregates and analyzes the pressure data and/or the weight data to generate a data processing result.
  • the cloud processing module transmits the data processing result to the terminal device module.
  • the pavement 101 is integrated with the magnetic sensing element 104 and/or the weight sensing element 105, modularized, and the pavement 101 and the magnetic sensing element 104 and/or The weight sensing element 105 is installed at one time, which can reduce the use of materials such as cement and sand, and reduce the damage of the housing environment. At the same time, the effect of the quick disassembly data acquisition module 10 is achieved. Since the pavement-based data collection and processing method 200 employs the aforementioned pavement-based data acquisition and processing system 100, the pavement-based data acquisition and processing method 200 has a pavement-based data acquisition and processing system 100. All the benefits, no longer repeat them here.
  • the step S3 further includes a step S31: the local collection module collects the pressure data and the weight data collected by the plurality of data collection modules, and transmits the pressure data and the weight data to the cloud processing module.
  • the user can pre-view the pressure data and the weight data, determine whether to upload the pressure data and the weight data, or selectively upload the partial pressure data and the weight data to the cloud processing module 20.
  • the pavement-based data collection and processing method 200 further includes a step S51: when the cloud processing module 20 analyzes that the pressure data and/or the weight data is abnormal, the early warning unit sends the warning information to the The terminal processing module 30 is described. Therefore, the holder of the terminal processing module 30, that is, the user, takes measures in time.
  • the present invention provides a pavement-based sound collection and playback system 1001, which includes at least one sound collection module 101, a cloud processing module 201, and a terminal playback module. 301.
  • the data collection module 101, the cloud processing module 201, and the terminal playback module 301 are connected in communication.
  • the sound collection module 101 includes at least one pavement 1011 and at least one disposed on the pavement 1011.
  • the pressure sensing element 1041 collects pressure data when the pavement 1011 is pressed, and transmits the pressure data to the cloud processing module 201, the cloud processing module After the pressure data is summarized and analyzed, a pressure-sound conversion result is generated, and the pressure-sound conversion result is transmitted to the terminal playing module 301 for playing.
  • the communication connection referred to in the present invention includes a wireless communication connection, such as a WIFI communication connection, a Bluetooth communication connection, a cellular network communication connection, or a wired communication connection, such as an Internet communication connection, a LAN communication connection, and a Zigbee communication connection. Wait.
  • the pavements referred to in the present invention include, but are not limited to, ceramic tiles, natural stone materials such as marble, and synthetic flooring.
  • the sound collecting and playing system 1001 of the present invention is provided with a pressure sensing element 1041 in the pavement 1011, and the pressure sensing element 1041 collects pressure data when the pavement 1011 is pressed, and the pressure data is specifically a pressure value, and the pressure data collected each time is transmitted to the cloud processing module 201, and the cloud processing module 201 generates a pressure-sound conversion result by collecting and analyzing the pressure data, and the pressure-sound conversion result Specifically, it is a series of pressure values, and the pressure-sound conversion result is transmitted to the terminal playing module 301 for playing.
  • the pressure data may be unintentionally generated when the human body walks, or may be generated when the human body intentionally moves on the pavement such as dancing or practicing yoga.
  • the technical solution of the invention has a very strong entertainment effect.
  • each of the seven sets of pavements 1011 is grouped first, and each set of pavements 1011 is spaced apart or seven pavements 101 of the same set of pavements 101 are arranged. Random settings.
  • the seven pavements 1011 in a group respectively correspond to different scales, and the differences in scales are set by the pressure sensing element 104, such as different pressure values corresponding to different scales.
  • the compressed frequency detected by the pressure sensing element 104 forms a melody, and the timbre can be adjusted and transformed by the terminal playing module 30.
  • the pressure sensing element 1041 can serve as a load cell that collects weight data of a human body that is stepped on the pavement 1011, including but not limited to the weight of the human body and the stepping on the pavement.
  • the number of steps, etc., the load cell transmits the weight data collected each time to the cloud processing module 201.
  • the cloud processing module 201 summarizes and analyzes the weight data, and the aggregation and analysis process includes, but is not limited to, summing the daily steps, and merging the daily and/or monthly weight into a line graph.
  • the cloud processing module 201 can also view the weight data for the user to view. It can be understood that other sensing elements such as temperature sensing elements, infrared sensing elements and the like can also be disposed on the pavement 1011.
  • the pavement-based sound collection and playback system 1001 includes the plurality of sound collection modules 101 described above, and the different sound collection modules 101 are electrically connected in parallel or in series.
  • the plurality of sound collection modules 101 are laid on the ground outside the room, and the pressure data of different positions when the user walks on the plurality of sound collection modules 101 can be collected, and the pressure data of the same user or different users is used for the cloud.
  • the processing module 201 generates a richer variety of pressure-to-sound conversion results.
  • the paving object 1011 includes at least one bracket 1021 and a bearing plate 103.
  • the bracket 1021 is disposed at the bottom of the bearing plate 1031 to support the bearing plate 1031.
  • the pressure sensing element 1041 is disposed between the bracket 1021 and the bearing plate 1031.
  • the pressure sensing element 1041 is specifically disposed on the bracket 101 for supporting the top of the bearing plate 1031.
  • a receiving space (not shown) for accommodating the pressure sensing element 1041 is disposed in any one of the bracket 1021 and the bearing plate 1031 at a contact position of the bracket 1021 and the bearing plate 1031. The arrangement of the pressure sensing element 1041 is facilitated.
  • the paving material 1011 includes a plurality of brackets 1021 and a bearing plate 1031.
  • Each of the pressure sensing elements 1041 is disposed on each of the brackets 1021 to facilitate the pressure sensing element 1041 and the Disassembly and assembly between the brackets 1021.
  • the bracket 102 has a cylindrical shape, the bracket has a height of 15-25 mm, and the bracket has a cylinder diameter of 15-25 mm. Provides sufficient support without taking up space.
  • a pressure sensing element 1041 of the sound collecting module 101 and the pressure sensing element 1041 are electrically connected in parallel or in series.
  • the respective pressure sensing elements 1041 operate independently and do not affect each other.
  • one of the pressure sensing elements 1041 fails, other pressure sensing Element 1041 is capable of functioning properly.
  • the cloud-based sound collection and playback system 1001 further includes a terminal playing module 301, and the terminal playing module 301 is communicably connected to the cloud processing module 20, and the cloud processing module 201
  • the pressure-sound conversion result is transmitted to the terminal playing module 301 for the user to play.
  • the terminal playing module 301 can be a mobile phone, a tablet computer, a notebook computer, or the like.
  • the terminal playing module 301 can not only receive the pressure-sound conversion result, but also can request to view the pressure data and the pressure-sound conversion result in the cloud processing module 201 at the time and in the past.
  • the terminal playing module 301 can control the sensing area and the sensing time of the plurality of sound collecting modules 101 by controlling the breaking of the circuit of the pressure sensing element 1041. At the same time of energy saving, the effect of intelligent control is achieved.
  • the pavement-based data collection and processing system 1001 further includes a local collection module 401, and the local collection module 401 communicates with the plurality of sound collection modules 101 and the cloud processing module 201.
  • the local collection module 401 collects the pressure data collected by the plurality of sound collection modules 101 and transmits the pressure data to the cloud processing module 201.
  • the local collection module 401 can be a mobile phone, a tablet computer, a notebook computer, or the like.
  • the local collection module 401 can be combined with the terminal playback module 301, that is, the local collection module 401 is the terminal playback module 301; the local collection module 401 can also exist independently with the terminal playback module 301 without interfering with each other.
  • the local collection module 401 collects local pressure data in advance for the user to view in advance, and the user can decide whether to upload the pressure data or selectively upload part of the pressure data to the cloud processing module 201.
  • the present invention further provides a pavement-based sound collection and playback method 2001, which provides the pavement-based sound collection and playback system 1001 according to any of the above, comprising the following steps:
  • the pressure sensing element 1041 is disposed on a pavement 1011 to form a sound collection module 10;
  • the pressure sensing element 1041 collects pressure data stepped on the pavement 1011
  • the weight sensing element 1051 collects weight data of a human body stepped on the pavement 1011
  • the pressure data And/or the weight data is transmitted to the cloud processing module 201
  • the cloud processing module 201 summarizes and analyzes the pressure data and/or the weight data to generate a pressure-sound conversion result
  • the cloud processing module transmits the pressure-sound conversion result to the terminal playing module for the user to play.
  • the pavement 1011 is integrated with the pressure sensing element 1041 and modularized.
  • the paving object 1011 and the pressure sensing element 1041 are installed at one time while paving the paving material 1011, thereby reducing materials such as cement and sand. Use to reduce the damage of the housing environment.
  • the terminal playing module 301 can not only receive the pressure-sound conversion result, but also can request to view the pressure data, the weight data, and the pressure-sound conversion result in the cloud processing module 201 at the time and in the past. That is, the cloud processing module 201 and the terminal playing module 301 can implement a data interaction function.
  • the step S3 further includes a step S31: the local collection module collects the pressure data collected by the plurality of sound collection modules, and transmits the pressure data to the cloud processing module.
  • the user can check the pressure data in advance, decide whether to upload the pressure data, or selectively upload part of the pressure data to the cloud processing module 201.
  • the pavement-based sound collection and playback method 2001 further includes a step S5: the terminal device module 201 performs sound setting on the pressure-sound conversion result and then plays. The user can adjust the tone, pitch, beat, etc. of the pressure-sound conversion result at the terminal device module 201.
  • the present invention provides a pavement-based auxiliary motion system 1002, which includes at least one pavement 1012, a first magnetic module 1042, and a second magnetic body.
  • a module 1052 (see FIG. 3), the first magnetic module 1042 is disposed on the pavement 1012, the second magnetic module 1052 is disposed on an external moving body, and the first magnetic module 1042 and the first The magnetic poles of the two magnetic modules 1052 are opposite or identical.
  • the external moving body may be a human body or an object.
  • the technical solution of the present invention provides that the first magnetic module 1012 is disposed in the paving object 1012 while the second magnetic module 1052 is disposed on the external moving body, because the first magnetic module is disposed.
  • the pavement 1012 In the pavement 1012, the pavement 1012 is laid on the ground or the wall surface, and the second magnetic module 1052 is disposed on the external moving body.
  • the friction between the pavement 1012 and the object can be reduced because of the mutual repulsion between the first magnetic module 1042 and the second magnetic module 1052.
  • the object can be firmly fixed to the paving object 1012 due to the mutual attraction of the first magnetic module 1042 and the second magnetic module 1052, in particular
  • the pavement 101 is installed on a wall surface or an inclined ground, it is not necessary to add other fixing devices between the pavement 1012 and the object, and it is not necessary to damage the integrity of the wall surface and the ground and the fixing effect is good.
  • the first magnetic module 1042 includes an electromagnetic generator (not shown) and/or a super magnet (not shown).
  • One or more electromagnetic generators may be disposed on the one of the pavements 1012, or one or more super-strong magnets may be disposed on one of the pavements 1012.
  • the electromagnetic generator can generate two kinds of non-magnetic fields, S pole or N pole, and the direction of the magnetic field generated by the electromagnetic generator can be adjusted.
  • the second magnetic module 1052 includes an electromagnetic generator and/or a super magnet.
  • One or more electromagnetic generators may be disposed on the external moving body, or one or more super strong magnets may be disposed on the external moving body.
  • the electromagnetic generator can generate two kinds of non-magnetic fields, S pole or N pole, and the direction of the magnetic field generated by the electromagnetic generator can be adjusted.
  • the pavement-based auxiliary motion system 1002 further includes a pole converter (not shown) that is electrically coupled to the electromagnetic generator to convert the magnetic poles of the electromagnetic generator.
  • the magnetic pole converter is electrically connected to the electromagnetic generators of the first magnetic module 1042 and the second magnetic module 1052, and the magnetic pole converter can be configured to provide electromagnetics in the first magnetic module 1042 and the second magnetic module 1052. The direction of the magnetic field of the generator and the polarity of the magnetic field.
  • the paving 1012 includes at least one bracket 1022 and a bearing plate 1032.
  • the bracket 1022 is disposed at the bottom of the bearing plate 1032 to support the bearing plate 1032.
  • the first magnetic module 1042 is disposed between the bracket 1022 and the bearing plate 1032.
  • the first magnetic module 1042 is disposed between the bracket 1022 and the bearing plate 1032 to prevent damage to the first magnetic module 104 when the paving 1012 is laid.
  • the paving 1012 can include a plurality of brackets 1022 and a bearing plate 1032
  • the first magnetic module 1042 includes a plurality of electromagnetic generators and/or super magnets
  • each of the electromagnetic generations A super magnet or a super magnet is disposed on each of the brackets 1022.
  • the plurality of brackets 1022 can increase the supporting force on the bearing plate 1032 and strengthen the support stability of the bearing plate 1032.
  • each of the electromagnetic generators or super-strong magnets is disposed on each of the brackets 1022, and the installation space of the electromagnetic generator or the super-strong magnets can be increased.
  • the bracket 1022 is cylindrical, the height of the bracket is 15-25 mm, and the diameter of the bracket cylinder is 15-25 mm. Provides sufficient support without taking up space.
  • the height of the bracket is 20 mm, and the diameter of the bracket cylinder is 20 mm.
  • the pavement-based auxiliary motion system 1002 includes a plurality of pavements 1012, the electromagnetic generators of the plurality of pavements 1012 being electrically connected in parallel or in series.
  • the electromagnetic generator and the electromagnetic generator are electrically connected in parallel, the work between the respective electromagnetic generators does not affect each other.
  • the other electromagnetic generators can work normally.
  • the auxiliary motion system 1002 of the pavement further includes a terminal device module 102 , and the electromagnetic device and the second magnetic module 1052 in the first magnetic module 1042 .
  • the electromagnetic generator is in communication connection to control the breaking and magnetic field strength of the electromagnetic generator.
  • the terminal device module 102 can be a mobile phone, a tablet computer, a notebook computer, or the like.
  • the terminal device module 102 can control the breaking and magnetic field strength of the first magnetic module 1042 and the second magnetic module 1052, so that certain regions of the plurality of pavements 1012 can be set to form a specific magnetic sensing route, such as A straight line, a broken line or a curved magnetic line is formed for the external moving body to move along the specific magnetic sensing path.
  • the present invention also provides a pavement-based auxiliary motion method 2002, which provides the above-described pavement-based auxiliary motion system, which includes the following steps:
  • a second magnetic module 1052 opposite or identical to the magnetic pole of the first magnetic module is disposed on the external moving body.
  • the pavement 1012 is integrated with the first magnetic module 1042 and modularized.
  • the paving object 1012 and the first magnetic module 1042 are installed at one time while laying the paving material 1012, thereby reducing materials such as cement and sand.
  • the utility model can reduce the damage of the housing environment and achieve the effect of quickly disassembling the data collection module 102.
  • the two magnetic modules 1052 can be directly adsorbed on the external moving body.
  • the step S3 further includes a step S4 of controlling the breaking and magnetic field strength of the plurality of first magnetic modules and/or the second magnetic modules by the terminal device module 102.
  • the terminal device module 102 can control the breaking and magnetic field strength of the first magnetic module 1042 and the second magnetic module 1052, so that certain regions of the plurality of paving objects 1012 can be set to form a specific magnetic sensing route, such as A straight line, a broken line or a curved magnetic line can be formed for the external moving body to move along the specific magnetic sensing path.

Abstract

一种基于铺装物的数据采集处理系统,包括至少一数据采集模块(10)、云端处理模块(20)及终端设备模块(30),数据采集模块(10)、云端处理模块(20)及终端设备模块(30)两两之间通讯连接,数据采集模块(10)包括至少一铺装物(101)及设置于铺装物(101)上的至少一压力传感元件(104),压力传感元件(104)收集踩踏于铺装物(101)上生物的压力数据,并将压力数据传送至云端处理模块(20),云端处理模块(20)对压力数据汇总、分析后得到数据处理结果,并将数据处理结果传送给终端设备模块(30)。还公开了一种基于铺装物的数据采集处理方法,一种基于铺装物的声音采集播放方法,以及一种基于铺装物的辅助运动方法。

Description

一种基于铺装物的数据采集处理系统及方法 技术领域
本发明涉及大数据领域,特别涉及一种基于铺装物的声音采集播放系统及方法、基于铺装物的数据采集处理系统及方法、基于铺装物的辅助运动系统及方法。
背景技术
现有技术中,数据的采集均是有特定的测量产品来实现的,例如采集体重需要借助体重器进行称量,运动数据如步数则需要借助智能设备终端的重力传感器等进行计数。而这些测量产品尚未能与周边环境,例如铺设的地板、墙壁等结合来实现数据的测量与呈现。
现有技术中,旋律或者音乐需要通过乐器来产生,旋律或者音乐产生后,通过本地的声音播放设备进行播放。而这些旋律或者音乐的产生及播放尚未能与周边环境,例如铺设的地板、墙壁等结合来产生旋律或者音乐并进行播放。
现有技术中,铺装物如瓷砖、天然石材、人工合成地板等一般铺设于地面和/或墙面,对地面和/或墙面起支撑、装饰作用。人体在铺装物上运动或者物体在铺装物上移动时,由于铺装物与人体、物体之间存在摩擦力,严重阻碍物体移动速度及人体的运动。相反地,需要将物体固定时,铺装物与物体之间的摩擦力有时候又不足以提供足够大的稳定性。因此有必要对现有技术进行改进。
发明内容
根据第一方面:
本发明提出一种基于铺装物的数据采集处理系统,旨在解决现有技术中数据的采集尚未能与周边环境如铺设的地板、墙壁等结合来实现数据的测量与呈现的问题。
为实现上述目的,本发明提出的一种基于铺装物的数据采集处理系统,其包括至少一数据采集模块、云端处理模块及终端设备模块,所述数据采集模块、云端处理模块及终端设备模块两两之间通讯连接,所述数据采集模块包括至少一铺装物及设置于所述铺装物上的至少一磁传感元件,所述磁传感元件收集踩踏于所述铺装物上生物的压力数据,并将所述压力数据传送至所述云端处理模块,所述云端处理模块对所述压力数据汇总、分析后得到数据处理结果,并将所述数据处理结果传送给所述终端设备模块。
优选地,所述数据采集模块进一步包括至少一重量传感元件,所述 重量传感元件设置于所述铺装物上并与所述云端处理模块通讯连接,所述重量传感元件收集踩踏于所述铺装物上的生物的重量数据,并将所述重量数据传送至所述云端处理模块。
优选地,同一所述数据采集模块的磁传感元件与磁传感元件之间、所述磁传感元件与重量传感元件之间,所述重量传感元件与重量传感元件之间并联电连接或者串联电连接。
优选地,所述基于铺装物的数据采集处理系统包括多个数据采集模块,所述不同数据采集模块之间并联电连接或者串联电连接。
优选地,所述云端处理模块包括一预警单元,当所述云端处理模块分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块。
优选地,所述基于铺装物的数据采集处理系统还包括本地收集模块,所述本地收集模块与所述多个数据采集模块、云端处理模块均通讯连接,所述本地收集模块收集所述多个数据采集模块采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块。
优选地,所述铺装物包括支架及踩踏板,所述支架设置于所述踩踏板底部支撑所述踩踏板,所述磁传感元件和/或重量传感元件设置于所述支架与踩踏板之间。
为实现上述目的,本发明还提供一种基于铺装物的数据采集处理方法,其提供上述任一项所述的基于铺装物的数据采集处理系统,其包括如下步骤:
S1:将磁传感元件和/或重量传感元件设置于一铺装物上构成数据采集模块;
S2:将多个数据采集模块铺设于地面和/或墙面上并将多个数据采集模块电性连接;
S3:所述磁传感元件采集踩踏于所述铺装物上的生物的压力数据,所述重量传感元件采集踩踏于所述铺装物上的生物的重量数据,并将压力数据和/或重量数据传送至云端处理模块;
S4:云端处理模块对所述压力数据和/或重量数据进行汇总、分析后生成数据处理结果。
S5:所述云端处理模块将所述数据处理结果传送至终端设备模块。
优选地,所述步骤S3进一步包括步骤S31:本地收集模块收集所述多个数据采集模块采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块。
优选地,所述基于铺装物的数据采集处理方法进一步包括步骤S51:当所述云端处理模块分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块。
本发明技术方案通过在铺装物中加装包括磁传感元件在内的传感元件,该磁传感元件采集踩踏于铺装物的生物特别是人体的压力数据,该压力数据中的各个压力采集点集合构成表征每个生物特征的压力平面,并将每次采集到的压力数据传送到云端处理模块,所述云端处理模块通过将上述压力数据进行汇总、分析,从而得到生物特别是人体的步伐及走路姿势等独有特征,进而评估生物特别是人体身体的健康状况,并将数据处理结果发送至终端设备模块,提前预警,做好防治措施。又因为每个生物步伐、走路姿势形成的压力平面跟指纹一样具有唯一性,因此在非指定生物或者非授权生物踩踏于该铺装物上时,该系统能够将非指定生物或者非授权生物的压力数据与云端处理模块的压力数据进行比对,对非指定生物或者非授权生物进行识别,达到防盗防贼、安防预警的作用。
同时,该铺装物中还设置有重量感应元件,该重量感应元件采集踩踏于铺装物的生物的重量数据,该重量数据包括生物的体重及踩踏于铺装物上的步数等,并将每次采集到的重量数据传送到云端处理模块。云端处理模块对该重量数据进行汇总、分析,该汇总、分析过程包括但不限于对每日步数进行加总计算、将每日和/或每月的体重汇成折线图。终端设备模块与所述云端处理模块通讯连接可进行数据交互,云端处理模块能够将所述数据处理结果传送至所述终端设备模块供用户查看,终端设备模块也能够随时随地发出请求查看当时及过往云端处理模块中压力数据、体重数据及数据处理结果。
根据第二方面:
本发明提出一种基于铺装物的声音采集播放系统,旨在解决旋律或者音乐的产生及播放尚未能与周边环境,例如铺设的地板、墙壁等结合来产生旋律或者音乐并进行播放的问题。
为实现上述目的,本发明提出的一种基于铺装物的声音采集播放系统,其包括至少一声音采集模块、云端处理模块及终端播放模块,所述数据采集模块、云端处理模块及终端播放模块两两之间通讯连接,所述声音采集模块包括至少一铺装物及设置于所述铺装物上的至少一压力传感元件,所述压力传感元件收集所述铺装物受压时的压力数据,并将所述压力数据传送至所述云端处理模块,所述所述云端处理模块对所述压力数据汇总、分析后生成一压力-声音转化结果,并将所述压力-声音转化结果传动给所述终端播放模块进行播放。
优选地,一所述声音采集模块包括多个压力传感元件,所述压力传感元件与压力传感元件之间并联电连接或者串联电连接。
优选地,所述基于铺装物的声音采集播放系统包括多个声音采集模块,所述多个声音采集模块之间并联电连接或者串联电连接。
优选地,所述基于铺装物的声音采集播放系统还包括本地收集模块,所述本地收集模块与所述多个声音采集模块及云端处理模块均通讯连接,所述本地收集模块收集所述多个声音采集模块采集到的压力数据,并将所述压力数据传集中送至所述云端处理模块或者直接对所述压力数据进行声音播放。
优选地,所述铺装物包括至少一支架及一承压板,所述支架设置于所述承压板底部支撑所述承压板,所述压力传感元件设置于所述支架与承压板之间。
优选地,所述铺装物包括多个支架及一承压板,每一所述压力传感元件设置于每一所述支架上。
优选地,所述支架为圆柱状,所述支架高度为15-25mm,所述支架圆柱直径为15-25mm。
为实现上述目的,本发明还提供一种基于铺装物的声音采集播放方法,其提供一种如上述任一项所述的基于铺装物的声音采集播放系统,其包括如下步骤:
S1:将压力传感元件设置于一铺装物上构成声音采集模块;
S2:将多个声音采集模块铺设于地面和/或墙面上并将多个声音采集模块电性连接;
S3:所述压力传感元件采集所述铺装物受压时的压力数据,并将压力数据传送至云端处理模块,云端处理模块对所述压力数据进行汇总、分析后生成压力-声音转化结果;
S4:所述云端处理模块将所述压力-声音转化结果传送至终端播放模块供用户播放。
优选地,本地收集模块收集所述多个声音采集模块采集到的压力数据,并将所述压力数据传送至所述云端处理模块或者直接对所述压力数据进行声音播放。
优选地,所述基于铺装物的声音采集播放方法进一步包括步骤S5:所述终端设备模块对所述压力-声音转化结果进行声音设置后进行播放。
本发明的技术方案通过在铺装物中装设压力传感元件,该压力传感元件采集铺装物受压时的压力数据,该压力数据具体为一压力值,并将每次采集到的压力数据传送到云端处理模块,所述云端处理模块20通过将上述压力数据进行汇总、分析后生成一压力-声音转化结果,该压力-声音转化结果具体为一系列的压力值,并将所述压力-声音转化结果传动给所述终端播放模块进行播放。所述压力数据可以是人体走路时无意产生的,也可以是人体特意在所述铺装物上动作如跳舞、练瑜伽时产生的。发明的技术方案具有非常强的娱乐效果。
根据第三方面:
本发明提出一种基于铺装物的辅助运动系统,旨在解决人体运动或者物体移动时铺装物摩擦力过大及物体固定时铺装物摩擦力过小的问题。
为实现上述目的,本发明提出的一种基于铺装物的辅助运动系统,其包括至少一铺装物、第一磁性模块及第二磁性模块,所述第一磁性模块设置于所述铺装物上,所述第二磁性模块设置于外部运动体上,所述第一磁性模块与所述第二磁性模块磁极相反或者相同。
优选地,所述第一磁性模块包括电磁发生器和/或超强磁铁。
优选地,所述第二磁性模块包括电磁发生器和/或超强磁铁。
优选地,所述基于铺装物的辅助运动系统还包括磁极转换器,所述磁极转换器与所述电磁发生器电连接以转换所述电磁发生器的磁极。
优选地,所述铺装物包括一支架及一承压板,所述支架设置于所述承压板底部支撑所述承压板,所述第一磁性模块设置于所述支架与承压板之间。
优选地,所述铺装物包括多个支架及一承压板,所述第一磁性模块包括多个电磁发生器和/或超强磁铁,所述每一所述电磁发生器或超强磁铁设置于每一所述支架上。
优选地,所述基于铺装物的辅助运动系统包括多个铺装物,所述多个铺装物中的电磁发生器并联电连接或者串联电连接。
优选地,所述铺装物的辅助运动系统还包括终端设备模块,所述终端设备模块与所述电磁发生器通讯连接以控制所述电磁发生器的开断及磁场强度。
为实现上述目的,本发明还提供一种基于铺装物的辅助运动方法,其提供一种上述任一项所述的基于铺装物的辅助运动系统,其包括如下步骤:
S1:将第一磁性模块设置于铺装物上;
S2:将设置有第一磁性模块的铺装物铺设于地面和/或墙面上;
S3:在外部运动体上设置与所述第一磁性模块磁极相反或者相同的第二磁性模块。
优选地,所述基于铺装物的辅助运动方法进一步包括步骤S4:通过终端设备模块控制所述多个第一磁性模块和/或第二磁性模块的的开断及磁场强度。
本发明技术方案的外部运动体可以是人体也可以是物体,本发明技术方案通过在铺装物中设置第一磁性模块,同时在外部运动体上设置第二磁性模块。由于第一磁性模块设置于铺装物中,铺装物铺设于地面或者墙面上,而第二磁性模块设置于外部运动体上,根据磁性物质“同性 相斥异性相吸”的原理,当第一磁性模块与第二磁性模块的磁极相同,而外部运动体是物体时,因为第一磁性模块与第二磁性模块的相互排斥作用,可以减小铺装物与物体之间的摩擦力甚至可以将物体悬浮于所述铺装物上,从而使物体的移动更为轻松便捷;当外部运动体为人体时,由于第一磁性模块与第二磁性模块的相互排斥作用,可以减小铺装物与人体之间的摩擦力甚至可以将人体悬浮于所述铺装物上,从而给人体特别是老年人及病人提供辅助行走的功能,同时具有一定的娱乐功能。当第一磁性模块与第二磁性模块的磁极相反时,由于第一磁性模块与第二磁性模块的相互吸引作用,可以将物体牢牢固定于该铺装物上,特别是该铺装物设置于墙面或者倾斜的地面时,不用在铺装物与物体之间增加其他固定装置,无需损坏墙面及地面的完整性且固定效果良好。
附图说明
图1为本发明基于铺装物的数据采集处理系统一实施例的框架示意图;
图2为本发明数据采集模块的立体结构示意图;
图3为本发明支架与磁传感元件、重量传感元件的配合结构示意图;
图4为本发明基于铺装物的数据采集处理系统另一实施例的框架示意图;
图5为本发明基于铺装物的数据采集处理方法一实施例的步骤流程图;
图6为本发明基于铺装物的声音采集播放系统一实施例的框架示意图;
图7为本发明声音采集模块的立体结构示意图;
图8为本发明支架与压力传感元件的配合结构示意图;
图9为本发明基于铺装物的声音采集播放系统另一实施例的框架示意图;
图10为本发明基于铺装物的声音采集播放方法一实施例的步骤流程图;
图11为本发明基于铺装物的辅助运动系统一实施例的铺装物与压力传感元件之间的配合结构示意图;
图12为本发明支架的立体结构示意图;
图13为本发明终端设备模块与第一磁性模块、第二磁性模块之间的框架示意图;
图14本发明的一种基于铺装物的辅助运动方法的步骤流程图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案 进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明,若本发明实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本发明实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
实施例1:
在本发明实施例中,本发明提出的一种基于铺装物的数据采集处理系统,包括至少一数据采集模块、云端处理模块及终端设备模块,数据采集模块、云端处理模块及终端设备模块两两之间通讯连接,数据采集模块包括至少一铺装物及设置于所述铺装物上的至少一压力传感元件,压力传感元件收集踩踏于所述铺装物上生物的压力数据,并将压力数据传送至所述云端处理模块,云端处理模块对压力数据汇总、分析后得到数据处理结果,并将数据处理结果传送给终端设备模块。
实施例2:
在本发明实施例中,请一并参阅图1-3,本发明提出的一种基于铺装物的数据采集处理系统100,其包括至少一数据采集模块10、云端处理模块20及终端设备模块30,所述数据采集模块10、云端处理模块20及终端设备模块30两两之间通讯连接,所述数据采集模块10包括至少一铺装物101及设置于所述铺装物101上的至少一磁传感元件104,所述磁传感元104件收集踩踏于所述铺装物101上生物的压力数据,并将所述压力数据传送至所述云端处理模块20,所述云端处理模块20对所述压力数据汇总、分析后得到数据处理结果,并将所述数据处理结果传送给所述终端设备模块30。
具体地,本发明所称的通讯连接既包括无线通讯连接,如WIFI通讯连接、蓝牙通讯连接、蜂窝网络通讯连接等,也可为有线通讯连接,如互联网通讯连接、局域网通讯连接、Zigbee通讯连接等。本发明所称的 铺装物101包括但不限于瓷砖、天然石材如大理石、人工合成地板。本发明所称生物包括但不限于人类、动物如宠物。本发明所称磁传感器元件包括但不限于磁阻传感器。可以通过在同一铺装物101布设多个磁阻传感器,多个磁阻传感器检测不同位置点的压力值,多个不同位置点的压力值形成压力平面。
所述数据处理结果包括但不限于从压力数据中提取生物的独有的压力特征,对每日步数进行加总计算得到的结果、对每日和/或每月的体重汇成的折线图。所述终端设备模块30可为手机、平板电脑、笔记本电脑等。所述终端设备模块30不仅可以接收所述数据处理结果,还可以随时随地发出请求查看当时及过往云端处理模块20中压力数据及数据处理结果。同时,该终端设备模块30可以通过控制磁传感元件104开断来控制多个数据采集模块10的感应区域及感应时间。节能的同时,达到了智能化控制的效果。
本发明技术方案通过在铺装物101中加装包括磁传感元件104,该磁传感元件104采集踩踏于铺装物101的生物特别是人体的压力数据,该压力数据中的各个压力点集合构成表征每个生物特征的压力平面,并将每次采集到的压力数据传送到云端处理模块20,所述云端处理模块20通过将上述压力数据进行汇总、分析,从而得到生物特别是人体的步伐及走路姿势等独有特征,进而评估生物特别是人体身体的健康状况,并将数据处理结果发送至终端设备模块20,提前预警,做好防治措施。又,因为每个生物步伐、走路姿势形成的压力平面跟指纹一样具有唯一性,因此在非指定生物或者非授权生物踩踏于该铺装,101上时,该系统100能够将非指定生物或者非授权生物的压力数据与云端处理模块的压力数据进行比对,对非指定生物或者非授权生物进行识别,达到防盗防贼、安防预警的作用。
具体地,请一并参阅2-3,所述数据采集模101进一步包括至少一重量传感元件105,所述重量传感元件105设置于所述铺装物101上并与所述云端处理模块20通讯连接,所述重量传感元件105收集踩踏于所述铺装物101上的生物的重量数据,并将所述重量数据传送至所述云端处理模块20。
该重量感应元件105采集踩踏于铺装物101的生物的重量数据,该重量数据包括但不限于生物的体重及踩踏于铺装物上的步数,重量感应元件105将每次采集到的重量数据传送到云端处理模块20。云端处理模块20对该重量数据进行汇总、分析,该汇总、分析过程包括但不限于对每日步数进行加总计算、将每日和/或每月的体重汇成折线图。可以理解,该铺装物101上还可以设置其他传感元件,如温度传感元件、红外传感元件等。所述温度传感元件用于采集踩踏于所述铺装物101上的生 物的温度数据,并将所述温度数据传送至所述云端处理模块20。所述红外传感元件用于采集踩踏于所述铺装物101上的生物的热量数据,并将所述热量数据传送至所述云端处理模块20。所述云端处理模块20再将所述温度数据、热量数据传送到终端设备模块30。
具体地,所述基于铺装物的数据采集处理系统100包括上述的多个数据采集模块10,所述不同数据采集模块10之间并联电连接或者串联电连接。将该多个数据采集模块10铺设于室内外的地面,可以采集生物在多个数据采集模块10上行走时不同位置的压力数据及重量数据,以更广泛的同一生物或者不同生物的压力数据及重量数据。同时,该多个数据采集模块10也可以铺设于墙面上,如铺设于室内外攀岩用墙面上,可以对攀岩时用户的重量数据及压力数据进行采集。
具体地,请再次参阅图2-3,所述铺装物101包括至少一支架102及踩踏板103,所述支架102设置于所述踩踏板103底部支撑所述踩踏板103,所述磁传感元件104和/或重量传感元件105设置于所述支架102与踩踏板103之间。该所述磁传感元件104和/或重量传感元件105具体设置于所述支架102用于支撑踩踏板103的顶部。在所述支架102及踩踏板103的接触位置处于所述支架102及踩踏板103中开设有用于容置该磁传感元件104和/或重量传感元件105的容置空间(图未标示),以便于磁传感元件104和/或重量传感元件105的布设。
具体地,所述支架102为圆柱状,所述支架高度为15-25mm,所述支架圆柱直径为15-25mm。在不占用空间的同时提供足够大的支撑力。
同一个数据采集模块10包括一个或者一个以上的磁传感元件104,及包括一个或者一个以上的磁传感元件104,同一所述数据采集模块10的磁传感元件104与磁传感元件104之间、所述磁传感元件104与重量传感元件105之间,所述重量传感元件105与重量传感元件105之间并联电连接或者串联电连接。当磁传感元件104与磁传感元件104之间、所述磁传感元件104与重量传感元件105之间,所述重量传感元件105与重量传感元件105之间并联电连接时,各个磁传感元件104、重量传感元件105之间的工作互不影响,当其中一传感元件出现故障时,其他传感元件能够正常工作。
具体地,请参阅图4,所述基于铺装物的数据采集处理系统100还包括本地收集模块40,所述本地收集模块40与所述多个数据采集模块10、云端处理模20块均通讯连接,所述本地收集模块40收集所述多个数据采集模块10采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块20。所述本地收集模块40可为手机、平板电脑、笔记本电脑等。该本地收集模块40可与终端设备模块30合二为一,即本地收集模块40就是终端设备模块30;该本地收集模块40 可与终端设备模块30也可独立存在,互不干扰。所述本地收集模块40预先收集本地的压力数据及重量数据,供用户预先查看,用户可以决定是否将该压力数据及重量数据、或者有选择性的将部分压力数据及重量数据上传至云端处理模块20。
具体地,所述云端处理模块20包括一预警单元(图未标示),当所述云端处理模块20分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块。例如,当磁传感器元件104检测到今日用户的步伐后者走路姿势与往日不同,导致产生的压力平面不同时,则预警单元发送预警信息给终端设备模块20,提醒用于用户注意是否身体发生病变,提前做好防治措施;再如,当家中有老人不慎摔倒时,重量传感元件105检测到该铺装物101上的重量异常,则发送预警信息给终端设备模块20,该终端设备模块20持有者如老人子女或者医院能及时采取相应措施。再如,该铺装物101可以铺设于观光用的玻璃栈道上,用于检测玻璃栈道游客的总体重量,当总体重量超过预设值时,则预警单元发送预警信息给终端设备模块20,提醒景区工作人员及时制止游客继续登上该玻璃栈道。
请参阅图5,本发明还提供一种基于铺装物的数据采集处理方法200,其提供上述所述的基于铺装物的数据采集处理系统100,其包括如下步骤:
S1:将磁传感元件104和/或重量传感元件105设置于一铺装物101上构成数据采集模块10;
S2:将多个数据采集模块10铺设于地面和/或墙面上并将多个数据采集模块10电性连接;
S3:所述磁传感元件104采集踩踏于所述铺装物101上的生物的压力数据,所述重量传感元件105采集踩踏于所述铺装物101上的生物的重量数据,并将压力数据和/或重量数据传送至云端处理模块20;
S4:云端处理模块20对所述压力数据和/或重量数据进行汇总、分析后生成数据处理结果。
S5:所述云端处理模块将所述数据处理结果传送至终端设备模块。
将铺装物101与磁传感元件104和/或重量传感元件105一体化、模块化生产,在铺贴铺装物101的同时,将铺装物101与磁传感元件104和/或重量传感元件105一次性安装,可以减少水泥,沙等材料的使用,减少房屋环境的破坏。同时达到快速拆装数据采集模块10的效果。由于该基于铺装物的数据采集处理方法200采用了前述基于铺装物的数据采集处理系统100,故该基于铺装物的数据采集处理方法200具有基于铺装物的数据采集处理系统100的一切有益效果,在此不再赘述。
具体地,所述步骤S3进一步包括步骤S31:本地收集模块收集所述 多个数据采集模块采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块。用户可以预先查看压力数据及重量数据,决定是否将该压力数据及重量数据、或者有选择性的将部分压力数据及重量数据上传至云端处理模块20。
具体地,所述基于铺装物的数据采集处理方法200进一步包括步骤S51:当所述云端处理模块20分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块30。以便终端处理模块30的持有者即用户及时采取措施。
实施例3:
在本发明实施例中,请一并参阅图6-8,本发明提出的一种基于铺装物的声音采集播放系统1001,其包括至少一声音采集模块101、云端处理模块201及终端播放模块301,所述数据采集模块101、云端处理模块201及终端播放模块301两两之间通讯连接,所述声音采集模块101包括至少一铺装物1011及设置于所述铺装物1011上的至少一压力传感元件1041,所述压力传感元件1041收集所述铺装物1011受压时的压力数据,并将所述压力数据传送至所述云端处理模块201,所述所述云端处理模块201对所述压力数据汇总、分析后生成一压力-声音转化结果,并将所述压力-声音转化结果传动给所述终端播放模块301进行播放。
具体地,本发明所称的通讯连接既包括无线通讯连接,如WIFI通讯连接、蓝牙通讯连接、蜂窝网络通讯连接等,也可为有线通讯连接,如互联网通讯连接、局域网通讯连接、Zigbee通讯连接等。本发明所称的铺装物包括但不限于瓷砖、天然石材如大理石、人工合成地板。
本发明基于铺装物的声音采集播放系统1001通过在铺装物1011中装设压力传感元件1041,该压力传感元件1041采集铺装物1011受压时的压力数据,该压力数据具体为一压力值,并将每次采集到的压力数据传送到云端处理模块201,所述云端处理模块201通过将上述压力数据进行汇总、分析后生成一压力-声音转化结果,该压力-声音转化结果具体为一系列的压力值,并将所述压力-声音转化结果传动给所述终端播放模块301进行播放。所述压力数据可以是人体走路时无意产生的,也可以是人体特意在所述铺装物上动作如跳舞、练瑜伽时产生的。发明的技术方案具有非常强的娱乐效果。
具体地,在铺设该铺装物1011时,先对铺装物1011每七个一组进行分组,每组铺装物1011之间间隔设置或者同组铺装物101的七个铺装物101随机设置。一组中的七个铺装物1011分别对应不同的音阶,而音阶的不同则由压力传感元件104进行设定,如不同的压力值对应不同的音阶。而压力传感元件104检测到的受压频率则形成旋律,音色则可以通过终端播放模块30进行调节变换。
同时,该压力传感元件1041可以作为一称重传感器,该称重传感器采集踩踏于铺装物1011的人体的重量数据,该重量数据包括但不限于人体的体重及踩踏于铺装物上的步数等,称重传感器将每次采集到的重量数据传送到云端处理模块201。云端处理模块201对该重量数据进行汇总、分析,该汇总、分析过程包括但不限于对每日步数进行加总计算、将每日和/或每月的体重汇成折线图。云端处理模块201也可以将该重量数据供用户查看。可以理解,该铺装物1011上还可以设置其他传感元件,如温度传感元件、红外传感元件等。
具体地,所述基于铺装物的声音采集播放系统1001包括上述的多个声音采集模块101,所述不同声音采集模块101之间并联电连接或者串联电连接。将该多个声音采集模块101铺设于室内外的地面,可以采集用户在多个声音采集模块101上行走时不同位置的压力数据,以更广泛的同一用户或者不同用户的压力数据,以供云端处理模块201生成更丰富多样的压力-声音转化结果。
具体地,请一并参阅图7-8,所述铺装物1011包括至少一支架1021及一承压板103,所述支架1021设置于所述承压板1031底部支撑所述承压板1031,所述压力传感元件1041设置于所述支架1021与承压板之间1031。该所述压力传感元件1041具体设置于所述支架101用于支撑承压板1031的顶部。在所述支架1021及承压板1031的接触位置处,在所述支架1021及承压板1031任一者中开设有用于容置该压力传感元件1041的容置空间(图未标示),以便于压力传感元件1041的布设。优选地,所述铺装物1011包括多个支架1021及一承压板1031,每一所述压力传感元1041件设置于每一所述支架1021上,更便于压力传感元1041与所述支架1021之间的拆装。
具体地,所述支架102为圆柱状,所述支架高度为15-25mm,所述支架圆柱直径为15-25mm。在不占用空间的同时提供足够大的支撑力。
同一个声音采集模块101包括多个压力传感元件1041时,一所述声音采集模块101的压力传感元件1041与压力传感元件1041之间并联电连接或者串联电连接。当压力传感元件1041与压力传感元件1041之间并联电连接时,各个压力传感元件1041之间独立工作、互不影响,当其中一压力传感元件1041出现故障时,其他压力传感元件1041能够正常工作。
具体地,请参阅图6,所述基于铺装物的声音采集播放系统1001还包括一终端播放模块301,终端播放模块301与所述云端处理模块20通讯连接,所述云端处理模块201将所述压力-声音转化结果传送至所述终端播放模块301供用户播放。所述终端播放模块301可为手机、平板电脑、笔记本电脑等。所述终端播放模块301不仅可以接收所述压力-声音 转化结果,还可以随时随地发出请求查看当时及过往云端处理模块201中压力数据及压力-声音转化结果。同时,该终端播放模块301可以通过控制压力传感元件1041电路的开断来控制多个声音采集模块101的感应区域及感应时间。节能的同时,达到了智能化控制的效果。
具体地,请参阅图9,所述基于铺装物的数据采集处理系1001还包括本地收集模块401,所述本地收集模块401与所述多个声音采集模块101、云端处理模201块均通讯连接,所述本地收集模块401收集所述多个声音采集模块101采集到的压力数据,并将所述压力数据传送至所述云端处理模块201。所述本地收集模块401可为手机、平板电脑、笔记本电脑等。该本地收集模块401可与终端播放模块301合二为一,即本地收集模块401就是终端播放模块301;该本地收集模块401可与终端播放模块301也可独立存在,互不干扰。所述本地收集模块401预先收集本地的压力数据,供用户预先查看,用户可以决定是否将该压力数据、或者有选择性的将部分压力数据上传至云端处理模块201。
请参阅图10,本发明还提供一种基于铺装物的声音采集播放方法2001,其提供上述任一项所述的基于铺装物的声音采集播放系统1001,其包括如下步骤:
S1:将压力传感元件1041设置于一铺装物1011上构成声音采集模块10;
S2:将多个声音采集模块101铺设于地面和/或墙面上并将多个声音采集模块101电性连接;
S3:所述压力传感元件1041采集踩踏于所述铺装物1011上的压力数据,所述重量传感元件1051采集踩踏于所述铺装物1011上的人体的重量数据,并将压力数据和/或重量数据传送至云端处理模块201,云端处理模块201对所述压力数据和/或重量数据进行汇总、分析后生成压力-声音转化结果;
S4:所述云端处理模块将所述压力-声音转化结果传送至终端播放模块供用户播放。
将铺装物1011与压力传感元件1041一体化、模块化生产,在铺贴铺装物1011的同时,将铺装物1011与压力传感元件1041一次性安装,可以减少水泥,沙等材料的使用,减少房屋环境的破坏。同时达到快速拆装声音采集模块101的效果。所述终端播放模块301不仅可以接收所述压力-声音转化结果,还可以随时随地发出请求查看当时及过往云端处理模块201中压力数据、体重数据及压力-声音转化结果。也即云端处理模块201与终端播放模块301可以实现数据交互功能。
具体地,所述步骤S3进一步包括步骤S31:本地收集模块收集所述多个声音采集模块采集到的压力数据,并将所述压力数据传送至所述云 端处理模块。用户可以预先查看压力数据,决定是否将该压力数据、或者有选择性的将部分压力数据上传至云端处理模块201。
具体地,所述基于铺装物的声音采集播放方法2001进一步包括步骤S5:所述终端设备模块201对所述压力-声音转化结果进行声音设置后进行播放。用户可以在终端设备模块201对该压力-声音转化结果的音色、音调、节拍等进行调节。
实施例4:
在本发明实施例中,请一并参阅图11-13,本发明提出的一种基于铺装物的辅助运动系统1002,其包括至少一铺装物1012、第一磁性模块1042及第二磁性模块1052(见图3),所述第一磁性模块1042设置于所述铺装物1012上,所述第二磁性模块1052设置于外部运动体上,所述第一磁性模块1042与所述第二磁性模块1052磁极相反或者相同。
所述外部运动体可以是人体也可以是物体,本发明技术方案通过在铺装物1012中设置第一磁性模块1012,同时在外部运动体上设置第二磁性模块1052,由于第一磁性模块设置于铺装物1012中,铺装物1012铺设于地面或者墙面上,而第二磁性模块1052设置于外部运动体上,根据磁性物质“同性相斥异性相吸”的原理,当第一磁性模块与第二磁性模块1052的磁极相同,而外部运动体是物体时,因为第一磁性模块1042与第二磁性模块1052的相互排斥作用,可以减小铺装物1012与物体之间的摩擦力甚至可以将物体悬浮于所述铺装物1012上,从而使物体的移动更为轻松便捷;当外部运动体为人体时,由于第一磁性模块1042与第二磁性模块1052的相互排斥作用,可以减小铺装物1012与人体之间的摩擦力甚至可以将人体悬浮于所述铺装物1012上,从而给人体特别是老年人及病人提供辅助行走的功能,同时具有一定的娱乐功能。当第一磁性模块1042与第二磁性模块1052的磁极相反时,由于第一磁性模块1042与第二磁性模块1052的相互吸引作用,可以将物体牢牢固定于该铺装物1012上,特别是该铺装物101设置于墙面或者倾斜的地面时,不用在铺装物1012与物体之间增加其他固定装置,无需损坏墙面及地面的完整性且固定效果良好。
具体地,所述第一磁性模块1042包括电磁发生器(图未标示)和/或超强磁铁(图未标示)。所述一铺装物1012上可以设置一个及一个以上的电磁发生器,或者一铺装物1012上可以设置一个及一个以上的超强磁铁。电磁发生器能产生S极或N极两种不磁场,且电磁发生器产生的磁场方向可以调整。
具体地,所述第二磁性模块1052包括电磁发生器和/或超强磁铁。所述外部运动体上可以设置一个及一个以上的电磁发生器,或者外部运动体上可以设置一个及一个以上的超强磁铁。电磁发生器能产生S极或 N极两种不磁场,且电磁发生器产生的磁场方向可以调整。
具体地,所述基于铺装物的辅助运动系统1002还包括磁极转换器(图未标示),所述磁极转换器与所述电磁发生器电连接以转换所述电磁发生器的磁极。所述磁极转换器与所述第一磁性模块1042及第二磁性模块1052中的电磁发生器电性连接,该磁极转换器可以设置所述第一磁性模块1042及第二磁性模块1052中的电磁发生器的磁场方向及磁场极性。
具体地,请再次参阅图11-12,所述铺装物1012包括至少一支架1022及一承压板1032,所述支架1022设置于所述承压板1032底部支撑所述承压板1032,所述第一磁性模块1042设置于所述支架1022与承压板1032之间。所述第一磁性模块1042设置于所述支架1022与承压板1032之间,可以防止铺设该铺装物1012时对第一磁性模块104造成损害。
可以理解,所述铺装物1012可以包括多个支架1022及一承压板1032,所述第一磁性模块1042包括多个电磁发生器和/或超强磁铁,所述每一所述电磁发生器或超强磁铁设置于每一所述支架1022上。多个支架1022可以增加对承压板1032支撑力度,加强对承压板1032的支撑稳固性。同时每一所述电磁发生器或超强磁铁设置于每一所述支架1022上,可以增加电磁发生器或超强磁铁的布设空间。
具体地,所述支架1022为圆柱状,所述支架高度为15-25mm,所述支架圆柱直径为15-25mm。在不占用空间的同时提供足够大的支撑力。优选地,所述支架高度为20mm,所述支架圆柱直径为20mm
具体地,所述基于铺装物的辅助运动系统1002包括多个铺装物1012,所述多个铺装物1012中的电磁发生器并联电连接或者串联电连接。当电磁发生器与电磁发生器之间并联电连接时,各个电磁发生器之间的工作互不影响,当其中一电磁发生器出现故障时,其他电磁发生器能够正常工作。
具体地,请参阅图13,所述铺装物的辅助运动系统1002还包括终端设备模块102,所述终端设备模块102与所述第一磁性模块1042中的电磁发生器及第二磁性模块1052中的电磁发生器通讯连接以控制所述电磁发生器的开断及磁场强度。所述终端设备模块102可为手机、平板电脑、笔记本电脑等。通过该终端设备模块102可以控制该第一磁性模块1042与第二磁性模块1052的开断及磁场强度,从而可以设置由多个铺装物1012的某些区域形成特定的磁感路线,如可以形成直线、折线或者曲线磁感路线供外部运动体沿该特定磁感路线移动。
请参阅图14,本发明还提供一种基于铺装物的辅助运动方法2002,其提供一种上述的基于铺装物的辅助运动系统,其包括如下步骤:
S1:将第一磁性模块设置于铺装物上;
S2:将设置有第一磁性模块的铺装物铺设于地面和/或墙面上;
S3:在外部运动体上设置与所述第一磁性模块磁极相反或者相同的第二磁性模块1052。将铺装物1012与第一磁性模块1042一体化、模块化生产,在铺设铺装物1012的同时,将铺装物1012与第一磁性模块1042一次性安装,可以减少水泥,沙等材料的使用,减少房屋环境的破坏,同时达到快速拆装数据采集模块102的效果。当外部运动体为铁磁性物质时,该二磁性模块1052可直接吸附在该外部运动体上。
具体地,所述步骤S3进一步包括步骤S4:通过终端设备模块102控制所述多个第一磁性模块和/或第二磁性模块的开断及磁场强度。通过该终端设备模块102可以控制该第一磁性模块1042与第二磁性模块1052的开断及磁场强度,从而可以设置由多个述铺装物1012的某些区域形成特定的磁感路线,如可以形成直线、折线或者曲线磁感路线供外部运动体沿该特定磁感路线移动。
以上应用了具体个例对本发明进行阐述,只是用于帮助理解本发明,并不用以限制本发明。对于本领域的一般技术人员,依据本发明的思想,可以对上述具体实施方式进行变化。

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  1. 一种基于铺装物的数据采集处理系统,其特征在于,包括至少一数据采集模块、云端处理模块及终端设备模块,所述数据采集模块、云端处理模块及终端设备模块两两之间通讯连接,所述数据采集模块包括至少一铺装物及设置于所述铺装物上的至少一压力传感元件,所述压力传感元件收集踩踏于所述铺装物上生物的压力数据,并将所述压力数据传送至所述云端处理模块,所述云端处理模块对所述压力数据汇总、分析后得到数据处理结果,并将所述数据处理结果传送给所述终端设备模块。
  2. 如权利要求1所述的基于铺装物的数据采集处理系统,其特征在于,所述数据采集模块进一步包括至少一重量传感元件,所述重量传感元件收集踩踏于所述铺装物上的生物的重量数据,并将所述重量数据传送至所述云端处理模块;
    所述压力传感元件为磁传感元件,并且同一所述数据采集模块的磁传感元件与磁传感元件之间、所述磁传感元件与重量传感元件之间,所述重量传感元件与重量传感元件之间并联电连接或者串联电连接;
    所述基于铺装物的数据采集处理系统包括多个数据采集模块,所述不同数据采集模块之间并联电连接或者串联电连接;
    所述云端处理模块包括一预警单元,当所述云端处理模块分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块;
    所述基于铺装物的数据采集处理系统还包括本地收集模块,所述本地收集模块与所述多个数据采集模块、云端处理模块均通讯连接,所述本地收集模块收集所述多个数据采集模块采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块;
    所述铺装物包括支架及踩踏板,所述支架设置于所述踩踏板底部支撑所述踩踏板,所述磁传感元件和/或重量传感元件设置于所述支架与踩踏板之间。
  3. 如权利要求1所述的基于铺装物的数据采集处理系统,其特征在于:
    所述数据采集模块为声音采集模块,
    所述数据处理结果为压力-声音转化结果,
    所述将所述数据处理结果传送给所述终端设备模块具体为:将所述压力-声音转化结果传送给终端播放模块进行播放;
    所述声音采集模块包括多个压力传感元件,所述压力传感元件与压力传感元件之间并联电连接或者串联电连接;
    所述基于铺装物的数据采集处理系统包括多个声音采集模块,所述 多个声音采集模块之间并联电连接或者串联电连接;
    所述基于铺装物的数据采集处理系统还包括本地收集模块,所述本地收集模块与所述多个声音采集模块及云端处理模块均通讯连接,所述本地收集模块收集所述多个声音采集模块采集到的压力数据,并将所述压力数据传集中送至所述云端处理模块或者直接对所述压力数据进行声音播放;
    所述铺装物包括至少一支架及一承压板,所述支架设置于所述承压板底部支撑所述承压板,所述压力传感元件设置于所述支架与承压板之间,且设置于每一所述支架上;
    所述支架为圆柱状,所述支架高度为15-25mm,所述支架圆柱直径为15-25mm。
  4. 如权利要求1所述的基于铺装物的数据采集处理系统,其特征在于,第一磁性模块设置于所述辅裝物上,第二磁性模块设置于外部运动体物体上,所述第一磁性模块与所述第二磁性模块磁极相反或者相同。
  5. 如权利要求4所述的基于铺装物的数据采集处理系统,其特征在于:
    所述第一磁性模块包括电磁发生器和/或超强磁铁;
    所述第二磁性模块包括电磁发生器和/或超强磁铁;
    所述系统还包括磁极转换器,所述磁极转换器与所述电磁发生器电连接以转换所述电磁发生器的磁极;
    所述系统包括多个铺裝物,所述多个铺裝物中的电磁发生器并联电连接或者串联电连接;
    所述终端设备模块与所述电磁发生器通讯连接以控制所述电磁发生器的开断及磁场强度。
  6. 如权利要求5所述的基于铺装物的数据采集处理系统,其特征在于,所述铺装物包括一支架及一承压板,所述支架设置于所述承压板底部支撑所述承压板,所述第一磁性模块设置于所述支架与承压板之间。
  7. 如权利要求5所述的基于铺装物的数据采集处理系统,其特征在于,所述铺装物包括多个支架及一承压板,所述第一磁性模块包括多个电磁发生器和/或超强磁铁,所述每一所述电磁发生器或超强磁铁设置于每一所述支架上。
  8. 一种基于铺装物的数据采集处理方法,其特征在于,该方法基于如权利要求2所述的基于铺装物的数据采集处理系统,其包括如下步骤:
    S1:将磁传感元件和/或重量传感元件设置于一铺装物上构成数据采集模块;
    S2:将多个数据采集模块铺设于地面和/或墙面上并将多个数据采集 模块电性连接;
    S3:所述磁传感元件采集踩踏于所述铺装物上的生物的压力数据,所述重量传感元件采集踩踏于所述铺装物上的生物的重量数据,并将压力数据和/或重量数据传送至云端处理模块;
    S4:云端处理模块对所述压力数据和/或重量数据进行汇总、分析后生成数据处理结果;
    S5:所述云端处理模块将所述数据处理结果传送至终端设备模块;
    其中,所述步骤S3还包括如下步骤:
    本地收集模块收集所述多个数据采集模块采集到的压力数据及重量数据,并将所述压力数据及重量数据传送至所述云端处理模块;
    其中,所述步骤S5还包括如下步骤:
    当所述云端处理模块分析所述压力数据和/或重量数据出现异常时,所述预警单元发送预警信息至所述终端处理模块。
  9. 一种基于铺装物的声音采集播放方法,其特征在于,该方法基于如权利要求3所述的基于铺装物的数据采集处理系统,其包括如下步骤:
    S1:将压力传感元件设置于一铺装物上构成声音采集模块;
    S2:将多个声音采集模块铺设于地面和/或墙面上并将多个声音采集模块电性连接;
    S3:所述压力传感元件采集所述铺装物受压时的压力数据,并将压力数据传送至云端处理模块,云端处理模块对所述压力数据进行汇总、分析后生成压力-声音转化结果;
    S4:所述云端处理模块将所述压力-声音转化结果传送至终端播放模块供用户播放;
    S5:所述终端设备模块对所述压力-声音转化结果进行声音设置后进行播放;
    其中,所述步骤S3进一步包括:
    步骤S31:本地收集模块收集所述多个声音采集模块采集到的压力数据,并将所述压力数据传送至所述云端处理模块或者直接对所述压力数据进行声音播放。
  10. 一种基于铺装物的辅助运动方法,其特征在于,所述方法基于如权利要求4-7任一项所述的基于铺装物的数据采集处理系统,其包括如下步骤:
    S1:将第一磁性模块设置于铺装物上;
    S2:将设置有第一磁性模块的铺装物铺设于地面和/或墙面上;
    S3:在外部运动体上设置与所述第一磁性模块磁极相反或者相同的 第二磁性模块;
    S4:通过终端设备模块控制所述多个第一磁性模块和/或第二磁性模块的的开断及磁场强度。
PCT/CN2018/089076 2018-01-03 2018-05-30 一种基于铺装物的数据采集处理系统及方法 WO2019134337A1 (zh)

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