WO2018094980A1 - 智能容器 - Google Patents

智能容器 Download PDF

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Publication number
WO2018094980A1
WO2018094980A1 PCT/CN2017/084693 CN2017084693W WO2018094980A1 WO 2018094980 A1 WO2018094980 A1 WO 2018094980A1 CN 2017084693 W CN2017084693 W CN 2017084693W WO 2018094980 A1 WO2018094980 A1 WO 2018094980A1
Authority
WO
WIPO (PCT)
Prior art keywords
smart container
light
bottle body
light emitting
bottle
Prior art date
Application number
PCT/CN2017/084693
Other languages
English (en)
French (fr)
Inventor
田婷
赵金阁
周大勇
窦树谦
刘金山
翟明
邓立广
姜太声
金亨奎
Original Assignee
京东方科技集团股份有限公司
北京京东方光电科技有限公司
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
Application filed by 京东方科技集团股份有限公司, 北京京东方光电科技有限公司 filed Critical 京东方科技集团股份有限公司
Priority to US15/561,847 priority Critical patent/US20180242529A1/en
Publication of WO2018094980A1 publication Critical patent/WO2018094980A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G7/00Botany in general
    • A01G7/04Electric or magnetic or acoustic treatment of plants for promoting growth
    • A01G7/045Electric or magnetic or acoustic treatment of plants for promoting growth with electric lighting
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/02Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/20Forcing-frames; Lights, i.e. glass panels covering the forcing-frames
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/24Devices or systems for heating, ventilating, regulating temperature, illuminating, or watering, in greenhouses, forcing-frames, or the like
    • A01G9/249Lighting means
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G7/00Flower holders or the like
    • A47G7/02Devices for supporting flower-pots or cut flowers
    • A47G7/06Flower vases
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G7/00Flower holders or the like
    • A47G7/02Devices for supporting flower-pots or cut flowers
    • A47G7/08Covers for flower-pots, e.g. ornamental pots
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C5/00Processes for producing special ornamental bodies
    • B44C5/04Ornamental plaques, e.g. decorative panels, decorative veneers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44FSPECIAL DESIGNS OR PICTURES
    • B44F1/00Designs or pictures characterised by special or unusual light effects
    • B44F1/06Designs or pictures characterised by special or unusual light effects produced by transmitted light, e.g. transparencies, imitations of glass paintings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • F21V23/0442Arrangement of electric circuit elements in or on lighting devices the elements being switches activated by means of a sensor, e.g. motion or photodetectors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • F21V33/0004Personal or domestic articles
    • F21V33/0024Household or table equipment
    • F21V33/0028Decorative household equipment, e.g. plant holders or food dummies
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2121/00Use or application of lighting devices or systems for decorative purposes, not provided for in codes F21W2102/00 – F21W2107/00
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2113/00Combination of light sources
    • F21Y2113/10Combination of light sources of different colours
    • F21Y2113/13Combination of light sources of different colours comprising an assembly of point-like light sources
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • F21Y2115/15Organic light-emitting diodes [OLED]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/14Measures for saving energy, e.g. in green houses

Definitions

  • At least one embodiment of the present disclosure is directed to a smart container.
  • the current container for example, a vase for cultivating plants as a decoration for the interior, serves only as a utensil for cultivating plants and an ornament for the interior, and has a single function, and it is difficult to satisfy people's pursuit of simplicity and beauty of life.
  • At least one embodiment of the present disclosure provides a smart container comprising: a bottle body; a light emitting device disposed on the bottle body, the light emitting device comprising at least one light emitting unit, the light emitting unit being configured to be toward the bottle body The interior and the exterior of the bottle emit light.
  • the light emitted by the light emitting unit includes at least one of red light, green light, blue light, and white light.
  • the light emitting unit includes a light emitting diode.
  • the bottle body is provided with a first opening, and the light emitting unit is disposed in the first opening.
  • a smart container provided by at least one embodiment of the present disclosure may further include a base coupled to the bottle and providing support for the bottle.
  • the smart container provided by at least one embodiment of the present disclosure may further include a control unit disposed on the base, the control unit being in communication with the light emitting device to control the light emitting device. Glowing.
  • control unit is configured to control at least one of an illumination intensity and a luminescence color of the light emitting device.
  • the smart container provided by at least one embodiment of the present disclosure may further include a display screen disposed on the bottle body, the display screen being in communication with the control unit to display in response to a transmission signal of the control unit.
  • the display screen is a flexible display screen including at least one of a liquid crystal display and an organic light emitting diode display.
  • the display screen is a touch display screen.
  • the smart container provided by at least one embodiment of the present disclosure may further include a sensor disposed on the bottle body, the control unit being in communication with the sensor to receive an inductive signal emitted by the sensor.
  • the senor includes at least one of a first sensor unit located within the bottle body and a second sensor unit located outside the bottle body.
  • the first sensor unit may be configured to detect at least one of a pH, a salt, and a nutrient element within the bottle.
  • the second sensor unit may be configured to detect at least one of formaldehyde, dust, and radioactivity outside the bottle.
  • the bottle body is provided with a second opening, and the first sensor unit communicates with the control unit through the second opening.
  • the smart container provided by at least one embodiment of the present disclosure may further include a wireless communication device disposed on the base, and the control unit transmits or receives a signal through the wireless communication device.
  • a smart container provided by at least one embodiment of the present disclosure can also include a wireless terminal configured to receive or transmit signals between the wireless communication device and the control unit.
  • the smart container provided by at least one embodiment of the present disclosure may further include a power source disposed on the base, and the control unit is in communication with the power source to control a switching state of the power source.
  • the smart container provided by at least one embodiment of the present disclosure may further include a decorative layer disposed on the outer surface of the bottle and a circuit trace disposed on the bottle body, wherein the decorative layer is violent The light emitting device is exposed, and the circuit trace is located between the bottle body and the decorative layer.
  • FIG. 1 is a schematic structural diagram of a smart container according to an embodiment of the present disclosure
  • Figure 2 is a schematic view showing a structure of a bottle mouth portion above the line A-A of the smart container shown in Figure 1;
  • FIG. 3 is a schematic structural diagram of another smart container according to an embodiment of the present disclosure.
  • At least one embodiment of the present disclosure provides a smart container that can solve the above technical problem.
  • at least one embodiment of the present disclosure provides a smart container with a specific structure and function as an example of cultivating a vase of a plant, but it should be understood by those skilled in the art that the smart container is not limited to being used only as Cultivate vases for plants.
  • At least one embodiment of the present disclosure provides a smart container.
  • the smart container includes a bottle body and a light emitting device disposed on the bottle body, wherein the light emitting device includes at least one light emitting unit that can emit light to the inside of the bottle body and outside the bottle body.
  • the light that is emitted into the body of the bottle can meet the growth requirements of the plant, and the light emitted to the outside of the bottle can provide illumination to the surrounding environment.
  • FIG. 1 is a schematic structural view of the smart container.
  • the smart container includes a bottle body 1, and a light emitting device disposed on the bottle body 1.
  • the light emitting device comprises at least one light emitting unit 2 as shown in FIG. 1.
  • the light emitting unit 2 can emit light to the inside and outside of the bottle body 1, that is, the light emitting unit 2 emits light in both directions.
  • the light-emitting unit 2 can provide light to the inside of the bottle body 1 and above the bottle mouth. For example, when the plant foliage planted in the bottle body is located above the bottle mouth, the light-emitting unit 2 can be attached to the plant leaf.
  • Light is provided while also providing light to the surroundings of the bottle 1.
  • the light emitting units 2 are arranged in a distributed state as shown in FIG. 1, it can be understood that the light emitting unit 2 can be disposed at any position on the bottle body 1 according to actual needs, for example, the light emitting unit 2 can be according to the specific shape of the bottle body 1. To determine the specific location.
  • the embodiment of the present disclosure does not limit the shape of the bottle body 1 and the specific arrangement position of the light-emitting unit 2 as long as the light-emitting unit 2 can simultaneously emit light to the inside and outside of the bottle body 1.
  • the light-emitting units 2 disposed on the bottle body 1 can be connected to each other, for example, by circuit traces 10; the preparation material of the circuit traces 10 can include, for example, a flexible conductive material; for example, the preparation material of the circuit traces can include transparent A conductive material, which may include, for example, indium tin oxide (ITO), aluminum-doped zinc oxide (AZO), nano-silver wires, metal mesh, carbon nanotubes, or graphene.
  • ITO indium tin oxide
  • AZO aluminum-doped zinc oxide
  • nano-silver wires metal mesh
  • carbon nanotubes or graphene.
  • the type of light emitted by the light emitting unit may include at least one of red light, green light, blue light, white light, and the like.
  • light can affect plant growth and development as an external signal, for example, light can affect the synthesis of plant hormones.
  • the effects of light on plants include many aspects such as seed hair Bud, stem growth, leaf and root development, phototropism, chlorophyll synthesis, branching and flower induction, promotion of stem and leaf development or inhibition of lateral bud growth.
  • red light is more effective in inducing flowering, seed germination, stem and leaf growth, leaf detachment, rhizome formation, bud dormancy, etc.; for example, blue light in leaf stomata opening and delaying Plant aging, increasing protein content, synthesizing chlorophyll, and increasing plant to light are more effective.
  • each of the light emitting units may separately emit light of a color such as red, blue or green, or the light emitting unit may emit light of a plurality of colors and combine light of different colors, for example,
  • the light unit can also control the intensity and proportion of the emitted light of each color.
  • the light emitting unit 2 may be a light emitting diode (LED), for example, the light emitting unit may be an organic light emitting diode (OLED).
  • the light emitting diode may include a plurality of pixels, and each of the pixels may include, for example, three sub-pixels of red, green, and blue.
  • the sub-pixels can emit light of a corresponding color, so by controlling the switches of each sub-pixel, each pixel can separately emit light of three colors of red, green, and blue or a combination of three colors of light.
  • the light emitting device may be disposed to include at least two unidirectionally illuminated light emitting units 2 (eg, OLEDs, etc.), and the light emitting direction of the at least one light emitting unit 2 is toward the inside of the bottle body 1, at least The light emitting direction of one light emitting unit 2 faces the outside of the bottle body 1, and each of the light emitting units 2 can be set to operate independently.
  • the light emitting device can have various light emitting patterns, for example, emitting light to the inside of the bottle body 1, emitting light to the outside of the bottle body 1, or simultaneously emitting light to the inside and outside of the bottle body 1.
  • the bottle body 1 may be provided with an opening such as a first opening, and the light emitting unit 2 may be disposed in the opening.
  • the smart container can be one or a combination of a transparent state, a non-transparent state, or a translucent state.
  • the smart container may be a transparent vase.
  • the bottle body of the smart container may include a transparent material such as transparent glass, and the light emitting unit is disposed on the outer surface of the bottle, for example, and the light emitted by the light is transparent.
  • the bottle body illuminates the plant; for example, in at least one embodiment of the present disclosure, the smart container may be in a non-transparent state, for example, the bottle body of the smart container may include a non-transparent material such as ceramic, and the light-emitting unit may be disposed, for example, in a bottle. In the opening of the body (for example, the first opening 11 in FIG. 1), the light-emitting unit can simultaneously emit light to the inside of the bottle and the outside of the bottle.
  • the opening on the bottle body 1 (for example, the following implementation)
  • the cross-sectional shape of the first opening 11, the second opening 12, and the like in the example is not limited, and for example, the sectional shape of the opening may include a circle, a rectangle, a polygon, or the like.
  • the light emitting unit 2 disposed on the bottle body 1 of the smart container is not limited to being disposed at the mouth of the bottle to provide light to the plant foliage above the bottle body 1, which may It is provided anywhere in the bottle body 1, for example, the smart container is not limited to cultivating only flower plants or the like, and is suitable for any field in which a light source is required to be provided inside and outside a container such as a bottle.
  • the bottle body 1 may also be an ecological tank of a micro-landscape, and the plants in the bottle body are small plants, algae or other light-lighting organisms, and the light-emitting unit 2 disposed in the bottle body 1 such as an intermediate portion may provide a light source to the living body in the bottle body. .
  • the smart container may further include a base 9 that is coupled to the bottle body 1 and provides support for the bottle body 1.
  • the base 9 can be integrated with the bottle body 1 or can be freely assembled with the bottle body 1.
  • the base is not limited to the circular base shown in FIG. 1 , and its shape can be set according to actual needs; the position of the base 9 is not limited to the one below the bottle body 1 as shown in FIG. 1 , and may be located on one side of the bottle body 1 or The bottle body 1 is wrapped, as long as the base 9 can provide support for the bottle body 1.
  • the embodiment of the present disclosure does not limit the specific structure and the installation position of the base 9.
  • the base 9 of the smart container may be provided with a control unit 4, which may be connected to the light emitting device through, for example, circuit traces 10.
  • the control unit 4 can control the intensity or color combination or the like of the light of the light emitting unit 2 in the light emitting device.
  • the light emitting unit 2 includes a plurality of pixel units composed of at least three sub-pixels, each of which may emit light of a red, green or blue color alone.
  • the control unit 4 controls the light-emitting unit 2 of the light-emitting device according to different growth periods of the plant, for example, for different light rays or combinations of light of various colors or by controlling the intensity of the light emitted by each of the sub-pixels or the intensity of the light emitted by the light-emitting device.
  • Light intensity, etc. provide plants with the light source they need.
  • control unit 4 may include a switching element or the like. If more complex control functions need to be implemented, corresponding hardware circuits can be built to implement the corresponding functions, including conventional very large scale integration (VLSI) circuits or gate arrays and existing ones such as logic chips, transistors, and the like. Semiconductors or other discrete components.
  • control unit 4 can also be implemented with programmable hardware devices, such as field programmable gate arrays, programmable array logic, programmable logic devices, and the like.
  • the smart container may further include a display screen 3 disposed on the bottle body 1, and the display screen 3 is in communication with the control unit 4 in response to the control.
  • the transmission signal of unit 4 is thus displayed.
  • the display screen 3 can be a flexible display screen, which can be bent according to the shape of the bottle body 1 to be attached to the bottle body 1; for example, the display screen 3 is a liquid crystal display, an OLED (Organic Light Emitting Diode) display or an LED (Light-emitting diode) display, etc.
  • the display panel 3 may include, for example, a substrate such as a glass substrate, a switching element such as a thin film transistor (TFT), a display layer, an encapsulation layer, and the like.
  • the display screen 3 can be a touch-sensitive display screen, and the display screen 3 can be connected to the control unit 4, and a data signal can be sent to the control unit 4 through the touch screen display to regulate the control unit 4.
  • An example of the display screen is a liquid crystal display comprising an array substrate and an opposite substrate, which are opposed to each other to form a liquid crystal cell in which a liquid crystal material is filled.
  • the opposite substrate is, for example, a color filter substrate.
  • the pixel electrode of each pixel unit of the array substrate is used to apply an electric field to control the degree of rotation of the liquid crystal material to perform a display operation.
  • OLED organic light emitting diode
  • Still another example of the display screen is an electronic paper display screen in which an electronic ink layer is formed on an array substrate of the electronic paper display screen, and pixel electrodes of each pixel unit serve as charged microparticles for applying driving electronic ink The voltage that is moved to perform the display operation.
  • the smart container may further include a sensor 5 disposed on the bottle body 1, and the control unit 4 communicates with the sensor 5 to receive the sensor 5.
  • the sensor signal sent.
  • the senor 5 may include a first sensing unit 13 and a second sensing unit 14, and the bottle body 1 is provided with an opening (second opening 12).
  • the first sensing unit 13 is disposed in the bottle body 1 and communicates with the control unit 4 through the second opening 12; for example, the second sensing unit 14 is not limited to being disposed on the bottle body 1, and may be disposed on the base 9. .
  • sensor 5 can detect a variety of environmental parameters such as temperature, humidity, etc.
  • the first sensor unit disposed in the bottle body 1 can also detect, for example, the pH, the salt, the nutrient element, and the like in the bottle body 1.
  • the detected nutrient elements may include nitrogen, phosphorus, potassium, etc.; for example, disposed in the bottle body.
  • the external second sensor unit can also detect ambient parameters such as indoors, such as formaldehyde, dust, radioactivity, and the like.
  • the sensor 5 can transmit the detected sensing signal to the display screen 3 through the control unit 4, and the display screen 3 can present its information on the screen, depending on the plant, for example, various The demand for environmental factors can be adjusted accordingly.
  • the ambient temperature displayed on the display screen 3 is low, which is lower than the humidity requirement for plant growth, for example, and the humidity of the surrounding environment can be raised to facilitate plant growth.
  • the control unit 4 may further include a storage unit including requirements of different plants for different factors such as illumination, temperature and humidity, mineral elements, etc. at different growth stages, and displaying them on the display screen to correspond to real-time detection.
  • Factors are compared, for example, the humidity detected in real time is compared with the actual humidity required for the corresponding plant growth, thereby guiding the adjustment of the surrounding environment, such as temperature and humidity, so that the smart container can be based on, for example, different plants or at different stages of growth of a particular plant. Better cultivation to promote better growth of, for example, plants.
  • the smart container may further include a wireless communication device 6 disposed on the base 9, and the control unit 4 transmits or receives through the wireless communication device 6.
  • the control unit 4 can transmit a signal, for example, a relevant parameter detected by the sensor 5, to the external wireless terminal through the wireless communication device 6, so that remote real-time monitoring can be realized; for example, the wireless communication device 6 can also be connected to an external wireless terminal.
  • wireless communication is performed, and the control unit 4 can be controlled via the wireless communication device 6 by controlling the wireless terminal, thereby controlling other structures that are connected by the control unit 4.
  • the switching state of the light-emitting unit 2 and the lighting state such as the color of the light and the intensity of the light can be controlled, so that remote control of the smart container can be realized.
  • the wireless terminal can be a mobile phone, a computer, a tablet, or the like.
  • the smart container may further include an alarm unit in communication with the control unit between a parameter (eg, humidity) monitored in real time and a parameter (eg, humidity) required for a corresponding growth phase of the plant.
  • a safety threshold is set to issue an alarm message when a factor of a smart container-related component, such as a sensor, detects a plant parameter or has a negative impact on the surrounding environment and the difference exceeds a safety threshold.
  • the alarm information can be, for example, an audio alarm system, directly to the surroundings A nearby person, for example, issues an alarm; the alarm information can be transmitted to a wireless terminal, such as a mobile phone, for example, via a wireless communication device, so that relevant countermeasures can be taken in time.
  • a wireless terminal such as a mobile phone
  • the smart container may further include a power source 7 disposed on the base 9 , and the control unit 4 is connected to the power source 7 to control the power source 7 .
  • the power source 7 can be a battery or a plug-in power source.
  • the bottle mouth portion of the smart container is not limited to, for example, a flat mouth structure as shown in FIG. 1 , and may also be, for example, an everted structure as shown in FIG. 2 , wherein 2 is a structural schematic view of the bottle mouth portion above the AA line of the smart container shown in FIG. 1.
  • the finish structure is designed to have an everted shape as shown in Fig. 2, for example, the light-emitting unit 2 disposed at the edge portion of the flat mouth can enlarge the illumination range of, for example, the supply plant.
  • FIG. 3 is a schematic structural diagram of another smart container according to an embodiment of the present disclosure.
  • the smart container may further include a decorative layer disposed on the outer surface of the bottle, the decorative layer exposing the light emitting device.
  • the outer surface of the bottle body 1 (shown by a broken line) is provided with a decorative layer 8 which, for example, the light-emitting unit 2, the display screen 3 included in the light-emitting device, is disposed on the outer surface of the bottle body 1.
  • the upper sensor 5 (second sensing unit 14) or the like is exposed.
  • the display screen 3 may be disposed on the decorative layer 8 or the decorative layer 8 may expose the display screen 3 through the opening.
  • the smart container may further include a circuit trace 10 disposed on the bottle body 1, the circuit trace 10 being located in the bottle body and Between the decorative layers and a plurality of light-emitting units 2, sensors 5, a display screen 3, a wireless communication device, and a power supply equivalent control unit 4, for example, included in the light-emitting device, are connected.
  • the circuit traces may be located in the interlayer between the decorative layer and the bottle body, for example, the decorative layer is non-transparent and may be obscured by the decorative layer; or the decorative layer may be a transparent material Or a combination of non-transparent materials, the non-transparent portion of the non-transparent material can block, for example, the circuit traces, and the transparent portion of the transparent material can see the environment inside the bottle body (for example, the transparent bottle body) from the outside.
  • the solid line indicates a structure that can be visually seen from the front view of the smart container; the broken line indicates, for example, the occluded structure included in the smart container but not visually visible.
  • the circuit trace 10 shown in FIG. 1 is located outside the bottle body 1 by a solid line, and the inside of the bottle body 1 is indicated by a broken line (for example, with the first sensing unit). 13 part of the circuit trace 10 is connected to the bottle body 1, so that part of the circuit trace 10 is indicated by a broken line), since in the embodiment shown in FIG. 3, the outer surface of the bottle body 1 is provided with a decorative layer. 8.
  • the circuit trace 10 disposed on the outer surface of the bottle 1 is shielded by the decorative layer 8, and the circuit trace 10 of this portion is indicated by a broken line in FIG.

Abstract

一种智能容器,该智能容器包括:瓶体(1);设置于所述瓶体(1)上的发光器件,所述发光器件包括至少一个发光单元(2),所述发光单元(2)被配置为向所述瓶体(1)内部和所述瓶体(1)外部发射光线。该智能容器的发光单元(2)设置为双向发光,在植物生长过程中向其提供所需光源的同时也起到了外部照明的作用,如此,可以在更好培养植物的同时,节省额外的照明工具,降低设备占用空间并能美化环境。

Description

智能容器 技术领域
本公开至少一个实施例涉及一种智能容器。
背景技术
随着生活质量的提高,人们对生活环境有着更高的追求,例如以培育植物为例,愈来愈多的人喜欢在家里或办公室培育绿色植物或花卉。然而植物在不同的生长阶段对光照的需求甚至对不同颜色的光照需求是不同的,室内的家居植物的光照通常很难满足植物例如喜光植物的光照需求,所以如何让植物保持活性及美丽则成为一件费心费力的事情,如果在室内向植物安置额外的设备例如光照设备,会占用额外的室内空间。此外,当前的容器例如用以培育植物的花瓶作为室内的一个摆件,仅作为培育植物的器皿和室内的装饰品,功能较为单一,很难满足人们对生活的简约及美感追求。
发明内容
本公开至少一实施例提供一种智能容器,包括:瓶体;设置于所述瓶体上的发光器件,所述发光器件包括至少一个发光单元,所述发光单元被配置为向所述瓶体内部和所述瓶体外部发射光线。
例如,在本公开至少一个实施例提供的智能容器中,所述发光单元发出的光包括红光、绿光、蓝光和白光中的至少一种。
例如,在本公开至少一个实施例提供的智能容器中,所述发光单元包括发光二极管。
例如,在本公开至少一个实施例提供的智能容器中,所述瓶体上设置有第一开孔,所述发光单元设置于所述第一开孔内。
例如,本公开至少一个实施例提供的智能容器还可以包括与所述瓶体连接并为所述瓶体提供支撑的底座。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述底座上的控制单元,所述控制单元与所述发光器件连通以控制所述发光器件的 发光。
例如,在本公开至少一个实施例提供的智能容器中,所述控制单元配置为控制所述发光器件的发光强度和发光颜色中的至少一个。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述瓶体上的显示屏,所述显示屏与所述控制单元连通以响应所述控制单元的传输信号进行显示。
例如,在本公开至少一个实施例提供的智能容器中,所述显示屏为柔性显示屏,包括液晶显示屏和有机发光二极管显示屏中的至少一种。
例如,在本公开至少一个实施例提供的智能容器中,所述显示屏为触控式显示屏。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述瓶体上的传感器,所述控制单元与所述传感器连通以接收所述传感器发出的感应信号。
例如,在本公开至少一个实施例提供的智能容器中,所述传感器包括位于所述瓶体内的第一传感器单元和位于所述瓶体外的第二传感器单元中的至少一个。
例如,在本公开至少一个实施例提供的智能容器中,所述第一传感器单元可以配置为检测所述瓶体内的酸碱度、盐分和营养元素中的至少一个。
例如,在本公开至少一个实施例提供的智能容器中,所述第二传感器单元可以配置为检测所述瓶体外的甲醛、粉尘和放射性中的至少一个。
例如,在本公开至少一个实施例提供的智能容器中,所述瓶体上设置有第二开孔,所述第一传感器单元通过所述第二开孔与所述控制单元连通。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述底座上的无线通讯器件,控制单元通过所述无线通讯器件发送或接收信号。
例如,本公开至少一个实施例提供的智能容器还可以包括无线终端,所述无线终端配置为通过所述无线通讯器件与所述控制单元之间接收或发送信号。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述底座上的电源,所述控制单元与所述电源连通以控制所述电源的开关状态。
例如,本公开至少一个实施例提供的智能容器还可以包括设置于所述瓶体外表面上的装饰层和设置于所述瓶体上的电路走线,其中,所述装饰层暴 露所述发光器件,所述电路走线位于所述瓶体与所述装饰层之间。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对实施例的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本发明的一些实施例,而非对本发明的限制。
图1为本公开实施例提供的一种智能容器结构示意图;
图2为图1所示智能容器A-A线之上的瓶口部分的一种结构示意图;以及
图3为本公开实施例提供的另一种智能容器结构示意图。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例的附图,对本发明实施例的技术方案进行清楚、完整地描述。显然,所描述的实施例是本发明的一部分实施例,而不是全部的实施例。基于所描述的本发明的实施例,本领域普通技术人员在无需创造性劳动的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。
除非另外定义,本公开使用的技术术语或者科学术语应当为本发明所属领域内具有一般技能的人士所理解的通常意义。本公开中使用的“第一”、“第二”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。“包括”或者“包含”等类似的词语意指出现该词前面的元件或者物件涵盖出现在该词后面列举的元件或者物件及其等同,而不排除其他元件或者物件。“连接”或者“相连”等类似的词语并非限定于物理的或者机械的连接,而是可以包括电性的连接,不管是直接的还是间接的。“上”、“下”、“左”、“右”等仅用于表示相对位置关系,当被描述对象的绝对位置改变后,则该相对位置关系也可能相应地改变。
如何设计一种在为周围环境提供照明光的同时根据容器例如花瓶中的植物生长阶段为其提供生长光照的智能容器产品是当前相关产品的空白。植物生长过程中,对光照的需求很大,而且在不同生长阶段对不同颜色的光线的需求也可能会不同。例如对于喜光植物来说,例如植物置于室内等缺乏自然光照的环境下,不能获得其生长所需充足光照,导致植物生长不良甚至枯 萎,影响美观。如果在室内给植物配置相应的光照设备,则成本昂贵且占用空间。
需要说明的是,本公开的至少一个实施例提供了一种智能容器可以解决上述技术问题。为方便理解,本公开的至少一个实施例提供的智能容器以培育植物的花瓶为例来说明其具体结构和功能,但是,本领域技术人员应当理解的是,该智能容器不限于作为仅用于培育植物用的花瓶。
本公开至少一个实施例提供了一种智能容器。该智能容器包括瓶体和设置在瓶体上的发光器件,其中,发光器件包括至少一个发光单元,该发光单元可以向瓶体内和瓶体外发射光线。发射向瓶体内方向的光线可以满足植物生长需求,发射向瓶体外方向的光线可以向周围环境提供照明。
本公开至少一个实施例提供了一种智能容器,图1为该智能容器的结构示意图。例如,如图1所示,该智能容器包括瓶体1、设置于瓶体1上的发光器件。该发光器件包括如图1所示的至少一个发光单元2,发光单元2可以向瓶体1的内部和外部发射光线,即发光单元2为双向发光。在如图1所示的实施例中,发光单元2可以向瓶体1的内部及瓶口上方提供光线,例如瓶体中栽种的植物枝叶位于瓶口上方时,发光单元2能够向该植物枝叶提供光照,同时还可以向瓶体1的周围环境提供光线。虽然发光单元2排列成如图1所示的分布状态,但是可以理解的是,发光单元2可以按照实际需要设置在瓶体1上的任意位置,例如发光单元2可以根据瓶体1的具体形状来确定具体的设置位置。本公开的实施例对瓶体1的形状及发光单元2的具体设置位置不做限定,只要发光单元2同时可以向瓶体1的内部和外部发射光线即可。
设置于瓶体1上的发光单元2彼此之间例如可以通过电路走线10连接;该电路走线10的制备材料例如可以包括柔性的导电材料;例如该电路走线的制备材料可以包括透明的导电材料,该透明导电材料例如可以包括氧化铟锡(ITO)、掺铝氧化锌(AZO)、纳米银线、金属网格、碳纳米管或石墨烯等。
例如,在本公开至少一个实施例提供的智能容器中,发光单元发出的光的种类可以包括红光、绿光、蓝光和白光等中的至少一种。光线除了参与植物光合作用之外,例如可以作为一种外界信号影响植物的生长发育,例如光线可以影响植物激素的合成等。光线对植物的影响包括很多方面例如种子发 芽、茎的生长、叶和根的发育、向光性、叶绿素的合成、分枝以及花的诱导、促进茎叶展开或抑制侧芽生长等。
不同颜色的光线对植物生长也有不同的影响,例如红光在诱导开花、种子发芽、茎叶生长、叶脱落、根茎等的形成、芽的休眠等方面更加有效;例如蓝光在叶片气孔开启、延缓植物衰老、增加蛋白质含量、合成叶绿素、增加植物向光性等方面更加有效。
在植物生长的不同阶段对特定颜色的光有不同要求。例如,在本公开至少一个实施例中,每个发光单元可以单独发出红、蓝或绿等颜色的光,或者该发光单元可以发出多种颜色的光线并对不同颜色的光线进行组合,例如该发光单元还可以控制发射出的各颜色光的强弱及比例。
例如,在本公开至少一个实施例提供的智能容器中,发光单元2可以为发光二极管(LED),例如发光单元可以为有机发光二极管(OLED)。该发光二极管可以包括多个像素,每个像素例如可以包括红、绿、蓝三个子像素。子像素可以发出相应颜色的光线,因此通过控制每个子像素的开关可以使得每个像素可以单独发出红、绿、蓝三种颜色的光线或者三种颜色光线的组合。
例如,在本公开至少一个实施例中,发光器件可以设置为包括至少两个单向发光的发光单元2(例如OLED等),并且至少一个发光单元2的发光方向朝向瓶体1的内部,至少一个发光单元2的发光方向朝向瓶体1的外部,并且每个发光单元2可以设置为独立工作。如此,发光器件可以具有多种发光模式,例如向瓶体1的内部发射光线、向瓶体1的外部发射光线或者同时向瓶体1的内部和外部发射光线。
例如,在本公开至少一个实施例提供的智能容器中,瓶体1上可以设置开孔例如为第一开孔,发光单元2可以设置在开孔内。
智能容器可以为透明态、非透明态或半透明态的一种或者组合。例如,在本公开至少一个实施例中,该智能容器可以为透明花瓶,例如该智能容器的瓶体可以包括透明玻璃等透明材料,发光单元例如设置于瓶体外表面,其发出的光可以透过瓶体对植物进行光照;例如,在本公开至少一个实施例中,该智能容器可以为非透明态,例如该智能容器的瓶体可以包括陶瓷等非透明材料,发光单元可以设置例如镶嵌在瓶体上的开孔(例如图1中的第一开孔11)内,由此发光单元同样可以向智能容器的瓶体内和瓶体外同时发射光线。
需要说明的是,在本公开的实施中,对瓶体1上的开孔(例如下述实施 例中的第一开孔11、第二开孔12等)的截面形状不做限制,例如,开孔的截面形状可以包括圆形、矩形或者多边形等。
例如,在本公开至少一个实施例中,如图1所示,智能容器的瓶体1上设置的发光单元2不限于设置在瓶口位置以向瓶体1上方的植物枝叶提供光线,其可以设置在瓶体1的任意处,例如该智能容器不限于只培植花卉植物等,其适用于任何需要对容器例如瓶体内外提供光源的领域。例如,该瓶体1还可以为微景观的生态缸,瓶体内的植物为小型植物、藻类或其他喜光生物等,设置在瓶体1例如中间部位的发光单元2可以向瓶体内的生物提供光源。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器还可以包括与瓶体1连接并为瓶体1提供支撑的底座9。底座9可以与瓶体1为一体的结构,也可以与瓶体1之间自由装配。
底座不限于图1所示的圆形底座,其形状可以根据实际需求设定;底座9的位置也不限于图1所示的位于瓶体1的下方,还可以位于瓶体1的一侧或者将瓶体1包裹,只要底座9可以为瓶体1提供支撑即可,本公开的实施例对底座9的具体化结构及设置位置不做限制。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器的底座9上可以设置有控制单元4,该控制单元4可以通过例如电路走线10与发光器件连通从而可以控制该发光器件的发光,例如,控制单元4可以控制发光器件中的发光单元2的光的强弱或者颜色组合等。例如,发光单元2包含由至少三个子像素组成的多个像素单元,每个子像素可以单独发出红、绿或蓝颜色的光线。该控制单元4通过控制每个子像素的开关或者其发出光线的强弱,使得发光器件的发光单元2按照例如植物不同生长周期对不同光线的需求(包括对特定颜色光线或者各颜色光线的组合或者光线强弱等)给植物提供其所需的光源。
例如,在本公开至少一个实施例中,控制单元4可以包括开关元件等。如果需要实现更复杂的控制功能,还可以搭建对应的硬件电路来实现对应的功能,所述硬件电路包括常规的超大规模集成(VLSI)电路或者门阵列以及诸如逻辑芯片、晶体管之类的现有半导体或者是其它分立的元件。例如,控制单元4还可以用可编程硬件设备,诸如现场可编程门阵列、可编程阵列逻辑、可编程逻辑设备等实现。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器还可以包括设置在瓶体1上的显示屏3,该显示屏3与控制单元4连通以响应控制单元4的传输信号从而进行显示。例如该显示屏3可以为柔性的显示屏,可以根据瓶体1的外形进行弯曲从而贴附在瓶体1上;例如该显示屏3为液晶显示屏、OLED(有机发光二极管)显示屏或LED(发光二极管)显示屏等。该显示屏3例如可以包括基板例如玻璃基板、开关元件例如薄膜晶体管(TFT)、显示层、封装层等。例如该显示屏3可以为触控式的显示屏,该显示屏3可以与控制单元4连通,通过触摸显示屏可以向控制单元4发送数据信号以对控制单元4进行调控。
该显示屏的一个示例为液晶显示屏,包括阵列基板和对置基板,二者彼此对置以形成液晶盒,在液晶盒中填充有液晶材料。该对置基板例如为彩膜基板。阵列基板的每个像素单元的像素电极用于施加电场对液晶材料的旋转的程度进行控制从而进行显示操作。
该显示屏的另一个示例为有机发光二极管(OLED)显示屏,其中,在该有机发光二极管显示屏的阵列基板上形成有机发光材料的叠层,每个像素单元的像素电极作为阳极或阴极用于驱动有机发光材料发光以进行显示操作。
该显示屏的再一个示例为电子纸显示屏,其中,在该电子纸显示屏的阵列基板上形成有电子墨水层,每个像素单元的像素电极作为用于施加驱动电子墨水中的带电微颗粒移动以进行显示操作的电压。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器还可以包括设置在瓶体1上的传感器5,控制单元4与该传感器5连通以接收该传感器5发送的传感信号。
传感器5的设置方式有多种。例如,在本公开至少一个实施例中,如图1所示,传感器5可以包括第一传感单元13和第二传感单元14,瓶体1上设置有开孔(第二开孔12),该第一传感单元13设置在瓶体1内并通过第二开孔12与控制单元4连通;例如第二传感单元14不限于设置在瓶体1上,也可以设置在底座9上。
环境因素例如温度、湿度、营养元素含量等同样会对植物生长造成影响,所以需要对这些因素进行实时检测从而可以及时进行调控。例如,在本公开至少一个实施例中,传感器5可以检测多种环境参数例如温度、湿度等,而 例如设置在瓶体1内的第一传感器单元还可以例如检测瓶体1内的酸碱度、盐分、营养元素等,该被检测的营养元素可以包括氮、磷、钾等;例如设置在瓶体之外的第二传感器单元还可以检测周围例如室内的环境参数,该环境参数可以包括例如甲醛、粉尘、放射性等。
例如,在本公开至少一个实施例中,传感器5可以将检测的感应信号通过控制单元4传输至显示屏3上,显示屏3可以将其信息呈现在屏幕上,根据所养例如植物对各种环境因素的需求可以进行相应调整。例如显示屏3上显示的周围环境湿度较低,低于例如植物生长需要的湿度要求,可以调高周围环境的湿度,以有利于植物生长。例如控制单元4中还可以包括存储单元,该存储单元包括不同植物在不同生长阶段对不同因素例如光照、温湿度、矿物元素等的需求,并将其显示在显示屏幕上以与实时检测的相应因素进行对比,例如实时检测的湿度与相应植物生长实际需要的湿度进行对比,从而对调节周围环境例如温湿度进行指导,使得该智能容器可以根据例如不同植物或在特定植物生长的不同阶段对其进行更好培育,促使例如植物的更好生长。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器还可以包括设置在底座9上的无线通讯器件6,控制单元4通过该无线通讯器件6发送或接收信号。例如,控制单元4可以将信号例如传感器5检测到的相关参数通过该无线通讯器件6发送至外部的无线终端,从而可以实现远程实时监控;例如,该无线通讯器件6还可以与外部的无线终端进行例如无线连通,则可以通过控制无线终端经由无线通讯器件6对控制单元4进行控制,进而对其它由控制单元4连通的其它结构进行控制。例如可以控制发光单元2的开关状态及例如光线颜色、光线强弱的发光状态,从而可以实现对智能容器的远程控制。例如,该无线终端可以为手机、电脑、平板电脑等。
为确保植物生长安全还可以加入例如提醒或警报功能。例如,在本公开至少一个实施例中,智能容器还可以包括报警单元,该报警单元与控制单元连通,在实时监测的参数(例如湿度)与植物相应生长阶段需要的参数(例如湿度)之间设定一个安全阈值,在智能容器相关元件例如传感器检测到的因素参数对植物生长或者对周围居住环境有负面影响且差值超过安全阈值时,可以发出警报信息。该警报信息例如可以为音频报警系统,直接向周围 附近的例如人发出警报;该警报信息例如可以通过无线通讯器件传输至无线终端例如手机上,从而可以及时采取相关的应对措施。
例如,在本公开至少一个实施例提供的智能容器中,如图1所示,该智能容器还可以包括设置于底座9上的电源7,控制单元4与电源7连接以控制所述电源7的开关状态。例如,电源7可以为蓄电池或插接电源。
需要说明的是,在本公开提供的实施例中,智能容器的瓶口部分并不限于如图1所示的例如平口结构,还可以为如图2所示的例如外翻结构,其中,图2为图1所示智能容器A-A线之上的瓶口部分的一种结构示意图。当瓶口结构设计为图2所示的外翻形状时,例如设置在平口边缘部分的发光单元2可以扩大例如供给植物的光照范围。
例如,在本公开至少一个实施例提供的智能容器中,图3为本公开实施例提供的另一种智能容器结构示意图。如图3所示,该智能容器还可以包括设置在瓶体外表面上的装饰层,该装饰层暴露出发光器件。如图3所示,瓶体1(用虚线表示其轮廓)的外表面上设置有装饰层8,该装饰层将例如发光器件包括的发光单元2、显示屏3、设置在瓶体1外表面上的传感器5(第二传感单元14)等暴露出来。
需要说明的是,在本公开至少一个实施例中,显示屏3可以设置于装饰层8上或者装饰层8通过设置开口将显示屏3暴露出来。
例如,在本公开至少一个实施例提供的智能容器中,如图3所示,该智能容器还可以包括布置于瓶体1上的电路走线10,该电路走线10位于所述瓶体与所述装饰层之间并且将例如发光器件包括的多个发光单元2、传感器5、显示屏3、无线通讯器件、电源等同控制单元4连通起来。
例如,在本公开至少一个实施例中,电路走线可以位于装饰层与瓶体之间的夹层中,例如装饰层是非透明的,可以由装饰层将其遮挡;或者,装饰层可以为透明材料或者非透明材料的组合,其非透明材料构成的非透明部分可以遮挡例如电路走线,其透明材料构成的透明部分,可以从外界看到瓶体(例如透明瓶体)内的环境。
需要说明的是,在本公开提供的上述实施例中,实线表示从智能容器的正视图中可以直观看到的结构;虚线表示智能容器包括的但是不能直观看到的例如被遮挡结构。例如以电路走线10为例,图1所示的电路走线10位于瓶体1外的用实线表示,位于瓶体1内的用虚线表示(例如与第一传感单元 13连接的部分电路走线10因为位于瓶体1内,所以该部分电路走线10用虚线表示),由于在如图3所示的实施例中,瓶体1的外表面上设置有装饰层8,设置在瓶体1外表面上的电路走线10被装饰层8遮挡,在图3中则用虚线表示这部分的电路走线10。
对于本公开,还有以下几点需要说明:
(1)本公开实施例附图只涉及到与本公开实施例涉及到的结构,其他结构可参考通常设计。
(2)为了清晰起见,在用于描述本公开的实施例的附图中,层或区域的厚度被放大或缩小,即这些附图并非按照实际的比例绘制。
(3)在不冲突的情况下,本公开的实施例及实施例中的特征可以相互组合以得到新的实施例。
以上所述,仅为本公开的具体实施方式,但本公开的保护范围并不局限于此,本公开的保护范围应以所述权利要求的保护范围为准。
本申请要求于2016年11月22日递交的中国专利申请第201611028020.5号的优先权,在此全文引用上述中国专利申请公开的内容以作为本申请的一部分。

Claims (19)

  1. 一种智能容器,包括:
    瓶体;
    设置于所述瓶体上的发光器件,所述发光器件包括至少一个发光单元,所述发光单元被配置为向所述瓶体内部和所述瓶体外部发射光线。
  2. 根据权利要求1所述的智能容器,其中,所述发光单元发出的光包括红光、绿光、蓝光和白光中的至少一种。
  3. 根据权利要求2所述的智能容器,其中,所述发光单元包括发光二极管。
  4. 根据权利要求1-3任一项所述的智能容器,其中,所述瓶体上设置有第一开孔,所述发光单元设置于所述第一开孔内。
  5. 根据权利要求1-4任一项所述的智能容器,还包括与所述瓶体连接并为所述瓶体提供支撑的底座。
  6. 根据权利要求5所述的智能容器,还包括设置于所述底座上的控制单元,所述控制单元与所述发光器件连通以控制所述发光器件的发光。
  7. 根据权利要求6所述的智能容器,其中,
    所述控制单元配置为控制所述发光器件的发光强度和发光颜色中的至少一个。
  8. 根据权利要求6或7所述的智能容器,还包括设置于所述瓶体上的显示屏,所述显示屏与所述控制单元连通以响应所述控制单元的传输信号进行显示。
  9. 根据权利要求8所述的智能容器,其中,所述显示屏包括柔性显示屏。
  10. 根据权利要求8或9所述的智能容器,其中,所述显示屏包括触控式显示屏。
  11. 根据权利要求6-10任一项所述的智能容器,还包括设置于所述瓶体上的传感器,所述控制单元与所述传感器连通以接收所述传感器发出的感应信号。
  12. 根据权利要求11所述的智能容器,其中,所述传感器包括位于所述瓶体内的第一传感器单元和位于所述瓶体外的第二传感器单元中的至少 一个。
  13. 根据权利要求12所述的智能容器,其中,
    所述第一传感器单元配置为检测所述瓶体内的酸碱度、盐分和营养元素中的至少一个。
  14. 根据权利要求12或13所述的智能容器,其中,
    所述第二传感器单元配置为检测所述瓶体外的甲醛、粉尘和放射性中的至少一个。
  15. 根据权利要求12-14任一所述的智能容器,其中,所述瓶体上设置有第二开孔,所述第一传感器单元通过所述第二开孔与所述控制单元连通。
  16. 根据权利要求6-15任一项所述的智能容器,还包括设置于所述底座上的无线通讯器件,所述控制单元通过所述无线通讯器件发送或接收信号。
  17. 根据权利要求16所述的智能容器,还包括无线终端,所述无线终端配置为通过所述无线通讯器件与所述控制单元之间接收或发送信号。
  18. 根据权利要求6-17任一项所述的智能容器,还包括设置于所述底座上的电源,所述控制单元与所述电源连通以控制所述电源的开关状态。
  19. 根据权利要求1-18任一项所述的智能容器,还包括设置于所述瓶体外表面上的装饰层和设置于所述瓶体上的电路走线,其中,所述装饰层暴露所述发光器件,所述电路走线位于所述瓶体与所述装饰层之间。
PCT/CN2017/084693 2016-11-22 2017-05-17 智能容器 WO2018094980A1 (zh)

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