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    • 52. 发明公开
    • METHOD AND APPARATUS FOR PLANT GROWTH
    • VERFAHREN UND VORRICHTUNGFÜRPFLANZENSCHUTZ
    • EP3133912A1
    • 2017-03-01
    • EP15719585.0
    • 2015-04-22
    • Sproutsio, Inc.
    • BROUTIN FARAH, JenniferFARAH, Kamal
    • A01G1/00A01G9/24A01G9/26A01G31/02A01G7/06
    • A01G31/00A01G7/06A01G22/00A01G31/02G05B11/01Y02P60/216
    • Described herein are techniques for a hybrid distributed hydroculture system. A set of growing profiles is stored, wherein each growing profile defines a set of growing parameters for a type of plant. Data is received that is indicative of a growing profile being associated with a plant growing unit in communication with the computing device. A set of growing parameters is transmitted from the growing profile to the plant growing unit so that the plant growing unit can execute the growing parameters to grow a plant that is planted in the plant growing unit. Sensor data is received from the plant growing unit indicative of data from one or more sensors locally installed at the plant growing unit. The set of growing parameters is customized based on the sensor data from the plant growing unit to customize the parameters for the plant environment.
    • 这里描述的是用于混合分布式水文养殖系统的技术。 存储一组增长的轮廓,其中每个生长轮廓定义一组植物的生长参数的集合。 收到指示与计算设备通信的植物生长单元相关联的增长的分布的数据。 一系列生长参数从生长轮廓传输到植物生长单元,使得植物生长单元可以执行生长参数以种植种植在植物生长单元中的植物。 从植物生长单元接收指示来自本地安装在植物生长单元上的一个或多个传感器的数据的传感器数据。 根据植物生长单元的传感器数据定制一组不断增长的参数,以定制植物环境的参数。
    • 53. 发明公开
    • HYDROPONIC CULTURING APPARATUS AND HYDROPONIC CULTURING METHOD
    • 亲水培养装置和对流培养法
    • EP3130220A1
    • 2017-02-15
    • EP15776165.1
    • 2015-02-06
    • Panasonic Intellectual Property Management Co., Ltd.
    • OGATA, Satoshi
    • A01G31/00A01G7/00A01G9/00
    • A01G31/02A01G7/00A01G9/00A01G9/241A01G9/246A01G22/00A01G31/00Y02P60/216
    • A hydroponic apparatus includes: a cultivation tank (1) inside which a plant (P) is held, and into a lower portion of which a nutrient solution (F) is introduced; a separator (4) that separates a first space (D1) where aboveground portions (P1) of the plant (P) are positioned and a second space (D2) where underground portions (P2) of the plant (P) are positioned; an environmental control unit (81) that performs control of adjusting a temperature of the first space (D1) to a first temperature in a first period and adjusting the temperature of the first space to a second temperature lower than the first temperature in a second period; and a humidity control unit (83) that performs control to decrease a humidity of the second space when the growing period for the plant shifts from the first period to the second period.
    • 一种水培装置,其特征在于,具备:栽培槽(1),其内部保持有植物(P),其下部导入营养液(F) (P)的地上部分(P1)所处的第一空间(D1)与所述植物(P)的地下部分(P2)所处的第二空间(D2)之间分离的分离器(4) 环境控制部(81),其进行将第一空间(D1)的温度调整为第一期间的第一温度,并且在第二期间将第一空间的温度调整为比第一温度低的第二温度的控制 ; 以及湿度控制部(83),其在所述设备的生长期间从所述第一期间向所述第二期间移动时,进行控制以降低所述第二空间的湿度。
    • 58. 发明公开
    • PLANT GROWTH CONTROL SYSTEM AND METHOD
    • PFLANZENWACHSTUMSKONTROLLSYSTEM UNDERVERHREN
    • EP3075231A1
    • 2016-10-05
    • EP16158688.8
    • 2016-03-04
    • Xiaomi Inc.
    • WU, KeLIU, Xinyu
    • A01G7/04
    • A01G7/045A01G9/20A01G22/00F21V23/003F21V23/0471G05B15/02Y02P60/146
    • The present invention, pertaining to the field of plant cultivation, provides a plant growth control system and method. The system (100) comprises: an information collector (110), a processor (120) connected to the information collector (110), and a controllable light source (130); wherein the information collector (110) is configured to acquire growth information of a plant, the growth information comprising at least one of branch and leaf distribution information of the plant and flower distribution information of the plant; and the processor (120) is configured to determine, according to the growth information, a target irradiation position of the controllable light source (130) in the plant, and to control the controllable light source (130) to irradiate the target irradiation position in the plant.
    • 关于植物栽培领域的本发明提供了植物生长控制系统和方法。 系统(100)包括:信息收集器(110),连接到信息收集器(110)的处理器(120)和可控光源(130); 其中所述信息收集器(110)被配置为获取植物的生长信息,所述生长信息包括所述植物的分支和叶分布信息以及所述植物的花分布信息中的至少一个; 并且所述处理器(120)被配置为根据所述增长信息确定所述可控光源(130)在所述设备中的目标照射位置,并且控制所述可控光源(130)照射所述可控光源 植物。