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    • 3. 发明授权
    • Operation support apparatus, operation support method, and computer program
    • 操作支持设备,操作支持方法和计算机程序
    • US08527315B2
    • 2013-09-03
    • US13132848
    • 2010-12-02
    • Shinichirou ShimoiHideto NakamuraIsao Oshita
    • Shinichirou ShimoiHideto NakamuraIsao Oshita
    • G06Q10/00
    • G06Q50/04G05B19/418G05B2219/35494G06F9/453G06Q10/06398Y02A40/30Y02P90/02Y02P90/20Y02P90/30
    • For each of tasks performed in an operation of manufacturing equipment, a proficiency of a worker with respect to a task to be performed is obtained from a proficiency DB (120) storing proficiencies of workers with respect to the tasks. A guidance base time (314) determined based on a manufacturing schedule is controlled corresponding to the proficiency of the worker, a guidance control time (334) corresponding to the proficiency of the worker is determined, and guidance is outputted at the guidance control time (334). The proficiency of the worker with respect to the task is corrected based on task record information (340) including a task content and a task time of a task performed by the worker and on the guidance control time (334), and the proficiency of the worker with respect to the task stored in the proficiency DB (120) is updated.
    • 对于在制造设备的操作中执行的每个任务,从相对于任务存储工作人员的熟练程度的能力DB(120)获得工作人员相对于执行任务的熟练程度。 根据工作人员的熟练程度来控制基于制造进度确定的指导基准时间(314),确定与工作人员熟练程度相对应的引导控制时间(334),并且在引导控制时间( 334)。 基于任务记录信息(340),工作人员对该任务的熟练度被改正,任务记录信息(340)包括任务内容和工作人员执行的任务的任务时间和引导控制时间(334),以及熟练度 相对于熟练度DB(120)中存储的任务的工作者被更新。
    • 4. 发明申请
    • PLANT CULTIVATION SYSTEM, AND PLANT CULTIVATION UNIT
    • 植物培育系统和植物培养单元
    • US20160286736A1
    • 2016-10-06
    • US14777612
    • 2014-02-14
    • NEC SOLUTION INNOVATORS, LTD.
    • Hideo SHIMAZU
    • A01G9/24
    • A01G9/24A01G9/243A01G9/246Y02A40/264Y02A40/30
    • A plant cultivation system 100 includes a plurality of plant cultivation units 20, and a management apparatus 30 that manages each plant cultivation unit 20. Each plant cultivation unit 20 includes a greenhouse 1 that serves as a space for plant cultivation, an environment control unit 12 that controls an environment in the greenhouse 1, a storage unit 9 that stores setting values that are control targets for the environment control unit 12 for every number of elapsed days since the cultivation initiating day, and an environment setting instructing unit 10 that sets the setting values stored in the storage unit 9 in the environment control unit 12 in accordance with the number of elapsed days since a cultivation initiating day. The management apparatus 30 sends the setting values for every number of elapsed days since the cultivation initiating day to each of the plant cultivation units 20, causes the storage unit 9 of each of the plant cultivation unit 20 to store the setting values, and gives an instruction for initiating plant cultivation.
    • 植物栽培系统100包括多个植物栽培单元20和管理每个植物栽培单元20的管理设备30.每个植物栽培单元20包括用作植物培养空间的温室1,环境控制单元12 其控制温室1中的环境,存储单元9,其存储作为环境控制单元12的控制目标的设定值,用于从培养开始日起的每个经过天数;以及环境设置指示单元10,其设置设置 根据从培育开始日起经过的天数,存储在环境控制单元12中的存储单元9中的值。 管理装置30将从培养开始日起的每个经过天数的设定值发送到植物栽培单元20,使植物栽培单元20的每个的存储单元9存储设定值,并且给出 开展植物栽培的指示。
    • 8. 发明申请
    • PROGRAMMABLE PLANT SYSTEM
    • 可编程植物系统
    • US20140258173A1
    • 2014-09-11
    • US14351189
    • 2012-10-18
    • SYNGENTA PARTICIPATIONS AG
    • Matthew BlanchardJoseph Michael DiPaolaNico de Haan
    • G06Q10/06
    • G06Q10/067A01G22/00F04C2270/041G06Q10/06G16Z99/00Y02A40/30
    • Various systems, methods, and computer program products are described for generating and using a computer model that models development of a plant. For example, a method may include generating a computer model based on empirical data. The computer model may eliminate assumptions regarding growing conditions in order to improve outcome predictions. A method may include recommending, using the computer model, different growing conditions based on a particular plant species and observed growing conditions and/or phenotypic features of the plant. The observed growing conditions may be input by sensors and/or a grower. A method may include generating, using the computer model, a planning schedule that includes optimum growing conditions that facilitates optimal scheduling for plant being cultivated. The recommendations and/or planning schedule may facilitate comparison of phenotypic features of a model plant grown under optimal conditions and a plant being grown by a grower.
    • 描述了用于生成和使用模拟工厂开发的计算机模型的各种系统,方法和计算机程序产品。 例如,一种方法可以包括基于经验数据生成计算机模型。 计算机模型可以消除关于生长条件的假设,以改善结果预测。 方法可以包括使用计算机模型推荐基于特定植物物种和植物观察到的生长条件和/或表型特征的不同生长条件。 观察到的生长条件可以由传感器和/或种植者输入。 一种方法可以包括使用计算机模型生成包括促进正在耕种的植物的最佳调度的最佳生长条件的规划进度。 建议和/或计划表可以促进在最佳条件下生长的模型植物和由种植者种植的植物的表型特征的比较。