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    • 1. 发明申请
    • DEVICE FOR MAXIMUM DETECTION OF VIBRATING ENERGY FOR HARVESTING ENERGY
    • 用于最大限度地检测能量的振动能量的装置
    • US20130062999A1
    • 2013-03-14
    • US13121529
    • 2009-09-10
    • A.S.M. Muker-Uz-ZamanOthman MasuriShaharia Bhuyan MohammadHakimin Zainuddin KhairulSulaiman SurayaSantoso Tamsir Agus
    • A.S.M. Muker-Uz-ZamanOthman MasuriShaharia Bhuyan MohammadHakimin Zainuddin KhairulSulaiman SurayaSantoso Tamsir Agus
    • H02N2/18
    • H02N2/186
    • An energy harvesting device (100) comprises a hollow prismatic body (12) formed of a plurality of faces are coated with a piezoelectric layer thereon, a plurality of elongated cantilevers (14) are arranged spatially from each other and inserted through the faces of the hollow prismatic body (12), the elongated cantilevers (14) are coated with a piezoelectric layer thereon, and at least one inner resilient means (16) of a particular stiffness having one end attached the hollow prismatic body (12) after determined the centre of gravity and mass of the hollow prismatic body (12) and the other end attached to a base (18) in order to be stable on its axis, wherein the device (100) is capable of detecting small amount of environmentally available vibration sources and producing huge vibration to the hollow prismatic body (12) and the cantilevers (14), thereby inducing the device (100) to generate electrical energy. The energy harvesting device (100) is capable of harvesting energy from ambient low scale vibration. Therefore it is applicable to any kind of energy harvesting where mechanical force in need to converted to electrical energy.
    • 能量收集装置(100)包括由多个面形成的中空棱柱体(12),其上涂覆有压电层,多个细长悬臂(14)彼此空间布置并插入穿过 空心棱柱体(12),细长悬臂(14)上涂有压电层,以及至少一个具有特定硬度的内部弹性装置(16),其中一个端部在确定中心部分之后连接中空棱柱体(12) 的中空棱柱体(12)的重力和质量,另一端连接到基座(18),以便在其轴线上稳定,其中装置(100)能够检测少量的环境可用的振动源和 对中空棱柱体(12)和悬臂(14)产生巨大的振动,从而引起装置(100)产生电能。 能量收集装置(100)能够从周围的低规模振动中收集能量。 因此适用于需要转换为电能的机械力的任何种类的能量采集。
    • 3. 发明申请
    • DEVICE FOR CONTROLLING AND PROFILING FIELD CONDITIONS AND METHOD THEREFOR
    • 用于控制和配置的设备现场条件及其方法
    • US20120053706A1
    • 2012-03-01
    • US13145140
    • 2010-01-19
    • A.S.M Mukter-Uz-ZamanWahab Bin Abdullah AbdulOthman MasuriHasmi Bin Wan Kamal Wan
    • A.S.M Mukter-Uz-ZamanWahab Bin Abdullah AbdulOthman MasuriHasmi Bin Wan Kamal Wan
    • G06F17/00
    • G08C17/00A01G25/167G08C2201/51
    • The present invention relates to a device (500) configured to profile and control field conditions for plants grown in an environment. The device (500) is essentially comprised of at least one integrated sensor systems (10) configured to acquire data associated with the field conditions, and at least one feedback control system (20) for regulating the field conditions. The device (500) further comprises an inference unit configured for receiving and profiling the data from the integrated sensor systems (10); determining revised field conditions in accordance to the plants' requirements based on the data acquired from said integrated sensor system (10), and manipulating the feedback control system (20) in a feedback manner to regulate the field conditions in the environment into the revised state. In addition, the inference unit is in communication with the monitoring component and the controlling component via connections.
    • 本发明涉及一种被配置为对在环境中生长的植物进行田间条件的分布和控制的装置(500)。 装置(500)主要由至少一个被配置为获取与现场条件相关的数据的集成传感器系统(10)和至少一个用于调节现场条件的反馈控制系统(20)组成。 所述设备(500)还包括被配置用于从所述集成传感器系统(10)接收和分析所述数据的推理单元; 基于从所述集成传感器系统(10)获取的数据,根据所述工厂的要求确定修改的现场条件,并以反馈方式操纵所述反馈控制系统(20),以将所述环境中的现场条件调整到修改状态 。 此外,推理单元经由连接与监视组件和控制组件通信。