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    • 2. 发明申请
    • IMPROVEMENTS IN AND RELATING TO LIGHTING SYSTEMS
    • 照明系统的改进和相关
    • WO2014142676A2
    • 2014-09-18
    • PCT/NZ2014/000035
    • 2014-03-12
    • NICHOLLS, Lee Anthony
    • NICHOLLS, Lee Anthony
    • H01R31/02
    • H05B33/0842F21K9/232F21S9/022F21Y2115/10H02J9/06H05B33/0803
    • According to one aspect of the present invention there is provided a removable light source including a light emitting source, a connector for electrically connecting the removable light source to a mains lighting circuit, a secondary power source and a control circuit configured to receive an on/off signal, whereby the control circuit is configured to power the light emitting source on if power is being supplied to the removable light source by the mains lighting circuit, OR power is provided by the secondary power source and the control circuit receives an on signal and power the light emitting source off if power being supplied to the removable light source by the mains lighting circuit ceases and the control circuit does not receive an on signal, OR power is being supplied by the secondary power source and the control circuit receives an off signal.
    • 根据本发明的一个方面,提供了一种可拆卸光源,包括发光源,用于将可拆卸光源电连接到电源照明电路的连接器,辅助电源和被配置为接收开/ 关闭信号,由此控制电路被配置为如果通过电源照明电路向可移除光源供电,则由发光源供电,或由次级电源提供电力,并且控制电路接收接通信号, 如果由市电照明电路供电到可拆卸光源的电源停止并且控制电路没有接收到接通信号,或者由次级电源提供电源,并且控制电路接收关闭信号,则关闭发光源的电源 。
    • 3. 发明申请
    • SYSTEMS FOR RAPID ACCURATE COMPLETE DETAILING AND COST ESTIMATION FOR BUILDING CONSTRUCTION FROM 2D PLANS
    • WO2022256460A1
    • 2022-12-08
    • PCT/US2022/031847
    • 2022-06-01
    • BUILDINGESTIMATES.COM LIMITEDALTMAN, Daniel, E.
    • POWLES, Benjamin, JohnTHOMAS, Stephen, JamesMIRPURU, Shaveer, Rajan
    • G06Q10/06G06Q50/08G06N20/00G06N3/08G06T7/136G06V30/262
    • A structural building design system for processing, interpreting and analysing holistically a multipage set of two-dimensional (2D) real-world building construction plans for a building and yielding near real time accurate material type, quantity, and specification outputs as required for construction of a compliant building from said plans, through computationally generating a mathematical feature vector space dataset, the system comprising: one or more processors configured to: receive a two-dimensional real-world architectural plan for construction of a structural building, wherein the two-dimensional real-world architectural plan includes objects comprising: architectural symbols, lines, shading, or text; perform pre-processing, of characteristics on or associated with the objects on the two dimensional real-world architectural plan on a pixel by pixel basis for measurement or adjacent multi-pixel basis for object detection, wherein the pre-processing comprises two or more of: object detection and recognition, semantic segmentation, or text recognition to identify a plurality of objects, on the two dimensional real-world architectural plan to identify the characteristic features thereof; computationally transforming at least one characteristic feature of known (learned) and unknown (unlearned) detected objects into a mathematical representation thereof to form part of a future vector space dataset; and wherein said transformations for learned and unlearned detected objects have both high level and low level classifications of identified characteristic features; performing a comparison of the future feature vector space dataset for the identified detected objects to confirm the detected objects meet a predetermined confidence threshold for the classification of each detected object; performing a correlation analysis of the characteristic features for detected objects meeting the pre-determined confidence threshold level, wherein the comparison and correlation analyses above include one or more of determining shape, position, adjacent objects and using said pre -processing and results of correlation analysis of the feature vector space dataset via the algorithms to provide output information regarding the 2D plan including producing autonomous, and highly accurate creation of at least one or more of the following outputs: near real time accurate building takeoffs; complete construction estimates; complete construction detailing; detailed bill of materials for the construction of the building; or a document summarizing differences or similarities between building plans.
    • 4. 发明申请
    • METHOD AND APPARATUS FOR FORMING A FORMWORK FOR A CONCRETE SLAB
    • 用于形成混凝土板的方法和装置
    • WO2014196878A1
    • 2014-12-11
    • PCT/NZ2014/000108
    • 2014-06-05
    • PARODI, Fabio
    • PARODI, Fabio
    • E04B5/32E02D27/01E04C5/16E04G15/00E04G17/06
    • E04G15/061E04B5/21E04B5/36E04C5/168E04G9/021E04G9/086E04G11/46E04G17/00
    • A method and apparatus for forming a formwork for a ribbed or waffle concrete slab, the apparatus including a rectangular block (having a ledge around the base, the ledge having a dimension of half the desired width of the base ribs of the concrete slab, and a keystone connector. The keystone connector has an engagement portion configured to engage with an engagement portion on each block. In a preferred method the blocks are laid out so that the ledges of adjacent blocks are in contact. A keystone connector is then placed at each intersection of four blocks by engaging the respective engagement portions of the keystone connector and each block, so that the keystone connector holds each of the four blocks in place relative to one another. The keystone connector is also configured to retain a reinforcing rod laid in the channel between adjacent blocks.
    • 一种用于形成用于棱纹或华夫饼混凝土板的模板的方法和装置,该装置包括矩形块(具有围绕基座的凸缘,所述凸缘的尺寸为混凝土板的基座的所需宽度的一半,以及 梯形连接器具有配置成与每个块上的接合部分接合的接合部分,在优选的方法中,布置所述块,使得相邻块的凸缘接触,然后将梯形连接器放置在每个 通过接合梯形连接器和每个块的各个接合部分的四个块的交叉,使得梯形连接器将四个块中的每一个相对于彼此保持在适当位置,梯形连接器还构造成保持放置在 相邻块之间的通道。