COLLAPSIBLE CONTAINER
    11.
    发明申请
    COLLAPSIBLE CONTAINER 失效
    可收缩容器

    公开(公告)号:US20090266813A1

    公开(公告)日:2009-10-29

    申请号:US12110021

    申请日:2008-04-25

    CPC classification number: B65D11/1873

    Abstract: A collapsible container for containing goods, including a liquid and/or solid/liquid mixture, configured to be assembled and disassembled manually without the use of tools. The container includes a plurality of upright panels coupled to a base by their bottom portions. Each panel of a first type is flanked along its opposing upright edges by a pair of adjacent panels of a second type. Each of the edges of each of the panels is coupled by an edge joining assembly to one of the edges of one of the flanking panels. The assembly comprises a first elongated edge joining member having a longitudinal channel with alternating partially enclosed portions and substantially unenclosed portions and a second elongated edge joining member having longitudinally extending spaced apart locking members. Each unenclosed portion is configured to receive a locking member, which are slid longitudinally within the channel into an adjacent partially enclosed portion.

    Abstract translation: 用于容纳包含液体和/或固体/液体混合物的物品的可折叠容器,其被构造成在不使用工具的情况下手动组装和拆卸。 容器包括通过其底部部分联接到基座的多个直立面板。 第一类型的每个面板沿其相对的直立边缘侧面是一对第二类型的相邻面板。 每个面板的每个边缘通过边缘连接组件联接到一个侧翼面板的一个边缘。 组件包括具有纵向通道的第一细长边缘连接构件,该纵向通道具有交替的部分封闭部分和基本上未封闭的部分,以及具有纵向延伸的间隔开的锁定构件的第二细长边缘连接构件。 每个未封闭部分构造成接收锁定构件,该锁定构件在通道内纵向滑动到相邻的部分封闭部分中。

    MULTI-LAYERED FOAMED POLYMERIC OBJECTS AND RELATED METHODS
    12.
    发明申请
    MULTI-LAYERED FOAMED POLYMERIC OBJECTS AND RELATED METHODS 有权
    多层泡沫聚合物和相关方法

    公开(公告)号:US20090104420A1

    公开(公告)日:2009-04-23

    申请号:US12016118

    申请日:2008-01-17

    Abstract: The invention disclosed herein relates to relates to foamed thermoplastic material objects and articles of manufacture having an internal layered cellular structure, as well as to methods of making the same. In one embodiment, the invention is directed to a multi-layer foamed polymeric article of manufacture, comprising: a non-laminated multi-layer thermoplastic material sheet, wherein the multi-layer thermoplastic material sheet has first and second discrete outer layers sandwiching a plurality of discrete inner foamed layers, and wherein the two outer layers and plurality discrete inner foamed layers are integral with one another. The thermoplastic material may be a semi-crystalline polymer such as, for example, PET (polyethylene terephthalate), PEEK (polyetheretherketone), PEN (polyethylene napthalate), PBT (polybutylene terephthalate), PMMA (polymethyl methacrylate), PLA (polylactide), polyhydroxy acid (PHA), thermoplastic urethane (TPU), or blends thereof. The two outer layers may be unfoamed skin layers having smooth outer surfaces, and the discrete inner foamed layers may be microcellular.

    Abstract translation: 本文公开的本发明涉及具有内部分层细胞结构的泡沫热塑性材料物体和制品,以及其制造方法。 在一个实施方案中,本发明涉及一种多层发泡聚合物制品,其包括:非层压多层热塑性材料片,其中所述多层热塑性材料片具有夹着多个第一和第二离散外层 的离散的内部发泡层,并且其中两个外层和多个离散的内部发泡层彼此成一体。 热塑性材料可以是半结晶聚合物,例如PET(聚对苯二甲酸乙二醇酯),PEEK(聚醚醚酮),PEN(聚萘二甲酸乙二醇酯),PBT(聚对苯二甲酸丁二醇酯),PMMA(聚甲基丙烯酸甲酯),PLA(聚丙交酯) 多羟基酸(PHA),热塑性聚氨酯(TPU)或其混合物。 两个外层可以是具有光滑外表面的未发泡表皮层,并且离散的内部发泡层可以是微孔的。

    Intelligent selection of multicast filtering modes for switch ports
    13.
    发明授权
    Intelligent selection of multicast filtering modes for switch ports 有权
    智能选择交换机端口的组播过滤模式

    公开(公告)号:US06324575B1

    公开(公告)日:2001-11-27

    申请号:US09240360

    申请日:1999-01-29

    CPC classification number: H04L12/185

    Abstract: A method and system for intelligently selecting the multicast filtering mode of a port in a switch. In one embodiment the present invention determines whether a client is coupled to a port of a switch. In such an embodiment, provided that a client is coupled to the port, the present invention monitors the client to determine if the client is 802.1p compliant. Next, in this embodiment, provided that the client is 802.1p compliant, the present invention automatically selects a Filter Unregistered Groups mode for the port to which the client is coupled. Conversely, if the client is not 802.1p compliant, the present invention selects a Forward All Groups mode for the port to which the client is coupled. In so doing, the present invention intelligently selects the optimal multicast filter mode for a switch and its connected clients. Additionally, the present invention eliminates the need for expensive, time-consuming, and error-prone network administrator intervention.

    Abstract translation: 一种用于智能地选择交换机端口的组播过滤模式的方法和系统。 在一个实施例中,本发明确定客户端是否耦合到交换机的端口。 在这样的实施例中,只要客户机耦合到端口,本发明监视客户端以确定客户端是否符合802.1p。 接下来,在本实施例中,只要客户端符合802.1p,本发明就为客户机所耦合的端口自动选择过滤器未注册组模式。 相反,如果客户端不符合802.1p标准,则本发明为该客户端所耦合的端口选择“转发所有组”模式。 这样做,本发明智能地选择交换机及其连接的客户端的最佳组播过滤器模式。 此外,本发明消除了对昂贵,耗时和容易出错的网络管理员干预的需要。

    Semi-continuous production of solid state polymeric foams
    14.
    发明授权
    Semi-continuous production of solid state polymeric foams 失效
    半连续生产固态聚合物泡沫

    公开(公告)号:US5684055A

    公开(公告)日:1997-11-04

    申请号:US354960

    申请日:1994-12-13

    Abstract: The present invention provides a method for the semi-continuous production of microcellular foam articles. In a preferred embodiment, a roll of polymer sheet is provided with a gas channelling means interleaved between the layers of polymer. The roll is exposed to a non-reacting gas at elevated pressure for a period of time sufficient to achieve a desired concentration of gas within the polymer. The saturated polymer sheet is then separated from the gas channelling means and bubble nucleation and growth is initiated by heating the polymer sheet. After foaming, bubble nucleation and growth is quenched by cooling the foamed polymer sheet.

    Abstract translation: 本发明提供了一种半连续生产微孔泡沫制品的方法。 在一个优选实施例中,一卷聚合物片材设置有交错在聚合物层之间的气体通道装置。 将辊在升高的压力下暴露于非反应性气体一段足以在聚合物内达到所需浓度的气体的时间。 然后将饱和聚合物片材与气体引导装置分离,并且气泡成核,并通过加热聚合物片材开始生长。 发泡后,通过冷却发泡聚合物片来淬灭气泡成核和生长。

    Unsupervised framework to monitor lake dynamics
    16.
    发明授权
    Unsupervised framework to monitor lake dynamics 有权
    无人监控的监测湖泊动态的框架

    公开(公告)号:US09430839B2

    公开(公告)日:2016-08-30

    申请号:US14673010

    申请日:2015-03-30

    Abstract: A method of reducing processing time when assigning geographic areas to land cover labels using satellite sensor values includes a processor receiving a feature value for each pixel in a time series of frames of satellite sensor values, each frame containing multiple pixels and each frame covering a same geographic location. For each sub-area of the geographic location, the sub-area is assigned to one of at least three land cover labels. The processor determines a fraction function for a first sub-area assigned to a first land cover label. The sub-areas that were assigned to the first land cover label are reassigned to one of the second land cover label and the third land cover label based on the fraction functions of the sub-areas.

    Abstract translation: 使用卫星传感器值将地理区域分配给陆地覆盖标签时减少处理时间的方法包括处理器在卫星传感器值的帧的时间序列中接收每个像素的特征值,每个帧包含多个像素,并且每个帧覆盖相同 地理位置。 对于地理位置的每个子区域,子区域被分配给至少三个土地覆盖标签中的一个。 处理器确定分配给第一土地覆盖标签的第一子区域的分数函数。 分配给第一土地覆盖标签的子区域基于子区域的分数函数重新分配给第二土地覆盖标签和第三土地覆盖标签之一。

    UNSUPERVISED FRAMEWORK TO MONITOR LAKE DYNAMICS
    17.
    发明申请
    UNSUPERVISED FRAMEWORK TO MONITOR LAKE DYNAMICS 有权
    不稳定的框架来监测湖泊动态

    公开(公告)号:US20150278627A1

    公开(公告)日:2015-10-01

    申请号:US14673010

    申请日:2015-03-30

    Abstract: A method of reducing processing time when assigning geographic areas to land cover labels using satellite sensor values includes a processor receiving a feature value for each pixel in a time series of frames of satellite sensor values, each frame containing multiple pixels and each frame covering a same geographic location. For each sub-area of the geographic location, the sub-area is assigned to one of at least three land cover labels. The processor determines a fraction function for a first sub-area assigned to a first land cover label. The sub-areas that were assigned to the first land cover label are reassigned to one of the second land cover label and the third land cover label based on the fraction functions of the sub-areas.

    Abstract translation: 使用卫星传感器值将地理区域分配给陆地覆盖标签时减少处理时间的方法包括处理器在卫星传感器值的帧的时间序列中接收每个像素的特征值,每个帧包含多个像素,并且每个帧覆盖相同 地理位置。 对于地理位置的每个子区域,子区域被分配给至少三个土地覆盖标签中的一个。 处理器确定分配给第一土地覆盖标签的第一子区域的分数函数。 分配给第一土地覆盖标签的子区域基于子区域的分数函数重新分配给第二土地覆盖标签和第三土地覆盖标签之一。

    Automated mapping of land cover using sequences of aerial imagery
    18.
    发明授权
    Automated mapping of land cover using sequences of aerial imagery 有权
    使用航空图像序列自动绘制土地覆盖

    公开(公告)号:US08958603B2

    公开(公告)日:2015-02-17

    申请号:US13835022

    申请日:2013-03-15

    CPC classification number: G06F17/30247 G06F17/30241 G06K9/0063 G06K9/4638

    Abstract: A system has an aerial image database containing sensor data representing a plurality of aerial images of an area having multiple sub-areas. A processor applies a classifier to the sensor values to identify a label for each sub-area in each aerial image and to thereby generate an initial label sequence for each sub-area. The processor identifies a most likely land cover state for each sub-area based on the initial label sequence, a confusion matrix and a transition matrix. For each sub-area, the processor stores the most likely land cover state sequence for the sub-area.

    Abstract translation: 系统具有包含表示具有多个子区域的区域的多个航空图像的传感器数据的航空图像数据库。 处理器将分类器应用于传感器值以识别每个空间图像中的每个子区域的标签,从而为每个子区域生成初始标签序列。 处理器基于初始标签序列,混淆矩阵和转换矩阵来识别每个子区域最可能的土地覆盖状态。 对于每个子区域,处理器存储用于子区域的最可能的覆盖状态序列。

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