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    • 3. 发明授权
    • Providing a marketplace for sensor data
    • 为传感器数据提供市场
    • US08489463B2
    • 2013-07-16
    • US12908794
    • 2010-10-20
    • Mainak SenDebojyoti DuttaNagarajan Duraisamy
    • Mainak SenDebojyoti DuttaNagarajan Duraisamy
    • G06Q30/00
    • G06Q30/08H04L67/12
    • In one embodiment, a method includes accessing first information identifying a sensor-data set that includes sensor-data from multiple sensor-data streams from multiple sensors over a period of time, with the sensor data from the sensor-data streams having been combined with each other based on a relationship of the sensor data to a sensor subject; accessing second information identifying one or more offers to purchase the sensor-data set; and matching one of the offers with the sensor-data set to facilitate a purchase of the sensor-data set based at least on the one of the offers matched to the sensor-data set.
    • 在一个实施例中,一种方法包括访问在一段时间内从多个传感器的多个传感器数据流中识别包括传感器数据的传感器数据集的第一信息,其中来自传感器数据流的传感器数据已经与 基于传感器数据与传感器对象的关系; 访问识别一个或多个提供以购买传感器数据集的第二信息; 以及将所述优惠中的一个与所述传感器数据集匹配,以便于至少基于与所述传感器数据集匹配的所述提供中的一个提供购买所述传感器数据集。
    • 7. 发明授权
    • Aggregating sensor data
    • 聚合传感器数据
    • US09225793B2
    • 2015-12-29
    • US13016938
    • 2011-01-28
    • Debojyoti DuttaMainak SenManoj Kumar PandeyTarun BankaRaja Suresh Krishna Balakrishnan
    • Debojyoti DuttaMainak SenManoj Kumar PandeyTarun BankaRaja Suresh Krishna Balakrishnan
    • G06F7/00G06F17/30H04L29/08
    • H04L67/2804H04L67/12H04L67/2823
    • In particular embodiments, a method includes accessing sensor data from sensor nodes in a sensor network and aggregating the sensor data for communication to an indexer in the sensor network. The aggregation of the sensor data includes deduplicating the sensor data; validating the sensor data; formatting the sensor; generating metadata for the sensor data; and time-stamping the sensor data. The metadata identifies one or more pre-determined attributes of the sensor data. The method also includes communicating the aggregated sensor data to the indexer in the sensor network. The indexer is configured to index the aggregated sensor data according to a multi-dimensional array for querying of the aggregated sensor data along with other aggregated sensor data. One or more first ones of the dimensions of the multi-dimensional array include time and one or more second ones of the dimensions of the multi-dimensional include one or more of the pre-determined sensor-data attributes.
    • 在特定实施例中,一种方法包括从传感器网络中的传感器节点访问传感器数据,并将传感器数据聚合以用于传感器网络中的分度器。 传感器数据的聚合包括对传感器数据进行重复数据删除; 验证传感器数据; 格式化传感器; 生成传感器数据的元数据; 并对传感器数据进行时间戳。 元数据识别传感器数据的一个或多个预定属性。 该方法还包括将聚合的传感器数据传送到传感器网络中的分度器。 索引器被配置为根据用于查询聚合的传感器数据的多维阵列以及其他聚合的传感器数据来索引聚合的传感器数据。 多维阵列的维度中的一个或多个第一个尺寸包括时间,并且多维尺寸中的一个或多个第二维包括预定传感器数据属性中的一个或多个。
    • 8. 发明申请
    • CLOUD RESOURCE PLACEMENT USING PLACEMENT PIVOT IN PHYSICAL TOPOLOGY
    • 使用放置在物理拓扑学中的云资源放置
    • US20140059178A1
    • 2014-02-27
    • US13591107
    • 2012-08-21
    • Debojyoti DUTTASenhua HUANGRaja TADIMETISubrata BANERJEE
    • Debojyoti DUTTASenhua HUANGRaja TADIMETISubrata BANERJEE
    • G06F15/16
    • H04L41/145H04L41/0823H04L41/0883
    • In one embodiment, a method comprises retrieving a request graph specifying request nodes identifying respective requested cloud computing service operations, and at least one request edge specifying a requested path requirements connecting the request nodes; identifying a placement pivot among feasible cloud elements identified in a physical graph representing a data network having a physical topology, each feasible cloud element an available solution for one of the request nodes, the placement pivot having a maximum depth in the physical topology relative to the feasible cloud elements; ordering the feasible cloud elements, according to increasing distance from the placement pivot to form an ordered list of candidate sets of feasible cloud elements; and determining an optimum candidate set, from at least a portion of the ordered list, based on the optimum candidate set having an optimized fitness function in the physical graph among the other candidate sets in the ordered list.
    • 在一个实施例中,一种方法包括检索指定请求节点的请求图,所述请求图识别相应的所请求的云计算服务操作,以及至少一个请求边缘,其指定连接所述请求节点的请求的路径要求; 识别在表示具有物理拓扑的数据网络的物理图中识别的可行云元素之间的放置枢轴,每个可行云元素是所述请求节点之一的可用解决方案,所述放置枢轴在所述物理拓扑中具有相对于所述物理拓扑的最大深度 可行的云元素; 根据从放置枢轴的距离的增加来排序可行的云元素,以形成可行云元素候选集的有序列表; 以及从所述有序列表的至少一部分基于在所述有序列表中的所述其他候选集中的所述物理图中具有优化的适应度函数的最佳候选组来确定最佳候选集。
    • 10. 发明申请
    • GENERALIZED COORDINATE SYSTEM AND METRIC-BASED RESOURCE SELECTION FRAMEWORK
    • 一般协调系统和基于公制的资源选择框架
    • US20130290536A1
    • 2013-10-31
    • US13455828
    • 2012-04-25
    • Debojyoti DuttaSubrata Banerjee
    • Debojyoti DuttaSubrata Banerjee
    • G06F15/173
    • G06F9/5027G06F2209/502
    • In one embodiment, an n-dimensional resource vector for each of a plurality of resources in a computer network is determined, each n-dimensional resource vector having n property values for a corresponding resource of the plurality of resources. Upon receiving a request for one or more resources of the plurality of resources, where the request indicates one or more desired property values, the techniques convert the desired property values of the request into an n-dimensional request vector, determine a distance between each resource vector and the request vector, and provide a response to the request, the response indicating one or more closest match resources for the request based on the distances.
    • 在一个实施例中,确定计算机网络中的多个资源中的每一个的n维资源向量,每个n维资源向量具有用于多个资源的相应资源的n个属性值。 在接收到对于多个资源中的一个或多个资源的请求(其中请求指示一个或多个期望属性值)时,该技术将请求的期望属性值转换为n维请求向量,确定每个资源之间的距离 向量和请求向量,并且向请求提供响应,响应指示基于距离的请求的一个或多个最近匹配资源。