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    • 1. 发明申请
    • PREFERENCE BASED CLUSTERING
    • 基于偏好的聚类
    • US20150120731A1
    • 2015-04-30
    • US14072794
    • 2013-11-06
    • PHILIPPE NEMERYMengjiao Wang
    • PHILIPPE NEMERYMengjiao Wang
    • G06F17/30
    • G06F16/285
    • To cluster objects associated with a dataset, a selection of criteria is received. For the received criteria, preference information is received to perform a preference-based clustering of the objects. Based on the preference information, a uni-criterion preference degree corresponding to each of the selected criterion is computed. The uni-criterion preference degrees of all the selected criteria are aggregated to compute a universal preference degree. Based on a preference-type and the computed preference degree, a relationship matrix is generated. The matrix representing similarity measure between the objects is generated. The objects are clustered according to the relationship matrix. A visualization of the clustered objects is rendered on an associated user interface.
    • 要集群与数据集关联的对象,接收到选择的条件。 对于接收到的标准,接收到偏好信息以执行对象的基于偏好的聚类。 基于偏好信息,计算与所选择的标准中的每一个对应的单一标准偏好度。 所有所选标准的单一标准偏好度被聚合以计算通用偏好度。 基于偏好类型和计算的偏好度,生成关系矩阵。 生成表示对象之间的相似性度量的矩阵。 对象根据关系矩阵进行聚类。 聚集对象的可视化在相关联的用户界面上呈现。
    • 4. 发明授权
    • Methods and systems for routing selection based on routing distance and capacity
    • 基于路由距离和容量的路由选择方法和系统
    • US09350643B2
    • 2016-05-24
    • US14052557
    • 2013-10-11
    • Mengjiao WangYu ChengWen-Syan Li
    • Mengjiao WangYu ChengWen-Syan Li
    • H04L12/729H04L12/751
    • H04L45/125H04L45/02
    • A system, computer-readable storage medium storing at least one program, and computer-implemented method for route selection based on payload delivery capacity and routing distance are described. Network demand information is obtained. The network demand information may include a network graph and information related to an outbound demand of each node of the network graph. A simplified demand graph based on the outbound demand of each node and a distance between each node pair is generated. A plurality of return routes for the simplified network graph is generated and a payload delivery capacity of each of the routes is calculated. An advised return route from the plurality of return routes is generated based in part on the payload delivery capacities of the plurality of return routes.
    • 描述了存储至少一个程序的系统,计算机可读存储介质和用于基于有效载荷传送能力和路由距离的路由选择的计算机实现的方法。 获得网络需求信息。 网络需求信息可以包括网络图和与网络图的每个节点的出站需求相关的信息。 生成基于每个节点的出站需求和每个节点对之间的距离的简化需求图。 生成用于简化网络图的多个返回路线,并且计算每个路线的有效载荷传送能力。 部分地基于多个返回路线的有效载荷传送容量来生成来自多个返回路线的建议返回路线。
    • 5. 发明申请
    • INCIDENT RECONSTRUCTIONS USING TEMPORAL AND GEOGRAPHIC ANALYSIS
    • 使用时间和地理分析的偶然重写
    • US20160239752A1
    • 2016-08-18
    • US14624246
    • 2015-02-17
    • Mengjiao WangWen-Syan Li
    • Mengjiao WangWen-Syan Li
    • G06N7/00G06F17/30
    • G06F16/487G06F16/489
    • An incident handler receives a plurality of incident reports, each incident report characterizing an incident occurring within a geographical area. An incident model generator generates an incident model, based on, for each incident, an occurrence time window and an occurrence area within the geographical area. An incident estimator receives a new incident report characterizing a new incident occurring within the geographical area and recorded within a plurality of media files captured by at least one media capture device, the new incident report including a new occurrence time window and new occurrence area. The incident estimator further prioritizes the plurality of media files, based on the incident model, the new occurrence time window, and the new occurrence area, in an order corresponding to a likelihood of inclusion of the new incident therein. A media manager selects and sorts the prioritized media files for ordered playback thereof.
    • 事件处理程序接收多个事件报告,每个事件报告表征在地理区域内发生的事件。 事件模型发生器根据每个事件产生事件模型,发生时间窗口和地理区域内的发生区域。 事件估计器接收表征在地理区域内发生的新事件的新事件报告,记录在由至少一个媒体捕获设备捕获的多个媒体文件中,新的事件报告包括新的发生时间窗口和新的出现区域。 事件估计器根据事件模型,新出现时间窗口和新发生区域,按照与其中包含新事件的可能性相对应的顺序进一步优先考虑多个媒体文件。 媒体管理器选择和排序优先的媒体文件以进行有序播放。
    • 6. 发明申请
    • LARGE SCALE FLIGHT SIMULATION
    • 大规模飞行模拟
    • US20160055275A1
    • 2016-02-25
    • US14465239
    • 2014-08-21
    • Mengjiao WangChenjun YangWen-Syan Li
    • Mengjiao WangChenjun YangWen-Syan Li
    • G06F17/50
    • G06Q10/06G06Q50/30G09B9/08
    • This disclosure generally relates to devices, systems, and computer-implemented methods for simulating flights. Specifically, methods are described that comprise the operations of receiving flight information for one or more flights to be simulated; receiving historical flight information for historical flights; determining, based on the flight information and the historical flight information, probabilities for one or more flight parameters of the one or more flights to be simulated; determining a current state of the one or more flights to be simulated based on the determined probabilities for the one or more flight parameters; determining a next state of the one or more flights to be simulated based on the current state; and outputting one or more evaluation parameters associated with the next state of the one or more flights to be simulated.
    • 本公开通常涉及用于模拟飞行的装置,系统和计算机实现的方法。 具体地,描述了包括接收要模拟的一个或多个航班的飞行信息的操作的方法; 接收历史航班的历史航班信息; 基于所述航班信息和所述历史航班信息来确定要被模拟的所述一个或多个航班的一个或多个航班参数的概率; 基于所确定的一个或多个飞行参数的概率来确定要模拟的一个或多个航班的当前状态; 基于当前状态确定要模拟的一个或多个航班的下一状态; 并且输出与待模拟的一个或多个航班的下一状态相关联的一个或多个评估参数。
    • 8. 发明申请
    • SYSTEM AND METHOD OF FUEL FILLING TO MINIMIZE FUEL COST
    • 燃料充填系统和方法,以最小化燃料成本
    • US20150178799A1
    • 2015-06-25
    • US14134567
    • 2013-12-19
    • Yu ChengMengjiao WangWen-Syan Li
    • Yu ChengMengjiao WangWen-Syan Li
    • G06Q30/02G06Q50/06
    • G06Q30/0283G06Q50/06
    • In an example, a method for determining quantities of fuel to dispense at a plurality of terminals along a transit route of a vehicle includes identifying a plurality of terminals along the transit route, each terminal of the plurality of terminals have an associated cost-per-unit of fuel dispensed; initializing a set of candidate fueling scenarios, each candidate fueling scenario including an initial array of values, each value in the array of values indicating a quantity of fuel to dispense to the vehicle at one of the plurality of terminals along the transit route; iteratively, using at least one processor, modifying the set of candidate scenarios; identifying the candidate scenario of the set of candidate scenarios with the lowest total fuel cost; and transmitting for display, the quantity of fuel to dispense at each of the plurality of terminals according to the identified lowest total fuel cost candidate scenario.
    • 在一个示例中,用于确定在沿着交通路线的多个终端处分配的燃料量的方法包括:沿着所述运输路线识别多个终端,所述多个终端中的每个终端具有相关联的成本 - 燃油单位 初始化一组候选加油场景,每个候选加油场景包括初始数值阵列,所述值阵列中的每个值表示沿所述运输路线在所述多个终端中的一个终端处分配给所述车辆的燃料量; 迭代地使用至少一个处理器,修改所述一组候选场景; 确定具有最低总燃料成本的一组候选情景的候选情景; 以及根据所识别的最低总燃料成本候选情景,发送用于显示在所述多个终端中的每一个处分配的燃料量。
    • 9. 发明申请
    • PRODUCTION RESOURCE MANAGEMENT
    • 生产资源管理
    • US20150081077A1
    • 2015-03-19
    • US14043415
    • 2013-10-01
    • Wen-Syan LiYu ChengMengjiao Wang
    • Wen-Syan LiYu ChengMengjiao Wang
    • G05B19/418
    • G05B19/41865G05B2219/32304G05B2219/32333Y02P90/04Y02P90/20Y02P90/28
    • In accordance with aspects of the disclosure, systems and methods are provided for managing production resources including scheduling production events for production resources used to manufacture products relative to time intervals while maintaining collaboration among the production resources. The systems and methods may include retrieving information related to each production resource, evaluating each production event for each product to determine a sequence of the production events, and generating potential production scheduling schemes for use of each production resource within the time intervals while maintaining collaboration among the production resources. The systems and methods may include generating a production schedule for the production events within the time intervals based on the potential production scheduling schemes for use of each production resource within the time intervals while maintaining collaboration among the production resources.
    • 根据本公开的方面,提供了用于管理生产资源的系统和方法,包括为维持生产资源之间的协作而相对于时间间隔制造产品的生产资源的调度生产事件。 系统和方法可以包括检索与每个生产资源相关的信息,评估每个产品的每个生产事件以确定生产事件的顺序,以及在时间间隔期间生成用于使用每个生产资源的潜在生产调度方案,同时保持在 生产资源。 系统和方法可以包括在时间间隔内基于用于在生产资源之间的协作的时间间隔内的每个生产资源的潜在生产调度方案在时间间隔内生成生产事件的生产计划。
    • 10. 发明申请
    • DEVICE LAYOUT OPTIMIZATION FOR SURVEILLANCE DEVICES
    • 监控设备的设备布局优化
    • US20160240054A1
    • 2016-08-18
    • US14624241
    • 2015-02-17
    • Mengjiao WangWen-Syan Li
    • Mengjiao WangWen-Syan Li
    • G08B13/196H04N7/18
    • G08B13/19645G08B13/1968G08B29/18H04N7/181
    • A candidate position selector determines locations for M candidate positions along pathways within an area defining potential routes for moving objects within the area. A coverage rate calculator calculates a coverage rate for a device layout of N media capture devices among the M candidate positions, including calculating the coverage rate as a ratio of the moving objects captured by the N media capture devices in the device layout to a total number of the moving objects in the area within a defined period of time. A layout selector iteratively tests different device layouts of the N media capture devices among the M candidate positions, based on corresponding coverage rates calculated by the coverage rate calculator for each tested device layout, until a termination condition is reached and a final device layout of the tested device layouts is selected.
    • 候选位置选择器确定沿着定义用于在该区域内移动物体的潜在路线的区域内的路径的M个候选位置的位置。 覆盖率计算器计算M个候选位置中的N个媒体捕获设备的设备布局的覆盖率,包括计算覆盖率,作为由设备布局中的N个媒体捕获设备捕获的移动对象与总数之比 在一定时间内的区域内的移动物体。 布局选择器基于针对每个被测设备布局的覆盖率计算器计算的相应的覆盖率迭代测试N个媒体捕获设备在M个候选位置中的不同设备布局,直到达到终止条件,并且最终的设备布局 已选中测试的设备布局。