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    • 1. 发明专利
    • Tool changer of working machine
    • 工作机械更换
    • JP2012218138A
    • 2012-11-12
    • JP2011089801
    • 2011-04-14
    • Ying Sun穎 孫
    • SUN YING
    • B23Q3/157
    • PROBLEM TO BE SOLVED: To provide a tool changer of a working machine which houses more tools and exerts no influence on smoothness and convenience in tool replacement.SOLUTION: The tool changer of a working machine includes a track board, a tool board, and a plurality of clamp arms. The track board has a guide groove in the circumferential edge. A guide groove portion positioned in an upper portion of the track board is formed in a semi-circle shape, and a guide groove portion positioned in a lower portion of the track board is formed in a semi-ellipse shape. The tool board is positioned on one side of the track board, faces the guide groove, and rotates relative to the track board, having supporting arms provided radially and at equal intervals in the circumferential edge of the tool board. The clamp arms are each pivotally coupled with the supporting arm to clamp a tool, and a positioning spherical body to be received within the guide groove is provided in the clamp arm. When a supporting arm approaches the lower portion of the track board, the clamp arm coupled with the supporting arm swings outward, thereby creating a relative large spacing between the clamp arm and the neighboring clamp arm, so that, in installing a tool, interruption of and collision with clamp arms on both sides are prevented, the probability of tool changing error is decreased, and saves the time for exchanging the tool.
    • 要解决的问题:为了提供更换工具的工具更换装置,其具有更多的工具,并且不会对工具更换的平滑性和便利性产生影响。 解决方案:工作机械的换刀器包括轨迹板,工具板和多个夹紧臂。 轨道板在周向边缘具有引导槽。 位于轨道板上部的导向槽部形成为半圆形,位于轨道板的下部的导槽部形成为半椭圆形状。 工具板位于跟踪板的一侧,面向引导槽,并且相对于履板板旋转,其具有径向设置在工具板的圆周边缘中等间隔的支撑臂。 夹臂各自与支撑臂枢转地夹紧工具,并且在夹紧臂中设置待被容纳在引导槽内的定位球体。 当支撑臂靠近履带板的下部时,与支撑臂连接的夹紧臂向外摆动,从而在夹紧臂和相邻的夹紧臂之间产生相对较大的间隔,从而在安装工具时中断 并且防止了两侧与夹臂的碰撞,减少了刀具更换误差的可能性,并节省了更换刀具的时间。 版权所有(C)2013,JPO&INPIT
    • 6. 发明授权
    • Automatically matching data sets with storage components
    • 自动将数据集与存储组件进行匹配
    • US08949293B2
    • 2015-02-03
    • US12972137
    • 2010-12-17
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • G06F17/30G06F11/34
    • G06F17/30289G06F11/3442G06F11/3485
    • An administrator of an enterprise storage set may be tasked with storing a large number and variety of data sets on a large number and variety of storage components. However, the manual selection of a physical schema by an administrator may be time-consuming, may generate inefficient physical schemata, and may not be easily reevaluated as the data sets and storage set change. Presented herein are techniques for automatically determining a physical schema by comparing the storage factors of each data set (e.g., data size, relationships with other data sets, and usages of the data set by users) with the storage capabilities of the storage components, selecting a suitable storage component, and implementing the storage of the data set on the storage component. An embodiment of these techniques may thereby achieve an automated identification of a physical schema with improved efficiency and flexibility of the physical schema while conserving administrative resources.
    • 企业存储集的管理员可以负责在大量和多种存储组件上存储大量和多种数据集。 然而,由管理员手动选择物理模式可能是耗时的,可能产生低效的物理模式,并且可能不会随数据集和存储集改变而容易地重新评估。 这里提出的技术是通过将每个数据集的存储因子(例如,数据大小,与其他数据集的关系以及用户的数据集的使用)与存储组件的存储能力进行比较来自动确定物理模式,选择 合适的存储组件,以及在存储组件上实现数据集的存储。 因此,这些技术的实施例可以实现物理模式的自动识别,同时节省管理资源,同时提高物理模式的效率和灵活性。
    • 10. 发明授权
    • Methods and apparatus for parallel scheduling of frequency resources for communication nodes
    • 用于通信节点频率资源并行调度的方法和装置
    • US08483735B2
    • 2013-07-09
    • US12869317
    • 2010-08-26
    • Jawad ManssourChristian SkärbyYing Sun
    • Jawad ManssourChristian SkärbyYing Sun
    • H04B7/00
    • H04W72/121H04W72/1231H04W72/1242
    • Various schedulers are disclosed for use within a network node of a radio access network. A scheduler can be configured to divide a defined frequency bandwidth into a plurality of bandwidth pipes. The scheduler then develops sets of nodes that are candidates for using corresponding ones of the bandwidth pipes to communicate with the network node during a communication time interval. At least one of the sets contains a plurality of candidate nodes. The scheduler operates separate parallel processes that are arranged for computing metrics for the sets of nodes. The scheduler assigns one of the nodes in each set of nodes to the corresponding bandwidth pipe in response to the computed metrics. The scheduler may divide the defined frequency bandwidth into a plurality of non-overlapping bandwidth pipes so that metrics for candidate nodes in one of the sets can be computed independently from candidate nodes in another one of the sets.
    • 公开了在无线电接入网络的网络节点内使用的各种调度器。 调度器可以被配置为将定义的频率带宽划分成多个带宽管道。 然后,调度器开发出在通信时间间隔期间使用对应的带宽管道与网络节点进行通信的候选者的节点集合。 至少一个集合包含多个候选节点。 调度器操作单独的并行进程,其被布置用于计算节点集合的度量。 调度器响应于所计算的度量,将每组节点中的节点之一分配给相应的带宽管道。 调度器可以将定义的频率带宽划分为多个不重叠的带宽管道,使得可以独立于另一组中的候选节点来计算其中一个集合中的候选节点的度量。