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    • 1. 发明申请
    • CONCURRENT ACCESS TO A MEMORY POOL SHARED BETWEEN A BLOCK ACCESS DEVICE AND A GRAPH ACCESS DEVICE
    • 一个块访问设备和图形访问设备之间的存储池的并发访问
    • US20140059316A1
    • 2014-02-27
    • US14015339
    • 2013-08-30
    • Matthew H. KlapmanBrian E. Mastenbrook
    • Matthew H. KlapmanBrian E. Mastenbrook
    • G06F3/06
    • G06F3/061G06F3/0622G06F3/0655G06F3/0673G06F16/13
    • A graph access device and block access device can simultaneously access a memory pool shared between the devices. The memory pool may include one or more memory arrays accessed as a single logical memory. The block access device accesses the memory pool as a flat array of memory blocks, and the graph access device accesses the memory pool as hierarchical file system. The simultaneous access is accomplished by monitoring one or more memory block access operations performed by the block access device, while it is accessing the memory pool. The block access operations are translated into a graph data structure including a plurality of pointers mapping the memory pool to the hierarchical file system. A processor regulates access to the memory pool, and is configured to permit the graph access device to access the memory pool concurrently with the block access device, in accordance with the graph data structure.
    • 图形访问设备和块访问设备可以同时访问设备之间共享的内存池。 存储器池可以包括作为单个逻辑存储器访问的一个或多个存储器阵列。 块访问设备以存储块的平面阵列访问存储器池,并且图形访问设备作为分层文件系统访问存储器池。 当访问存储器池时,通过监视块访问设备执行的一个或多个存储器块访问操作来实现同时访问。 块访问操作被转换为图形数据结构,包括将存储器池映射到分层文件系统的多个指针。 处理器调节对存储器池的访问,并且被配置为允许图形访问设备根据图形数据结构与块访问设备同时访问存储器池。
    • 2. 发明授权
    • Device for determining an orientation of at least a portion of a living
body
    • 用于确定生物体的至少一部分的取向的装置
    • US5323174A
    • 1994-06-21
    • US984560
    • 1992-12-02
    • Matthew H. KlapmanDavid J. Frerichs
    • Matthew H. KlapmanDavid J. Frerichs
    • G06F3/00G06F3/01G06F3/033G09G5/08
    • G06F3/011G06F3/0338
    • A device used for measuring the orientation of a human head about one or two axes and converting that information into an electrical signal in the analog or digital domain includes a headset and includes one or two electromechanical orientation sensors which provide an electrical signal that corresponds to the orientation of the head without any reference to an off-of-the body reference. The orientation sensor includes a signal generating device, such as a variable resistor, coupled to the torso of the user via a mechanical linkage. As the head moves, the linkage moves and changes the resistance of the variable resistor. The change in resistance corresponds to the orientation of the head. One orientation sensor is used to measure the horizontal, or lateral angle, of the head with respect to the torso, or shoulder blades. Two orientation sensors mounted on each side of the head measure both the lateral and vertical angles of the head with respect to the torso, or shoulder blades. Also disclosed is a single sensor having two signal generating devices wherein one signal generating device detects primarily lateral movement while the other signal generating device detects primarily vertical movement.
    • 用于测量人头围绕一个或两个轴并且将该信息转换为模拟或数字域中的电信号的装置的装置包括耳机,并且包括一个或两个机电取向传感器,其提供对应于 头部的方向,而不是参考身体参考。 方向传感器包括经由机械联动件与用户的躯体耦合的诸如可变电阻器的信号发生装置。 当头移动时,连杆移动并改变可变电阻器的电阻。 电阻的变化对应于磁头的方向。 一个方向传感器用于测量头部相对于躯干或肩胛骨的水平或侧向角度。 安装在头部两侧的两个方向传感器测量头部相对于躯干或肩胛骨的横向和垂直角度。 还公开了具有两个信号发生装置的单个传感器,其中一个信号发生装置主要检测横向移动,而另一信号发生装置主要检测垂直运动。
    • 4. 发明授权
    • Concurrent access to a memory pool shared between a block access device and a graph access device
    • 对块访问设备和图形访问设备之间共享的内存池的并发访问
    • US08527719B2
    • 2013-09-03
    • US12912709
    • 2010-10-26
    • Matthew H. KlapmanBrian E. Mastenbrook
    • Matthew H. KlapmanBrian E. Mastenbrook
    • G06F13/00G06F13/28
    • G06F3/061G06F3/0622G06F3/0655G06F3/0673G06F17/30091
    • A graph access device and block access device can simultaneously access a memory pool shared between the devices. The memory pool may include one or more memory arrays accessed as a single logical memory. The block access device accesses the memory pool as a flat array of memory blocks, and the graph access device accesses the memory pool as hierarchical file system. The simultaneous access is accomplished by monitoring one or more memory block access operations performed by the block access device, while it is accessing the memory pool. The block access operations are translated into a graph data structure including a plurality of pointers mapping the memory pool to the hierarchical file system. A processor regulates access to the memory pool, and is configured to permit the graph access device to access the memory pool concurrently with the block access device, in accordance with the graph data structure.
    • 图形访问设备和块访问设备可以同时访问设备之间共享的内存池。 存储器池可以包括作为单个逻辑存储器访问的一个或多个存储器阵列。 块访问设备以存储块的平面阵列访问存储器池,并且图形访问设备作为分层文件系统访问存储器池。 当访问存储器池时,通过监视块访问设备执行的一个或多个存储器块访问操作来实现同时访问。 块访问操作被转换为图形数据结构,包括将存储器池映射到分层文件系统的多个指针。 处理器调节对存储器池的访问,并且被配置为允许图形访问设备根据图形数据结构与块访问设备同时访问存储器池。
    • 5. 发明申请
    • CONCURRENT ACCESS TO A MEMORY POOL SHARED BETWEEN A BLOCK ACCESS DEVICE AND A GRAPH ACCESS DEVICE
    • 一个块访问设备和图形访问设备之间的存储池的并发访问
    • US20110113210A1
    • 2011-05-12
    • US12912709
    • 2010-10-26
    • Matthew H. KlapmanBrian E. Mastenbrook
    • Matthew H. KlapmanBrian E. Mastenbrook
    • G06F12/00G06F12/14
    • G06F3/061G06F3/0622G06F3/0655G06F3/0673G06F17/30091
    • A graph access device and block access device can simultaneously access a memory pool shared between the devices. The memory pool may include one or more memory arrays accessed as a single logical memory. The block access device accesses the memory pool as a flat array of memory blocks, and the graph access device accesses the memory pool as hierarchical file system. The simultaneous access is accomplished by monitoring one or more memory block access operations performed by the block access device, while it is accessing the memory pool. The block access operations are translated into a graph data structure including a plurality of pointers mapping the memory pool to the hierarchical file system. A processor regulates access to the memory pool, and is configured to permit the graph access device to access the memory pool concurrently with the block access device, in accordance with the graph data structure.
    • 图形访问设备和块访问设备可以同时访问设备之间共享的内存池。 存储器池可以包括作为单个逻辑存储器访问的一个或多个存储器阵列。 块访问设备以存储块的平面阵列访问存储器池,并且图形访问设备作为分层文件系统访问存储器池。 当访问存储器池时,通过监视块访问设备执行的一个或多个存储器块访问操作来实现同时访问。 块访问操作被转换为图形数据结构,包括将存储器池映射到分层文件系统的多个指针。 处理器调节对存储器池的访问,并且被配置为允许图形访问设备根据图形数据结构与块访问设备同时访问存储器池。
    • 6. 发明申请
    • METHOD, SYSTEM AND ARTICLE FOR WIRELESS DEVICES TO DISCOVER AND CONNECT TO OTHER DEVICES
    • 用于无线设备发现和连接到其他设备的方法,系统和文章
    • US20140064260A1
    • 2014-03-06
    • US14015272
    • 2013-08-30
    • Brian E. MastenbrookMatthew H. Klapman
    • Brian E. MastenbrookMatthew H. Klapman
    • H04W8/00H04W76/02
    • H04W8/005H04W76/14
    • Methods and systems are disclosed for a first wireless device to select a wireless network connection to a second wireless device. The wireless network may be a wireless local area network (WLAN), such as a Wi-Fi network. To make its selection, the first wireless device detects a beacon signal transmitted from the second wireless device. The beacon signal including a media access control (MAC) address. The first device then applies a set of programmable rules to at least a portion of the MAC address, and selects the second wireless device based on the application of the rules. The rules may also/alternatively be applied to parameters, for example, sensory inputs, such as time and date, temperature, light intensity or user actions (e.g., screen swipes, button pushes), that are immediate or recorded in a database, whereby certain patterns are matched in order to make the selection.
    • 公开了用于第一无线设备以选择到第二无线设备的无线网络连接的方法和系统。 无线网络可以是诸如Wi-Fi网络的无线局域网(WLAN)。 为了进行选择,第一无线设备检测从第二无线设备发送的信标信号。 信标信号包括媒体访问控制(MAC)地址。 然后,第一设备将一组可编程规则应用于MAC地址的至少一部分,并且基于规则的应用来选择第二无线设备。 这些规则也可以或者替代地应用于直接或记录在数据库中的参数,例如感觉输入,例如时间和日期,温度,光强度或用户动作(例如,屏幕滑动,按钮推动),由此 匹配某些模式以进行选择。
    • 7. 发明授权
    • Portable communication device and corresponding method of operation
    • 便携式通讯装置及相应的操作方法
    • US06992580B2
    • 2006-01-31
    • US10206503
    • 2002-07-25
    • Michael D. KotzinMatthew H. KlapmanWilliam P. Alberth, Jr.
    • Michael D. KotzinMatthew H. KlapmanWilliam P. Alberth, Jr.
    • G08B1/08
    • G08B21/0453A61B5/0022A61B2560/0242G06F19/00G08B25/016G16H40/67H04Q9/02
    • A portable communication device (100) includes at least one sensing circuit (101) and a processor (104), and operates in accordance with a corresponding method of operation. The sensing circuit detects (205) either a characteristic of an external environment containing the portable communication device (e.g., a chemical in the air or acceleration of the device) or a characteristic of the portable communication device user (e.g., heart rate or blood sugar content), and generates a signal (207) representative of a feature of the sensed characteristic. The processor receives the signal and initiates an event based at least on the feature of the sensed characteristic as represented by the signal. Events include, but are not limited to, one or more of the following: alerting the device user, transmitting a signal (e.g., an emergency call) to a remote communication device, re-sensing the characteristic or sensing another characteristic, and modifying a setting or profile of the device.
    • 便携式通信设备(100)包括至少一个感测电路(101)和处理器(104),并且根据相应的操作方法进行操作。 感测电路检测(205)包含便携式通信设备(例如,空气中的化学品或设备的加速度)的外部环境的特性或便携式通信设备用户的特性(例如,心率或血糖 内容),并且生成表示感测特征的特征的信号(207)。 处理器接收信号并且至少基于由该信号表示的感测特性的特征来发起事件。 事件包括但不限于以下中的一个或多个:提醒设备用户,向远程通信设备发送信号(例如,紧急呼叫),重新感测特性或感测另一特性,并修改 设置或配置文件。
    • 8. 发明授权
    • Extended view morphing
    • 扩展视角变形
    • US06674461B1
    • 2004-01-06
    • US09346775
    • 1999-07-07
    • Matthew H. Klapman
    • Matthew H. Klapman
    • H04N1500
    • G06T3/4007H04N7/181H04N13/111
    • A method and apparatus are provided for synthesizing an image from a plurality of video streams. The method includes the steps of determining an orientation of a first and second video source of the plurality of video streams with respect to a video object lying within a field of view of both the first and second video sources and selecting an orientation of a synthesized video source with respect to the video object. The method further includes the step of interpolating among corresponding images of the first and second video sources to form a stream of perspective images of the video object from the selected orientation of the synthesized source.
    • 提供一种用于从多个视频流合成图像的方法和装置。 该方法包括以下步骤:确定多个视频流中的第一和第二视频源相对于位于第一和第二视频源的视场内的视频对象的方向,并选择合成视频的方向 来源于视频对象。 该方法还包括在第一和第二视频源的相应图像之间进行内插以从所合成的源的选定取向形成视频对象的透视图像流的步骤。
    • 9. 发明授权
    • Method for determining an orientation of an object
    • 确定物体方向的方法
    • US5353042A
    • 1994-10-04
    • US169493
    • 1993-12-17
    • Matthew H. KlapmanDavid J. Frerichs
    • Matthew H. KlapmanDavid J. Frerichs
    • G06F3/00G06F3/01G06F3/033G09G5/08
    • G06F3/011G06F3/0338
    • A method for determining an orientation of an object includes determining a plurality of boundary values defining a predetermined range of movement of the object; dividing the range into position segments using the plurality of boundary values; moving a movable portion of the object to a current position; determining a change in object position by comparing a prior object position to the current position; determining the number of position segments corresponding to the change of the object position; outputting a signal corresponding to the number of segments to a control device; determining a scaling value for any or all of the position segments corresponding to a desired position amplification or position attenuation scheme; and controlling movement of a selected image or device based on the amplification or attenuation scheme such that movement of the moveable portion of the object causes disporportional movement of the image or device.
    • 用于确定对象的取向的方法包括确定限定对象的预定移动范围的多个边界值; 使用所述多个边界值将所述范围分割成位置段; 将所述物体的可移动部分移动到当前位置; 通过将现有对象位置与当前位置进行比较来确定对象位置的变化; 确定与对象位置的变化相对应的位置段的数量; 将与分段数相对应的信号输出到控制装置; 确定对应于期望位置放大或位置衰减方案的任何或所有位置段的缩放值; 以及基于所述放大或衰减方案来控制所选图像或装置的移动,使得所述对象的可移动部分的移动导致所述图像或装置的不均匀移动。