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    • 4. 发明申请
    • Stationary Manual Exercise Sled
    • 固定手动运动滑雪
    • US20160263429A1
    • 2016-09-15
    • US15067064
    • 2016-03-10
    • Christopher Wagner
    • Christopher Wagner
    • A63B22/02A63B23/04A63B22/18A63B21/00A63B22/00
    • A63B22/02A63B21/00069A63B21/00192A63B21/227A63B22/0023A63B22/0285A63B22/18A63B23/0405A63B2022/0278A63B2210/50A63B2225/09
    • A manual non-motorized exercise treadmill with the ability to provide adjustable resistance to perform strength training resistance movements and simulate the movements of an exercise drive sled in a stationary location is described. A treadmill deck of the treadmill is supported by friction-reduction rollers, a front treadmill roller and a rear treadmill roller. The treadmill is operated by the user pushing and/or pulling with the feet of the user via a belt or harness attached to adjustable stationary hand bars. Variable resistance allows for increased or decreased difficulty in achieving the exercise according to the preference and ability of the user. The resistance is configured to be applied to the rollers and/or belt, making it more difficult for the user to manually move the treadmill belt. The adjustable hand bars are configured to allow the user to alter the angle at which he or she performs various exercises. The treadmill belt is configured to oscillate for both concentric and eccentric exercises not provided by conventional treadmills.
    • 描述了一种手动非机动运动跑步机,其具有提供可调阻力以执行强度训练阻力运动并且模拟运动驱动滑板在静止位置的运动的能力。 跑步机的跑步机甲板由减摩辊,前跑步机滚轮和后跑步机滚轮支撑。 跑步机由用户通过用户的脚部通过附接到可调节的固定手把的皮带或线束来推动和/或拉动来操作。 可变电阻允许根据用户的偏好和能力实现锻炼的难度增加或减少。 电阻被配置为施加到辊和/或带,使得用户更难以手动地移动跑步机带。 可调手柄被配置为允许用户改变他或她执行各种锻炼的角度。 跑步机皮带被配置成为常规跑步机不提供的同心和偏心运动而摆动。
    • 9. 发明授权
    • Lightweight coherency control protocol for clustered storage system
    • 集群存储系统的轻量级一致性控制协议
    • US07934060B1
    • 2011-04-26
    • US12121407
    • 2008-05-15
    • Peter F. CorbettChristopher Wagner
    • Peter F. CorbettChristopher Wagner
    • G06F12/00
    • G06F12/0815G06F12/0866G06F2212/263G06F2212/284
    • A lightweight coherency control protocol ensures consistency of data containers, such as a file, and associated data buffers stored on one or more volumes served by a plurality of nodes, e.g., storage systems, connected as a cluster. Each data buffer is associated with a current cache sequence number comprising a load generation value and an update count value. The load generation value is incremented every time an inode of a file is loaded into a memory of the storage system. Once the inode is loaded and its load generation value is set, then the appropriate buffer of a buffer tree for the file is loaded into the memory. The update count value is incremented each time the buffer is updated with a write request/operation. Therefore, each buffer loaded into memory is tagged with the load generation value and an update count from the time that buffer is loaded.
    • 轻量级一致性控制协议确保数据容器(例如文件)和存储在由作为集群连接的多个节点(例如存储系统)所服务的一个或多个卷上的相关联的数据缓冲器的一致性。 每个数据缓冲器与包括负载生成值和更新计数值的当前高速缓存序列号相关联。 每当将文件的inode加载到存储系统的存储器中时,负载生成值将增加。 一旦加载了inode并且设置了其负载生成值,则将该文件的缓冲树的适当缓冲区加载到内存中。 每次使用写入请求/操作更新缓冲区时,更新计数值都会递增。 因此,加载到内存中的每个缓冲区都会被加载负载生成值和缓冲区加载时的更新计数。