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    • 1. 发明申请
    • UPLINK TRANSMISSION POWER CONTROL MECHANISM
    • UPLINK传输功率控制机制
    • US20120282970A1
    • 2012-11-08
    • US13099786
    • 2011-05-03
    • Petteri Kalle KELATommi Tapani KANGASSUOPetteri Mika HEINONENJonathan Michael KEAST
    • Petteri Kalle KELATommi Tapani KANGASSUOPetteri Mika HEINONENJonathan Michael KEAST
    • H04W52/04
    • H04W52/146H04W52/248H04W52/362H04W52/367H04W52/50
    • There is provided a mechanism for uplink transmission power control in a communication network. An uplink transmission power for a transmission from a communication network element to a communication network control element is calculated. When a transmission power control command from the communication network control element is received instructing e.g. an increase of the uplink transmission power or a decrease of the uplink transmission power, it is checked whether the calculated uplink transmission power is above a maximum transmission power of the communication network element or below a minimum transmission power of the communication network element. If this is the case, and the transmission power control command instructs a change in the opposite direction, power control adjustment is conducted by determining and conducting a correction for immediately compensating for a difference between the calculated uplink transmission power and the maximum/minimum transmission power, wherein an actual transmission power is set on the basis of the correction parameter considering the received transmission power control command.
    • 在通信网络中提供了用于上行链路传输功率控制的机制。 计算从通信网络元件到通信网络控制元件的发送的上行发送功率。 当接收到来自通信网络控制单元的发送功率控制命令时, 上行链路发送功率的增加或上行发送功率的下降,则检查所计算的上行链路发送功率是否高于通信网络单元的最大发送功率,或者低于通信网络元件的最小发送功率。 如果是这种情况,并且发送功率控制命令指示相反方向的改变,则通过确定并进行校正以便立即补偿所计算的上行链路发送功率与最大/最小发送功率之间的差异来进行功率控制调整 ,其中考虑到所接收的发送功率控制命令,基于校正参数来设置实际发送功率。
    • 2. 发明授权
    • Snowboard assembly
    • 滑雪组装
    • US08011676B1
    • 2011-09-06
    • US12407121
    • 2009-03-19
    • Michael Keast
    • Michael Keast
    • A63C5/03A63C5/04
    • A63C10/14A63C10/20A63C2203/54
    • A snowboard assembly includes an elongated panel has a top side, a bottom side, a front end and a back end. One of foot engaging member is positioned nearer to the front end and one foot engaging member is positioned nearer to the back end. Each of the foot engaging members comprises a first rail and a second rail each attached to the top side. A plate is positioned on the top side and extends between and engages the first and second rails. The plate is selectively slidable along the first and second rails. A foot covering is couplable to the plate to releasably secure a person's foot to the plate. A resistance apparatus engages the plate to increase or decrease a frictional force between the first and second rails and the plate to selectively alter ease of movement of the relative to the first and second rails.
    • 滑雪板组件包括具有顶侧,底侧,前端和后端的细长面板。 脚接合构件中的一个定位成更接近前端,并且一个脚接合构件位于更靠近后端的位置。 每个脚接合构件包括每个附接到顶侧的第一轨道和第二轨道。 板位于顶侧并且在第一和第二轨道之间延伸并接合。 板可沿第一和第二轨道选择性地滑动。 脚套可以连接到板上以将人的脚可释放地固定在板上。 电阻装置接合板以增加或减少第一和第二轨道和板之间的摩擦力,以选择性地改变相对于第一和第二轨道的移动的容易程度。
    • 3. 发明授权
    • Uplink transmission power control mechanism
    • 上行传输功率控制机制
    • US08229494B1
    • 2012-07-24
    • US13287549
    • 2011-11-02
    • Petteri Kalle KelaTommi Tapani KangassuoPetteri Mika HeinonenJonathan Michael Keast
    • Petteri Kalle KelaTommi Tapani KangassuoPetteri Mika HeinonenJonathan Michael Keast
    • H04B7/00
    • H04W52/146
    • There is provided a mechanism for uplink transmission power control in a communication network. An uplink transmission power for a transmission from a communication network element to a communication network control element is calculated. When a transmission power control command from the communication network control element is received instructing an increase or a decrease of the uplink transmission power, it is checked whether the calculated uplink transmission power is above a maximum transmission power or below a minimum transmission power of the communication network element. If so, and the transmission power control command instructs a change in the opposite direction, power control adjustment is conducted by determining and conducting a correction for immediately compensating for a difference between the calculated uplink transmission power and the maximum/minimum transmission power, wherein an actual transmission power is set based on the correction parameter considering the received transmission power control command.
    • 在通信网络中提供了用于上行链路传输功率控制的机制。 计算从通信网络元件到通信网络控制元件的发送的上行发送功率。 当接收到来自通信网络控制单元的发送功率控制命令指示上行链路发送功率的增加或减少时,检查所计算的上行链路发送功率是否高于最大发送功率或低于通信的最小发送功率 网元。 如果是,则发送功率控制命令指示相反方向的变化,通过确定并进行用于立即补偿所计算的上行链路发送功率与最大/最小发送功率之间的差的校正来进行功率控制调整,其中, 考虑到接收到的发送功率控制命令,基于校正参数来设定实际发送功率。
    • 4. 发明授权
    • Servowriter ramp detection
    • 伺服斜坡检测
    • US07391586B2
    • 2008-06-24
    • US11541086
    • 2006-09-29
    • L. Michael Keast
    • L. Michael Keast
    • G11B21/02G11B27/36
    • G11B5/6005G11B21/12G11B21/22
    • A detect control device is provided that monitors a position error signal signature associated with a transducer while being operably supported by an actuator at a substantially constant fly height adjacent a storage medium to characterize the extent to which the actuator contacts an unload ramp. A method is provided for: supporting a transducer at an end of an actuator at a substantially constant fly height adjacent a storage medium; moving the actuator toward an unload ramp while maintaining the substantially constant fly height; and detecting a contacting engagement between the actuator and the unload ramp by monitoring a position error signal signature associated with the transducer.
    • 提供了一种检测控制装置,其监测与换能器相关联的位置误差信号签名,同时在与存储介质相邻的基本上恒定的飞行高度的致动器可操作地支撑,以表征致动器接触卸载斜坡的程度。 提供了一种方法,用于:在靠近存储介质的基本上恒定的飞行高度处,在致动器的端部处支撑换能器; 将致动器朝向卸载斜坡移动,同时保持基本上恒定的飞行高度; 以及通过监测与所述换能器相关联的位置误差信号签名来检测所述致动器和所述卸载斜坡之间的接触接合。