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    • 1. 发明授权
    • Apparatus, system, and method for managing transmission power in a wireless communication system
    • 用于在无线通信系统中管理传输功率的装置,系统和方法
    • US07899480B2
    • 2011-03-01
    • US11217242
    • 2005-08-31
    • Erumusele O. OdigieNitin KasturiParvathanathan Subrahmanya
    • Erumusele O. OdigieNitin KasturiParvathanathan Subrahmanya
    • H04B7/00
    • H04W52/221H04W52/223H04W52/267H04W52/346H04W52/367Y02D70/124
    • An apparatus, system, and method efficiently manage transmission power in a user equipment (UE) device by maintaining and applying an authorized power level to determine a transmission power level after a power limited transmission and before a new power control command has been received. The UE device maintains the authorized power level by monitoring and adjusting the authorized power level based on received power control commands. After a power limited transmission where the maximum power level is less than the authorized power level, the UE device determines the transmission power level for the next transmission based on the authorized power level. Accordingly, after the power limiting situation has ceased, the UE device transmits at the optimum power level eliminating the inefficiencies of transmitting at a lower than authorized power before the next power control command is received.
    • 一种装置,系统和方法通过维持和应用授权功率电平来有效地管理用户设备(UE)设备中的发射功率,以确定在功率限制传输之后和在接收到新的功率控制命令之前的发射功率电平。 UE设备通过基于接收到的功率控制命令监视和调整授权功率电平来维持授权功率电平。 在最大功率电平小于授权功率电平的功率限制传输之后,UE设备基于授权功率电平确定用于下一次传输的传输功率电平。 因此,在功率限制情况已经停止之后,UE接收到下一个功率控制命令之前,以最佳功率电平发送消除低于授权功率的低效发送的低效率。
    • 2. 发明授权
    • Apparatus, system, and method for managing transmission power in a wireless communication system
    • 用于在无线通信系统中管理传输功率的装置,系统和方法
    • US08359060B2
    • 2013-01-22
    • US13036877
    • 2011-02-28
    • Erumusele O. OdigieNitin KasturiParvathanathan Subrahmanya
    • Erumusele O. OdigieNitin KasturiParvathanathan Subrahmanya
    • H04B7/00
    • H04W52/221H04W52/223H04W52/267H04W52/346H04W52/367Y02D70/124
    • An apparatus, system, and method efficiently manage transmission power in a user equipment (UE) device by maintaining and applying an authorized power level to determine a transmission power level after a power limited transmission and before a new power control command has been received. The UE device maintains the authorized power level by monitoring and adjusting the authorized power level based on received power control commands. After a power limited transmission where the maximum power level is less than the authorized power level, the UE device determines the transmission power level for the next transmission based on the authorized power level. Accordingly, after the power limiting situation has ceased, the UE device transmits at the optimum power level eliminating the inefficiencies of transmitting at a lower than authorized power before the next power control command is received.
    • 一种装置,系统和方法通过维持和应用授权功率电平来有效地管理用户设备(UE)设备中的发射功率,以确定在功率限制传输之后和在接收到新的功率控制命令之前的发射功率电平。 UE设备通过基于接收到的功率控制命令监视和调整授权功率电平来维持授权功率电平。 在最大功率电平小于授权功率电平的功率限制传输之后,UE设备基于授权功率电平确定用于下一次传输的传输功率电平。 因此,在功率限制情况已经停止之后,UE接收到下一个功率控制命令之前,以最佳功率电平发送消除低于授权功率的低效发送的低效率。
    • 7. 发明授权
    • Method and apparatus for deriving a channel impulse response estimate for a wireless channel
    • 用于导出无线信道的信道脉冲响应估计的方法和装置
    • US07675962B2
    • 2010-03-09
    • US11399886
    • 2006-04-07
    • Gokhan MergenVignesh SuthuramanNitin KasturiParvathanathan Subrahmanya
    • Gokhan MergenVignesh SuthuramanNitin KasturiParvathanathan Subrahmanya
    • H04B1/00
    • H04L25/0216H04L25/0218
    • Techniques for deriving a channel impulse response estimate (CIRE) having improved quality are described. A first CIRE with multiple channel taps is obtained based on (1) an initial CIRE derived from a received pilot or (2) a filtered CIRE derived from the initial CIRE. In one aspect, the channel taps in the first CIRE are scaled with multiple scaling factors to obtain a second CIRE. For point-wise LMMSE scaling, the energy of each channel tap is estimated. The noise energy for the channel taps is also estimated, e.g., based on energies of channel taps on one or both edges of the first CIRE. Each channel tap is scaled based on a scaling factor determined by the energy of that channel tap and the noise energy. Each channel tap with energy below a threshold may be set to zero. In another aspect, the second CIRE is obtained by zeroing out selected ones of the channel taps in the first CIRE.
    • 描述了用于导出具有改进的质量的信道脉冲响应估计(CIRE)的技术。 基于(1)从接收到的导频导出的初始CIRE或(2)从初始CIRE导出的滤波CIRE,获得具有多信道抽头的第一CIRE。 在一个方面,第一CIRE中的信道抽头被多个缩放因子缩放以获得第二CIRE。 对于逐点LMMSE缩放,估计每个通道抽头的能量。 也可以例如基于第一CIRE的一个或两个边缘上的信道抽头的能量来估计信道抽头的噪声能量。 每个通道抽头基于由该通道抽头的能量和噪声能量确定的缩放因子进行缩放。 能量低于阈值的每个通道抽头可以设置为零。 在另一方面,第二CIRE是通过对第一CIRE中的选通的信道抽头进行归零而获得的。
    • 8. 发明授权
    • Power control for intermittently active data channels in a wireless communication system
    • 无线通信系统间歇性活动数据信道的功率控制
    • US07363010B2
    • 2008-04-22
    • US10827143
    • 2004-04-15
    • Hyukjun OhParvathanathan SubrahmanyaNitin Kasturi
    • Hyukjun OhParvathanathan SubrahmanyaNitin Kasturi
    • H04B17/00
    • H04W52/12H04W52/28
    • Techniques for controlling transmit power for a data transmission sent on multiple data channels, which may be intermittently active, are described. Each data channel is monitored for activity (e.g., based on an error correction code, received signaling information, received block energy, and so on) and deemed to be dormant or not dormant (e.g., based on the amount of elapsed time since activity was last detected on the data channel). A signal quality (SIR) target may be maintained for each non-dormant data channel and updated based on the status of received data blocks for the data channel. A final SIR target, used for power control of the data transmission, may be set to the highest SIR target among the SIR targets for the non-dormant data channels. The final SIR target may also be updated directly based on the status of received data blocks for the non-dormant data channels.
    • 描述了用于控制在可能间歇地活动的多个数据信道上发送的数据传输的发送功率的技术。 监视每个数据信道的活动(例如,基于纠错码,接收的信令信息,接收到的块能量等等),并被认为是休眠或不休眠(例如,基于从活动以来的经过时间量 最后在数据通道上检测到)。 可以为每个非休眠数据信道维持信号质量(SIR)目标,并且基于数据信道的接收数据块的状态来更新。 可以将用于数据传输的功率控制的最终SIR目标设置为非休眠数据信道的SIR目标中的最高SIR目标。 也可以基于非休眠数据信道的接收数据块的状态来直接更新最终SIR目标。