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    • 2. 发明授权
    • Asymmetric wireless protocol communications with disparate modulation and rate for upstream and downstream traffic
    • 不对称无线协议通信与上下游流量的不同调制和速率
    • US07457382B1
    • 2008-11-25
    • US10809559
    • 2004-03-24
    • Vincent K. Jones, IVPartho MishraGreg Raleigh
    • Vincent K. Jones, IVPartho MishraGreg Raleigh
    • H04B7/10
    • H04W88/06H04L1/1829H04L1/1867H04L5/0007H04L5/0044H04L5/0053H04L27/0008
    • In a wireless network, data transmitted from a one station to another station is transmitted using the 802.11b protocol while data transmitted in the other direction is transmitted using an OFDM modulation of the 802.11g protocol. Data and acknowledgements might be transmitted using the same modulation, the same data rate or distinct data rates and/or distinct modulations. Communication between a first station and a second station might comprise: at the first station, transmitting data packets to the second station using a first data modulation and a first data rate; at the first station, transmitting acknowledgement packets to the second station in response to data packets received from the second station, using a first acknowledgement modulation and a first acknowledgement rate; and at the second station, transmitting data packets to the first station using a second data modulation and a second data rate; at the second station, transmitting acknowledgement packets to the first station in response to the data packets received from the first station, using a second acknowledgement modulation and a second acknowledgement rate, wherein the first data rate is distinct from at least one of the second data rate, the first acknowledgement rate, or the second acknowledgement rate.
    • 在无线网络中,使用802.11b协议发送从一个站发送到另一个站的数据,而使用802.11g协议的OFDM调制在另一个方向上发送的数据被发送。 可以使用相同的调制,相同的数据速率或不同的数据速率和/或不同的调制来发送数据和确认。 第一站和第二站之间的通信可以包括:在第一站处,使用第一数据调制和第一数据速率向第二站发送数据分组; 在第一站处,使用第一确认调制和第一确认速率响应于从第二站接收的数据分组向第二站发送确认分组; 并且在第二站处,使用第二数据调制和第二数据速率向第一站发送数据分组; 在第二站处,响应于从第一站接收的数据分组,使用第二确认调制和第二确认速率向第一站发送确认分组,其中第一数据速率与第二数据中的至少一个不同 率,第一确认率或第二确认率。
    • 5. 发明授权
    • Transmit power amplification control for wireless device
    • 无线设备的发射功率放大控制
    • US08538356B2
    • 2013-09-17
    • US13345338
    • 2012-01-06
    • Milind KopikarePartho Mishra
    • Milind KopikarePartho Mishra
    • H01Q11/12H04B1/04
    • H04W52/0274H03G3/3042H04B2001/0416H04W52/241H04W52/267H04W52/52Y02D70/142Y02D70/23
    • A system and method are disclosed for controlling transmit power amplification in a wireless transmitting device. A processor receives data to determine whether a communication channel from a transmitting device to a receiving device is strong enough to support a target data transmit rate of the devices with a power amplifier either on or off. The processor controls a switching device between a data transmitter circuit and the transmitter's antenna based on the quality of the communication channel. In a first state, the switching device connects the data transmitter circuit to the power amplifier to increase the strength of the signal communicated to the antenna. In a second state, the switching device bypasses the power amplifier. The power amplifier is turned off when the switch is in the second state, thereby decreasing the power consumed by the transmitting device as it transmits data at the target data transmit rate.
    • 公开了一种用于控制无线发射设备中的发射功率放大的系统和方法。 处理器接收数据以确定从发送设备到接收设备的通信信道是否足够强,以支持功率放大器的目标数据传输速率为开或关。 处理器基于通信信道的质量控制数据发射机电路和发射机天线之间的切换装置。 在第一状态下,开关装置将数据发射器电路连接到功率放大器以增加传送到天线的信号的强度。 在第二状态下,开关器件旁路功率放大器。 当交换机处于第二状态时,功率放大器被关闭,从而当发送设备以目标数据传输速率发送数据时,降低发射设备消耗的功率。
    • 8. 发明授权
    • Wireless LAN power savings
    • 无线局域网节电
    • US07881755B1
    • 2011-02-01
    • US11351232
    • 2006-02-09
    • Partho MishraSandesh Goel
    • Partho MishraSandesh Goel
    • H04B1/38
    • H04W52/0216H04W52/0225H04W52/0229H04W52/0235H04W52/0274Y02D70/142Y02D70/146Y02D70/22
    • A network device includes a base band processor (BBP) receiver to detect a frame in a signal. A media access controller (MAC) receiver identifies a destination address in the frame. A power management module transitions the BBP receiver to an active mode based on an estimated energy level of the signal before transitioning the MAC receiver, a processor, a MAC transmitter, and a BBP transmitter to the active mode; transitions the MAC receiver to the active mode when the frame is present after transitioning the BBP receiver to the active mode and before transitioning the processor, the MAC transmitter, and the BBP transmitter to the active mode; and transitions the processor to the active mode based on the destination address after transitioning the BBP receiver and the MAC receiver to the active mode and before transitioning the MAC transmitter and the BBP transmitter to the active mode.
    • 网络设备包括用于检测信号中的帧的基带处理器(BBP)接收器。 媒体接入控制器(MAC)接收机识别帧中的目的地址。 功率管理模块基于在将MAC接收机,处理器,MAC发射机和BBP发射机转换到活动模式之前的信号的估计能量水平将BBP接收机转换到活动模式; 在将BBP接收机转换到活动模式之后并且在将处理器,MAC发送器和BBP发射机转换到活动模式之前,当存在帧时,MAC接收器转换到活动模式; 并且在将BBP接收机和MAC接收机转换到活动模式之后并且在将MAC发射机和BBP发射机转换到活动模式之前,基于目的地地址将处理器转换到活动模式。