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    • 4. 发明申请
    • METHOD AND APPARATUS TO FACILITATE SCANNING IN A WIRELESS LOCAL AREA NETWORK
    • 在无线本地区网络中进行扫描的方法和装置
    • WO2007018713B1
    • 2007-06-21
    • PCT/US2006021943
    • 2006-06-06
    • MOTOROLA INCWILSON TIMOTHY JSMITH BRIAN K
    • WILSON TIMOTHY JSMITH BRIAN K
    • H04B7/185H04W36/00H04W52/02
    • H04W36/0088H04W52/0216H04W52/0219Y02D70/00Y02D70/142Y02D70/23
    • A wireless two-way communications apparatus (700) having a radio resource manager (706) is configured and arranged to effect one or more modes of operation (203, 204, 206, and 207) as a function, at least in part, of whether the apparatus is presently operating in a power saving mode of operation (201) and/or is presently supporting an active plesiochronous communication session (202 and 205). Pursuant to one approach, when the apparatus is operating in a power saving mode of operation and presently supports such a communication session and when the apparatus further determines (301) that a wireless access point beacon or supplemental beacon is at least largely coincident with a scheduled active window of that communication session, the apparatus can determine (302) whether to facilitate rescheduling a next monitoring of the beacon or supplemental beacon and/or altering the scheduled active window itself to thereby render the beacon or supplemental beacon monitorable by the apparatus.
    • 具有无线电资源管理器(706)的无线双向通信设备(700)被配置和布置成作为一个功能实现一个或多个操作模式(203,204,206和207),至少部分地 该装置当前是否处于功率节省操作模式(201)和/或当前支持活动的同步通信会话(202和205)。 根据一种方法,当设备以功率节省操作模式运行时,并且当前支持这样的通信会话,并且当设备进一步确定(301)无线接入点信标或补充信标至少在很大程度上与调度的 该通信会话的活动窗口,设备可以确定(302)是否有助于重新安排对信标或补充信标的下一个监视,和/或改变调度的活动窗口本身,从而使信标或补充信标可被该设备监控。
    • 5. 发明申请
    • METHOD AND APPARATUS TO FACILITATE SCANNING IN A WIRELESS LOCAL AREA NETWORK
    • 在无线局域网中促进扫描的方法和设备
    • WO2007018713A3
    • 2007-05-03
    • PCT/US2006021943
    • 2006-06-06
    • MOTOROLA INCWILSON TIMOTHY JSMITH BRIAN K
    • WILSON TIMOTHY JSMITH BRIAN K
    • H04B7/185H04W36/00H04W52/02
    • H04W36/0088H04W52/0216H04W52/0219Y02D70/00Y02D70/142Y02D70/23
    • A wireless two-way communications apparatus (700) having a radio resource manager (706) is configured and arranged to effect one or more modes of operation (203, 204, 206, and 207) as a function, at least in part, of whether the apparatus is presently operating in a power saving mode of operation (201) and/or is presently supporting an active plesiochronous communication session (202 and 205). Pursuant to one approach, when the apparatus is operating in a power saving mode of operation and presently supports such a communication session and when the apparatus further determines (301) that a wireless access point beacon or supplemental beacon is at least largely coincident with a scheduled active window of that communication session, the apparatus can determine (302) whether to facilitate rescheduling a next monitoring of the beacon or supplemental beacon and/or altering the scheduled active window itself to thereby render the beacon or supplemental beacon monitorable by the apparatus.
    • 具有无线电资源管理器(706)的无线双向通信装置(700)被配置和布置成至少部分地作为一个或多个操作模式(203,204,206和207)的功能 该装置目前是否在省电操作模式(201)中操作和/或目前是否支持活动准同步通信会话(202和205)。 根据一种方法,当设备在省电操作模式下操作并且当前支持这样的通信会话并且当设备进一步确定(301)无线接入点信标或补充信标至少与预定的时间大致一致时 该装置可以确定(302)是否有助于重新调度信标或补充信标的下一个监视和/或改变调度的活动窗口本身,从而使得装置可监视信标或补充信标。
    • 6. 发明申请
    • METHOD FOR PREVENTING CO-CHANNEL OPERATION WITH RADAR SYSTEMS
    • 使用雷达系统防止CO信道操作的方法
    • WO2009079048A3
    • 2009-09-17
    • PCT/US2008076956
    • 2008-09-19
    • MOTOROLA INCKELLY ROBERT PSMITH BRIAN KWILSON TIMOTHY
    • KELLY ROBERT PSMITH BRIAN KWILSON TIMOTHY
    • G01S7/40G01S13/02
    • H04W16/14
    • A method for preventing co-channel operation with a radar system includes the steps of setting a state of a first communication channel to active, connecting to a first wireless access point on the first communication channel, passively scanning at least a second communication channel for communication from a second wireless access point, setting a state of the second channel to active if frames are received on the second channel, determining whether an elapsed time since frames were received on at least one of the first channel and the second channel has exceed a predefined value, and in response to the predefined value being exceeded for at least one of the first channel and the second channel, setting the state of a corresponding one of the first channel and the second channel to passive.
    • 一种用于防止与雷达系统的共频道操作的方法包括以下步骤:将第一通信信道的状态设置为有效,连接到第一通信信道上的第一无线接入点,被动扫描至少第二通信信道进行通信 从第二无线接入点,如果在第二信道上接收到帧,则将第二信道的状态设置为有效,确定在第一信道和第二信道中的至少一个上是否接收到帧的经过时间是否超过预定义 并且响应于对于所述第一通道和所述第二通道中的至少一个超过了所述预定义值,将所述第一通道和所述第二通道中的相应一个通道的状态设置为被动。
    • 9. 发明申请
    • METHOD OF OPERATING A WLAN MOBILE STATION
    • WLAN移动站的操作方法
    • WO2006073606A3
    • 2007-07-05
    • PCT/US2005042644
    • 2005-11-23
    • MOTOROLA INCPATEL ANIL NMITRA SUHASRIVERA-CINTRON CARLOS ASMITH BRIAN K
    • PATEL ANIL NMITRA SUHASRIVERA-CINTRON CARLOS ASMITH BRIAN K
    • H04W52/02H04W84/12H04W88/02
    • H04W52/0229H04W84/12H04W88/02Y02D70/00Y02D70/142Y02D70/23
    • A wireless local area network (WLAN) mobile station (110, 112, 114) has an application processor core (204) and a WLAN processor (202). So as to conserve energy, when the two processors are not needed, they are both placed in a minimal power consumption mode. The WLAN processor operates a WLAN radio and receives beacon transmissions from an access point (120). Upon extracting the beacon data from a received beacon signal, the WLAN processor passes the beacon data to the application processor. To ensure receipt of the beacon data, the WLAN processor remains active until the application processor acknowledges receipt of the beacon data before transitioning back to a sleep mode. To prevent keeping the WLAN processor waiting longer than necessary, the application processor wakes up ahead of the beacon receipt time, in time to allow transition to an awake mode so that it is active by the time the WLAN processor passes the beacon data.
    • 无线局域网(WLAN)移动站(110,112,114)具有应用处理器核心(204)和WLAN处理器(202)。 为了节省能源,当不需要两个处理器时,它们都被放置在最小的功耗模式中。 WLAN处理器操作WLAN无线电并从接入点(120)接收信标传输。 在从接收的信标信号中提取信标数据之后,WLAN处理器将信标数据传送到应用处理器。 为了确保信标数据的接收,WLAN处理器保持活动状态,直到应用处理器在转换回休眠模式之前确认接收到信标数据为止。 为了防止WLAN处理器等待更长时间,应用处理器在时间之前提前醒来,以允许转换到唤醒模式,使其在WLAN处理器通过信标数据时被激活。