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    • 5. 发明授权
    • Motion based handoff control
    • 基于运动的切换控制
    • US09247473B2
    • 2016-01-26
    • US11555245
    • 2006-10-31
    • Wen ZhaoJerome TuIsabel MaheJianxiong ShiOlivier BoireauAlexander FertelmeisterYury Fomin
    • Wen ZhaoJerome TuIsabel MaheJianxiong ShiOlivier BoireauAlexander FertelmeisterYury Fomin
    • H04W36/00H04W36/32
    • H04W36/32
    • Motion-based handoff control techniques are disclosed. For example, an apparatus may include a signal strength determination module, a motion determination module, and a handoff controller. The signal strength determination module generates signal strength information corresponding to the strength of a wireless signal received from a first wireless link. From this information, the motion determination module determines a motion characteristic of the apparatus. Based on the motion characteristic, the handoff controller performs handoff operations for a second wireless link. In this manner, handoff operations may be tailored to the operational characteristics of the apparatus. For instance, certain handoff operations may be halted when the motion characteristic indicates the apparatus having a substantially stationary position. Other embodiments are described and claimed.
    • 公开了基于运动的切换控制技术。 例如,装置可以包括信号强度确定模块,运动确定模块和切换控制器。 信号强度确定模块生成与从第一无线链路接收的无线信号的强度对应的信号强度信息。 从该信息,运动确定模块确定装置的运动特性。 基于运动特性,切换控制器执行第二无线链路的切换操作。 以这种方式,切换操作可以根据装置的操作特性进行调整。 例如,当运动特性指示具有基本静止位置的装置时,可以停止某些切换操作。 描述和要求保护其他实施例。
    • 8. 发明申请
    • Motion Based Handoff Control
    • 基于运动的切换控制
    • US20080102835A1
    • 2008-05-01
    • US11555245
    • 2006-10-31
    • Wen ZhaoJerome TuIsabel MaheJianxiong ShiOlivier BoireauAlexander FertelmeisterYury Fomin
    • Wen ZhaoJerome TuIsabel MaheJianxiong ShiOlivier BoireauAlexander FertelmeisterYury Fomin
    • H04Q7/00
    • H04W36/32
    • Motion-based handoff control techniques are disclosed. For example, an apparatus may include a signal strength determination module, a motion determination module, and a handoff controller. The signal strength determination module generates signal strength information corresponding to the strength of a wireless signal received from a first wireless link. From this information, the motion determination module determines a motion characteristic of the apparatus. Based on the motion characteristic, the handoff controller performs handoff operations for a second wireless link. In this manner, handoff operations may be tailored to the operational characteristics of the apparatus. For instance, certain handoff operations may be halted when the motion characteristic indicates the apparatus having a substantially stationary position. Other embodiments are described and claimed.
    • 公开了基于运动的切换控制技术。 例如,装置可以包括信号强度确定模块,运动确定模块和切换控制器。 信号强度确定模块生成与从第一无线链路接收的无线信号的强度对应的信号强度信息。 从该信息,运动确定模块确定装置的运动特性。 基于运动特性,切换控制器执行第二无线链路的切换操作。 以这种方式,切换操作可以根据装置的操作特性进行调整。 例如,当运动特性指示具有基本静止位置的装置时,可以停止某些切换操作。 描述和要求保护其他实施例。
    • 9. 发明授权
    • Coordination of transmissions in wireless communications devices
    • 协调无线通信设备中的传输
    • US08359022B2
    • 2013-01-22
    • US11618479
    • 2006-12-29
    • Jerome C. TuOlivier Boireau
    • Jerome C. TuOlivier Boireau
    • H04W4/00
    • H04W72/1215H04B17/382H04W88/06
    • Techniques for coordinating transmissions in wireless communications are disclosed. For instance, an apparatus includes a first transceiver, a second transceiver, and a control module. The first transceiver communicates across a wireless link of a first type, and the second transceiver communicates across a wireless link of a second type. Examples of such first and second types include cellular links and data networking links. The control module authorizes the second transceiver to send wireless transmission upon the occurrence of a compressed mode transmission gap allocated to the first transceiver. Moreover, during this transmission gap, the first transceiver refrains from sending wireless transmissions.
    • 公开了用于协调无线通信中的传输的技术。 例如,装置包括第一收发器,第二收发器和控制模块。 第一收发器通过第一类型的无线链路进行通信,并且第二收发器通过第二类型的无线链路进行通信。 这种第一和第二类型的示例包括蜂窝链路和数据网络链路。 控制模块授权第二收发器在分配给第一收发器的压缩模式传输间隙发生时发送无线传输。 此外,在该传输间隙期间,第一收发器禁止发送无线传输。
    • 10. 发明申请
    • COORDINATION OF TRANSMISSIONS IN WIRELESS COMMUNICATIONS DEVICES
    • 无线通信设备中的传输协调
    • US20080159182A1
    • 2008-07-03
    • US11618479
    • 2006-12-29
    • Jerome C. TuOlivier Boireau
    • Jerome C. TuOlivier Boireau
    • H04B7/005
    • H04W72/1215H04B17/382H04W88/06
    • Techniques for coordinating transmissions in wireless communications are disclosed. For instance, an apparatus includes a first transceiver, a second transceiver, and a control module. The first transceiver communicates across a wireless link of a first type, and the second transceiver communicates across a wireless link of a second type. Examples of such first and second types include cellular links and data networking links. The control module authorizes the second transceiver to send wireless transmission upon the occurrence of a compressed mode transmission gap allocated to the first transceiver. Moreover, during this transmission gap, the first transceiver refrains from sending wireless transmissions
    • 公开了用于协调无线通信中的传输的技术。 例如,装置包括第一收发器,第二收发器和控制模块。 第一收发器通过第一类型的无线链路进行通信,并且第二收发器通过第二类型的无线链路进行通信。 这种第一和第二类型的示例包括蜂窝链路和数据网络链路。 控制模块授权第二收发器在分配给第一收发器的压缩模式传输间隙发生时发送无线传输。 此外,在该传输间隙期间,第一收发器禁止发送无线传输