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    • 2. 发明授权
    • Radio transmission scheduling according to multiradio control in a radio modem
    • 根据无线电调制解调器中的多无线电控制的无线电传输调度
    • US07664532B2
    • 2010-02-16
    • US11445322
    • 2006-06-02
    • Arto PalinPäivi M. RuuskaJukka Reunamäki
    • Arto PalinPäivi M. RuuskaJukka Reunamäki
    • H04Q7/32
    • H04B1/406H04B2215/062H04W72/1289
    • A system for managing the simultaneous operation of a plurality of radio modems in a single wireless communication device (WCD). The multiradio control may be integrated into the WCD as a subsystem responsible for scheduling wireless communications by temporarily enabling or disabling the plurality of radio modems within the device. The multiradio control system may comprise a multiradio controller (MRC) and a plurality dedicated radio interfaces. The radio interfaces are dedicated to quickly conveying delay sensitive information to and from the radio modems. The modems may further include control features that take information from the MRC as an input in determining the priority of messages to be sent out to a receiving device.
    • 一种用于在单个无线通信设备(WCD)中管理多个无线电调制解调器的同时操作的系统。 多重控制可以作为负责通过临时启用或禁用设备内的多个无线电调制解调器来调度无线通信的子系统被集成到WCD中。 多无线电控制系统可以包括多无线电控制器(MRC)和多个专用无线电接口。 无线电接口专用于向无线电调制解调器和/或从无线电调制解调器快速传送延迟敏感信息。 调制解调器还可以包括在确定要发送到接收设备的消息的优先级时从MRC获取信息作为输入的控制特征。
    • 4. 发明授权
    • Method and system for interference detection
    • 干扰检测方法和系统
    • US07848741B2
    • 2010-12-07
    • US10747220
    • 2003-12-30
    • Kalle KivekäsJukka ReunamäkiPäivi M. Ruuska
    • Kalle KivekäsJukka ReunamäkiPäivi M. Ruuska
    • H04W24/00
    • H04W24/10H04B1/715H04W72/00
    • One or more electromagnetic energy measurements are generated. Each of these measurements corresponds to an available communications bandwidth for a communications device and indicates a frequency of a radio frequency (RF) signal source. From these measurement(s), one or more interference sources are identified. These measurements may include a series of electromagnetic energy measurements over a predetermined time period. An interference source may be identified when each measurement in the series of electromagnetic energy measurements indicates an RF energy source at the same frequency. Each of these measurements may be stored. In addition, statistics regarding these measurements may be generated.
    • 生成一个或多个电磁能量测量。 这些测量中的每一个对应于通信设备的可用通信带宽并且指示射频(RF)信号源的频率。 从这些测量中,识别出一个或多个干扰源。 这些测量可以包括在预定时间段内的一系列电磁能量测量。 当一系列电磁能量测量中的每个测量指示相同频率的RF能量源时,可以识别干扰源。 可以存储这些测量中的每一个。 此外,可以生成关于这些测量的统计数据。
    • 5. 发明授权
    • Connected mode for low-end radio
    • 低端无线电的连接模式
    • US07515945B2
    • 2009-04-07
    • US10610990
    • 2003-06-30
    • Päivi M. RuuskaAntti LappeteläinenJukka ReunamäkiJuha Salokannel
    • Päivi M. RuuskaAntti LappeteläinenJukka ReunamäkiJuha Salokannel
    • H04B1/00H04L12/42
    • H04W52/0216H04W4/80H04W52/0254H04W74/06Y02D70/144Y02D70/22
    • The present invention relates to systems and methods for a implementing an optimized low-end radio communication protocol, wherein the communication link is flexible and the power consumption characteristics are optimized. One facet of the system's flexibility relates to the system's ability to negotiate device control roles associated with a polling communication link. Also, once the device control roles are in place and the communication link is established, the system selectively implements a number of polling protocols for a multitude of applications that need a low power consumption. In some embodiments the system maintains a communication link with a reduced frequency polling protocol. This type of communication link maintains efficient power consumption characteristics, as well as, connection times that are faster than establishing a communication link between disconnected devices.
    • 本发明涉及用于实现优化的低端无线电通信协议的系统和方法,其中通信链路是灵活的并且功耗特性被优化。 系统灵活性的一个方面涉及系统协商与轮询通信链路相关的设备控制角色的能力。 此外,一旦设备控制角色到位并且建立通信链路,系统选择性地为需要低功耗的多个应用执行多个轮询协议。 在一些实施例中,系统利用减少频率的轮询协议维护通信链路。 这种类型的通信链路保持有效的功率消耗特性,以及比在断开的设备之间建立通信链路更快的连接时间。
    • 7. 发明授权
    • Connection mode for low-end radio
    • 低端收音机的连接方式
    • US07680520B2
    • 2010-03-16
    • US10797205
    • 2004-03-09
    • Päivi M. RuuskaAntti LappeteläinenJukka ReunamäkiJuha Salokannel
    • Päivi M. RuuskaAntti LappeteläinenJukka ReunamäkiJuha Salokannel
    • H04B1/38H04J3/16
    • H04W52/0216H04W4/80H04W52/0254H04W74/06Y02D70/144Y02D70/22
    • The present invention relates to systems and methods for a implementing an optimized power conservation communication protocol, wherein the communication link is flexible and the power consumption characteristics are optimized. One facet of the system's flexibility relates to the system's ability to negotiate device control roles associated with a polling communication link. Also, once the device control roles are in place and the communication link is established, the system selectively implements a number of polling protocols for a multitude of applications that need a low power consumption. In some embodiments the system maintains a communication link with a reduced frequency polling protocol. This type of communication link maintains efficient power consumption characteristics, as well as, connection times that are faster than establishing a communication link between disconnected devices.
    • 本发明涉及用于实现优化的功率节省通信协议的系统和方法,其中通信链路是灵活的并且功耗特性被优化。 系统灵活性的一个方面涉及系统协商与轮询通信链路相关的设备控制角色的能力。 此外,一旦设备控制角色到位并且建立通信链路,系统选择性地为需要低功耗的多个应用执行多个轮询协议。 在一些实施例中,系统利用减少频率的轮询协议维护通信链路。 这种类型的通信链路保持有效的功率消耗特性,以及比在断开的设备之间建立通信链路更快的连接时间。