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    • 52. 发明申请
    • METHOD AND APPARATUS FOR ENHANCING A HIBERNATE AND RESUME PROCESS USING USER SPACE SYNCHRONIZATION
    • 使用用户空间同步来增强HIBERNATE和RESUME过程的方法和装置
    • WO2013148074A1
    • 2013-10-03
    • PCT/US2013/028895
    • 2013-03-04
    • MOTOROLA SOLUTIONS, INC.
    • PRESTON, John B.,BLANCO, Alejandro G.,
    • G06F9/44
    • G06F9/4418G06F1/32G06F11/1417G06F2201/865
    • Before hibernating a computing device (102), system software components (116) are notified of an upcoming hibernation process. The notifications are conveyed through an application program interface (API) (114). At least a portion of the system software components (116) can perform one or more pre-hibernation activities to place that system software component (116) in a ready-to-resume state. Each system software component indicates when it is ready for hibernation. Responsive to receiving the indication from each of the system software components (116), the hibernation process can complete. The completed hibernation process creates a snapshot (122) in nonvolatile memory. The snapshot (122) saves state information (124) for each of the system software components (116). The state information (124) is for the ready-to-resume state of the system software components (116). The computing device (102) can be restored after hibernation using a resume process (130), which reads the state (124) information from the snapshot (122).
    • 在休眠计算设备(102)之前,系统软件组件(116)被通知即将到来的休眠过程。 通知通过应用程序接口(API)(114)传送。 系统软件组件(116)的至少一部分可以执行一个或多个休眠前活动,以将该系统软件组件(116)置于准备恢复状态。 每个系统软件组件指示何时准备休眠。 响应于从每个系统软件组件(116)接收指示,休眠过程可以完成。 完成的休眠过程在非易失性存储器中创建快照(122)。 快照(122)保存用于每个系统软件组件(116)的状态信息(124)。 状态信息(124)用于系统软件组件(116)的准备恢复状态。 使用从快照(122)读取状态(124)信息的恢复处理(130),可以在休眠之后恢复计算设备(102)。
    • 53. 发明申请
    • APPARATUS AND METHOD FOR A DUAL WATCH RECEIVER
    • 双手表接收机的装置和方法
    • WO2013095841A1
    • 2013-06-27
    • PCT/US2012/065871
    • 2012-11-19
    • MOTOROLA SOLUTIONS, INC.
    • GALAN, Ariel L.,PARK, Young-Seo,CARTER, Charles H.,RUELKE, Charles R.,STOGNER, Darrell,
    • H04B1/00
    • H04B1/0007H04B1/0071
    • A receiver for a wireless communication device provides a dual path receiver receiving first and second protocol-agnostic, uncorrelated receive signals simultaneously. The dual path receiver generating first and second offset IF signals from the simultaneously received first and second protocol-agnostic, uncorrelated receive signals. The receiver utilizes at least one converter for converting the first and second offset IF signals into at least one serial synchronous interface (SSI) signal representing the spectrum at IF. At least one processor receives the at least one SSI signal and applies parallel processing paths to demodulate the at least one SSI signal into separate baseband signals. The processor provides interference detection of, and level control for, the first and second offset IF signals.
    • 用于无线通信设备的接收机提供双路径接收机同时接收第一和第二协议无关的,不相关的接收信号。 双路径接收机从同时接收的第一和第二协议无关的,不相关的接收信号产生第一和第二偏移IF信号。 接收机利用至少一个转换器将第一和第二偏移IF信号转换为表示IF处的频谱的至少一个串行同步接口(SSI)信号。 至少一个处理器接收所述至少一个SSI信号,并施加并行处理路径以将所述至少一个SSI信号解调为单独的基带信号。 处理器为第一和第二偏移IF信号提供干扰检测和电平控制。
    • 54. 发明申请
    • METHOD AND APPARATUS FOR KEY DISTRIBUTION USING NEAR-FIELD COMMUNICATION
    • 使用近场通信进行主要分配的方法和装置
    • WO2013081739A1
    • 2013-06-06
    • PCT/US2012/061008
    • 2012-10-19
    • MOTOROLA SOLUTIONS, INC.
    • PINDER, Ellis A.,
    • H04W12/04
    • H04L63/065H04W12/04
    • An apparatus and method to provision and distribute a traffic key amongst a plurality of radios enables secure communication, for a predetermined group or a predetermined event. Each radio has a controller, a radio transceiver for electromagnetic radio communications, and a near-field transceiver for near-field communications (NFC). The traffic key (or traffic keys) is provisioned locally at one radio and distributed to the remaining radios utilizing the NFC over a non propagating link. The same traffic key is distributed amongst all radios, and additional restrictions may be applied if desired. The same radios can later be re-provisioned for a different group or event. The local provisioning and distribution is highly advantageous for markets that do not require permanent assignment of radios.
    • 一种用于在多个无线电装置之间提供和分配业务密钥的设备和方法使得对于预定组或预定事件进行安全通信。 每个无线电设备具有控制器,用于电磁无线电通信的无线电收发器和用于近场通信(NFC)的近场收发器。 业务密钥(或业务密钥)在一个无线电处在本地提供,并且通过非传播链路利用NFC分发到剩余的无线电。 在所有无线电中分配相同的交通密钥,如果需要,可以应用附加限制。 以后可以为同一组或事件重新设置相同的无线电。 本地配置和分配对于不需要永久分配无线电的市场非常有利。
    • 55. 发明申请
    • BINDING KEYS TO SECURE MEDIA STREAMS
    • 绑定键以确保媒体流安全
    • WO2012078622A1
    • 2012-06-14
    • PCT/US2011/063521
    • 2011-12-06
    • MOTOROLA SOLUTIONS, INC.LEWIS, Adam C.,MESSERGES, Thomas S.,
    • LEWIS, Adam C.,MESSERGES, Thomas S.,
    • H04L29/06
    • H04L65/4061H04L63/06H04L65/607H04L2463/062H04W80/12
    • A key message can include a key-encryption-key (KEK) associated with a KeyDomainID and a KeyGroupID. A session description message can describe streaming media initialization parameters containing media stream information for one or more media streams. For each media stream, the media stream information can include an IP address and a data port. The session description message can further contain a linkage for binding the KEK to a corresponding one of the media streams. The linkage can include the KeyDomainID and KeyGroupID or can include an abstract representation of the KeyDomainID and KeyGroupID. During session initialization, the key-encryption-key (KEK) can be bound to the media streams using the linkage of the session description message. Each of the media streams can be secured using a traffic key conveyed to user equipment (UE) under protection of the key-encryption-key (KEK).
    • 密钥消息可以包括与KeyDomainID和KeyGroupID相关联的密钥加密密钥(KEK)。 会话描述消息可以描述包含一个或多个媒体流的媒体流信息的流媒体初始化参数。 对于每个媒体流,媒体流信息可以包括IP地址和数据端口。 会话描述消息可以进一步包含用于将KEK绑定到对应的一个媒体流的链接。 该链接可以包括KeyDomainID和KeyGroupID,或者可以包括KeyDomainID和KeyGroupID的抽象表示。 在会话初始化期间,可以使用会话描述消息的链接将密钥加密密钥(KEK)绑定到媒体流。 在密钥加密密钥(KEK)的保护下,每个媒体流可以使用传送到用户设备(UE)的业务密钥来保护。
    • 56. 发明申请
    • METHOD FOR QUIETING AND SENSING IN A SECONDARY COMMUNICATIONS SYSTEM
    • 在二次通信系统中进行查询和传感的方法
    • WO2011062800A1
    • 2011-05-26
    • PCT/US2010/055925
    • 2010-11-09
    • MOTOROLA SOLUTIONS, INC.GURNEY, David P.,MUELLER, Bruce D.,
    • GURNEY, David P.,MUELLER, Bruce D.,
    • H04W16/14H04W84/12H04W72/08
    • H04W16/14H04W72/085H04W72/1231
    • A method of retaining channel use by a secondary system (100) is described. A secondary channel used during periods of normal communication between a secondary transmitter and receiver is split into sub-bands (A, B) for use during a quiet period containing quiet phases. During the quiet period, while the transmitter communicates with the receiver on one sub-band, the receiver simultaneously (614) senses for incumbent devices on another sub-band, as well as vice-versa. Transmission and sensing do not occur simultaneously on the same sub-band and transmission is limited to only one of the sub-bands. Transmission and sensing are performed by both the transmitter and the receiver on every sub-band over the course of the quiet period (614). The locations of secondary receivers are determined and employed during scheduling such that devices sufficiently separated from each other transmit during different quiet phases and transmit and sense in sub-bands separated by another sub-band.
    • 描述了由辅助系统(100)保持信道使用的方法。 在次级发射机和接收机之间的正常通信期间使用的辅助信道被分成子带(A,B),以在包含安静阶段的安静时段期间使用。 在安静期间,当发射机在一个子带上与接收机进行通信时,接收机同时(614)感测另一子带上的现有设备,反之亦然。 传输和感测不会同时发生在同一子带上,传输仅限于一个子带。 在静音期间(614),每个子带上的发射机和接收机都进行传输和检测。 在调度期间确定和采用辅助接收机的位置,使得彼此充分分离的设备在不同安静阶段期间发送,并在由另一个子频带分离的子频带中进行发射和感测。