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    • 41. 发明申请
    • SHORTHAND CONNECTION IDENTIFIER WITH EMBEDDED SUBFIELD
    • SHORTHAND连接识别器与嵌入式SUBFIELD
    • WO2008082901A1
    • 2008-07-10
    • PCT/US2007/087376
    • 2007-12-13
    • NEXTWAVE BROADBAND INC.BOURLAS, YairSUTTON, ToddGUMMADI, SrikanthWANG, Lei
    • BOURLAS, YairSUTTON, ToddGUMMADI, SrikanthWANG, Lei
    • H04Q7/38
    • H04W72/1289H04W52/08H04W76/11
    • A base station can communicate resource allocation to a wireless mobile station in an uplink map information element (650). The base station can identify destination mobile stations using a shorthand connection identifier (640). The base station parses the connection identifier field (630) into a shorthand connection identifier field and an embedded subfield data field. The shorthand connection identifier field can be sized to support a predetermined number of mobile stations. The base station can further parse the embedded subfield field into a number of sub-fields, each communicating a different set of control information (240). In one embodiment, the base station utilizes the embedded subfield to communicate power, timing, and frequency information to the destination mobile station (232, 234, 236).
    • 基站可以在上行链路映射信息元素(650)中向无线移动站传送资源分配。 基站可以使用速记连接标识符识别目的地移动站(640)。 基站将连接标识符字段(630)解析成快捷连接标识符字段和嵌入式子字段数据字段。 缩写连接标识符字段的大小可以支持预定数量的移动台。 基站可以进一步将嵌入的子场场解析为多个子场,每个子场通信不同的一组控制信息(240)。 在一个实施例中,基站利用嵌入式子场将功率,定时和频率信息传送到目标移动台(232,234,236)。
    • 46. 发明申请
    • TIME MULTIPLEXING FOR COEXISTENCE WITHIN MULTIPLE COMMUNICATION SYSTEMS
    • 在多个通信系统中进行多时间复用
    • WO2009042469A1
    • 2009-04-02
    • PCT/US2008/076685
    • 2008-09-17
    • NEXTWAVE BROADBAND INC.SOHRABI, Katayoun
    • SOHRABI, Katayoun
    • H04L12/28H04L29/06
    • H04W72/1242H04J2203/0067H04J2203/0069H04L5/0055H04L29/08477H04W72/1215H04W88/06
    • Methods and apparatus permitting the coexistence of multiple communication links to distinct wireless systems in a client device are disclosed. A wireless device can interface with both a primary communications system and at least one distinct communications system by managing the coexistence of active communications with the multiple communication systems. The wireless device can initially configure communications with the primary communications system for dynamically reconfigurable time multiplexed operation having scheduled periods of inactivity. The wireless device can determine timing and scheduling of communications with the distinct communications systems and can schedule the communications with the distinct communications systems during periods of inactivity in the primary communications system. The periods of inactivity may be limited to the scheduled periods of inactivity or can include unscheduled periods of inactivity occurring during active periods of the time multiplexed operation. The device may also use data priorities of communications to override overlapping communication activity.
    • 公开了允许多个通信链路共存于客户端设备中的不同无线系统的方法和装置。 无线设备可以通过管理主动通信与多个通信系统的共存来与主通信系统和至少一个不同的通信系统相连接。 无线设备可以最初配置与主要通信系统的通信,用于具有预定的不活动时段的动态可重配置的时间复用操作。 无线设备可以确定与不同通信系统的通信的定时和调度,并且可以在主通信系统中的不活动期间调度与不同通信系统的通信。 不活动的周期可以被限制为不活动的预定时段,或者可以包括在时间复用操作的有效时段期间发生的非预定的不活动时段。 该设备还可以使用通信的数据优先级来覆盖重叠的通信活动。
    • 47. 发明申请
    • PERSISTENT RESOURCE ALLOCATION
    • 持续资源分配
    • WO2009035904A2
    • 2009-03-19
    • PCT/US2008075279
    • 2008-09-04
    • NEXTWAVE BROADBAND INCBOURLAS YAIR
    • BOURLAS YAIR
    • H04B7/26H04L12/28
    • H04W72/0453H04L1/0004H04L1/001H04L1/1861H04L1/1887H04L5/0007H04L5/003H04L5/0053H04L5/0055H04L5/0096H04W72/04H04W72/0466H04W88/08
    • Methods and apparatus for communicating and utilizing persistent allocation of uplink resources are described herein. A base station can allocate persistent uplink resources to a client station, such that the resource allocation remains active for future uplink frames without the client station repeating a request for uplink resources or the base station expressly communicating the uplink resource allocation. A client station can request a persistent uplink resource allocation when wireless channel conditions are fairly consistent and not varying and the required uplink resources are predictably periodic and fixed in size. The base station can verify that the uplink resource request meets the criteria for persistent allocation and can allocate persistent uplink resources in a dedicated information element of an uplink resource map that is transmitted to the user. The resources allocated remain allocated to the client station in each frame satisfying a predetermined periodicity until deallocated.
    • 这里描述了用于传送和利用上行链路资源的持续分配的方法和装置。 基站可以向客户站分配持续的上行链路资源,使得资源分配对于未来的上行链路帧保持活动,而客户站不重复对上行链路资源的请求或基站明确地传送上行链路资源分配。 当无线信道条件相当一致且不变化时,客户站可以请求持续的上行链路资源分配,并且所需的上行链路资源是可预测的周期性且固定的大小。 基站可以验证上行链路资源请求是否满足持续分配的标准,并且可以在发送给用户的上行链路资源映射的专用信息元素中分配持续上行链路资源。 所分配的资源在满足预定周期的每个帧中被分配给客户端,直到被释放。