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    • 2. 发明授权
    • Method for preventing co-channel operation with radar systems
    • 用于防止与雷达系统同频道操作的方法
    • US08179862B2
    • 2012-05-15
    • US11866075
    • 2007-10-02
    • Robert P. KellyBrian K. SmithTimothy J. Wilson
    • Robert P. KellyBrian K. SmithTimothy J. Wilson
    • H04W4/00H04L12/26H04J3/00
    • 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同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之后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值,将所述第一通道和所述第二通道中的对应的一个的状态设置为被动。
    • 3. 发明授权
    • Enhanced passive scanning
    • 增强被动扫描
    • US07583643B2
    • 2009-09-01
    • US10674984
    • 2003-09-30
    • Brian K. SmithFloyd D. SimpsonTimothy J. Wilson
    • Brian K. SmithFloyd D. SimpsonTimothy J. Wilson
    • H04Q7/24
    • H04W48/16H04W84/12
    • The application provides an enhanced passive scanning method for a wireless local area network, including the steps of receiving (405) at least one of a beacon signal (342, 348) or a gratuitous probe response (344), updating (435) a site timing table entry in a site timing table based on the received beacon signal (342, 348) or gratuitous probe response (344), setting (445) a scan start time based on entries in the updated site timing table, and determining (450) a power mode for a wireless communication device based on the scan start time. An enhanced passive scanning system (200, 500, 600) and computer usable medium for enhanced passive scanning is also disclosed.
    • 该应用提供了一种用于无线局域网的增强的被动扫描方法,包括以下步骤:接收(405)信标信号(342,348)或免费探测响应(344)中的至少一个,更新(435)站点 基于所接收的信标信号(342,348)或免费探测响应(344)在站点定时表中的定时表条目,基于更新站点定时表中的条目设置(445)扫描开始时间,以及确定(450) 基于扫描开始时间的无线通信设备的电源模式。 还公开了一种增强型被动扫描系统(200,500,600)和用于增强被动扫描的计算机可用介质。
    • 5. 发明授权
    • Method and apparatus for selecting communication cells in a wireless communication system
    • 用于在无线通信系统中选择通信小区的方法和装置
    • US06671515B1
    • 2003-12-30
    • US09588262
    • 2000-06-06
    • Michael J. NeedhamTimothy J. WilsonLeigh Chinitz
    • Michael J. NeedhamTimothy J. WilsonLeigh Chinitz
    • H04Q720
    • H04W68/02H04W60/04H04W72/005
    • In a wireless communication system (100) having a plurality of communication cells (115, 117), and a plurality of mobile stations (118) operating within selected ones of the multiple communication cells (115, 117), a method and an apparatus for selecting those communication cells (115, 117). Within each communication cell (115, 117), a base station (112) transmits a message directed to the mobile stations (118), and detects a response indicator in the selected ones of the plurality of communication cells (115, 117). The message may be a broadcast page message transmitted by the base station (112). The response indicator may be an impulse radio-frequency energy transmission generated by the plurality of mobile stations (118) operating within the selected ones of the plurality of communication cells (115, 117). The base station (112) may detect the impulse radio-frequency energy transmission on a control channel or during a predetermined time window period (303, 410, 413, 416) following transmission of the message. The base station (112) directs call traffic to the plurality of mobile stations (118) in the selected ones of the plurality of communication cells (115, 117).
    • 在具有多个通信小区(115,117)的无线通信系统(100)和在所述多个通信小区(115,117)的所选择的一个中操作的多个移动站(118)中的方法和装置 选择那些通信单元(115,117)。 在每个通信小区(115,117)内,基站(112)发送指向移动台(118)的消息,并且检测多个通信小区(115,117)中所选择的通信小区中的响应指示符。 消息可以是由基站(112)发送的广播寻呼消息。 响应指示符可以是在多个通信小区(115,117)中选择的多个通信小区中操作的多个移动台(118)产生的脉冲射频能量传输。 基站(112)可以在发送消息之后的预定时间窗周期(303,410,413,416)中检测控制信道上的脉冲射频能量传输。 基站(112)将呼叫业务定向到多个通信小区(115,117)中所选择的一个中的多个移动站(118)。
    • 7. 发明授权
    • Establishment of multiple low-rate inbound signaling links in CDMA
dispatch system
    • 在CDMA调度系统中建立多个低速率入站信令链路
    • US6115388A
    • 2000-09-05
    • US959327
    • 1997-10-28
    • Leigh M. ChinitzMichael L. NeedhamTimothy J. Wilson
    • Leigh M. ChinitzMichael L. NeedhamTimothy J. Wilson
    • H04B7/26H04W4/06H04W76/02H04W84/08H04B7/216H04B7/00H04L12/16H04Q11/00
    • H04W84/08H04B7/264H04W72/005H04W76/02Y02B60/50
    • A quality dispatch service on a CDMA based wireless system. To achieve spectral efficiency and fast access for follow-up calls, in response to a request by a talkgroup member to have a group call established, the non-requesting (listening-only) members are allowed to establish a low-rate (non-voice) signaling link in the reverse direction (inbound) for the limited purpose of (i) providing forward power control information to the fixed infrastructure; (ii) requesting soft hand-off when required; and (iii) maintaining the correct reverse link power control to allow for fast channel access for a follow-on call. In accordance with the illustrative embodiment, the establishment of low-rate inbound signaling links occurs prior to beginning the voice communications. Because a low-rate signaling link, as contemplated by the present invention, is a non-voice link which signals at a predetermined rate substantially less than that of a full-rate traffic link, proportionately less average power is required for dispatch communications than would otherwise be the case if full-rate traffic links were provided instead to non-talking talkgroup members. The present solution results in less interference to the CDMA system and thus substantially less impact on overall system capacity.
    • 基于CDMA的无线系统的质量调度服务。 为了实现频谱效率和对后续呼叫的快速访问,响应于通话组成员要求建立群组呼叫的请求,允许不请求(只听)成员建立低速率(非易失性) 语音)信令链路,用于(i)向固定基础设施提供正向功率控制信息的有限目的(入站); (ii)在需要时请求软交换; 和(iii)保持正确的反向链路功率控制以允许用于后续呼叫的快速信道接入。 根据说明性实施例,在开始语音通信之前发生低速率入站信令链路的建立。 因为本发明所设想的低速率信令链路是一个非语音链路,它以基本上小于全速率业务链路的预定速率发送信号,相比于调度通信所需的平均功率要小于 否则,如果提供全速率的流量链接,而不是非谈话的谈话组成员。 本解决方案导致对CDMA系统的干扰较少,因此对整个系统容量的影响较小。
    • 10. 发明申请
    • UP-LINK SDMA RECEIVER FOR WiMAX
    • 用于WiMAX的UP-LINK SDMA接收器
    • US20100296438A1
    • 2010-11-25
    • US12469306
    • 2009-05-20
    • Xiaoyong YuAlan P. RottinghausTimothy J. Wilson
    • Xiaoyong YuAlan P. RottinghausTimothy J. Wilson
    • H04W72/00
    • H04L27/2662H04L5/0051H04L25/0224H04L27/2675
    • A method, a system and a receiver device provide timing and frequency correction in a spatial division multiple access (SDMA) system. A timing and frequency correction (TFC) logic/utility obtains a timing error estimate by using pilot symbols on a slot of six tiles. The TFC logic estimates the timing error based on pilot phase differences between unique pairs of tiles when the frequency separation of the tiles is less than a threshold value. When none of the unique pairs of tiles satisfies the threshold value, the TFC logic estimates timing error based on an exhaustive search for each candidate phase error value. The TFC logic performs timing error correction via a timing error estimate based on pilots from the symbols received on each antenna. The TFC logic performs inexplicit frequency error correction according to phase differences based on relative symbol indices.
    • 方法,系统和接收机设备在空分多址(SDMA)系统中提供定时和频率校正。 定时和频率校正(TFC)逻辑/效用通过在六个瓦片的时隙上使用导频符号来获得定时误差估计。 当块的频率分离小于阈值时,TFC逻辑基于独特的瓦片对之间的导频相位差来估计定时误差。 当没有唯一的瓦片对满足阈值时,TFC逻辑基于对每个候选相位误差值的详尽搜索来估计定时误差。 TFC逻辑通过基于在每个天线上接收到的符号的导频的定时误差估计来执行定时误差校正。 TFC逻辑根据相对符号索引的相位差执行奇异性频率误差校正。