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    • 4. 发明申请
    • METHOD AND DEVICE FOR CHANNEL INSPECTION IN A COMMUNICATION SYSTEM
    • 通信系统中通道检测的方法和装置
    • US20100098049A1
    • 2010-04-22
    • US12253380
    • 2008-10-17
    • JOHN P. BELMONTEDIPENDRA M. CHOWDHARYYUEH CHING CHUNGHUN WENG KHOODAVID G. WIATROWSKI
    • JOHN P. BELMONTEDIPENDRA M. CHOWDHARYYUEH CHING CHUNGHUN WENG KHOODAVID G. WIATROWSKI
    • H04J3/06H04J3/00
    • H04W48/16
    • To perform channel inspection, a wireless communication device conducts a full inspection on a first channel carrying a first signal that includes: determining a location of a first synchronization message; and determining whether the first signal is of interest. Upon determining that the first signal is not of interest, the first channel is marked, wherein the marking includes remembering the location of the first synchronization message. The device leaves the first channel and determines an expected location of a second synchronization message on the first channel based on the location of the first synchronization message. Upon returning to the first channel which carries a second signal, the communication device conduct a partial inspection that includes: detecting whether the second synchronization message is present at the expected location, wherein the presence of the second synchronization message indicates that the second signal is not of interest.
    • 为了执行信道检查,无线通信设备对承载第一信号的第一信道进行全面检查,该第一信道包括:确定第一同步消息的位置; 以及确定所述第一信号是否是感兴趣的。 当确定第一信号不感兴趣时​​,标记第一信道,其中标记包括记住第一同步消息的位置。 设备离开第一信道并且基于第一同步消息的位置在第一信道上确定第二同步消息的预期位置。 在返回到承载第二信号的第一信道时,通信设备进行部分检查,其包括:检测第二同步消息是否存在于预期位置,其中存在第二同步消息指示第二信号不是 出于兴趣。
    • 6. 发明申请
    • METHOD AND DEVICE FOR DETECTING A CHANNEL
    • 用于检测通道的方法和装置
    • US20120163377A1
    • 2012-06-28
    • US12976081
    • 2010-12-22
    • HUN WENG KHOOYUEH CHING CHUNGDAVID G. WIATROWSKI
    • HUN WENG KHOOYUEH CHING CHUNGDAVID G. WIATROWSKI
    • H04L12/64
    • H04W56/0085H04W76/45
    • A method for detecting a channel in a mixed-mode communications system is presented. The channel contains a primary synchronization pattern in a predetermined location within the channel. The primary synchronization pattern is compared against different predetermined channel synchronization patterns to detect a channel. Upon detection of the channel, a look-back channel detector confirms the existence of the channel by using the location of the primary synchronization pattern. Detection and confirmation of the channel may be employed simultaneously to each channel of a multiple-channel direct mode of operation signal. Audio holes may be eliminated in a 2:1 TDMA direct mode operation where both time slots contain signals from two different originating communication devices and the signals have different priority.
    • 提出了一种用于在混合模式通信系统中检测信道的方法。 该信道在信道内的预定位置包含主同步模式。 将主同步模式与不同的预定信道同步模式进行比较以检测信道。 在检测到信道时,回溯信道检测器通过使用主同步模式的位置来确认信道的存在。 信道的检测和确认可以同时用于多信道直接操作模式信号的每个信道。 可以在2:1 TDMA直接模式操作中消除音频孔,其中两个时隙都包含来自两个不同始发通信设备的信号,并且信号具有不同的优先级。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR AUTOMATICALLY DETERMINING A COMMUNICATION RANGE STATUS OF COMMUNICATING RADIOS
    • 用于自动确定通信无线电通信状态的方法和装置
    • US20130324177A1
    • 2013-12-05
    • US13485148
    • 2012-05-31
    • DAVID G. WIATROWSKIYUEH CHING CHUNGTEIK CHOON TEH
    • DAVID G. WIATROWSKIYUEH CHING CHUNGTEIK CHOON TEH
    • H04W24/00H04W56/00
    • H04W8/005
    • A method is disclosed for determining a connectivity status of radios in a coverage group. Each coverage group includes radios configured to transmit and receive range messages on a channel and a timeslot. Each radio in the coverage group is configured to generate a range message and to transmit the range message to each other radio in the coverage group. Each radio in the coverage group is also configured to receive, from each other radio in the coverage group, a range message generated by each other radio. Based on the range message received from each other radio, each radio is configured to determine bi-directional connectivity between the receiving radio and the radios that sent the D-ARTS messages. The determined bi-directional connectivity status is between each radio and each of at least two other radios in the coverage group.
    • 公开了一种用于确定覆盖组中无线电的连接状态的方法。 每个覆盖组包括被配置为在信道和时隙上发送和接收范围消息的无线电。 覆盖组中的每个无线电设备被配置为生成范围消息并且将范围消息发送到覆盖组中的彼此无线电。 覆盖组中的每个无线电还被配置为从覆盖组中的彼此的无线电接收由彼此无线电产生的范围消息。 基于从每个其他无线电接收的范围消息,每个无线电被配置为确定发送D-ARTS消息的接收无线电与无线电之间的双向连接。 所确定的双向连接状态在覆盖组中的每个无线电和至少两个其他无线电中的每一个之间。