Coordination-free rendezvous method for a communication network
    11.
    发明授权
    Coordination-free rendezvous method for a communication network 有权
    用于通信网络的无协调会合方法

    公开(公告)号:US08644290B2

    公开(公告)日:2014-02-04

    申请号:US12758214

    申请日:2010-04-12

    IPC分类号: H04J3/00

    CPC分类号: H04J3/1647

    摘要: In a coordination-free rendezvous method for a communication network, time is divided into superslots with each superslot being further divided into slots. At least one first-class slot and at least one second-class slot are selected out of the slots of each superslot. The relative position between the first-class slot and the second-class slot is changed every superslot, thereby the first-class slots or the second-class slots between or among devices of the communication network may overlap each other in a periodic manner.

    摘要翻译: 在通信网络的无协调会合方法中,时间被划分为超频,每个超频进一步分为时隙。 从每个超级时隙的时隙中选出至少一个一等级时隙和至少一个二等级时隙。 第一级时隙和第二级时隙之间的相对位置在每个超声道上改变,从而通信网络中的设备之间或之中的第一级时隙或第二级时隙可以以周期性的方式彼此重叠。

    Apparatus and method for enabling discovery of wireless devices
    12.
    发明授权
    Apparatus and method for enabling discovery of wireless devices 有权
    用于实现无线设备发现的装置和方法

    公开(公告)号:US08630205B2

    公开(公告)日:2014-01-14

    申请号:US12812638

    申请日:2008-01-17

    IPC分类号: H04L12/28

    CPC分类号: H04W24/00 H04W48/16

    摘要: A method and apparatus discover hidden wireless devices in a wireless network using a directional antenna system, preventing partitioning of the wireless network. A first wireless device located in a first antenna sector is joined in response to an initial first beacon. First beacons are received from the joined first wireless device during corresponding first beacon periods. At least a second antenna sector is scanned during at least one first beacon period to listen for second beacons from a second wireless device in the second antenna sector, while remaining joined with the first wireless device. The first beacons are not received while the second antenna sector is scanned. The second wireless device is joined in response to an initial second beacon. Second beacons are then received from the joined second wireless device during corresponding second beacon periods, and the first beacons are received during the corresponding first beacon periods.

    摘要翻译: 一种方法和装置利用定向天线系统在无线网络中发现隐藏的无线设备,从而防止无线网络的划分。 响应于初始第一信标,位于第一天线扇区中的第一无线设备被连接。 在对应的第一信标周期期间,从连接的第一无线设备接收到第一信标。 在至少一个第一信标周期期间至少扫描第二天线扇区,以便在与第一无线设备保持连接的同时从第二天线扇区中的第二无线设备收听第二信标。 当第二个天线扇区被扫描时,第一个信标不被接收。 响应于初始的第二信标而连接第二无线设备。 然后在对应的第二信标周期期间从连接的第二无线设备接收第二信标,并且在对应的第一信标周期期间接收第一信标。

    Method of discovering an ad-hoc on-demand distance vector route having at least a minimum set of available resources in a distributed wireless communications network
    13.
    发明授权
    Method of discovering an ad-hoc on-demand distance vector route having at least a minimum set of available resources in a distributed wireless communications network 有权
    一种在分布式无线通信网络中发现具有至少最小可用资源组的特定按需距离矢量路由的方法

    公开(公告)号:US08537744B2

    公开(公告)日:2013-09-17

    申请号:US12298809

    申请日:2007-04-30

    申请人: Chun-Ting Chou

    发明人: Chun-Ting Chou

    IPC分类号: H04W40/02

    摘要: In a wireless communication network (300) comprising a plurality of devices (100), a method of discovering a route for transmitting data from a source device (110A) to a destination device (110D) via multi-hop relay, includes broadcasting from the source device (110A) a route discovery request for transmitting data to the destination device (HOD). The route discovery request includes: a first field indicating a hop-count limit, a second field indicating a number of slots, X, required for transmitting the data, a third field indicating an ID for the source device (110A), and a fourth field indicating an ID for the destination device (HOD). The source device (110A) then receives a route discovery response indicating a route from the source device (110A) to the destination device (HOD). The route discovery response includes a first field indicating a number of hops between the source device (110A) and the destination device (HOD).

    摘要翻译: 在包括多个设备(100)的无线通信网络(300)中,通过多跳中继发现从源设备(110A)向目的地设备(110D)发送数据的路由的方法包括: 源设备(110A)发送数据到目的设备(HOD)的路由发现请求。 路由发现请求包括:指示跳数限制的第一字段,表示发送数据所需的时隙数X的第二字段,表示源设备(110A)的ID的第三字段,以及第四字段 指示目的地设备(HOD)的ID的字段。 然后,源设备(110A)接收指示从源设备(110A)到目的设备(HOD)的路由的路由发现响应。 路由发现响应包括指示源设备(110A)和目的设备(HOD)之间的跳数的第一字段。

    COORDINATION IN WIRELESS NETWORKS HAVING DEVICES WITH DIFFERENT PHYSICAL LAYER TRANSMISSION SCHEMES
    14.
    发明申请
    COORDINATION IN WIRELESS NETWORKS HAVING DEVICES WITH DIFFERENT PHYSICAL LAYER TRANSMISSION SCHEMES 有权
    在具有不同物理层传输方案的设备的无线网络中协调

    公开(公告)号:US20100189053A1

    公开(公告)日:2010-07-29

    申请号:US12526363

    申请日:2008-02-15

    IPC分类号: H04W72/00 H04W4/00

    CPC分类号: H04W16/14 H04W48/12 H04W88/06

    摘要: A wireless network (300) operates with at least two different types of wireless devices, including Type-A wireless devices (320) that communicate using a first transmission scheme and Type-B wireless devices (310) that communicate using a second transmission scheme. Type-A wireless devices (320) can transmit Type-A beacons (325) using the first transmission scheme. Type-B wireless devices (310) can transmit and receive Type-B beacons (315) using the second transmission scheme. Type-B wireless devices (310) can also transmit Type-A beacons (325) using the first transmission scheme, but cannot receive the Type-A beacons (325). Before establishing communications in a new channel, a Type-B wireless device (310) performs power sensing to detect the presence of any non-Type-B wireless devices (200), and if such wireless devices (200) are detected, it switches to another channel. Otherwise, it transmits a Type-A beacon (325) and a Type-B beacon (315) to establish communications in the channel.

    摘要翻译: 无线网络(300)使用至少两种不同类型的无线设备进行操作,包括使用第一传输方案进行通信的A型​​无线设备(320)和使用第二传输方案进行通信的B类无线设备(310)。 A类无线设备(320)可以使用第一传输方案发送类型A信标(325)。 B类无线设备(310)可以使用第二传输方案发送和接收类型-B信标(315)。 B类无线设备(310)还可以使用第一传输方案发送类型A信标(325),但是不能接收A类信标(325)。 在新信道建立通信之前,Type-B无线设备(310)执行功率感测以检测是否存在任何非B类无线设备(200),并且如果检测到这样的无线设备(200),则它切换 到另一个频道。 否则,它发送类型A信标(325)和类型B信标(315)以在信道中建立通信。

    Device discovery for mixed types of directional terminals
    15.
    发明授权
    Device discovery for mixed types of directional terminals 有权
    混合型定向终端的设备发现

    公开(公告)号:US08325659B2

    公开(公告)日:2012-12-04

    申请号:US12522963

    申请日:2008-01-16

    IPC分类号: H04W4/00

    CPC分类号: H04W8/005 H04W16/28 H04W84/18

    摘要: An antenna (740) listens in each of a plurality of steerable sectors to determine if a primary beacon is present; transmits a primary device beacon in each of the plurality of steerable sectors if the primary beacon is not present; and transmits a secondary device beacon in a first one of the plurality of steerable sectors if a primary beacon is discovered. The antenna (740) may transmit the primary and secondary beacons on a different communication channel than a data communication channel or may transmit the primary and secondary beacons on a same communication channel as a data communication channel. The antenna (740) may divide the same communication channel into time slices wherein different time slices of a super-frame are utilized for the primary beacon, the secondary beacon, and the data communication. The secondary device (C, D) sends additional beacons in additional sectors if it receives non-primary beacon from the additional sectors.

    摘要翻译: 天线(740)在多个可操纵扇区中的每一个中侦听,以确定主信标是否存在; 如果主信标不存在,则在多个可操纵扇区的每一个中发送主设备信标; 并且如果发现主信标,则在所述多个可操纵扇区中的第一个中发送辅助设备信标。 天线(740)可以在与数据通信信道不同的通信信道上发送主信标和次信标,或者可以在与数据通信信道相同的通信信道上发送主信标和次信标。 天线(740)可以将相同的通信信道划分成时间片,其中超帧的不同时间片用于主信标,次信标和数据通信。 如果辅助设备(C,D)从附加扇区接收到非主信标,则在附加扇区中发送附加信标。

    Coordination in wireless networks having devices with different physical layer transmission schemes
    16.
    发明授权
    Coordination in wireless networks having devices with different physical layer transmission schemes 有权
    具有不同物理层传输方案的设备的无线网络中的协调

    公开(公告)号:US08233505B2

    公开(公告)日:2012-07-31

    申请号:US12526363

    申请日:2008-02-15

    IPC分类号: H04J1/16 H04L12/56

    CPC分类号: H04W16/14 H04W48/12 H04W88/06

    摘要: A wireless network (300) operates with at least two different types of wireless devices, including Type-A wireless devices (320) that communicate using a first transmission scheme and Type-B wireless devices (310) that communicate using a second transmission scheme. Type-A wireless devices (320) can transmit Type-A beacons (325) using the first transmission scheme. Type-B wireless devices (310) can transmit and receive Type-B beacons (315) using the second transmission scheme. Type-B wireless devices (310) can also transmit Type-A beacons (325) using the first transmission scheme, but cannot receive the Type-A beacons (325). Before establishing communications in a new channel, a Type-B wireless device (310) performs power sensing to detect the presence of any non-Type-B wireless devices (200), and if such wireless devices (200) are detected, it switches to another channel. Otherwise, it transmits a Type-A beacon (325) and a Type-B beacon (315) to establish communications in the channel.

    摘要翻译: 无线网络(300)使用至少两种不同类型的无线设备进行操作,包括使用第一传输方案进行通信的A型​​无线设备(320)和使用第二传输方案进行通信的B类无线设备(310)。 A类无线设备(320)可以使用第一传输方案发送类型A信标(325)。 B类无线设备(310)可以使用第二传输方案发送和接收类型-B信标(315)。 B类无线设备(310)还可以使用第一传输方案发送类型A信标(325),但是不能接收A类信标(325)。 在新信道建立通信之前,Type-B无线设备(310)执行功率感测以检测是否存在任何非B类无线设备(200),并且如果检测到这样的无线设备(200),则它切换 到另一个频道。 否则,它发送类型A信标(325)和类型B信标(315)以在信道中建立通信。

    APPARATUS AND METHOD FOR ENABLING DISCOVERY OF WIRELESS DEVICES
    18.
    发明申请
    APPARATUS AND METHOD FOR ENABLING DISCOVERY OF WIRELESS DEVICES 有权
    用于实现无线设备发现的装置和方法

    公开(公告)号:US20110013611A1

    公开(公告)日:2011-01-20

    申请号:US12812638

    申请日:2008-01-17

    IPC分类号: H04W84/02

    CPC分类号: H04W24/00 H04W48/16

    摘要: A method and apparatus discover hidden wireless devices in a wireless network using a directional antenna system, preventing partitioning of the wireless network. A first wireless device located in a first antenna sector is joined in response to an initial first beacon. First beacons are received from the joined first wireless device during corresponding first beacon periods. At least a second antenna sector is scanned during at least one first beacon period to listen for second beacons from a second wireless device in the second antenna sector, while remaining joined with the first wireless device. The first beacons are not received while the second antenna sector is scanned. The second wireless device is joined in response to an initial second beacon. Second beacons are then received from the joined second wireless device during corresponding second beacon periods, and the first beacons are received during the corresponding first beacon periods.

    摘要翻译: 一种方法和装置利用定向天线系统在无线网络中发现隐藏的无线设备,从而防止无线网络的划分。 响应于初始第一信标,位于第一天线扇区中的第一无线设备被连接。 在对应的第一信标周期期间,从连接的第一无线设备接收到第一信标。 在至少一个第一信标周期期间至少扫描第二天线扇区,以便在与第一无线设备保持连接的同时从第二天线扇区中的第二无线设备收听第二信标。 当第二个天线扇区被扫描时,第一个信标不被接收。 响应于初始的第二信标而连接第二无线设备。 然后在对应的第二信标周期期间从连接的第二无线设备接收第二信标,并且在对应的第一信标周期期间接收第一信标。

    METHOD AND SYSTEM OF SINGLE CARRIER BLOCK TRANSMISSION WITH PARALLEL ENCODING AND DECODING
    19.
    发明申请
    METHOD AND SYSTEM OF SINGLE CARRIER BLOCK TRANSMISSION WITH PARALLEL ENCODING AND DECODING 有权
    具有并行编码和解码的单载波块传输的方法和系统

    公开(公告)号:US20100146363A1

    公开(公告)日:2010-06-10

    申请号:US12522967

    申请日:2008-01-17

    摘要: A Single Carrier Block Transmission (SCBT) system employs an inherently parallel approach to error correction processing. At the transmission system (200), an incoming data stream is split (210) into P parallel data streams, each having a data rate equal to a fraction of the incoming data stream's data rate. The parallel data streams are then each separately encoded (220) in P parallel encoding processes (beneficially, using P parallel encoders (222)). The P separately encoded data streams are then merged (330), interleaved (320), and mapped (310) into a single stream of encoded symbols, which are transmitted to the receiver using an arbitrary modulation (240) and transmission scheme. At the receiver (255), the received data stream is de-interleaved (350) and split into P encoded data streams, which are then decoded (285) using P parallel decoders. Then, the decoded data streams are combined or multiplexed (295) into a single data stream.

    摘要翻译: 单载波块传输(SCBT)系统采用固有的并行方法进行纠错处理。 在传输系统(200)处,输入数据流被分离(210)为P个并行数据流,每个数据流的数据速率等于输入数据流的数据速率的一小部分。 然后,并行数据流在P个并行编码处理(有利地,使用P个并行编码器(222))中分别编码(220)。 然后将P个分离编码的数据流合并(330),交织(320)和映射(310)到编码符号​​的单个流中,其使用任意调制(240)和传输方案发送到接收机。 在接收机(255)处,对接收到的数据流进行解交织(350)并分割成P个编码数据流,然后使用P个并行解码器解码(285)。 然后,解码的数据流被组合或多路复用(295)到单个数据流中。

    COMMUNICATION DEVICE AND METHOD OF COMMUNICATION THAT BONDS COMMUNICATION CHANNELS TOGETHER
    20.
    发明申请
    COMMUNICATION DEVICE AND METHOD OF COMMUNICATION THAT BONDS COMMUNICATION CHANNELS TOGETHER 有权
    通信设备和通信方式通信通信通信

    公开(公告)号:US20100046450A1

    公开(公告)日:2010-02-25

    申请号:US12522935

    申请日:2008-01-14

    IPC分类号: H04W72/12

    CPC分类号: H04W72/02 H04W28/20

    摘要: A wireless device (100) communicates in a wireless system by selecting a communication channel (202) for communication, identifying a control channel or control channels (204) designated for communication of control information for the selected communication channel, and listening for the control information (212) on the control channel to determine if the selected communication channel is bonded with any other communication channel. When control information is received via the control channel(s) indicating that the selected communication channel is bonded with at least one other communication channel, then the wireless device abstains from communication on the selected communication channel, or communicates in a narrowband mode. When control information is received via the control channel(s) indicating that the selected communication channel is not bonded with another communication channel, or when no control information is received via the control channel, then the wireless device communicates via the selected communication channel.

    摘要翻译: 无线设备(100)通过选择用于通信的通信信道(202),识别指定用于通信所选择的通信信道的控制信息的控制信道或控制信道(204)以及监听控制信息来在无线系统中进行通信 (212),以确定所选择的通信信道是否与任何其他通信信道绑定。 当经由指示所选择的通信信道与至少一个其他通信信道绑定的控制信道接收到控制信息时,无线设备在选择的通信信道上放弃通信,或以窄带模式进行通信。 当经由指示所选择的通信信道未与另一通信信道绑定的控制信道接收到控制信息时,或者当经由控制信道未接收到控制信息时,无线设备经由所选择的通信信道进行通信。