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    • 2. 发明申请
    • METHODS AND SYSTEMS FOR EXTENDING RANGE AND ADJUSTING BANDWIDTH FOR WIRELESS NETWORKS
    • 用于无线网络扩展范围和调整带宽的方法和系统
    • US20100203911A1
    • 2010-08-12
    • US12280223
    • 2007-02-20
    • Carlos M. CordeiroDagnachew BirruMonisha Ghosh
    • Carlos M. CordeiroDagnachew BirruMonisha Ghosh
    • H04B7/00H04B15/00
    • H04W72/0453H04W16/28H04W80/00H04W88/08
    • A Communications base-station configured to operate as a hub in a wireless network and provide communication services to a set of remote customer devices using a wireless protocol is disclosed. The communications base-station includes an antenna array having a plurality of antennae arranged in a fashion as to enable the antenna array to transmit and receive wireless signals in both a substantially omnidirectional and non-omnidirectional pattern, a physical layer (PHY) device coupled to the antenna array and configured to transmit and receive wireless signals and a media access control (MAC) device coupled to the PHY device and configured to direct the antenna array to concurrently provide beamformed wireless signals to a first customer device and omnidirectional wireless signals to second customer device.
    • 公开了一种被配置为作为无线网络中的集线器并且使用无线协议向一组远程客户设备提供通信服务的通信基站。 通信基站包括具有多个天线的天线阵列,天线阵列以能够使天线阵列在基本上全向和非全向模式中发射和接收无线信号的方式布置,物理层(PHY)设备耦合到 所述天线阵列并且被配置为发送和接收无线信号,以及媒体访问控制(MAC)设备,其耦合到所述PHY设备并被配置为引导所述天线阵列同时向第一客户设备提供波束形成的无线信号以及向所述第二客户提供全向无线信号 设备。
    • 3. 发明授权
    • Methods and systems for extending range and adjusting bandwidth for wireless networks
    • 用于扩展无线网络范围和调整带宽的方法和系统
    • US09014638B2
    • 2015-04-21
    • US12280223
    • 2007-02-20
    • Carlos M. CordeiroDagnachew BirruMonisha Ghosh
    • Carlos M. CordeiroDagnachew BirruMonisha Ghosh
    • H04B1/00H04W88/08H04W16/28H04W80/00
    • H04W72/0453H04W16/28H04W80/00H04W88/08
    • A Communications base-station configured to operate as a hub in a wireless network and provide communication services to a set of remote customer devices using a wireless protocol is disclosed. The communications base-station includes an antenna array having a plurality of antennae arranged in a fashion as to enable the antenna array to transmit and receive wireless signals in both a substantially omnidirectional and non-omnidirectional pattern, a physical layer (PHY) device coupled to the antenna array and configured to transmit and receive wireless signals and a media access control (MAC) device coupled to the PHY device and configured to direct the antenna array to concurrently provide beamformed wireless signals to a first customer device and omnidirectional wireless signals to second customer device.
    • 公开了一种通信基站,被配置为作为无线网络中的集线器并且使用无线协议向一组远程客户设备提供通信服务。 通信基站包括具有多个天线的天线阵列,天线阵列以能够使天线阵列在基本上全向和非全向模式中发射和接收无线信号的方式布置,物理层(PHY)设备耦合到 所述天线阵列并且被配置为发送和接收无线信号,以及媒体访问控制(MAC)设备,其耦合到所述PHY设备并被配置为引导所述天线阵列同时向第一客户设备提供波束形成的无线信号以及向所述第二客户提供全向无线信号 设备。
    • 7. 发明授权
    • Method and system of single carrier block transmission with parallel encoding and decoding
    • 具有并行编码和解码的单载波块传输方法和系统
    • US08418035B2
    • 2013-04-09
    • US12522967
    • 2008-01-17
    • Dagnachew BirruSeyed-Alireza Seyedi-EsfahaniRichard ChenHong ZhaiChun-Ting Chou
    • Dagnachew BirruSeyed-Alireza Seyedi-EsfahaniRichard ChenHong ZhaiChun-Ting Chou
    • H03M13/00
    • H04L1/0071H04L1/0043H04L1/0052
    • 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.
    • 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。
    • 8. 发明授权
    • Method and system for detecting narrowband signals using a receiver with a wideband frontend
    • 使用具有宽带前端的接收机检测窄带信号的方法和系统
    • US08233566B2
    • 2012-07-31
    • US12301304
    • 2007-05-17
    • Dagnachew Birru
    • Dagnachew Birru
    • H04L27/00
    • H04B1/719
    • A system (100) and method (300) detect the presence of a narrowband signal having a bandwidth ΔF2 in a wideband frequency channel having a bandwidth ΔF1>ΔF2. The method (300) includes digitizing (310) a signal received in the frequency channel; transforming (320) the digitized signal into N digital frequency domain components; averaging (330) the power spectrum of the N digital frequency domain components over a plurality of samples; filtering (340) the averaged power spectrum of the N digital frequency domain components with a filter having M non-zero values spanning a bandwidth, ΔF3, where N>M and ΔF1>ΔF3; computing (350) a mean, μk, a modified standard deviation, βk, and a peak value, PMAX of the filtered, averaged power; and detecting (360) the presence of the narrowband whenever PMAX>(k1*μk)+(k2*βk), where k1 and k2 are selected to provide a probability of detection, a probability of missed detection, and a probability of false alarm.
    • 系统(100)和方法(300)在具有带宽&Dgr; F1>&Dgr; F2的宽带频道中检测具有带宽&Dgr; F2的窄带信号的存在。 方法(300)包括数字化(310)在频率信道中接收的信号; 将(320)数字化信号转换成N个数字频域分量; 在多个样本中平均(330)N个数字频域分量的功率谱; 滤波(340)具有M个非零值的滤波器的N个数字频域分量的平均功率谱,跨越带宽&Dgr; F3,其中N> M和&Dgr; F1>&Dgr; F3; 计算(350)平均值μk,修正的标准偏差&bgr; k和滤波平均功率的峰值PMAX; 并且每当PMAX>(k1 *μk)+(k2 *&bgr; k)选择k1和k2以提供检测的概率,错过检测的概率和概率为 虚惊。
    • 9. 发明授权
    • Preamble structure for enabling multi-mode wireless communications
    • 用于启用多模式无线通信的前导码结构
    • US08233415B2
    • 2012-07-31
    • US12132868
    • 2008-06-04
    • Dagnachew Birru
    • Dagnachew Birru
    • H04B7/00
    • H04J13/0059
    • A method for generating preamble structures to be used in multi-mode wireless communication systems. The method includes generating a basic element sequence in a predefined length, wherein the basic element sequence has a circularly orthogonal property; generating a type-A preamble by repeating the basic element sequence a number of predefined times; and generating a type-B preamble by adding respective values of real parts to values of imaginary parts of elements in the type-A preamble. The type-A preamble and type-B preamble are cross-correlated.
    • 一种用于产生要在多模式无线通信系统中使用的前导码结构的方法。 该方法包括以预定长度生成基本元素序列,其中基本元素序列具有圆形正交属性; 通过重复基本元素序列多个预定义时间来生成A类前导码; 并且通过将实部的相应值添加到类型-A前同步码中的元素的虚部的值来生成类型B前同步码。 A型前同步码和B型前同步码是相互关联的。