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    • 1. 发明申请
    • HIGH-PERFORMANCE FASTER-THAN-NYQUIST (FTN) SIGNALING SCHEMES
    • 高性能,快速的NYQUIST(FTN)信令方案
    • US20110188550A1
    • 2011-08-04
    • US13060060
    • 2009-10-22
    • Daniel WajcerUri Beitler
    • Daniel WajcerUri Beitler
    • H04B15/00H04L25/20H04L27/01
    • H04L25/03343H04L1/0057H04L1/0071H04L25/03834H04L25/068
    • A method for communication includes modulating data to produce a series of symbols defined in a signal space. The symbols are pulse-shaped using a given pulse shape. A signal, which includes a sequence of the pulse-shaped symbols (104A . . . 104C) transmitted at a symbol rate that is higher than a Nyquist rate defined for the given pulse shape, is transmitted to a receiver (40). Prior to pulse-shaping the symbols, Inter-Symbol Interference (ISI) in the signal is pre-compensated for by applying a lattice precoding operation to the symbols. The lattice precoding operation confines the symbols to a predefined volume (110) in the signal space and is computed independently of any feedback from the receiver.
    • 一种用于通信的方法包括调制数据以产生在信号空间中定义的一系列符号。 符号是使用给定的脉冲形状的脉冲形状。 包括以比为给定脉冲形状定义的奈奎斯特速率高的符号率发送的脉冲符号序列(104A ... 104C)的信号被发送到接收器(40)。 在对符号进行脉冲整形之前,信号中的符号间干扰(ISI)通过对符号应用格子预编码操作进行预补偿。 格预编码操作将符号限定在信号空间中的预定义卷(110),并且独立于来自接收器的任何反馈来计算。
    • 2. 发明授权
    • High-performance faster-than-nyquist (FTN) signaling schemes
    • 高性能,快于尼奎斯特(FTN)信令方案
    • US08514966B2
    • 2013-08-20
    • US13060060
    • 2009-10-22
    • Daniel WajcerUri Beitler
    • Daniel WajcerUri Beitler
    • H04B15/00
    • H04L25/03343H04L1/0057H04L1/0071H04L25/03834H04L25/068
    • A method for communication includes modulating data to produce a series of symbols defined in a signal space. The symbols are pulse-shaped using a given pulse shape. A signal, which includes a sequence of the pulse-shaped symbols (104A . . . 104C) transmitted at a symbol rate that is higher than a Nyquist rate defined for the given pulse shape, is transmitted to a receiver (40). Prior to pulse-shaping the symbols, Inter-Symbol Interference (ISI) in the signal is pre-compensated for by applying a lattice precoding operation to the symbols. The lattice precoding operation confines the symbols to a predefined volume (110) in the signal space and is computed independently of any feedback from the receiver.
    • 一种用于通信的方法包括调制数据以产生在信号空间中定义的一系列符号。 符号是使用给定的脉冲形状的脉冲形状。 包括以比为给定脉冲形状定义的奈奎斯特速率高的符号率发送的脉冲符号序列(104A ... 104C)的信号被发送到接收器(40)。 在对符号进行脉冲整形之前,信号中的符号间干扰(ISI)通过对符号应用格子预编码操作进行预补偿。 格预编码操作将符号限定在信号空间中的预定义卷(110),并且独立于来自接收器的任何反馈来计算。
    • 4. 发明授权
    • Active link cable diagnostics
    • 主动链接电缆诊断
    • US07769090B2
    • 2010-08-03
    • US11694942
    • 2007-03-31
    • Amir PelegDaniel WajcerItay LuskyNaftali SommerNohik Semel
    • Amir PelegDaniel WajcerItay LuskyNaftali SommerNohik Semel
    • H04B3/00
    • H04B3/48
    • A novel apparatus for and method of estimating the cable length of an active network link. The cable diagnostics mechanism of the invention is particularly suited for use in estimating the length of Ethernet network between two edges when the link is active, i.e. data is being transmitted in both directions simultaneously and the transmission of test pulses is not possible. The cable length estimation mechanism of the present invention is based on a well-known property of the spectrum of the insertion loss of the cable, namely, the linear relationship between the attenuation of the cable at a given frequency in decibels and the cable length. Information characterizing this relationship is extracted and used to determine the length of the cable.
    • 一种用于估计有源网络链路的电缆长度的新型装置和方法。 本发明的电缆诊断机构特别适用于当链路处于活动状态时估计两个边缘之间的以太网网络的长度,即同时在两个方向上发送数据,并且测试脉冲的传输是不可能的。 本发明的电缆长度估计机构是基于电缆的插入损耗频谱的众所周知的特性,即以给定频率以分贝计的电缆的衰减与电缆长度之间的线性关系。 提取表征该关系的信息,并用于确定电缆的长度。
    • 10. 发明授权
    • Satellite receiver with interfering signal cancellation
    • 具有干扰信号消除的卫星接收机
    • US08644866B2
    • 2014-02-04
    • US13031216
    • 2011-02-20
    • Daniel WajcerGuy Cohen
    • Daniel WajcerGuy Cohen
    • H04B7/00H04B15/00
    • H04B7/0845H04B1/109H04B1/126
    • A method for communication includes receiving a Radio Frequency (RF) channel containing a desired signal conforming to a first air interface and an interfering signal conforming to a second air interface. A first receiver configured for the first air interface and a second receiver configured for the second air interface are synchronized to a common frequency and timing reference. While the first and second receivers are synchronized, the desired signal is decoded from the RF channel using the first receiver to generate a first output, the interfering signal is decoded from the RF channel using the second receiver to generate a second output, and the desired signal is reconstructed while suppressing the interfering signal by jointly processing the first and second outputs.
    • 一种用于通信的方法包括接收包含符合第一空中接口的所需信号的射频(RF)信道和符合第二空中接口的干扰信号。 配置用于第一空中接口的第一接收机和为第二空中接口配置的第二接收机被同步到公共频率和定时参考。 当同步第一和第二接收机时,使用第一接收机从RF信道解码期望的信号以产生第一输出,使用第二接收机从RF信道解码干扰信号以产生第二输出,并且所需的信号 通过联合处理第一和第二输出来抑制干扰信号而重建信号。