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    • 14. 发明申请
    • Feedback-based management of variable-rate communication links
    • 基于反馈的可变速率通信链路管理
    • US20100185917A1
    • 2010-07-22
    • US12750730
    • 2010-03-31
    • Ehud AshkenaziJonathan Friedmann
    • Ehud AshkenaziJonathan Friedmann
    • H03M13/05H04L12/26G06F11/10
    • H04L1/0026H04L1/0003H04L1/0009H04L1/0017
    • A method for communication includes transmitting data from a transmitter to a receiver using Adaptive Coding and Modulation (ACM). The data rate is set by selecting, based on feedback, an ACM profile defining a Forward Error Correction code and a modulation scheme. Upon detecting that the feedback is unusable, an operation of the transmitter is changed independently of the feedback.In another method, data is exchanged over two opposite directions of a bidirectional link that uses ACM by communicating using two ACM profiles. A joint constraint is defined on the two directions. The two ACM profiles are set based on first and second measured reception quality metrics of the two link directions, to meet the joint constraint. In yet another method, a subset of the ACM profiles is temporarily disabled, and the data is transmitted using only the ACM profiles that are not disabled.
    • 一种用于通信的方法包括使用自适应编码和调制(ACM)将数据从发射机发射到接收机。 通过基于反馈选择定义前向纠错码和调制方案的ACM简档来设置数据速率。 在检测到反馈不可用时,发射器的操作独立于反馈而改变。 在另一种方法中,通过使用两个ACM简档通信来使用ACM的双向链路的两个相反方向交换数据。 在两个方向上定义了联合约束。 基于两个链路方向的第一和第二测量的接收质量度量来设置两个ACM简档,以满足联合约束。 在另一种方法中,ACM简档的子集被临时禁用,并且仅使用未被禁用的ACM简档来发送数据。
    • 18. 发明授权
    • Communication pathway supporting an advanced split microwave backhaul architecture
    • 通信路径支持高级拆分微波回程架构
    • US09380645B2
    • 2016-06-28
    • US13535196
    • 2012-06-27
    • Jonathan FriedmannIgal KushnirAlon ShavitNoam Mizrahi
    • Jonathan FriedmannIgal KushnirAlon ShavitNoam Mizrahi
    • H04B1/38H04W88/08
    • H04W88/085
    • An advanced split ODU architecture is provided. The advanced architecture includes an indoor communication unit including a digital modem assembly configured to modulate and demodulate digital data, and also includes a digital interface module configured to transmit and/or receive the digital data, over a digital communication pathway, between the indoor communication unit and an external outdoor communication unit. The advanced architecture further includes an outdoor communication unit having a digital interface module configured to transmit and/or receive the digital data, over the digital communication pathway, between the outdoor communication unit and an external indoor communication unit, and also includes a digital to analog converter configured to convert the digital data to analog data and an analog to digital converter configured to convert the analog data to the digital data, and further includes an RF module configured to convert the analog data between a baseband and a radio frequency.
    • 提供了高级拆分ODU架构。 高级架构包括室内通信单元,其包括被配置为对数字数据进行调制和解调的数字调制解调器组件,还包括数字接口模块,被配置为通过数字通信路径在室内通信单元之间传送和/或接收数字数据 和外部室外通信单元。 先进的架构还包括室外通信单元,其具有被配置为通过数字通信路径在户外通信单元和外部室内通信单元之间发送和/或接收数字数据的数字接口模块,还包括数字到模拟 转换器,被配置为将数字数据转换为模拟数据;以及模拟数字转换器,被配置为将模拟数据转换为数字数据,并且还包括被配置为在基带和射频之间转换模拟数据的RF模块。
    • 19. 发明授权
    • Message-based management of variable-rate communication links
    • 基于消息的可变速率通信链路管理
    • US08385839B2
    • 2013-02-26
    • US12750731
    • 2010-03-31
    • Ehud AshkenaziJonathan Friedmann
    • Ehud AshkenaziJonathan Friedmann
    • H04B17/00
    • H04L1/0026H04L1/0003H04L1/0009H04L1/0017
    • A method for communication includes transmitting data from a transmitter to a receiver using Adaptive Coding and Modulation (ACM). The data rate is set by selecting, based on feedback, an ACM profile defining a Forward Error Correction code and a modulation scheme. Upon detecting that the feedback is unusable, an operation of the transmitter is changed independently of the feedback.In another method, data is exchanged over two opposite directions of a bidirectional link that uses ACM by communicating using two ACM profiles. A joint constraint is defined on the two directions. The two ACM profiles are set based on first and second measured reception quality metrics of the two link directions, to meet the joint constraint. In yet another method, a subset of the ACM profiles is temporarily disabled, and the data is transmitted using only the ACM profiles that are not disabled.
    • 一种用于通信的方法包括使用自适应编码和调制(ACM)将数据从发射机发射到接收机。 通过基于反馈选择定义前向纠错码和调制方案的ACM简档来设置数据速率。 在检测到反馈不可用时,发射器的操作独立于反馈而改变。 在另一种方法中,通过使用两个ACM简档通信来使用ACM的双向链路的两个相反方向交换数据。 在两个方向上定义了联合约束。 基于两个链路方向的第一和第二测量的接收质量度量来设置两个ACM简档,以满足联合约束。 在另一种方法中,ACM简档的子集被临时禁用,并且仅使用未被禁用的ACM简档来发送数据。
    • 20. 发明授权
    • Decoding of forward error correction codes in the presence of phase noise and thermal noise
    • 在存在相位噪声和热噪声的情况下解码前向纠错码
    • US08351552B2
    • 2013-01-08
    • US13274742
    • 2011-10-17
    • Zohar MontekyoRonen YonesiJonathan Friedmann
    • Zohar MontekyoRonen YonesiJonathan Friedmann
    • H03D1/04
    • H04L1/005H04L1/205
    • A communication receiver includes a front end, which is arranged to receive a Radio Frequency (RF) signal, which includes modulated symbols carrying data that have been encoded by a block Forward Error Correction (FEC) code. The front end converts the RF signal to a sequence of soft received symbols, wherein the soft received symbols are subject to distortion by at least first and second noise components having respective at least first and second statistical distributions. A metric calculation unit is arranged to process the soft received symbols so as to extract parameters indicative of the at least first and second statistical distributions, and to compute FEC metrics based on the extracted parameters. A FEC decoder is arranged to accept the FEC metrics as input, and to process the metrics in an iterative FEC decoding process so as to decode the FEC code and reconstruct the data.
    • 通信接收机包括前端,其被布置为接收射频(RF)信号,其包括携带已经由块前向纠错(FEC)码编码的数据的调制符号。 前端将RF信号转换成软接收符号序列,其中软接收符号经由具有相应的至少第一和第二统计分布的至少第一和第二噪声分量经受失真。 度量计算单元被布置为处理软接收符号,以便提取指示至少第一和第二统计分布的参数,并且基于提取的参数来计算FEC度量。 FEC解码器被布置为接受FEC度量作为输入,并且在迭代FEC解码过程中处理度量,以便对FEC码进行解码并重构数据。