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    • 1. 发明授权
    • System for allowing co-existence of transceivers
    • 允许收发器共存的系统
    • US09154236B2
    • 2015-10-06
    • US13625863
    • 2012-09-24
    • Haim KupershmidtKobi Ben AtarNaftali ChayatMoshe Haiut
    • Haim KupershmidtKobi Ben AtarNaftali ChayatMoshe Haiut
    • H04B1/00H04B15/00H04B1/525
    • H04B15/00H04B1/525
    • A system may be provided and may include a first transmitter; a first antenna, coupled to the first transmitter; wherein the first transmitter is arranged to transmit via the first antenna first radio frequency (RF) signals; a first receiver; a second antenna, coupled to the first receiver; the second antenna differs from the first antenna; an RF acquisition module that is arranged to acquire second RF signals that are representative of the first RF signals; and an RF suppression module, arranged to receive the second RF signals and to generate RF suppression signals for suppressing an effect of a transmission of the first RF signals on the first receiver, and to provide the RF suppression signals to the first receiver.
    • 可以提供系统并且可以包括第一发射机; 第一天线,耦合到所述第一发射机; 其中所述第一发射机被布置成经由所述第一天线第一射频(RF)信号进行发射; 第一个接收器; 耦合到所述第一接收器的第二天线; 第二天线与第一天线不同; RF采集模块,被配置为获取表示第一RF信号的第二RF信号; RF抑制模块,被配置为接收第二RF信号并产生用于抑制第一RF信号在第一接收机上的传输效果的RF抑制信号,并向第一接收机提供RF抑制信号。
    • 2. 发明申请
    • SYSTEM FOR ALLOWING CO-EXISTENCE OF TRANSCEIVERS
    • 允许收货人共存的制度
    • US20140087667A1
    • 2014-03-27
    • US13625863
    • 2012-09-24
    • Kobi Ben AtarNaftali ChayatMoshe Haiut
    • Kobi Ben AtarNaftali ChayatMoshe Haiut
    • H04B15/00
    • H04B15/00H04B1/525
    • A system may be provided and may include a first transmitter; a first antenna, coupled to the first transmitter; wherein the first transmitter is arranged to transmit via the first antenna first radio frequency (RF) signals; a first receiver; a second antenna, coupled to the first receiver; the second antenna differs from the first antenna; an RF acquisition module that is arranged to acquire second RF signals that are representative of the first RF signals; and an RF suppression module, arranged to receive the second RF signals and to generate RF suppression signals for suppressing an effect of a transmission of the first RF signals on the first receiver, and to provide the RF suppression signals to the first receiver.
    • 可以提供系统并且可以包括第一发射机; 第一天线,耦合到所述第一发射机; 其中所述第一发射机被布置成经由所述第一天线第一射频(RF)信号进行发射; 第一个接收器; 耦合到所述第一接收器的第二天线; 第二天线与第一天线不同; RF采集模块,被配置为获取表示第一RF信号的第二RF信号; RF抑制模块,被配置为接收第二RF信号并产生用于抑制第一RF信号在第一接收机上的传输效果的RF抑制信号,并向第一接收机提供RF抑制信号。
    • 3. 发明授权
    • State metrics memory reduction in a turbo decoder implementation
    • turbo解码器实现中的状态量度记忆减少
    • US08291302B2
    • 2012-10-16
    • US12285987
    • 2008-10-17
    • Moshe Haiut
    • Moshe Haiut
    • H03M13/00
    • H03M13/2993H03M13/2957H03M13/3905H03M13/3922H03M13/6505
    • Methods and apparatus are described for reducing memory storage cells in a turbo decoder by storing only half the state metrics generated during a scan process. States associated with each bit transmission may be divided into couples and only one state from every state couple may be stored. In one example embodiment, only the state metric for a losing state of every state couple is saved, along with a single bit, e.g., 1 or 0, indicating whether the upper state or lower state of the state couple was the winner. The winning state may be reconstituted at a later stage. In this manner, for a code rate 1/3 and constraint length 3 turbo code, instead of storing 8*10=80 bits of state metrics for each systematic bit, only (4*10)+(4*1)=44 bits of scan state metrics data need be stored, a savings of nearly 50% regardless of the transistor technology used.
    • 描述了用于通过仅存储在扫描处理期间生成的状态度量的一半来减少turbo解码器中的存储器存储单元的方法和装置。 与每个位传输相关联的状态可以被划分为对,并且可以仅存储来自每个状态对的一个状态。 在一个示例实施例中,仅保存每个状态对的丢失状态的状态度量,以及指示状态对的上部状态或较低状态是否为赢者的单个位,例如1或0。 获胜状态可以在稍后阶段重新组建。 以这种方式,对于码率1/3和约束长度3 turbo码,代替仅存储每个系统比特的8×10 = 80比特的状态度量,只有(4 * 10)+(4 * 1)= 44比特 的扫描状态度量数据需要存储,节省近50%,而不考虑使用的晶体管技术。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR DECODING
    • 用于解码的方法和装置
    • US20090249155A1
    • 2009-10-01
    • US12414124
    • 2009-03-30
    • Ronen MayrenchBarak UllmanMoshe HaiutShahar Fattal
    • Ronen MayrenchBarak UllmanMoshe HaiutShahar Fattal
    • G08C25/02G06F11/07
    • H04L1/08H04L1/0053H04L1/0061H04L1/1816H04L1/1845
    • Aspects of the disclosure can provide a method and an apparatus to decode a data stream based on multiple transmissions with efficient usages of storage and power resources. The method for decoding can include receiving a first plurality of encoded code blocks corresponding to a first transmission of a transport block, decoding the first plurality of encoded code blocks into decoded code blocks, error detecting the decoded code blocks, and storing a decoding history of the decoded code blocks. Further, the method can include receiving a second plurality of encoded code blocks corresponding to a retransmission of the transport block. The second plurality of encoded code blocks can map the first plurality of encoded code blocks, respectively. The method can selectively decode a subset of the second plurality of encoded code blocks based on the decoding history. In addition, the method can include storing soft bits for code blocks that failed decoding. The soft bits can be a combination of soft bits from multiple transmissions. The memory size for storing the soft bits can be reduced by dynamically freeing memory space associated with successfully decoded code blocks.
    • 本公开的方面可以提供一种基于多个传输来解码数据流的方法和装置,其具有存储和功率资源的有效使用。 解码方法可以包括接收对应于传输块的第一传输的第一多个编码代码块,将第一多个编码代码块解码为解码代码块,错误检测解码代码块,以及存储解码历史 解码的代码块。 此外,该方法可以包括接收与传输块的重传相对应的第二多个编码码块。 第二多个编码代码块可以分别映射第一多个编码代码块。 该方法可以基于解码历史来选择性地解码第二多个编码码块的子集。 此外,该方法可以包括存储解码失败的代码块的软比特。 软比特可以是来自多个传输的软比特的组合。 可以通过动态释放与成功解码的代码块相关联的存储器空间来减少用于存储软比特的存储器大小。
    • 7. 发明授权
    • Device and method for direct mixing of pulse density modulation (PDM) signals
    • 用于直接混合脉冲密度调制(PDM)信号的装置和方法
    • US08937515B2
    • 2015-01-20
    • US14060626
    • 2013-10-23
    • Moshe Haiut
    • Moshe Haiut
    • H03K7/08H03M1/00
    • H03M1/00H04R3/005
    • A device for mixing multiple (N) pulse density modulated (PDM) bit streams of a bit rate, the device comprises an input logic, an error accumulation circuit, an error correction circuit and an adder of more than N bits; wherein the device is arranged to output an output PDM bit stream that represents a mixture of the multiple input PDM bit streams; wherein the output PDM bit stream comprises a plurality of output PDM bits, wherein a certain output PDM bit of a plurality of output PDM bits that form the output PDM bit stream is generated during a certain clock cycle; wherein the input logic is arranged to select, during each fraction of the certain clock cycle, a current bit of a selected PDM bit stream, wherein different PDM bit streams are selected during different fragments of the certain clock cycle; wherein the error accumulation circuit is arranged to store intermediate values during a first fraction till a penultimate fraction of the certain clock signal and to store a last value during a last fraction of the certain clock signal.
    • 一种用于混合比特率的多个(N)个脉冲密度调制(PDM)比特流的装置,该装置包括输入逻辑,误差累积电路,纠错电路和大于N比特的加法器; 其中所述设备被布置为输出表示所述多个输入PDM比特流的混合的输出PDM比特流; 其中所述输出PDM位流包括多个输出PDM位,其中在特定时钟周期期间产生形成所述输出PDM位流的多个输出PDM位中的某个输出PDM位; 其中所述输入逻辑被布置为在所述特定时钟周期的每个分数期间选择所选择的PDM比特流的当前比特,其中在所述特定时钟周期的不同片段期间选择不同的PDM比特流; 其中所述误差累积电路被布置为在第一分数期间存储中间值直到所述特定时钟信号的倒数第二分数,并且在所述特定时钟信号的最后部分期间存储最后一个值。
    • 8. 发明申请
    • State metrics memory reduction in a turbo decoder implementation
    • turbo解码器实现中的状态量度记忆减少
    • US20090103653A1
    • 2009-04-23
    • US12285987
    • 2008-10-17
    • Moshe Haiut
    • Moshe Haiut
    • H04L27/00
    • H03M13/2993H03M13/2957H03M13/3905H03M13/3922H03M13/6505
    • Methods and apparatus are described for reducing memory storage cells in a turbo decoder by storing only half the state metrics generated during a scan process. States associated with each bit transmission may be divided into couples and only one state from every state couple may be stored. In one example embodiment, only the state metric for a losing state of every state couple is saved, along with a single bit, e.g., 1 or 0, indicating whether the upper state or lower state of the state couple was the winner. The winning state may be reconstituted at a later stage. In this manner, for a code rate ⅓ and constraint length 3 turbo code, instead of storing 8*10=80 bits of state metrics for each systematic bit, only (4*10)+(4*1)=44 bits of scan state metrics data need be stored, a savings of nearly 50% regardless of the transistor technology used.
    • 描述了用于通过仅存储在扫描处理期间生成的状态度量的一半来减少turbo解码器中的存储器存储单元的方法和装置。 与每个位传输相关联的状态可以被划分为对,并且可以仅存储来自每个状态对的一个状态。 在一个示例实施例中,仅保存每个状态对的丢失状态的状态度量,以及指示状态对的上部状态或较低状态是否为赢者的单个位,例如1或0。 获胜状态可以在稍后阶段重新组建。 以这种方式,对于码率1/3和约束长度3 turbo码,代替仅存储每个系统比特的8×10 = 80比特的状态度量,只有(4 * 10)+(4 * 1)= 44比特 的扫描状态度量数据需要存储,节省近50%,而不考虑使用的晶体管技术。