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    • 1. 发明申请
    • MULTI-MODE WIRELESS COMMUNICATION LINK
    • 多模式无线通信链路
    • WO2009093232A2
    • 2009-07-30
    • PCT/IL2008/001620
    • 2008-12-15
    • PROVIGENT LTD.AHARONY, AhikamRAVID, RafiFRIEDMANN, Jonathan
    • AHARONY, AhikamRAVID, RafiFRIEDMANN, Jonathan
    • H03C7/02H04B1/02H04B7/02
    • H04B7/0871H04B7/0617H04B7/0619H04B7/0669H04B7/0689H04B7/0693H04B7/0697H04B7/0877H04B7/10
    • A communication system (20) includes first and second transmitters (36A, 36B), which are coupled to transmit respective first and second Radio Frequency (RF) signals carrying first and second data over a wireless communication channel. The transmitters are coupled to select an operational mode from a group of operational modes and to operate in the selected operational mode. The group of the operational modes includes at least two of a protection mode, wherein the second transmitter serves as backup to the first transmitter, a spatial multiplexing mode, in which the first data is different from the second data and the first and second transmitters transmit simultaneously, and a beam-forming mode, in which the first data is identical to the second data, the second RF signal includes a phase-shifted replica of the first RF signal, and the first and second transmitters transmit simultaneously.
    • 通信系统(20)包括第一和第二发射机(36A,36B),其被耦合以通过无线通信信道发送携带第一和第二数据的相应的第一和第二射频(RF)信号。 发射机被耦合以从一组操作模式中选择操作模式并且以所选择的操作模式操作。 该组操作模式包括保护模式中的至少两个,其中第二发射机用作第一发射机的备份,空间复用模式,其中第一数据不同于第二数据,第一和第二发射机发送 同时和波束形成模式,其中第一数据与第二数据相同,第二RF信号包括第一RF信号的相移副本,并且第一和第二发射机同时发射。
    • 2. 发明申请
    • BEAMFORMING IN MIMO COMMUNICATION SYSTEMS
    • MIMO通信系统中的波束形成
    • WO2009093233A3
    • 2010-03-11
    • PCT/IL2009000020
    • 2009-01-06
    • PROVIGENT LTDRAVID RAFIMONTEKYO ZOHARAHARONY AHIKAM
    • RAVID RAFIMONTEKYO ZOHARAHARONY AHIKAM
    • H04M1/00
    • H04B7/063H04B7/0617H04B7/0857
    • A communication terminal (24A) includes first and second transmitters (28, 32A, 32B), which are coupled to produce respective first and second Radio Frequency (RF) signals that are phase-shifted with respect to one another by a beamforming phase offset, and to transmit the RF signals toward a remote communication terminal (24B). The terminal includes a reception subsystem (32A, 32B, 52) including first and second receivers (32A, 32B) and a phase correction unit (52). The first and second receivers are respectively coupled to receive third and fourth RF signals from the remote communication terminal. The phase correction unit is coupled to produce, responsively to the third and fourth RF signals, a phase correction for correcting an error component in the beamforming phase offset.
    • 通信终端(24A)包括第一和第二发射机(28,32A,32B),其被耦合以产生通过波束形成相位偏移相对于彼此相移的相应的第一和第二射频(RF)信号, 并且向远程通信终端(24B)发送RF信号。 终端包括包括第一和第二接收器(32A,32B)和相位校正单元(52)的接收子系统(32A,32B,52)。 第一和第二接收机分别被耦合以从远程通信终端接收第三和第四RF信号。 相位校正单元被耦合以响应于第三和第四RF信号产生用于校正波束形成相位偏移中的误差分量的相位校正。
    • 4. 发明申请
    • MULTI-MODE WIRELESS COMMUNICATION LINK
    • 多模式无线通信链路
    • WO2009093232A3
    • 2010-03-11
    • PCT/IL2008001620
    • 2008-12-15
    • PROVIGENT LTDAHARONY AHIKAMRAVID RAFIFRIEDMANN JONATHAN
    • AHARONY AHIKAMRAVID RAFIFRIEDMANN JONATHAN
    • H04B7/24
    • H04B7/0871H04B7/0617H04B7/0619H04B7/0669H04B7/0689H04B7/0693H04B7/0697H04B7/0877H04B7/10
    • A communication system (20) includes first and second transmitters (36A, 36B), which are coupled to transmit respective first and second Radio Frequency (RF) signals carrying first and second data over a wireless communication channel. The transmitters are coupled to select an operational mode from a group of operational modes and to operate in the selected operational mode. The group of the operational modes includes at least two of a protection mode, wherein the second transmitter serves as backup to the first transmitter, a spatial multiplexing mode, in which the first data is different from the second data and the first and second transmitters transmit simultaneously, and a beam-forming mode, in which the first data is identical to the second data, the second RF signal includes a phase-shifted replica of the first RF signal, and the first and second transmitters transmit simultaneously.
    • 通信系统(20)包括第一和第二发射机(36A,36B),其被耦合以通过无线通信信道发送携带第一和第二数据的相应的第一和第二射频(RF)信号。 发射机被耦合以从一组操作模式中选择操作模式并且以所选择的操作模式操作。 该组操作模式包括保护模式中的至少两个,其中第二发射机用作第一发射机的备份,空间复用模式,其中第一数据不同于第二数据,第一和第二发射机发射 同时和波束形成模式,其中第一数据与第二数据相同,第二RF信号包括第一RF信号的相移副本,并且第一和第二发射机同时发射。
    • 5. 发明申请
    • BEAMFORMING IN MIMO COMMUNICATION SYSTEMS
    • MIMO通信系统中的波束形成
    • WO2009093233A2
    • 2009-07-30
    • PCT/IL2009/000020
    • 2009-01-06
    • PROVIGENT LTD.RAVID, RafiMONTEKYO, ZoharAHARONY, Ahikam
    • RAVID, RafiMONTEKYO, ZoharAHARONY, Ahikam
    • H04B1/00H03D3/24
    • H04B7/063H04B7/0617H04B7/0857
    • A communication terminal (24A) includes first and second transmitters (28, 32A, 32B), which are coupled to produce respective first and second Radio Frequency (RF) signals that are phase-shifted with respect to one another by a beamforming phase offset, and to transmit the RF signals toward a remote communication terminal (24B). The terminal includes a reception subsystem (32A, 32B, 52) including first and second receivers (32A, 32B) and a phase correction unit (52). The first and second receivers are respectively coupled to receive third and fourth RF signals from the remote communication terminal. The phase correction unit is coupled to produce, responsively to the third and fourth RF signals, a phase correction for correcting an error component in the beamforming phase offset.
    • 通信终端(24A)包括第一和第二发射机(28,32A,32B),其被耦合以产生通过波束形成相位偏移相对于彼此相移的相应的第一和第二射频(RF)信号, 并且向远程通信终端(24B)发送RF信号。 终端包括包括第一和第二接收器(32A,32B)和相位校正单元(52)的接收子系统(32A,32B,52)。 第一和第二接收机分别被耦合以从远程通信终端接收第三和第四RF信号。 相位校正单元被耦合以响应于第三和第四RF信号产生用于校正波束形成相位偏移中的误差分量的相位校正。