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    • 26. 发明授权
    • Incremental redundancy transmission for multiple parallel channels in a MIMO communication system
    • MIMO通信系统中多个并行信道的增量冗余传输
    • US07668125B2
    • 2010-02-23
    • US10785292
    • 2004-02-23
    • Tamer Kadous
    • Tamer Kadous
    • H04B7/00
    • H04L1/1819H04B7/0417H04L1/0002H04L1/0025H04L1/06H04L25/0328H04L27/2601H04W52/286Y02D50/10
    • For incremental redundancy transmission on multiple parallel channels in a MIMO system, a transmitter processes (e.g., encodes, partitions, interleaves, and modulates) each data packet for each parallel channel based on a rate selected for the parallel channel and obtains multiple symbol blocks for the packet. For each data packet, the transmitter transmits one symbol block at a time on its parallel channel until a receiver recovers the packet or all blocks have been transmitted. The receiver performs detection and obtains symbol blocks transmitted on the parallel channels. The receiver recovers the data packets transmitted on the parallel channels independently or in a designated order. The receiver processes (e.g., demodulates, deinterleaves, re-assembles, and decodes) all symbol blocks obtained for each data packet and provides a decoded packet. The receiver may estimate and cancel interference due to recovered data packets so that data packets recovered later can achieve higher SINRs.
    • 对于MIMO系统中的多个并行信道上的增量冗余传输,发射机基于为并行信道选择的速率对每个并行信道的每个数据分组进行处理(例如,编码,分割,交织和调制),并获得多个符号块 包。 对于每个数据分组,发射机在其并行信道上一次发送一个符号块,直到接收机恢复分组或已经发送所有块。 接收机执行检测并获得在并行信道上发送的符号块。 接收机独立地或以指定的顺序恢复在并行信道上传输的数据包。 接收机处理(例如,解调,解交织,重新组合和解码)为每个数据分组获得的所有符号块,并提供解码的分组。 接收机可以估计和消除由于恢复的数据分组引起的干扰,使得稍后恢复的数据分组可以实现更高的SINR。
    • 27. 发明申请
    • TRANSMISSION SCHEMES FOR MULTI-ANTENNA COMMUNICATION SYSTEMS UTILIZING MULTI-CARRIER MODULATION
    • 使用多载波调制的多天线通信系统的传输方案
    • US20100003931A1
    • 2010-01-07
    • US12558073
    • 2009-09-11
    • Ranganathan KrishnanAnand D. SubramaniamTamer Kadous
    • Ranganathan KrishnanAnand D. SubramaniamTamer Kadous
    • H04B7/02
    • H04W52/42H04B7/0667H04L5/0023H04L5/0048
    • Pilot and data transmission schemes for multi-antenna communication systems utilizing multi-carrier modulation are provided. Subband multiplexing is used to avoid interference resulting from transmitting multiple signals simultaneously from multiple antennas. M usable subbands are initially arranged to form multiple groups of subbands, with each group including a different subset of the usable subbands. Each of T transmit antennas is then assigned one or possibly more subband groups for pilot transmission and typically one subband group for data transmission. Pilot and data may then be transmitted from each antenna on the subbands assigned to that antenna for pilot and data transmission. For each transmit antenna, the transmit power for each assigned subband may be scaled higher such that all of the total transmit power available for the antenna is used for transmission. Pilot and/or data may be transmitted simultaneously from all T antennas on all usable subbands without causing mutual interference.
    • 提供了利用多载波调制的多天线通信系统的导频和数据传输方案。 使用子带复用来避免从多个天线同时发送多个信号导致的干扰。 M个可用的子带最初被布置成形成多个子带组,每组包括可用子带的不同子集。 每个T发射天线然后被分配一个或可能更多的子带组用于导频传输,并且通常用于一个子带组用于数据传输。 然后可以从分配给该天线的子带上的每个天线发送导频和数据用于导频和数据传输。 对于每个发射天线,每个分配的子带的发射功率可以被缩放更高,使得可用于天线的全部发射功率被用于传输。 导频和/或数据可以在所有可用子带上从所有T个天线同时传输而不引起相互干扰。
    • 28. 发明授权
    • Reduced complexity channel estimation for wireless communication systems
    • 降低无线通信系统的复杂度信道估计
    • US07477693B2
    • 2009-01-13
    • US11749523
    • 2007-05-16
    • Anand SubramaniamTamer Kadous
    • Anand SubramaniamTamer Kadous
    • H04K1/10H04L27/28
    • H04L25/0242H04L25/0208H04L27/2601
    • Techniques to derive a channel estimate using substantially fewer number of complex multiplications than with a brute-force method to derive the same channel estimate. In one method, an intermediate vector B is initially derived based on K sub-vectors of a vector Ĥ for a channel frequency response estimate and at least two DFT sub-matrices for a DFT matrix {tilde over (W)}, where K>1. An intermediate matrix A for the DFT matrix {tilde over (W)} is also obtained. A least square channel impulse response estimate is then derived based on the intermediate vector B and the intermediate matrix A. In one implementation, the intermediate vector B is obtained by first computing DFTs of a matrix ĤT×L, which is formed based on the vector Ĥ, to provide a matrix GL×L. Inner products between the columns of a base DFT sub-matrix W1 and the rows of the matrix GL×L are then computed to obtain the entries of the intermediate vector B.
    • 使用大量更少数量的复数乘法来获得信道估计的技术,而不是用蛮力方法来导出相同的信道估计。 在一种方法中,基于用于信道频率响应估计的向量H的K个子向量和用于DFT矩阵的至少两个DFT子矩阵(波形)(W)},最初导出中间向量B,其中K> 1。 还获得了用于DFT矩阵{波前(W)}的中间矩阵A. 然后基于中间向量B和中间矩阵A导出最小二乘信道脉冲响应估计。在一个实现中,通过首先计算基于向量H形成的矩阵HTxL的DFT来获得中间向量B, 以提供矩阵GLxL。 然后计算基本DFT子矩阵W1的列与矩阵GLxL的行之间的内积,以获得中间向量B的条目。
    • 29. 发明授权
    • Pilot transmission and channel estimation for multiple transmitters
    • 多个发射机的导频传输和信道估计
    • US07418046B2
    • 2008-08-26
    • US11022146
    • 2004-12-22
    • Dhananjay Ashok GoreAvneesh AgrawalTamer Kadous
    • Dhananjay Ashok GoreAvneesh AgrawalTamer Kadous
    • H04K1/10H04L27/28
    • H04L25/0204H04L25/0212H04L25/0226H04L27/261
    • Each transmitter is assigned a time-only pilot code, a frequency-only pilot code, or a time-frequency pilot code to use for pilot transmission. The pilot codes may be pseudo-random, orthogonal, and/or cyclic-shift codes. To obtain a channel estimate for a transmitter using a time-frequency pilot code composed of a time-only code and a frequency-only code, a receiver multiplies a set of received symbols for each symbol period with a set of code values for the frequency-only code to obtain a set of detected symbols and performs an IDFT on the set of detected symbols to obtain an initial impulse response estimate. The receiver performs code matching on multiple initial impulse response estimates derived for multiple symbol periods with the time-only code to obtain a final impulse response estimate for the desired transmitter. The receiver retains the first L channel taps and zeroes out remaining channel taps, where L is the expected channel length.
    • 为每个发射机分配一个仅时间导频码,仅频率导频码或用于导频传输的时频导频码。 导频码可以是伪随机,正交和/或循环移位码。 为了使用由时间唯一码和仅频率码构成的时频导频码来获得用于发射机的信道估计,接收机将用于每个符号周期的一组接收符号与频率的一组码值相乘 - 获得一组检测符号的代码,并对检测符号集合执行IDFT以获得初始脉冲响应估计。 接收机对具有多个符号周期的多个初始脉冲响应估计执行码匹配,其中仅使用时间码来获得所需发射机的最终脉冲响应估计。 接收器保留第一个L个通道抽头,并将剩余的通道抽头置零,其中L是预期的通道长度。