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    • 1. 发明授权
    • Dynamic resource allocation to improve MIMO detection performance
    • 动态资源分配,以提高MIMO检测性能
    • US08040959B2
    • 2011-10-18
    • US11926966
    • 2007-10-29
    • Deric W. WatersNaftali SommerAnuj BatraSrinath Hosur
    • Deric W. WatersNaftali SommerAnuj BatraSrinath Hosur
    • H04K1/10H04L27/28
    • H04L25/03006H04L2025/03414H04L2025/03426
    • A method and apparatus for detecting symbols in a Multiple-Input Multiple-Output Orthogonal Frequency Division Multiplexing (“MIMO-OFDM”) system. A MIMO-OFDM receiver includes a first detector that estimates a symbol of a first MIMO-OFDM sub-carrier and a second detector that estimates a symbol of a second MIMO-OFDM sub-carrier. The second detector differs in complexity from the first detector. A detector control block is coupled to the detectors. The detector control block assigns the first detector to process the first MIMO-OFDM sub-carrier and assigns the second detector to process the second MIMO-OFDM sub-carrier. The detector control block computes a list metric for a sub-carrier. Based on the list metric the detector control block assigns a candidate symbol list length to the detector processing the sub-carrier. Alternately, the detector control block assigns one of a variety of detector types to a sub-carrier based on the sub-carrier list metric.
    • 一种用于在多输入多输出正交频分复用(“MIMO-OFDM”)系统中检测符号的方法和装置。 MIMO-OFDM接收机包括估计第一MIMO-OFDM子载波的符号的第一检测器和估计第二MIMO-OFDM子载波的符号的第二检测器。 第二检测器的复杂性与第一检测器不同。 检测器控制块耦合到检测器。 检测器控制块分配第一检测器来处理第一MIMO-OFDM子载波,并且分配第二检测器来处理第二MIMO-OFDM子载波。 检测器控制块计算子载波的列表度量。 基于列表度量,检测器控制块将候选符号列表长度分配给处理子载波的检测器。 或者,检测器控制块基于子载波列表度量将各种检测器类型中的一种分配给子载波。
    • 8. 发明申请
    • SYSTEMS AND METHODS FOR HYBRID-MIMO EQUALIZATION
    • 用于混合MIMO均衡的系统和方法
    • US20080181322A1
    • 2008-07-31
    • US12022307
    • 2008-01-30
    • Deric W. WatersAnuj BatraSrinath Hosur
    • Deric W. WatersAnuj BatraSrinath Hosur
    • H04L27/28G06F17/16
    • H04L25/03006H04L2025/03414H04L2025/03426H04L2025/03605
    • Embodiments provide systems and methods for a novel multiple-input multiple-output (MIMO) equalization technique that produces a channel matrix that contains partly real coefficients and partly complex coefficients, referred to herein as a hybrid-MIMO equalization. MIMO detectors can exploit the hybrid-MIMO equalization to reduce complexity. Some embodiments provide systems and methods for equalizing a communication channel comprising receiving as an input a channel output vector, dividing the input into two vectors, a first vector that remains a complex number and a second vector that contains only real numbers, separating the second vector into its real and imaginary components, and regrouping the first and second vectors into a hybrid channel output vector that contains both real and complex coefficients.
    • 实施例提供了一种新颖的多输入多输出(MIMO)均衡技术的系统和方法,其产生包含部分实系数和部分复系数的信道矩阵,这里称为混合MIMO均衡。 MIMO检测器可以利用混合MIMO均衡来降低复杂度。 一些实施例提供用于均衡通信信道的系统和方法,包括:接收作为输入的信道输出向量,将输入划分成两个向量,保留复数的第一向量和仅包含实数的第二向量,将第二向量 转换成其实部和虚部,并将第一和第二矢量重新分组成包含实数和复系数的混合信道输出向量。
    • 10. 发明授权
    • Hybrid-ARQ (HARQ) with scrambler
    • 混合ARQ(HARQ)与扰频器
    • US08392781B2
    • 2013-03-05
    • US12686929
    • 2010-01-13
    • Anuj BatraDeric W. WatersSrinath Hosur
    • Anuj BatraDeric W. WatersSrinath Hosur
    • G08C25/02H03M13/00
    • H04L1/1812H04L1/188H04L1/1893
    • Embodiments of the invention provide a system and method of hybrid automatic repeat-request (HARQ) processing. A viterbi decoder is coupled to and follows a descrambler. After the signal has been de-scrambled, it can be stored in a memory in case it needs to be recombined with another packet. This means that the log-likelihood ratios LLRs for each transmitted bit are stored in memory using a finite number of bits (for example, between 4 and 12 bits). If the packet that is currently being processed contains retransmitted information, then the de-scrambled output stored from a previous packet containing the same information can be loaded and combined with the current packet.
    • 本发明的实施例提供了一种混合自动重传请求(HARQ)处理的系统和方法。 维特比解码器耦合到并跟随解扰器。 在信号被解除加扰之后,如果需要与另一个数据包重新组合,则可将其存储在存储器中。 这意味着每个发送的比特的对数似然比LLRs使用有限数量的比特(例如,在4比特和12比特之间)存储在存储器中。 如果当前处理的分组包含重发信息,则可以将包含相同信息的先前分组存储的去加扰输出加载并与当前分组组合。