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    • 2. 发明申请
    • Bit log likelihood ratio evaluation
    • 位对数似然比评估
    • US20060178755A1
    • 2006-08-10
    • US11330652
    • 2006-01-11
    • Fuyun LingSeong ChungJinxia BaiThomas Sun
    • Fuyun LingSeong ChungJinxia BaiThomas Sun
    • G05B15/00
    • H04L27/3488H04L1/0045H04L1/0065H04L1/0066H04L27/2604H04L2001/0098
    • A system and method are provided for generating bit log likelihood ratio (LLR) values for two-layered Quadrature Phase-Shift Keying (QPSK) turbo decoding in a wireless communications user terminal (UT). The method includes receiving a two-layered QPSK signal with an energy ratio that is unknown, but typically defined as either k12 or k22. The method selects a mismatched energy ratio (k2) between k12 and k22, and generating bit LLR values for two-layered QPSK turbo decoding, using the mismatched k2 energy ratio. For example, if the received two-layered QPSK signal is known to have an energy ratio of about 4 or about 6.25. Then, k2 is selected to be about 5.0625. Alternately stated, the mismatched k2 energy ratio in selected by determining the approximate midpoint between k12 and k22.
    • 提供了一种用于在无线通信用户终端(UT)中生成用于双层正交相移键控(QPSK)turbo解码的比特对数似然比(LLR)值的系统和方法。 该方法包括以未知的能量比接收两层QPSK信号,但通常被定义为k1≤2或k2≥2。 该方法选择k1 <2> 2和k2 <2>之间的不匹配能量比(k <2> 2),并为双层QPSK涡轮增益产生位LLR值 使用不匹配的k <2>能量比进行解码。 例如,如果已知所接收的两层QPSK信号具有约4或约6.25的能量比。 然后,选择k <2>为约5.0625。 或者说,通过确定k1 <2> 2和k2 <2>之间的近似中点,所选择的不匹配的k 2 2能量比。
    • 7. 发明申请
    • Adaptive channel estimation thresholds in a layered modulation system
    • 分层调制系统中的自适应信道估计阈值
    • US20060198454A1
    • 2006-09-07
    • US11329717
    • 2006-01-10
    • Seong ChungRajiv Vijayan
    • Seong ChungRajiv Vijayan
    • H04K1/10
    • H04L27/2601H04L25/0202H04L25/022H04L27/3488
    • Dynamic channel estimation thresholds allow for determining optimal threshold values for channel estimation in a layered-modulation wireless communication system. A channel estimation threshold can be used to remove or otherwise filter out channel estimate components that may be significantly influenced by noise. The channel estimation threshold value can be used to generate a refined channel estimate that is used in decoding multiple layers of a layered modulation signal. The channel estimation threshold value can be varied based on the performance of the various signal layer decoders. The adaptive channel estimation threshold provides for decoding a base layer based on an optimal threshold value for the base layer; determining an error rate associated with decoding the base layer; and using an optimal threshold value for an enhancement layer in a channel estimation algorithm if the error rate is lower than a predetermined level.
    • 动态信道估计阈值允许确定分层调制无线通信系统中的信道估计的最佳阈值。 可以使用信道估计阈值来去除或以其他方式滤除可能受噪声显着影响的信道估计分量。 信道估计阈值可以用于生成用于解码分层调制信号的多个层的精细信道估计。 可以基于各种信号层解码器的性能来改变信道估计阈值。 自适应信道估计阈值基于用于基本层的最佳阈值来解码基本层; 确定与所述基本层解码相关联的错误率; 以及如果误差率低于预定水平,则在信道估计算法中对增强层使用最佳阈值。
    • 8. 发明申请
    • Channel estimate optimization for multiple transmit modes
    • 多种传输模式的信道估计优化
    • US20060203710A1
    • 2006-09-14
    • US11366779
    • 2006-03-01
    • Krishna MukkavilliKevin CousineauSeong Chung
    • Krishna MukkavilliKevin CousineauSeong Chung
    • H04J11/00
    • H04L25/0232H04L25/0212H04L25/0216H04L25/022H04L25/025H04L27/2647
    • Channel estimation in a spectrally shaped wireless communication system in which an initial frequency response estimate is obtained for a first set of P uniformly spaced subbands (1) based on pilot symbols received on a second set of subbands used for pilot transmission and (2) using extrapolation and/or interpolation. A channel impulse response estimate is obtained by performing an IFFT on a frequency response estimate. The number of taps in the channel impulse response can be truncated to a predetermined number of taps determined based on an operating mode of the second set of P uniformly spaced subbands. The energy of each tap value remaining after truncation can be compared to a predetermined threshold and modified based on the results of the comparison. The predetermined threshold can be determined based on an operating mode. A final frequency response estimate for each mode within each OFDM symbol is derived.
    • 在频谱形状的无线通信系统中的信道估计,其中基于在用于导频传输的第二组子带上接收的导频符号获得针对第一组P均匀间隔子带(1)的初始频率响应估计,以及(2)使用 外插和/或插值。 通过对频率响应估计执行IFFT来获得信道脉冲响应估计。 可以将信道脉冲响应中的抽头数量截断为基于第二组P均匀间隔子带的操作模式确定的预定数量的抽头。 截断后剩余的每个抽头值的能量可以与预定阈值进行比较,并根据比较结果进行修改。 可以基于操作模式来确定预定阈值。 导出每个OFDM符号内每个模式的最终频率响应估计。