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    • 7. 发明申请
    • SYSTEMS AND METHODS FOR IMPLEMENTING IMPROVED FREQUENCY ESTIMATION
    • 用于实现改进的频率估计的系统和方法
    • US20130329815A1
    • 2013-12-12
    • US13682835
    • 2012-11-21
    • Thomas J. KenneyEldad PerahiaShahrnaz Azizi
    • Thomas J. KenneyEldad PerahiaShahrnaz Azizi
    • H04B1/14H04L27/02
    • H04B1/14H04L27/02H04L27/2613H04L27/2657H04L27/266H04L27/2675H04L27/2678H04L27/2688
    • A system and method are provided for implementing improved frequency estimation for wireless communications in support of a broader set of use cases including outdoor use cases and use cases that involve lower power transmissions with reduced signal-to-noise ratios for receivers particularly in systems configured according to the pending IEEE 802.11 ah standard. These systems and methods provide greatly improved frequency estimation over that prescribed for devices operating according other IEEE 802.11 standards, including the frequency estimator conventionally used in systems operated according to the IEEE 802.11n standards, and the proposed frequency estimator specified for IEEE 802.11ac systems. The disclosed techniques facilitate improved frequency estimation schemes that reuse of a short training field (STF) stored in memory, employ joint STF-long training field (LTF) estimation, use portions of a guard interval (GI), and create of multiple-phase estimates, with different symbol separation to improve a signal-to-noise ratio of the frequency estimate.
    • 提供了一种用于实现用于无线通信的改进的频率估计的系统和方法,以支持更广泛的用例集合,包括户外用例和涉及具有降低的接收机信噪比的较低功率传输的用例,特别是在根据 到待定的IEEE 802.11 ah标准。 这些系统和方法提供了大大改进的频率估计,其对于根据其他IEEE 802.11标准操作的设备规定的频率估计,包括常规用于根据IEEE 802.11n标准操作的系统中的频率估计器以及为IEEE 802.11ac系统指定的所提出的频率估计器。 所公开的技术有助于改进频率估计方案,其重新使用存储在存储器中的短训练场(STF),采用联合STF长训练场(LTF)估计,使用保护间隔(GI)的部分,并创建多相 估计,用不同的符号分隔来提高频率估计的信噪比。
    • 8. 发明申请
    • METHODS AND ARRANGEMENTS FOR ORTHOGONAL TRAINING SEQUENCES IN WIRELESS NETWORKS
    • 无线网络中正交训练序列的方法和安排
    • US20130272198A1
    • 2013-10-17
    • US13730989
    • 2012-12-29
    • Shahrnaz AziziThomas J. KenneyEldad PerahiaMinyoung Park
    • Shahrnaz AziziThomas J. KenneyEldad PerahiaMinyoung Park
    • H04W72/02
    • H04W72/02H04L5/0048H04L27/2613
    • Logic may implement an orthogonal frequency division multiplexing (OFDM) system operating in the one gigahertz and lower frequency bands. Logic may detect new long training sequences that are differentially orthogonal to each other for a first bandwidth mode of operation such as a one megahertz mode as well as differentially orthogonal to half of the long training sequence for a second bandwidth mode of operation such as a two megahertz or greater mode. Logic may implement two or more long training sequences for the first bandwidth mode of operation to transmit information based upon the selection of the particular long training sequence for the transmission. Logic may implement a new acknowledgement packet comprising a short training sequence and a long training sequence without a signal field and without a payload. And logic may implement bandwidth detection logic to classify a transmission based upon orthogonal properties of the long training sequences.
    • 逻辑可以实现在一千兆赫和更低频带中工作的正交频分复用(OFDM)系统。 逻辑可以检测对于第一带宽操作模式(例如一兆赫兹模式)以及与第二带宽操作模式的两个长训练序列的一半差异正交的彼此差异正交的新的长训练序列,例如两个 兆赫或更大的模式。 逻辑可以实现用于第一带宽操作模式的两个或更多个长训练序列,以基于用于传输的特定长训练序列的选择来发送信息。 逻辑可以实现包括短训练序列和长训练序列的新的确认分组,而没有信号场并且没有有效载荷。 并且逻辑可以实现带宽检测逻辑以基于长训练序列的正交特性对传输进行分类。