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    • 2. 发明申请
    • NON-UNIFORM QUANTIZATION OF LOG LIKELIHOOD RATIOS
    • 日志比例的非统一量化
    • US20160226528A1
    • 2016-08-04
    • US14983729
    • 2015-12-30
    • NXP B.V.
    • Semih SerbetliMarinus van Splunter
    • H03M13/45G06F11/10
    • H03M13/45G06F11/1004H03M7/40H03M13/1111H03M13/23H03M13/2957H03M13/6502H03M13/6577H03M13/6588H03M13/6594H04L1/0045H04L1/0071H04L25/067
    • A method of processing a signal by non-uniform quantization of log likelihood ratios is disclosed. In particular a disclosed method comprising the steps of: receiving (110) a plurality of bits (12); calculating (120) a log likelihood ratio (22), known as a LLR, for each bit; providing (130) a LLR value (22) for each bit based on the calculated LLR; quantizing (140) the LLR values into a plurality of quantization bins, each quantization bin having: a width representative of one or more LLR values; and an index value (32) having a bit length; and associating (150) each bit with the index value (32) that corresponds to its LLR value (22), wherein the width of each quantization bin is non-uniform. This compresses the LLR values (22) in a more efficient manner, requiring lower memory usage and/or lower bandwidth. A chip for a receiver and a communication system comprising one or more receivers are also disclosed.
    • 公开了通过对数似然比的非均匀量化处理信号的方法。 具体地,公开的方法包括以下步骤:接收(110)多个比特(12); 计算(120)每个位的对数似然比(22),称为LLR; 基于所计算的LLR,为每个位提供(130)LLR值(22); 将LLR值量化(140)到多个量化仓中,每个量化仓具有:表示一个或多个LLR值的宽度; 和具有位长度的索引值(32); 以及将每个位与(150)对应于其LLR值(22)的索引值(32)相关联,其中每个量化仓的宽度是不均匀的。 这以更有效的方式压缩LLR值(22),需要较低的存储器使用和/或较低的带宽。 还公开了一种用于接收机的芯片和包括一个或多个接收机的通信系统。
    • 5. 发明授权
    • Apparatus and methods for synchronization of transmitters
    • US10608718B2
    • 2020-03-31
    • US16400324
    • 2019-05-01
    • NXP B.V.
    • Lars van MeursAlessio FilippiArie KoppelaarMarinus van Splunter
    • H04L7/00H04B7/06
    • A first-transceiver system for use in an antenna diversity scheme. The first-transceiver system comprising: a first-receiver; a first-time/clock-generation-unit; a first-transmitter; and a timing-controller. The first-receiver is configured to receive a wireless first-common-signal from a third-party-transmitter, wherein the first-common-signal is representative of a common-signal transmitted by the third-party-transmitter. The timing-controller is configured to: receive signaling representative of the first-common-signal; receive signaling representative of a wireless second-common-signal as received at a second-transceiver, the wireless second-common-signal being representative of the common-signal; and generate a timing-signal based on the first-common-signal and the second-common-signal. The first-transceiver system is configured to set the first-time/clock-generation-unit, based on the timing-signal, to reduce an alignment-error between the first-time/clock-generation-unit and the second-time/clock-generation-unit. The first-transmitter is configured to transmit a wireless first-transmission-signal, in accordance with the first-time/clock-generation-unit, as part of the antenna diversity scheme that comprises aligned transmission of both the first-transmission-signal and a second-transmission-signal.
    • 6. 发明申请
    • APPARATUS AND METHODS FOR SYNCHRONIZATION OF TRANSMITTERS
    • US20190356366A1
    • 2019-11-21
    • US16400324
    • 2019-05-01
    • NXP B.V.
    • Lars van MeursAlessio FilippiArie KoppelaarMarinus van Splunter
    • H04B7/06
    • A first-transceiver system for use in an antenna diversity scheme. The first-transceiver system comprising: a first-receiver; a first-time/clock-generation-unit; a first-transmitter; and a timing-controller. The first-receiver is configured to receive a wireless first-common-signal from a third-party-transmitter, wherein the first-common-signal is representative of a common-signal transmitted by the third-party-transmitter. The timing-controller is configured to: receive signaling representative of the first-common-signal; receive signaling representative of a wireless second-common-signal as received at a second-transceiver, the wireless second-common-signal being representative of the common-signal; and generate a timing-signal based on the first-common-signal and the second-common-signal. The first-transceiver system is configured to set the first-time/clock-generation-unit, based on the timing-signal, to reduce an alignment-error between the first-time/clock-generation-unit and the second-time/clock-generation-unit. The first-transmitter is configured to transmit a wireless first-transmission-signal, in accordance with the first-time/clock-generation-unit, as part of the antenna diversity scheme that comprises aligned transmission of both the first-transmission-signal and a second-transmission-signal.
    • 10. 发明授权
    • Apparatus and methods for synchronization of transmitters
    • US10574318B2
    • 2020-02-25
    • US16400324
    • 2019-05-01
    • NXP B.V.
    • Lars van MeursAlessio FilippiArie KoppelaarMarinus van Splunter
    • H04L7/00H04B7/06
    • A first-transceiver system for use in an antenna diversity scheme. The first-transceiver system comprising: a first-receiver; a first-time/clock-generation-unit; a first-transmitter; and a timing-controller. The first-receiver is configured to receive a wireless first-common-signal from a third-party-transmitter, wherein the first-common-signal is representative of a common-signal transmitted by the third-party-transmitter. The timing-controller is configured to: receive signaling representative of the first-common-signal; receive signaling representative of a wireless second-common-signal as received at a second-transceiver, the wireless second-common-signal being representative of the common-signal; and generate a timing-signal based on the first-common-signal and the second-common-signal. The first-transceiver system is configured to set the first-time/clock-generation-unit, based on the timing-signal, to reduce an alignment-error between the first-time/clock-generation-unit and the second-time/clock-generation-unit. The first-transmitter is configured to transmit a wireless first-transmission-signal, in accordance with the first-time/clock-generation-unit, as part of the antenna diversity scheme that comprises aligned transmission of both the first-transmission-signal and a second-transmission-signal.