Low density parity check (LDPC) codes for communication devices and systems

    公开(公告)号:US10313054B2

    公开(公告)日:2019-06-04

    申请号:US14979885

    申请日:2015-12-28

    Abstract: A communication device (alternatively, device) includes a processor configured to support communications with other communication device(s) and to generate and process signals for such communications. In some examples, the device includes a communication interface and a processor, among other possible circuitries, components, elements, etc. to support communications with other communication device(s) and to generate and process signals for such communications. In some examples, a device encodes information using a low density parity check (LDPC) code to generate an LDPC coded signal and transmits the LDPC coded signal to another communication device. in other examples, a device receives an LDPC coded signal from another communication device and decodes the LDPC coded signal using an LDPC matrix. The LDPC matrix includes a left hand side matrix and a right hand side matrix (e.g., having CSI (Cyclic Shifted Identity) sub-matrices on a main diagonal and another diagonal adjacently located to the main diagonal).

    PACKET EXTENSION FOR WIRELESS COMMUNICATION
    3.
    发明申请
    PACKET EXTENSION FOR WIRELESS COMMUNICATION 有权
    PACKET扩展无线通信

    公开(公告)号:US20160227437A1

    公开(公告)日:2016-08-04

    申请号:US15013653

    申请日:2016-02-02

    CPC classification number: H04L12/6418 H04L1/00 H04L1/0083 H04L12/00 H04L69/22

    Abstract: Methods, systems, and apparatuses are described for providing device(s) with additional processing time to process a packet received wirelessly while still meeting the legacy SIFS time constraint. The additional processing time may be achieved by adding, by a device transmitting the packet, padding and/or a packet extension to the last symbol of the packet. The additional processing time provided to the device(s) advantageously reduces the amount of extra hardware that would normally be added to meet the SIFS time constraint. The amount of padding and/or packet extension to be added to the last symbol is balanced to minimize the complexity of the device(s) against the reduction in system efficiency incurred by the device(s).

    Abstract translation: 描述了用于向设备提供额外的处理时间来处理在无线状态下接收的分组的方法,系统和装置,同时仍满足传统SIFS时间约束。 附加处理时间可以通过将发送分组的设备,填充和/或分组扩展添加到分组的最后一个符号来实现。 提供给设备的附加处理时间有利地减少了通常将被添加以满足SIFS时间约束的额外硬件的量。 对要添加到最后一个符号的填充和/或分组扩展的量进行平衡,以最小化设备的复杂性,从而降低由设备引起的系统效率。

    OPPORTUNISTIC DATA TRANSFER
    4.
    发明申请
    OPPORTUNISTIC DATA TRANSFER 有权
    机会数据传输

    公开(公告)号:US20160353489A1

    公开(公告)日:2016-12-01

    申请号:US14746442

    申请日:2015-06-22

    Abstract: Methods, systems, and apparatuses for opportunistic data transfer (ODT) are provided. ODT improves network coverage, reliability and/or efficiency by permitting data transfer consumers and network access providers to take advantage of communication opportunities that may be mutually beneficial. Fixed and mobile, personal or business, wired or wireless devices, may participate as ODT network operators, providers and/or consumers. ODT participants may be motivated to participate, for example, to reduce battery consumption and improve network coverage, reduce network congestion and interference. A phone, for example, may be enabled to send data to an Internet destination by ODT in lieu of a cellular network in particular circumstances, such as cellular network unavailability, with less costly data transfer and/or less battery power consumption. ODTs may be ad hoc or preauthorized and may be tracked, accounted, and compensated for, such as according to ODT service terms selected by each provider.

    Abstract translation: 提供了机会数据传输(ODT)的方法,系统和设备。 ODT通过允许数据传输消费者和网络接入提供商利用可能互利的通信机会来改善网络覆盖,可靠性和/或效率。 固定和移动,个人或商业,有线或无线设备可以作为ODT网络运营商,提供商和/或消费者参与。 例如,ODT参与者可能有动力参与,以减少电池消耗并改善网络覆盖,减少网络拥塞和干扰。 例如,可以使手机能够通过ODT代替蜂窝网络在诸如蜂窝网络不可用性等特定情况下将数据发送到因特网目的地,具有较便宜的数据传输和/或更少的电池功率消耗。 ODT可以是特定的或预先授权的,并且可以被跟踪,记账和补偿,例如根据每个提供商选择的ODT服务条款。

    Low density parity check (LDPC) codes for communication devices and systems
    5.
    发明申请
    Low density parity check (LDPC) codes for communication devices and systems 审中-公开
    用于通信设备和系统的低密度奇偶校验(LDPC)码

    公开(公告)号:US20160211941A1

    公开(公告)日:2016-07-21

    申请号:US14979885

    申请日:2015-12-28

    Abstract: A communication device (alternatively, device) includes a processor configured to support communications with other communication device(s) and to generate and process signals for such communications. In some examples, the device includes a communication interface and a processor, among other possible circuitries, components, elements, etc. to support communications with other communication device(s) and to generate and process signals for such communications. In some examples, a device encodes information using a low density parity check (LDPC) code to generate an LDPC coded signal and transmits the LDPC coded signal to another communication device. in other examples, a device receives an LDPC coded signal from another communication device and decodes the LDPC coded signal using an LDPC matrix. The LDPC matrix includes a left hand side matrix and a right hand side matrix (e.g., having CSI (Cyclic Shifted Identity) sub-matrices on a main diagonal and another diagonal adjacently located to the main diagonal).

    Abstract translation: 通信设备(可选地,设备)包括被配置为支持与其他通信设备的通信并且生成和处理用于这种通信的信号的处理器。 在一些示例中,设备包括通信接口和处理器以及其他可能的电路,组件,元件等,以支持与其他通信设备的通信,并且生成和处理用于这种通信的信号。 在一些示例中,设备使用低密度奇偶校验(LDPC)码对信息进行编码,以生成LDPC编码信号,并将LDPC编码信号发送到另一通信设备。 在其他示例中,设备从另一通信设备接收LDPC编码信号,并使用LDPC矩阵对LDPC编码信号进行解码。 LDPC矩阵包括左手侧矩阵和右手侧矩阵(例如,在主对角线上具有CSI(循环移位身份)子矩阵,而另一个对角线相邻地位于主对角线)。

    Puncture-aware low density parity check (LDPC) decoding
    6.
    发明申请
    Puncture-aware low density parity check (LDPC) decoding 有权
    穿刺感低密度奇偶校验(LDPC)解码

    公开(公告)号:US20160087648A1

    公开(公告)日:2016-03-24

    申请号:US14501719

    申请日:2014-09-30

    Abstract: A communication device or device includes a processor that generates and interprets signals that are transmitted and received via a communication interface. The processor receives an LDPC coded signal, via the communication interface, that is generated by puncturing at least one parity bit from another LDPC coded signal that is generated based on an LDPC code characterized by a first LDPC matrix. The processor operates on the first LDPC matrix to generate a second LDPC matrix by excluding at least one column and at least one row from the first LDPC matrix. The number of columns and rows excluded from the first LDPC matrix is based on the number of bits punctured from the other LDPC coded signal to generate the LDPC coded signal. The processor then decodes the LDPC coded signal using the second LDPC matrix to make estimates of information bits encoded within the LDPC coded signal.

    Abstract translation: 通信设备或设备包括生成和解释通过通信接口发送和接收的信号的处理器。 处理器经由通信接口接收通过从基于由第一LDPC矩阵表征的LDPC码生成的另一个LDPC编码信号中的至少一个奇偶校验位进行删截而产生的LDPC编码信号。 处理器在第一LDPC矩阵上操作以通过从第一LDPC矩阵排除至少一列和至少一行来生成第二LDPC矩阵。 从第一LDPC矩阵排除的列和行的数量是基于从其他LDPC编码信号中删除的比特数来生成LDPC编码信号的。 然后,处理器使用第二LDPC矩阵对LDPC编码信号进行解码,以对在LDPC编码信号内编码的信息比特进行估计。

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