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    • 4. 发明授权
    • System and method for extending connectivity tests through a packet network
    • 通过分组网络扩展连接测试的系统和方法
    • US08526313B1
    • 2013-09-03
    • US12763609
    • 2010-04-20
    • David Eric JonesMarc KimpeHarold Lloyd Boling
    • David Eric JonesMarc KimpeHarold Lloyd Boling
    • H04L12/26
    • H04L43/0811H04L43/10
    • A communication system extending Ethernet Operation and Management (OAM) Loopback Message (LBM) and Loopback Replay (LBR) functionality into a time division multiplexing (TDM) domain has a first interworking function (IWF) of an Ethernet network that transmits an Ethernet Operation and Management (OAM) Loopback Message (LBM) having a first type length value (TLV) field. The first IWF controls the first TLV field to indicate that a connectivity test is to extend beyond the Ethernet network. The communication system further has a second IWF of the Ethernet network that receives the Ethernet OAM LBM and interprets the first TLV field. In addition, the second IWF performs a TDM connectivity test across a TDM connection in response to the Ethernet OAM LBM and based on the first TLV field and transmits a reply for the Ethernet OAM LBM to the first IWF, the reply prompted by the LBM and comprising data based on the TDM connectivity test.
    • 将以太网操作和管理(OAM)环回消息(LBM)和环回重放(LBR)功能扩展到时分复用(TDM)域的通信系统具有以太网的第一互通功能(IWF),其发送以太网操作和 具有第一类型长度值(TLV)字段的管理(OAM)环回消息(LBM)。 第一个IWF控制第一个TLV字段,以指示连接测试将扩展到以太网网络。 通信系统还具有接收以太网OAM LBM并解释第一TLV字段的以太网网络的第二IWF。 此外,第二IWF响应于以太网OAM LBM并基于第一TLV字段在TDM连接上执行TDM连接测试,并将以太网OAM LBM的回复发送到第一IWF,由LBM提示的回复和 包括基于TDM连接性测试的数据。
    • 5. 发明授权
    • Systems and methods for discovering PME bonding groups
    • 发现PME结合基团的系统和方法
    • US07693090B1
    • 2010-04-06
    • US11599161
    • 2006-11-14
    • Marc Kimpe
    • Marc Kimpe
    • H04L12/28H04L12/50
    • H04L45/245H04L12/2867H04L41/12H04L45/02Y02D50/30
    • The present disclosure generally pertains to systems and methods for discovering PME bonding groups. In one exemplary embodiment, a plurality of communication links are terminated by physical medium entities (PMEs). In this regard, each link is terminated at one end via a network PME and at another end via a remote PME at a customer premises. Each of the PMEs has a transceiver that is allowed to train during a training phase that precedes a data phase. After training, discovery of PME bonding groups is performed via data communicated over data phase control channels, which are operational while links are operational in the data phase, transmitting data using the Ethernet in the First Mile (EFM) encapsulation. For example, the control channel data may be communicated over a link-level embedded operations channel (EOC). In another example, the control channel data may be communicated using 64/65 Byte (B) code words. In another example, the control channel data may be communicated via an Ethernet operations, administration and maintenance (OAM) channel. In yet another example, the control channel data may be communicated via EFM fragment messaging.
    • 本公开一般涉及用于发现PME键合基团的系统和方法。 在一个示例性实施例中,多个通信链路由物理介质实体(PME)终止。 在这方面,每个链路在一端通过网络PME终止,另一端通过客户驻地的远程PME终止。 每个PME都有一个收发器,允许在数据阶段之前的训练阶段进行训练。 在训练之后,通过数据相位控制信道传送的数据进行PME绑定组的发现,数据相位控制信道在数据阶段的链路可操作时可操作,在第一英里(EFM)封装中使用以太网传输数据。 例如,可以通过链路级嵌入式操作信道(EOC)来传送控制信道数据。 在另一示例中,可以使用64/65字节(B)码字来传送控制信道数据。 在另一示例中,可以经由以太网操作,管理和维护(OAM)信道来传送控制信道数据。 在另一个示例中,控制信道数据可以经由EFM片段消息传送。
    • 8. 发明授权
    • Repeater for regenerating spectrally compatible signals along a telecommunication line
    • 用于沿着电信线再生频谱兼容信号的中继器
    • US07869490B1
    • 2011-01-11
    • US10929814
    • 2004-08-30
    • Arlynn WilsonKevin SchneiderMarc Kimpe
    • Arlynn WilsonKevin SchneiderMarc Kimpe
    • H04L25/20
    • H04L25/20H04L25/03834H04L25/49H04L27/02
    • A repeater for regenerating signals communicated along a telecommunication line uses a constellation providing a sufficiently high constellation density to ensure that regenerated signals are spectrally compatible. In one exemplary embodiment, such a repeater is configured to implement a method comprising the steps of: receiving first data signals from a first telecommunication line segment; demodulating the first data signals thereby recovering digital data using a constellation that provides a first constellation density; modulating second data signals with the digital data; transmitting the second data signals across a second telecommunication line segment that is bound within a cable; selecting a second constellation density for use in the modulating step such that the second data signals are spectrally compatible with other signals transmitted across a third telecommunication line segment bound within the cable, wherein the second constellation density is higher than the first constellation density.
    • 用于再生沿着电信线路传送的信号的中继器使用提供足够高的星座密度的星座,以确保再生信号在光谱上兼容。 在一个示例性实施例中,这种中继器被配置为实现一种方法,包括以下步骤:从第一电信线路段接收第一数据信号; 解调第一数据信号,从而使用提供第一星座密度的星座来恢复数字数据; 用数字数据调制第二数据信号; 通过绑定在电缆内的第二电信线路段传输第二数据信号; 选择用于所述调制步骤的第二星座密度,使得所述第二数据信号与跨越所述电缆中的第三电信线路段传输的其他信号频谱兼容,其中所述第二星座密度高于所述第一星座密度。
    • 9. 发明授权
    • System and method for selecting data rates of data signals
    • 用于选择数据信号数据速率的系统和方法
    • US07564898B1
    • 2009-07-21
    • US11202476
    • 2005-08-12
    • Marc Kimpe
    • Marc Kimpe
    • H04B3/46H04L7/00
    • H04B3/46
    • A transceiver comprises a communication line interface, memory, and logic. The memory stores predefined noise spectra, and the logic is configured to analyze an initialization signal received from the communication line coupled to the communication line interface during an initialization phase that precedes a data phase. The logic is configured to automatically select one of the predefined noise spectra based on the initialization signal and to combine the selected noise spectrum with the initialization signal to calculate a value. The logic is configured to perform a comparison between the value and a threshold and to make a determination, based on the comparison, whether a data signal to be communicated in the data phase will be spectrally compatible, if the data signal is transmitted at a data rate of the initialization signal. The logic is further configured to select a data rate for the data signal based on the determination thereby ensuring that the data signal is spectrally compatible.
    • 收发器包括通信线路接口,存储器和逻辑。 存储器存储预定义的噪声谱,并且逻辑被配置为分析在数据相位之前的初始化阶段期间从耦合到通信线路接口的通信线路接收到的初始化信号。 该逻辑被配置为基于初始化信号自动选择预定义的噪声谱中的一个,并将所选择的噪声谱与初始化信号组合以计算一个值。 该逻辑被配置为执行该值与阈值之间的比较,并且基于比较来确定在数据相位中要传送的数据信号是否将在光谱上兼容,如果数据信号是以数据传输的 初始化信号的速率。 逻辑还被配置为基于确定来选择数据信号的数据速率,从而确保数据信号在光谱上兼容。