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    • 3. 发明申请
    • METHOD AND APPARATUS FOR PROCESSING A MULTI-LEVEL FSK SIGNAL
    • 用于处理多级FSK信号的方法和装置
    • WO98036545A1
    • 1998-08-20
    • PCT/US1998/001029
    • 1998-01-20
    • H04L1/24H04L25/02H04L27/152H04L27/14
    • H04L25/0262H04L1/247H04L27/1525
    • A receiver (100) is used for processing a multi-level FSK signal, comprising a converter (101) for converting the multi-level FSK signal into a sequence of state transitions, and a baud rate detector (111). The baud rate detector (111) comprises in a plurality of sampling intervals, wherein each of the plurality of sampling intervals is offset by a first predetermined time from other sampling intervals, and wherein each of the plurality of sampling intervals is further subdivided into a plurality of recording intervals, a plurality of counters (502-508) for counting the sequence of state transitions that occur during at least a minimum number of the plurality of recording intervals. The baud rate detector (111) further comprises a baud rate detection circuit (524) for detecting the desired baud rate based on counts recorded in a memory (522).
    • 接收器(100)用于处理多级FSK信号,包括用于将多级FSK信号转换成状态转换序列的转换器(101)和波特率检测器(111)。 波特率检测器(111)包括多个采样间隔,其中多个采样间隔中的每一个从其他采样间隔偏移第一预定时间,并且其中多个采样间隔中的每一个被进一步细分为多个 多个计数器(502-508),用于计数在所述多个记录间隔的至少最小数目期间发生的状态转换序列。 波特率检测器(111)还包括用于基于记录在存储器(522)中的计数来检测所需波特率的波特率检测电路(524)。
    • 4. 发明申请
    • SYMBOL DETECTION AND ERROR CORRECTION CODING IN A LOCAL AREA NETWORK
    • 本地区网络中的符号检测和错误校正编码
    • WO1990004295A1
    • 1990-04-19
    • PCT/US1989004503
    • 1989-10-12
    • CONCORD COMMUNICATIONS, INC.
    • CONCORD COMMUNICATIONS, INC.FURLONG, Darrell
    • H04L01/24
    • H04L25/06H04L1/247
    • A symbol detection and correction scheme for local area network modems, especially those which receive one of three symbols at any given time, such as those operating in accordance with the IEEE 802.4 standard. The invention significantly improves the bit error rate observed by the layer above the modem. The modem operates on a received signal with a pair of slicers. One slicer operating as a two-symbol decoder, and a second slicer operates as a three-symbol decoder. A receiver state machine is used to keep track of which portion of a frame is currently expected to be received. Depending upon the particular context, one or both of the slicer outputs are used by the state machine to determine which of the three symbols was received. For example, when the receiver is in a state where only one of two data symbols are expected, and no control symbols are expected, only the two-symbol slicer output is used. The three-symbol slicer output, and logical combinations of the three-symbol slicer output and the two-symbol slicer output, are used at other times. The receiver state machine recognizes errors in pseudo-silence, start delimiter, and end-delimiter sequences without reporting such errors to the upper level, thereby greatly decreasing the error rate observed there.