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    • 1. 发明授权
    • Maximum-likelihood decoding method and device
    • 最大似然解码方法和装置
    • US5432820A
    • 1995-07-11
    • US910311
    • 1993-07-26
    • Takao SugawaraYoshifumi MizoshitaTakashi AikawaHiroshi MutohKiichirou Kasai
    • Takao SugawaraYoshifumi MizoshitaTakashi AikawaHiroshi MutohKiichirou Kasai
    • H03M13/39H03D1/00H04L27/06
    • H03M13/39
    • A maximum-likelihood decoding method for decoding an input signal subject to intersymbol interference. An assumption is made of a measure of an interference caused by a future signal that is later in a sequence than an assumed data sequence, on the basis of a predetermined bits of sample values of said input signal that are earlier in a sequence than an assumed data sequence stored in an assumed path memory (104). An assumed sample value of said input signal by referring to this measure of interference. Maximum-likelihood decoding is conducted on said input signal, on the basis of this assumed sample value and a sample value of said input signal; a plurality of survivor paths are generated and stored in a path memory (102); data for the most likely one of survivor paths is output as a decoded data sequence.
    • PCT No.PCT / JP91 / 01579 Sec。 371日期:1993年7月26日 102(e)日期1993年7月26日PCT 1991年11月19日PCT PCT。 出版物WO92 / 09144 日期:1992年5月29日。用于解码符号间干扰的输入信号的最大似然解码方法。 基于序列中比预期的序列更早的所述输入信号的采样值的预定比特,假定由比未被假定的数据序列晚于序列的未来信号引起的干扰的度量 存储在假定路径存储器(104)中的数据序列。 通过参考这种干扰措施,假定所述输入信号的采样值。 基于该假设采样值和所述输入信号的采样值对所述输入信号进行最大似然解码; 多个幸存路径被生成并存储在路径存储器(102)中; 作为解码数据序列输出最可能的幸存路径之一的数据。
    • 6. 发明授权
    • Detecting circuit for read signal from magnetic recording system using partial response
    • 使用部分响应从磁记录系统读取信号的检测电路
    • US06501610B1
    • 2002-12-31
    • US08596471
    • 1996-02-05
    • Takao SugawaraUmeo OshioTakenori OhshimaYoshifumi MizoshitaKeiji Aruga
    • Takao SugawaraUmeo OshioTakenori OhshimaYoshifumi MizoshitaKeiji Aruga
    • G11B509
    • G11B20/10055G11B5/09G11B20/10009G11B20/1258
    • A detection circuit in a magnetic recording and playback apparatus which uses partial response and the maximum likelihood method, in which neither the size of the detection circuit nor the power consumption increase when the partial response order n increases. In this detection circuit, in the circuit that detects a signal read out from a head, either a plurality of equalizers for different target equalization waveforms, or a single variable target equalizer is provided. A detector for the waveform output from an equalizer is connected in series with the detector. A plurality of combinations, each formed by an equalizer and a detector, is connected in parallel to the output of a filter, the outputs of the combinations of equalizers and detectors being input to a switching circuit, which is controlled by a switching control means. The switching control means controls the switching circuit so that just one of the combinations of equalizer and detectors is selected as the detector output. If a variable target equalizer, which is capable of generating two or more different types of equalization waveforms, is used as the equalizer, it is possible to reduce the number of equalizers to one.
    • 使用部分响应和最大似然方法的磁记录和重放装置中的检测电路,其中当部分响应顺序n增加时,检测电路的尺寸和功耗都不会增加。 在该检测电路中,在检测从头读出的信号的电路中,提供用于不同的目标均衡波形的多个均衡器或单个可变目标均衡器。 用于从均衡器输出的波形的检测器与检测器串联连接。 由均衡器和检测器形成的多个组合与滤波器的输出并联连接,均衡器和检测器组合的输出被输入到由开关控制装置控制的开关电路。 开关控制装置控制开关电路,使得仅选择均衡器和检测器的组合中的一个作为检测器输出。 如果能够产生两种或多种不同类型的均衡波形的可变目标均衡器被用作均衡器,则可以将均衡器的数量减少到1。