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    • 2. 发明申请
    • SOFT DECISION VALUE GENERATION CIRCUIT
    • 软判决值生成电路
    • US20130205184A1
    • 2013-08-08
    • US13879177
    • 2011-11-04
    • Hiroshi NishimotoAkira Kurita
    • Hiroshi NishimotoAkira Kurita
    • G06F11/10
    • G06F11/10H03M13/255H04L25/03318H04L25/067H04L27/2273
    • A soft decision value generation circuit capable of reducing amount of calculation and hardware scale for generating a soft decision value. The soft decision value generation circuit includes: a phase rotation unit rotating phases of received symbols after coherent detection; addition units calculating, by using the phase-rotated received symbols, absolute values of soft decision values for soft decision value candidates restricted in advance; minimum value selection units selecting minimum values out of the absolute values of the soft decision values; sign reflection units reflecting, based on the phases of the received symbols after the phase rotation, sign information to the minimum values; and soft decision value correction units multiplying outputs of the sign reflection units by a coefficient depending on a noise variance value and an amplitude value of a modulation symbol.
    • 一种软判决值生成电路,其能够减少用于生成软决策值的计算量和硬件比例。 软判决值生成电路包括:相位旋转单元,在相干检测之后旋转接收符号的相位; 通过使用相位旋转的接收符号,计算预先限制的软判决值候选的软判定值的绝对值; 最小值选择单元从软判决值的绝对值中选择最小值; 符号反射单元,基于相位旋转之后的接收符号的相位,将信息签到最小值; 以及软判决值校正单元,其将符号反射单元的输出乘以取决于噪声方差值和调制符号的振幅值的系数。
    • 7. 发明授权
    • Optical amplifying apparatus
    • 光放大装置
    • US6055094A
    • 2000-04-25
    • US143404
    • 1998-08-28
    • Michikazu ShimaHiroshi Nishimoto
    • Michikazu ShimaHiroshi Nishimoto
    • H04B10/2507H04B10/07H04B10/25H04B10/29H04B10/293H04B10/294H04B10/564H04B10/572H04J14/02H01S3/00
    • H04B10/2942H04B10/2912H04B10/2935H04J14/02H04B2210/003H04B2210/256
    • The object of the present invention is to provide an optical amplifying apparatus for collectively amplifying wavelength-division multiplexed signal lights, which can perform amplification in response to input signal light, whose power level is within a wide input dynamic range, without saturating, and which suppresses the influence of the wavelength dependency of gain thereof. Thus, this optical amplifying apparatus is composed of: three optical amplifying portions connected in cascade; an optical attenuating portion for controlling the level of signal light output from the optical amplifying portion provided in the post-stage by regulating the power level of signal light input to the optical amplifying portion provided in the middle stage; and a dispersion compensation fiber provided between the middle stage and post stage optical amplifying. A gain of each of the optical amplifying portions is controlled to be constant by an AGC circuit. As a result of providing the optical amplifying portions in a three-stage constitution, the gain of optical amplifying portion provided in the first stage can be set at a low value. Thus, even when a signal light having a high power level is input, the first stage optical amplifying portion does not saturate. Consequently, the gain is controlled to be constant.
    • 本发明的目的是提供一种用于共同放大波分复用信号光的光放大装置,其可以响应于功率水平处于宽输入动态范围内的输入信号光进行放大,而不会饱和,并且哪个 抑制其增益的波长依赖性的影响。 因此,该光放大装置由以下三个组成:串联连接的三个光放大部分; 光衰减部分,用于通过调节输入到设置在中间级的光放大部分的信号光的功率电平来控制从后级设置的光放大部分输出的信号光的电平; 以及设置在中间级和后级光放大之间的色散补偿光纤。 每个光放大部分的增益被AGC电路控制为恒定。 作为以三级结构提供光放大部分的结果,可以将设置在第一级中的光放大部分的增益设置为低值。 因此,即使当输入具有高功率电平的信号光时,第一级光放大部分也不饱和。 因此,增益被控制为恒定。