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    • 1. 发明申请
    • MOLECULAR MODELING SYSTEM AND MOLECULAR MODELING METHOD
    • 分子建模系统和分子建模方法
    • WO1997046949A1
    • 1997-12-11
    • PCT/JP1997001951
    • 1997-06-09
    • HITACHI, LTD.SCHULTE, JurgenUSHIO, JiroTAKEMURA, YoshiakiMARUIZUMI, Takuya
    • HITACHI, LTD.
    • G06F17/00
    • C07K1/00G06F19/16
    • A molecular modeling system and a molecular modeling method comprsing a molecular dynamics (MD) tool using a new potential related to a heterogeneous intermolecular interaction, a molecular modeling (MM) tool carrying out a new fast self-regulating optimization, a new molecular potential generator (MPG) tool, and a molecular modeling expert database tool in order to solve the problems concerning specified intermolecular interactions in modeling homogeneous and heterogeneous intermolecular interactions, such that the accuracy of the potential functional is poor and that either the potential function or the potential parameter is unknown. The above system and method serve to solve the problem that a parameter related to the functional of a specified interaction is unknown, the problem that the cost of calculation for the optimization of a new potential functional is high, and the problem of selection of an initial value of optimization procedures.
    • 一种分子模拟系统和分子模拟方法,其使用与异质分子间相互作用相关的新潜力的分子动力学(MD)工具,进行新的快速自我调节优化的分子建模(MM)工具,新的分子潜能发生器 (MPG)工具和分子建模专家数据库工具,以解决在均匀和异质分子间相互作用建模中涉及指定的分子间相互作用的问题,使得潜在功能的准确性差,并且潜在的功能或潜在参数 是未知数 上述系统和方法用于解决与指定交互的功能相关的参数未知的问题,新的潜在功能的优化计算成本高的问题以及初始化的选择问题 优化程序的价值。
    • 2. 发明申请
    • OPTICAL COMMUNICATION EQUIPMENT AND SYSTEM
    • 光通信设备和系统
    • WO1999016193A1
    • 1999-04-01
    • PCT/JP1997003337
    • 1997-09-19
    • HITACHI, LTD.KIMURA, YoshinobuMIYAO, MasanobuNAKAGAWA, KiyokazuSUGII, NobuyukiMARUIZUMI, Takuya
    • HITACHI, LTD.
    • H04B10/12
    • H04B10/564G02B6/3636G02B6/3652G02B6/4202H01S5/0262H01S5/0264H01S5/0425H01S5/1228H04B10/291H04B10/504
    • Optical signal communication equipment and optical communication system which can be suitably used even when the transmitting speed and capacity of information transmitted by using optical signals are increased. On the optical signal transmitting side, signal light is generated by causing induced emission in an active medium by supplying exciting light to the medium in accordance with transmitting signals. The exciting light is supplied to the active medium in such a way that naturally emitted light is made incident to a semiconductor layer and the component of the light having a specific wavelength is Bragg-reflected by modulating the refractive index of the semiconductor layer by impressing the voltage pulse correspdoning to the transmitting information upon the semiconductor layer, and then, the reflected light is supplied to the medium as the exciting light. Since the Bragg reflection and associated induced emission show excellent responsiveness to voltage signals having pulses widths of 1x10 second on shorter, an optical communication system which can transmit optical signals at a transmitting speed of up to 100 Gb/s can be realized.
    • 即使当使用光信号发送的信息的发送速度和容量增加时,也可适当使用的光信号通信设备和光通信系统。 在光信号发送侧,根据发送信号,通过向有源介质引起感应发射,向介质供给激励光,从而产生信号光。 将激发光以这样的方式提供给有源介质,使得自然发射的光入射到半导体层,并且具有特定波长的光的分量通过调制半导体层的折射率而被布拉格反射, 电压脉冲对应于半导体层上的发送信息,然后将反射光作为激发光提供给介质。 由于布拉格反射和相关联的感应发射对较短的具有1×10 -9秒的脉冲宽度的电压信号具有优异的响应性,因此可以实现以高达100Gb / s的发送速度传输光信号的光通信系统 。