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    • 31. 发明授权
    • Device and method for forming waveform based on a combination of unit waveforms including loop waveform segments
    • 基于包括循环波形段的单位波形组合形成波形的装置和方法
    • US06255576B1
    • 2001-07-03
    • US09365987
    • 1999-08-03
    • Hideo SuzukiMasao SakamaMotoichi Tamura
    • Hideo SuzukiMasao SakamaMotoichi Tamura
    • G10H1057
    • G10H7/02G10H1/0575G10H7/008G10H2240/311G10H2250/035G10H2250/595
    • Sets of waveform data of unit waveforms stored in a memory each include first and second loop waveform segments at both ends of a non-loop waveform segment and any one of the unit waveform data sets can be selectively readout from the memory. The waveform data set of a desired one of the unit waveforms is read out from the memory and is connected with another waveform preceding or following the read-out unit waveform using the first or second loop waveform segment in the read-out unit waveform. Thus, a smooth connection between the read-out unit waveform and the other waveform is achieved with ease. This is because the loop waveform can be smoothly connected with any other waveform through cross-fade synthesis or phase-matched connection technique performed at an appropriate point in the loop. With such arrangements, when a tone waveform is to be formed by reading out the loop waveform from the memory, it is possible to execute good-quality waveform formation rich in controllability and editability, taking articulation (style of rendition) of a sound into account, in a manner rich in controllability and editability.
    • 存储在存储器中的单位波形的波形数据的集合包括在非环形波形段的两端的第一和第二回路波形段,并且可以从存储器中选择性地读出任何一个单位波形数据组。 从存储器读出期望的一个单位波形的波形数据组,并使用读出单位波形中的第一或第二循环波形段与读出单位波形之前或之后的另一波形连接。 因此,容易地实现读出单元波形和另一波形之间的平滑连接。 这是因为环路波形可以通过在循环中的适当点执行的交叉衰落合成或相位匹配连接技术与任何其他波形平滑连接。 通过这样的配置,当通过从存储器读出环路波形来形成音调波形时,可以执行具有丰富的可控性和可编辑性的高品质波形形成,考虑到声音的发音(演奏风格) 以丰富的可控性和可编辑性。
    • 32. 发明授权
    • Musical sound control device responsive to the motion of body portions
of a performer
    • 响应演奏者的身体部分的运动的音乐声音控制装置
    • US5373096A
    • 1994-12-13
    • US44568
    • 1993-04-08
    • Hideo SuzukiMasao Sakama
    • Hideo SuzukiMasao Sakama
    • G10H1/00G10H1/34
    • G10H1/00
    • The present invention provides a musical sound control device wherein, based on the movements of the fingers or other body parts of the performer, control of pitch bender and vibrato effects can easily achieved, and wherein the mobility and dexterity of each of the five digits of a human hand have been taken into careful consideration, whereby touch intensity musical control can be achieved.The present invention provides detectors which can be applied to various portions of a performer's body, whereby movement of each body portion to which the detectors have been applied can be detected. Additionally, the present invention provides a control signal generator, whereby based on the output of the above mentioned detectors a musical control signal is generated. The above mentioned control signal generator includes a predetermined region wherein a musical control signal is not generated to impart a desirable effect on a musical tone, and in the other region, the control signal therefor carries out touch intensity conversion for the movement of each of the operators digits.
    • 本发明提供了一种音乐声控制装置,其中,基于演奏者的手指或其他身体部位的移动,可以容易地实现音调弯曲和颤音效果的控制,并且其中五位数的每一个的移动性和灵活性 仔细考虑了人的手,从而可以实现触摸强度的音乐控制。 本发明提供了可以应用于演奏者的身体的各个部分的检测器,由此可以检测到已经施加了检测器的每个主体部分的移动。 此外,本发明提供一种控制信号发生器,由此基于上述检测器的输出,产生音乐控制信号。 上述控制信号发生器包括不产生音乐控制信号以赋予乐音效果的预定区域,而在另一区域中,其控制信号为每个音调的运动执行触摸强度转换 操作员数字。
    • 37. 发明授权
    • Biomass hydrothermal decomposition apparatus, temperature control method thereof, and organic raw material production system using biomass material
    • 生物质水热分解装置及其温度控制方法以及使用生物质材料的有机原料生产系统
    • US09102956B2
    • 2015-08-11
    • US13132040
    • 2010-03-10
    • Minoru GentaRyosuke UeharaHideo SuzukiSeiichi Terakura
    • Minoru GentaRyosuke UeharaHideo SuzukiSeiichi Terakura
    • C12M1/40B01J19/00C08B15/00C12P7/10C10L1/02
    • C12P7/10C10G2300/1014C10G2300/805C10L1/02Y02E50/16Y02P30/20
    • A biomass hydrothermal decomposition apparatus that feeds a solid biomass material 11 from one side of an apparatus body 42, feeds hot water 15 from the other side, to hydrothermally decompose the biomass material 11 while bringing the biomass material 11 into counter contact with the hot water 15, dissolves hot-water soluble fractions in hot water, discharges the hot water to outside from the one side of the apparatus body 42 as a hot-water effluent 16, and discharges a biomass solid (a hot water insoluble) 17 to outside from the other side. The biomass hydrothermal decomposition apparatus includes an effective reaction region A formed from the other side to the one side of the apparatus body 42, in which a feeding temperature of the hot water 15 (for example, 200° C.) is maintained for a predetermined period of time to cause hydrothermal decomposition, and a temperature drop region B in which a temperature is rapidly dropped to a temperature (for example, 140° C.) at which the hot-water soluble fractions are not excessively decomposed (for example, from 200° C. to 140° C.), immediately after it is out of the effective reaction region A.
    • 从装置本体42的一侧供给固体生物质材料11的生物质热液分解装置从另一侧供给热水15,使生物质材料11热水分解,同时使生物质材料11与热水反接触 15,将热水溶性部分溶解在热水中,将热水从装置主体42的一侧作为热水流出物16排出到外部,将生物质固体(不溶于热水)17排出到外部 另一边。 生物质热液分解装置包括从设备主体42的另一侧形成的有效反应区域A,其中将热水15的供给温度(例如200℃)保持在预定的温度 引起水热分解的时间段,以及温度迅速下降到热水可溶级分未过分分解的温度(例如140℃)的温度下降区域B(例如, 200℃至140℃),刚刚离开有效反应区域A.