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    • 4. 发明申请
    • Instant messaging and enhanced scheduling
    • 即时消息和增强调度
    • US20050027805A1
    • 2005-02-03
    • US10620683
    • 2003-07-15
    • Norihiro Aoki
    • Norihiro Aoki
    • G06F20060101G06F15/16
    • G06Q10/109H04L51/04
    • Instant messaging communications method and apparatus are provided in which one of the parties is not a person but an automated system or agent (bot) that accepts requests and issues responses. The invention provides such a bot, which can be used as an aid to scheduling events and tasks, either alone, or in conjunction with other individuals. The bot is addressable by the user. In one embodiment, a bot appears as an entity on a buddy list. For example, a participant who would like to schedule a meeting initiates a conversation with the bot, which then asks a series of questions to determine the intent of the user. The bot could also initiate instant messaging communications to prospective meeting attendees and mediate a discussion related to the meeting. In another embodiment, the agent or bot is linked to an online calendar service to determine participant availability and after finalizing meeting details, adds such information to the participants' online calendar, as dictated by the capabilities of the calendar application.
    • 提供即时消息通信方法和装置,其中一方不是人,而是接受请求并发出响应的自动化系统或代理(机器人)。 本发明提供了这样的机器人,其可以单独地或与其他个体一起用于辅助调度事件和任务。 机器人可由用户寻址。 在一个实施例中,机器人在伙伴列表上显示为实体。 例如,希望安排会议的参与者会发起与机器人的对话,然后该会话询问一系列问题以确定用户的意图。 机器人还可以向准会议参加者发起即时消息通信,并调解与会议有关的讨论。 在另一个实施例中,代理或机器人连接到在线日历服务以确定参与者可用性,并且在最终确定会议细节之后,根据日历应用程序的能力来将这样的信息添加到参与者的在线日历。
    • 8. 发明授权
    • Fluidized bed incinerator
    • 流化床焚烧炉
    • US5915309A
    • 1999-06-29
    • US973853
    • 1998-04-06
    • Seiichi NakaiRyozo ShijiTakeshi MatsuiNorihiro AokiYoshimasa MiuraYusuke Okada
    • Seiichi NakaiRyozo ShijiTakeshi MatsuiNorihiro AokiYoshimasa MiuraYusuke Okada
    • F23G5/14F23G5/30F23B5/00F23D21/00
    • F23G5/30F23G5/14F23G2202/101F23G2203/502
    • The oblique bed wall (6) of the furnace main unit (1) is inclined in downward direction towards the ash discharge outlet (5). Oblique side walls (24R, 24L) are formed in the right and left side walls (1c, 1d) on the inlet (4) side of the furnace main unit (1), and fluidized bed material (S) blown up from the side fluid layers (RS, LS) is guided into the central fluid layer (CS). The fluidized bed material (S) is caused to circulate in succession from the central fluid layer (CS) at the inlet (4) side towards the central fluid layer (CS) at the ash discharge outlet (5) side towards side fluid layers (RS, LS) at the ash discharge outlet (5) side towards side fluid layers (RS, LS) at the inlet (4) side towards central fluid layer (CS) at the inlet (4) side, by dispersive air emitted from dispersive air pipes (21A, 21B, 25). In this way, the fluidized bed material (S) is caused to circulate in virtually a horizontal plane without partitioning walls. Slow combustion is conducted due to a slow fluid speed, particularly in the drying and pyrolyzing zone. Stable combustion is achieved, and generation of carbon monoxide and dioxin is suppressed.
    • PCT No.PCT / JP97 / 01376 Sec。 371日期:1998年4月6日 102(e)日期1998年4月6日PCT 1997年4月21日PCT PCT。 公开号WO97 / 41390 日期1997年11月6日炉主体(1)的倾斜床壁(6)向下倾斜朝向排灰口(5)倾斜。 倾斜侧壁(24R,24L)形成在炉主体(1)的入口(4)侧的左右侧壁(1c,1d)中,从侧面吹出的流化床材料(S) 流体层(RS,LS)被引导到中心流体层(CS)中。 使流化床材料(S)从入口(4)侧的中心流体层(CS)连续循环到在灰分排出口(5)侧朝向侧流体层( (4)侧的侧流体层(RS,LS)在入口(4)侧的中心流体层(CS)处的灰分排出口(5)侧的分散空气 空气管(21A,21B,25)。 以这种方式,使流化床材料(S)在几乎水平的平面中循环而没有分隔壁。 由于流体速度慢,特别是在干燥和热解区域,进行缓慢燃烧。 实现稳定的燃烧,抑制一氧化碳和二恶英的产生。