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    • 41. 发明申请
    • Sensor net management method
    • 传感器网络管理方法
    • US20110128910A1
    • 2011-06-02
    • US12929655
    • 2011-02-07
    • Norihiko Moriwaki
    • Norihiko Moriwaki
    • H04W88/02
    • H04L41/0893H04L41/0654H04L43/0817H04L43/12
    • There is provided a sensor node management method in which a user is unconscious of a service break even when a sensor mode has failed among a plurality of sensor nodes assuming intermittent operation. Moreover, it is possible to provide a flexible sensor node management method capable of freely modifying the observation grading (space, time) in accordance with a user's desire. A base station (30) for containing a plurality of intermittently operating sensor modes includes a sensor management table (4) for managing the sensor nodes, a group management table (5) for grouping a plurality of sensor nodes, and an operation timing control unit (3). The operation timing control unit (3) decides the operation interval and the relationship for starting each of the sensor nodes. Moreover, the base station and the sensor node have a counter value as a reference of the sensor node operation interval and the operation start phase, which are periodically synchronized.
    • 提供了一种传感器节点管理方法,其中即使在假设间歇操作的多个传感器节点中的传感器模式已经发生故障时,用户也无意识到服务中断。 此外,可以提供能够根据用户的愿望自由地修改观察分级(空间,时间)的灵活的传感器节点管理方法。 用于容纳多个间歇操作的传感器模式的基站(30)包括:用于管理传感器节点的传感器管理表(4),用于对多个传感器节点分组的组管理表(5)和操作定时控制单元 (3)。 操作定时控制单元(3)确定操作间隔和用于启动每个传感器节点的关系。 此外,基站和传感器节点具有计数器值作为周期性同步的传感器节点操作间隔和操作开始阶段的参考。
    • 42. 发明授权
    • Sensor net management method
    • 传感器网络管理方法
    • US07904052B2
    • 2011-03-08
    • US11794673
    • 2005-02-23
    • Norihiko Moriwaki
    • Norihiko Moriwaki
    • H04B1/16G08B1/08
    • H04L41/0893H04L41/0654H04L43/0817H04L43/12
    • There is provided a sensor node management method in which a user is unconscious of a service break even when a sensor node has failed among a plurality of sensor nodes assuming intermittent operation. Moreover, it is possible to provide a flexible sensor node management method capable of freely modifying the observation grading (space, time) in accordance with a user's desire. A base station (30) for containing a plurality of intermittently operating sensor nodes includes a sensor management table (4) for managing the sensor nodes, a group management table (5) for grouping a plurality of sensor nodes, and an operation timing control unit (3). The operation timing control unit (3) decides the operation interval and the relationship for starting each of the sensor nodes. Moreover, the base station and the sensor node have a counter value as a reference of the sensor node operation interval and the operation start phase, which are periodically synchronized.
    • 提供了一种传感器节点管理方法,其中即使在假设间歇操作的多个传感器节点中的传感器节点发生故障时,用户也无意识地进行服务中断。 此外,可以提供能够根据用户的愿望自由地修改观察分级(空间,时间)的灵活的传感器节点管理方法。 用于容纳多个间歇操作的传感器节点的基站(30)包括用于管理传感器节点的传感器管理表(4),用于对多个传感器节点分组的组管理表(5)和操作定时控制单元 (3)。 操作定时控制单元(3)确定操作间隔和用于启动每个传感器节点的关系。 此外,基站和传感器节点具有计数器值作为周期性同步的传感器节点操作间隔和操作开始阶段的参考。
    • 43. 发明授权
    • Sensor network system and data transfer method for sensing data
    • 传感器网络系统和数据传输方法
    • US07860917B2
    • 2010-12-28
    • US11335633
    • 2006-01-20
    • Norihiko Moriwaki
    • Norihiko Moriwaki
    • G06F15/16
    • H04L67/12H04W84/18
    • To suppress a server processing load and a network load in a sensor network which accommodates a great number of mobile sensor nodes. Among a plurality of distributed data processing servers (DDS) for managing data of sensor nodes, a distributed data processing server (DDS) that is a home server to hold data of a mobile sensor node is set for each sensor node by a directory server (DRS). At each distributed data processing server (DDS), upon reception of the data from the sensor node, identification process is executed as to whether the data is sensor data to be managed by itself or another distributed data processing server. If a result of the identification is the sensor data to be managed by another distributed data processing server, the data is transferred to the distributed data processing server (DDS-1), which corresponds to the home server of the sensor data, based on setting of the directory server (DRS).
    • 抑制容纳大量移动传感器节点的传感器网络中的服务器处理负载和网络负载。 在用于管理传感器节点数据的多个分布式数据处理服务器(DDS)中,由目录服务器为每个传感器节点设置作为用于保存移动传感器节点数据的归属服务器的分布式数据处理服务器(DDS) DRS)。 在每个分布式数据处理服务器(DDS)处,在从传感器节点接收到数据时,执行关于数据是自身还是其他分布式数据处理服务器要管理的传感器数据的识别处理。 如果识别的结果是由另一个分布式数据处理服务器管理的传感器数据,则将数据基于设置传送到对应于传感器数据的归属服务器的分布式数据处理服务器(DDS-1) 的目录服务器(DRS)。
    • 44. 发明申请
    • Sensor Net Management Method
    • 传感器网络管理方法
    • US20090210075A1
    • 2009-08-20
    • US11794673
    • 2005-02-23
    • Norihiko Moriwaki
    • Norihiko Moriwaki
    • G05B13/02G06F15/16
    • H04L41/0893H04L41/0654H04L43/0817H04L43/12
    • There is provided a sensor node management method in which a user is unconscious of a service break even when a sensor node has failed among a plurality of sensor nodes assuming intermittent operation. Moreover, it is possible to provide a flexible sensor node management method capable of freely modifying the observation grading (space, time) in accordance with a user's desire. A base station (30) for containing a plurality of intermittently operating sensor nodes includes a sensor management table (4) for managing the sensor nodes, a group management table (5) for grouping a plurality of sensor nodes, and an operation timing control unit (3). The operation timing control unit (3) decides the operation interval and the relationship for starting each of the sensor nodes. Moreover, the base station and the sensor node have a counter value as a reference of the sensor node operation interval and the operation start phase, which are periodically synchronized.
    • 提供了一种传感器节点管理方法,其中即使在假设间歇操作的多个传感器节点中的传感器节点发生故障时,用户也无意识地进行服务中断。 此外,可以提供能够根据用户的愿望自由地修改观察分级(空间,时间)的灵活的传感器节点管理方法。 用于容纳多个间歇操作的传感器节点的基站(30)包括用于管理传感器节点的传感器管理表(4),用于对多个传感器节点分组的组管理表(5)和操作定时控制单元 (3)。 操作定时控制单元(3)确定操作间隔和用于启动每个传感器节点的关系。 此外,基站和传感器节点具有计数器值作为周期性同步的传感器节点操作间隔和操作开始阶段的参考。
    • 46. 发明申请
    • Meeting visualization system
    • 会议可视化系统
    • US20080255847A1
    • 2008-10-16
    • US12078520
    • 2008-04-01
    • Norihiko MoriwakiNobuo SatoTsuneyuki ImakiToshihiko KashiyamaItaru NishizawaMasashi Egi
    • Norihiko MoriwakiNobuo SatoTsuneyuki ImakiToshihiko KashiyamaItaru NishizawaMasashi Egi
    • G10L11/00
    • G10L21/06G10L25/78
    • Voice of plural participants during a meeting is obtained and dialogue situations of the participants that change every second are displayed in real time, so that it is possible to provide a meeting visualization system for triggering more positive discussions. Voice data collected from plural voice collecting units associated with plural participants is processed by a voice processing server to extract speech information. The speech information is sequentially input to an aggregation server. A query process is performed for the speech information by a stream data processing unit of the aggregation server, so that activity data such as the accumulation value of speeches of the participants in the meeting is generated. A display processing unit visualizes and displays dialogue situations of the participants by using the sizes of circles and the thicknesses of lines on the basis of the activity data.
    • 在会议期间获得复数参与者的声音,并且实时显示每秒更改的参与者的对话情况,从而可以提供会议可视化系统以触发更积极的讨论。 从与多个参与者相关联的多个语音收集单元收集的语音数据由语音处理服务器处理以提取语音信息。 语音信息被顺序地输入到聚合服务器。 通过聚合服务器的流数据处理单元对语音信息进行查询处理,从而生成活动数据,例如会议中的参与者的演讲的累积值。 显示处理单元通过使用圆的大小和基于活动数据的线的厚度来可视化并显示参与者的对话情况。
    • 49. 发明申请
    • Sensor network system and data retrieval method for sensing data
    • 用于传感数据的传感器网络系统和数据检索方法
    • US20060161645A1
    • 2006-07-20
    • US11211467
    • 2005-08-26
    • Norihiko MoriwakiToshiyuki Odaka
    • Norihiko MoriwakiToshiyuki Odaka
    • G06F15/173
    • G06Q10/06
    • This invention enables to easily retrieve real-time information from a large number of sensors connected to a network. The sensor network system of this invention includes distributed data processing servers for collecting data from plural sensors at a predetermined frequency, a management server for maintaining a location of sensor data, user terminals for requesting data to the management server, and a first network for connecting with the management server, user terminals and plural distributed data processing servers. The management server includes a model table having model names previously set and information link pointers for indicating which distributed data processing server collects data corresponding to the model names, and a search engine for acquiring data requested by the user terminals from the distributed data processing servers corresponding to the information link pointers based on the model table and for responding to the user terminals with the data.
    • 本发明能够容易地从连接到网络的大量传感器中检索实时信息。 本发明的传感器网络系统包括用于以预定频率从多个传感器收集数据的分布式数据处理服务器,用于维护传感器数据位置的管理服务器,用于向管理服务器请求数据的用户终端和用于连接的第一网络 与管理服务器,用户终端和多个分布式数据处理服务器。 管理服务器包括具有先前设置的模型名称的模型表和用于指示哪个分布式数据处理服务器收集对应于模型名称的数据的信息链接指针,以及搜索引擎,用于从分布式数据处理服务器对应地获取由用户终端请求的数据 到基于模型表的信息链接指针并且用于响应于具有数据的用户终端。