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    • 81. 发明专利
    • Signal generation device, equipment operation detection device, equipment operation detection system, equipment operation detection method and program
    • 信号发生装置,设备操作检测装置,设备操作检测系统,设备操作检测方法和程序
    • JP2012161165A
    • 2012-08-23
    • JP2011019290
    • 2011-01-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIGUMA TOSHIYASUKUSHIRO NORIYUKIITO YOSHIAKIHIHARA NAOYUKIKATSUKURA MAKOTOOGAWA YUKI
    • H02J13/00G01R21/00G01R31/02H02J17/00
    • PROBLEM TO BE SOLVED: To determine whether an operation detection object apparatus is operated in an easily installable simple configuration.SOLUTION: An equipment operation detection system 1 is provided which includes a signal generation device 14 connected to a predetermined electric apparatus 13b, and an equipment operation detection device 15 for detecting whether the electric apparatus 13b is used according to a signal of a predetermined frequency transmitted to a power line 12 by the signal generation device 14 while the electric apparatus 13b is in operation. The signal generation device 14 generates a predetermined voltage in response to an electromotive force induced by electromagnetic coupling with a current flowing through the power line 12 while the electric apparatus 13b is in operation, and transmits the signal of the predetermined frequency to the power line 12 via the generated voltage. The equipment operation detection device 15 records beforehand information indicating a frequency corresponding to the electric apparatus 13b, and detects whether the electric apparatus 13b is used according to whether or not a signal component of the predetermined frequency is included in a supply voltage.
    • 要解决的问题:确定操作检测对象装置是否以易于安装的简单配置操作。 解决方案:提供了一种设备操作检测系统1,其包括连接到预定电气设备13b的信号产生设备14,以及用于根据信号的信号检测电气设备13b是否被使用的设备操作检测设备15 在电气设备13b运行时由信号产生装置14发送到电力线12的预定频率。 信号发生装置14响应于在电气设备13b运行时通过电力线12流过的电流而由电磁耦合引起的电动势产生预定电压,并将预定频率的信号发送到电力线12 通过产生的电压。 设备操作检测装置15预先记录指示与电气设备13b对应的频率的信息,并根据电源电压中是否包含预定频率的信号分量来检测电气设备13b是否被使用。 版权所有(C)2012,JPO&INPIT
    • 82. 发明专利
    • Environment control system, portable terminal, environment control method and program
    • 环境控制系统,便携式终端,环境控制方法和程序
    • JP2012068020A
    • 2012-04-05
    • JP2012002173
    • 2012-01-10
    • Mitsubishi Electric Corp三菱電機株式会社
    • YABE MASAAKIKOIZUMI YOSHIAKINAKADA SHIGENORIHIHARA NAOYUKIHIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • F24F11/02
    • PROBLEM TO BE SOLVED: To construct an environment of a living room space fully understood by each person after considering individual difference such as fondness of each person with respect to a plurality of users.SOLUTION: The environment control system 100 manages and controls control conditions of a lighting system 2 and an air conditioning system 3 which can individually control respective environments of a plurality of regions in the living room space. A terminal information collection part 33 collects terminal information including positional information of portable terminal 5A, 5B, 5C carried by each of the plurality of users who use the living room space, and comfort level information related to comfort levels to the environment of the living room space, of the users carrying the portable terminal 5A, 5B, 5C. An adjustment part 34 adjusts the control conditions to enhance the comfort level of the user having low comfort level and to keep the comfort level of the user having high comfort level based on the collected terminal information.
    • 要解决的问题:在考虑到个人差异(如每个人对多个用户的喜好)之后,构建每个人完全理解的客厅空间的环境。 解决方案:环境控制系统100管理和控制可以单独控制起居室空间中的多个区域的各个环境的照明系统2和空调系统3的控制条件。 终端信息收集部33收集终端信息,该终端信息包括由使用起居室空间的多个用户中的每一个携带的便携式终端5A,5B,5C的位置信息,以及与客厅的环境相关的舒适程度信息 携带便携式终端5A,5B,5C的用户的空间。 调整部34调整控制条件,以提高具有低舒适度的用户的舒适度,并且基于收集的终端信息来保持具有高舒适度的用户的舒适度。 版权所有(C)2012,JPO&INPIT
    • 84. 发明专利
    • Communication system, remote controller, and equipment
    • 通信系统,远程控制器和设备
    • JP2011193213A
    • 2011-09-29
    • JP2010057559
    • 2010-03-15
    • Mitsubishi Electric Corp三菱電機株式会社
    • MINESAWA SATOSHIHIGUMA TOSHIYASUKOIZUMI YOSHIAKI
    • H04Q9/00
    • PROBLEM TO BE SOLVED: To provide a communication system which can reduce power consumption of both of equipment and a remote controller.
      SOLUTION: A communication part 100 of an air conditioner 10 is intermittently turned to a receivable state. When the communication part 100 receives predetermined data transmitted from the remote controller 20, a control part 101 continues the receivable state of the communication part 100 until a predetermined condition is established. A main power supply control part 201 of the remote controller 20 supplies power to a communication part 203, a control part 204, a storage part 205, a setting operation receiving part 206, and a display part 207. When an activating operation receiving part 208 receives a user operation, the main power supply control part 201 starts power supply to respective components. When the activating operation receiving part 208 receives a user operation, the control part 204 transmits activation start data indicating the start of the remote controller 20 to the air conditioner 10. Also, when a predetermined condition is established, the control part 204 stops the power supply by the main power supply control part 201.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够降低设备和遥控器的功耗的通信系统。 解决方案:空调机10的通信部分100被间歇地转到可接收状态。 当通信部件100接收到从遥控器20发送的预定数据时,控制部件101继续通信部件100的可接收状态直到建立预定条件。 遥控器20的主电源控制部分201向通信部分203,控制部分204,存储部分205,设置操作接收部分206和显示部分207供电。当激活操作接收部分208 接收用户操作,主电源控制部201开始向各个部件供电。 当激活操作接收部分208接收到用户操作时,控制部分204将表示遥控器20的启动的激活开始数据发送到空调器10.另外,当建立了预定条件时,控制部分204停止电源 主电源控制部201供电。(C)2011,JPO&INPIT
    • 85. 发明专利
    • Apparatus and method for detecting terminal system abnormality, terminal system, and program
    • 用于检测终端系统异常,终端系统和程序的装置和方法
    • JP2011130346A
    • 2011-06-30
    • JP2009289215
    • 2009-12-21
    • Mitsubishi Electric Corp三菱電機株式会社
    • MUKAI TAKUYAHIGUMA TOSHIYASU
    • H04L12/28F24F11/02
    • PROBLEM TO BE SOLVED: To provide an apparatus for detecting terminal system abnormality, wherein the apparatus detects an abnormality, such as a connection defect of a transmission line which is difficult to be detected by protocol analysis by means of a conventional protocol analyzer. SOLUTION: The apparatus 20 for detecting the terminal system abnormality detects an abnormality in a terminal system 1 configured by connecting a plurality of terminals via a transmission line 10. The apparatus includes: a communication section 36 for transmitting/receiving signals to/from the plurality of terminals via the transmission line 10; a signal level-measuring section 33 for measuring signal levels of signals transmitted from the plurality of terminals; a reference signal level-determining section 52 for obtaining a reference signal level based on predetermined attenuation amount of signal levels of signals propagated via the transmission line 10; and an abnormality determining section 55 for determining the abnormality in the transmission line by comparing a signal level of a signal received from a prescribed terminal among the plurality of terminals with the reference signal level. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于检测终端系统异常的装置,其中该装置通过常规协议分析器检测出难以通过协议分析检测到的传输线的连接缺陷等异常 。 解决方案:用于检测终端系统异常的设备20检测通过传输线10连接多个终端而配置的终端系统1中的异常。该设备包括:通信部分36,用于向/ 从多个终端经由传输线10; 用于测量从多个终端发送的信号的信号电平的信号电平测量部33; 参考信号电平确定部分52,用于基于经由传输线10传播的信号的信号电平的预定衰减量获得参考信号电平; 以及异常判定部55,用于通过将从多个终端中的规定终端接收到的信号的信号电平与参考信号电平进行比较来确定传输线路中的异常。 版权所有(C)2011,JPO&INPIT
    • 86. 发明专利
    • Electronic device, setting diagnostic device, setting diagnostic system, air conditioner, sensor device, measuring instrument and electrical apparatus
    • 电子设备,设置诊断设备,设置诊断系统,空调器,传感器设备,测量仪器和电气设备
    • JP2011101524A
    • 2011-05-19
    • JP2009255360
    • 2009-11-06
    • Mitsubishi Electric Corp三菱電機株式会社
    • YABE MASAAKIISHIHARA MASAHIROTORIYAMA KUNIAKIHIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • H02J17/00H04B5/02
    • PROBLEM TO BE SOLVED: To facilitate setting and diagnosis of an electronic device, while preventing leakage of information, without causing increase in power consumption, cost and processing load, and without causing device to be enlarged. SOLUTION: A power supply circuit 32 converts an AC voltage supplied from an external power supply 35 into a DC voltage. A power-receiving coil 22 receives power externally through electromagnetic induction coupling. A power-receiving circuit 23 receives AC power which is supplied via the power-receiving coil 22 and converts the AC power received into DC power. A transceiver coil 24 transmits/receives data to/from the outside by electromagnetic induction coupling. A transmitting circuit 25 and a receiving circuit 26 transmit/receive data via the transceiver coil 24. A memory 29 stores the data to be transmitted/received. The power from the power supply circuit 32 is supplied to a main function 31, the transmitting circuit 25, the receiving circuit 26, a control unit 27 and the memory 29. The power from the power-receiving circuit 23 is supplied to the transmitting circuit 25, the receiving circuit 26, the control unit 27 and the memory 29. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了便于电子设备的设置和诊断,同时防止信息泄漏,而不会引起功耗,成本和处理负担的增加,并且不会使设备扩大。 解决方案:电源电路32将从外部电源35提供的AC电压转换成DC电压。 受电线圈22通过电磁感应耦合从外部接收电力。 电力接收电路23接收经由受电线圈22供给的交流电力,并将接收到的交流电力转换成直流电力。 收发线圈24通过电磁感应耦合向外部发送/接收数据。 发送电路25和接收电路26经由收发线圈24发送/接收数据。存储器29存储要发送/接收的数据。 来自电源电路32的电力被提供给主功能31,发送电路25,接收电路26,控制单元27和存储器29.来自电力接收电路23的电力被提供给发送电路 25,接收电路26,控制单元27和存储器29.版权所有(C)2011,JPO&INPIT
    • 87. 发明专利
    • Air conditioning device and signal transmission method
    • 空调设备和信号传输方法
    • JP2011033339A
    • 2011-02-17
    • JP2010256855
    • 2010-11-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIGUMA TOSHIYASUKUSHIRO NORIYUKIKOIZUMI YOSHIAKI
    • F24F11/02
    • PROBLEM TO BE SOLVED: To provide a transmission method capable of easily utilizing an existing refrigerant pipe as a communication medium without difficult and complicated work. SOLUTION: An indoor unit has a first coupler for coupling an electric signal with the refrigerant pipe, transmitting a radio signal to an outdoor unit along a surface layer of the refrigerant pipe, and converting the radio signal from the outdoor unit into an electric signal, the outdoor unit has a second coupler for coupling an electric signal with the refrigerant pipe, transmitting a radio signal to the indoor unit along the surface layer of the refrigerant pipe, and converting the radio signal transmitted from the indoor unit into an electric signal, at least one of the first coupler and the second coupler has a coupling capacitor connected to an outer metallic surface of the refrigerant pipe formed of copper, and a control signal makes the refrigerant pipe to generate the radio signal of a micro frequency band though the coupling capacitor, and transmits it by a surface layer effect to perform communication between the units. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:提供一种能够容易地利用现有制冷剂管作为通信介质的传输方法,而不需要困难和复杂的工作。 解决方案:室内机具有用于将电信号与制冷剂管连接的第一耦合器,沿着制冷剂管的表面层向室外单元发送无线电信号,并将来自室外单元的无线电信号转换为 电气信号,室外机具有用于将电信号与制冷剂管连接的第二耦合器,沿着制冷剂管的表面层向室内单元发送无线电信号,并将从室内单元发送的无线信号转换成电信号 信号中,第一耦合器和第二耦合器中的至少一个具有连接到由铜形成的制冷剂管的外部金属表面的耦合电容器,并且控制信号使制冷剂管路产生微频带的无线电信号, 耦合电容器,并通过表层效应传输,以进行各单元之间的通信。 版权所有(C)2011,JPO&INPIT
    • 89. 发明专利
    • Environment measuring device, and system and method for managing facilities
    • 环境测量装置,以及用于管理设施的系统和方法
    • JP2010169422A
    • 2010-08-05
    • JP2009009888
    • 2009-01-20
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIHARA NAOYUKIKOIZUMI YOSHIAKIHIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • G01S5/14G01D21/00
    • PROBLEM TO BE SOLVED: To provide a practical device and a practical method for measuring an environment having improved measurement precision for automatically measuring environment information at a number of measurement points, using a simple configuration and a small number of sensor terminals.
      SOLUTION: The environment measuring device includes a plurality of fixed sensor terminals 101, including an environment measurement means and a radio communication means; one or a plurality of self-propelled sensor terminals 102, including the environment measurement means, the radio communication means, and a drive means; and a radio positioning means for detecting the position of the self-propelled sensor terminals. The radio positioning means obtains distance by radio communication with the fixed sensor terminal 101 and self-propelled sensor terminal 102, and thus the position of the self-propelled sensor terminal 102 is detected.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于测量具有改进的测量精度的环境的实用装置和实际方法,用于使用简单配置和少量传感器端子来自动测量多个测量点处的环境信息。 环境测量装置包括多个固定传感器端子101,包括环境测量装置和无线电通信装置; 包括环境测量装置,无线电通信装置和驱动装置的一个或多个自推进传感器端子102; 以及用于检测自行式传感器端子的位置的无线电定位装置。 无线电定位装置通过与固定传感器端子101和自行式传感器端子102的无线电通信获得距离,因此检测到自行式传感器端子102的位置。 版权所有(C)2010,JPO&INPIT
    • 90. 发明专利
    • Communications equipment and communication system
    • 通信设备和通信系统
    • JP2010062609A
    • 2010-03-18
    • JP2008223184
    • 2008-09-01
    • Mitsubishi Electric Corp三菱電機株式会社
    • MINESAWA SATOSHIHIHARA NAOYUKIHIGUMA TOSHIYASU
    • H04W52/02H04M1/725H04M1/73H04Q9/00
    • Y02D70/00
    • PROBLEM TO BE SOLVED: To provide communications equipment capable of transmitting data at desired timing, while obtaining power saving. SOLUTION: The communications equipment is provided with a data receiving circuit 210 for receiving communication data; a processor 220 for processing the communication data; and a starting circuit 230 for starting the processor 220, wherein the starting circuit 230 outputs a start request notification signal to the processor 220, upon receiving a start request signal for requesting to start the processor 220, the processor 220 waits in a sleeping state, until the start request notification signal is received, and transits to a starting state upon receiving the start request notification signal; and the data receiving circuit 210 waits in a sleeping state, until being requested to start from the starting circuit 230 or the processor 220, and transits to a starting state, when it is requested to start from the starting circuit 230 or the processor 220. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够在所需时间发送数据的通信设备,同时获得节电。 解决方案:通信设备设置有用于接收通信数据的数据接收电路210; 处理器220,用于处理通信数据; 以及用于启动处理器220的启动电路230,其中启动电路230在接收到用于请求启动处理器220的启动请求信号时,向处理器220输出启动请求通知信号,处理器220等待处于睡眠状态, 直到接收到开始请求通知信号,并且在接收到开始请求通知信号时转移到开始状态; 并且数据接收电路210等待处于休眠状态,直到被请求从启动电路230或处理器220开始,并且当它被请求从启动电路230或处理器220启动时,转移到开始状态。 版权所有(C)2010,JPO&INPIT