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    • 1. 发明公开
    • TCP 헤더 압축 방법 및 그 방법을 기록한 기록매체
    • 用于压缩TCP头和记录媒体记录方案的方法
    • KR1020140036874A
    • 2014-03-26
    • KR1020120103539
    • 2012-09-18
    • 주식회사 비츠로시스세종대학교산학협력단
    • 심종태오주연김형석윤보경
    • H04L29/06
    • H04L69/04H04L69/16H04L69/22
    • Disclosed are a method for compressing a TCP header and a recording medium recording the same. the method for compressing a TCP header in accordance with an aspect of the present invention includes a step of storing an initial value of the TCP header according to a connection packet when connection with a correspondent node using a TCP/IP protocol is completed and a step of generating a TCP compression header including a compression method field on which a compression method of predetermined contents of the TCP header is individually recorded and a compression value field on which a compression value of the predetermined contents is recorded according to the compression method based on the initial value by analyzing the TCP header of a transmission packet transmitted to the correspondent node. According to the present invention the TCP/IP protocol can be efficiently applied to a low power WRAN transmitting and receiving a small amount of packets by compressing the TCP header.
    • 公开了一种用于压缩TCP报头和记录该报头的记录介质的方法。 根据本发明的一个方面的用于压缩TCP报头的方法包括当与使用TCP / IP协议的通信节点连接完成时,根据连接分组存储TCP报头的初始值的步骤,并且步骤 生成包括压缩方法字段的TCP压缩头部,所述压缩方法字段在其上单独记录TCP头部的预定内容的压缩方法,并且根据压缩方法根据压缩方法记录预定内容的压缩值 通过分析发送到通信节点的传输分组的TCP报头来获得初始值。 根据本发明,TCP / IP协议可以有效地应用于通过压缩TCP报头来发送和接收少量分组的低功率WRAN。
    • 2. 发明授权
    • 전력사용패턴을 이용한 전자기기 인식하는 모니터링 시스템 및 그를 위한 장치
    • 使用电力用途图案识别电气设备的系统及其装置
    • KR101325133B1
    • 2013-11-06
    • KR1020120103540
    • 2012-09-18
    • 주식회사 비츠로시스세종대학교산학협력단
    • 심종태오주연김형석
    • G01R22/06G01R21/00G08C19/00
    • Disclosed are a monitoring system for recognizing an electronic device using a power usage pattern and a device thereof. The system for monitoring the power usage of electronic devices comprises a smart socket which supplies power to a connected electronic device and generates power usage pattern information including sensing information about at least two among the standby current, the maximum current, the minimum current, and the number of vibrations of the electronic device; and a monitoring device which analyzes the power usage pattern information received from the socket through a network and identifies the type of the electronic device. The monitoring system by the present invention monitors the power usage by electronic device by analyzing a pattern for the power usage of the electronic device connected to the socket and automatically recognizing the type or model of the corresponding electronic device. [Reference numerals] (40) Network;(50) Monitoring device
    • 公开了一种使用电力使用模式识别电子装置的监视系统及其装置。 用于监视电子设备的电力使用的系统包括:向连接的电子设备供电的智能插座,并产生功率使用模式信息,包括关于待机电流,最大电流,最小电流和 电子设备的振动次数; 以及监视装置,其通过网络分析从插座接收的电力使用模式信息,并且识别电子装置的类型。 本发明的监视系统通过分析连接到插座的电子设备的电力使用的模式并自动识别对应的电子设备的类型或型号来监视电子设备的电力使用情况。 (附图标记)(40)网络;(50)监控装置
    • 3. 发明授权
    • SDP를 이용한 데이터 통합 유닛
    • 使用智能数据处理单元的UNITY数据设备
    • KR101361786B1
    • 2014-02-13
    • KR1020120092870
    • 2012-08-24
    • 주식회사 비츠로시스
    • 심종태최승일김영석김정년심재근
    • G05B23/00G05B19/418
    • G05B19/4183G05B23/0221G05B2219/24215Y02P90/02
    • A data integration unit using a smart data processing unit (SDP) according to an embodiment of the present invention comprises: at least one interface unit which checks an operational status for a plurality of systems and outputs various in-situ data provided from a system; and a SDP unit connected to the interface unit through Ethernet or serial wherein the SDP unit outputs processing data processed through integrally managing the various in-situ data output from the interface unit. [Reference numerals] (131) Power supply module; (133) Main control unit; (1351) Communications module #6(RTU-electrical contact point is received); (135a) Communications module #1(HOST); (135b) Communications module #2(CU); (135c) Communications module #3(Diagnosis); (135d) Communications module #4(Quality); (135e) Communications module #5(Distance); (135g) Communications module #7(IEC61850 IED); (AA) Train control unit/Fault point display unit; (BB) Prevention diagnosis; (CC) Field quality; (DD) Distance relay device
    • 使用根据本发明的实施例的智能数据处理单元(SDP)的数据集成单元包括:至少一个接口单元,其检查多个系统的操作状态并输出从系统提供的各种原位数据; 以及通过以太网或串行连接到接口单元的SDP单元,其中SDP单元输出通过整体管理从接口单元输出的各种原位数据而处理的处理数据。 (附图标记)(131)电源模块; (133)主控单元; (1351)通信模块#6(接收到RTU-电接点); (135a)通信模块#1(HOST); (135b)通信模块#2(CU); (135c)通信模块#3(诊断); (135d)通信模块#4(质量); (135e)通信模块#5(距离); (135g)通信模块#7(IEC61850 IED); (AA)列车控制单元/故障点显示单元; (BB)预防诊断; (CC)现场质量; (DD)距离继电器
    • 4. 发明授权
    • 배전선로에 사용되는 전압, 무효전력 안정화용 전력품질 측정장치
    • 电压分配线,电力质量测量装置的反应电力稳定
    • KR101336689B1
    • 2013-12-16
    • KR1020120154662
    • 2012-12-27
    • 주식회사 비츠로시스
    • 장태수심종태정양섭전상수
    • G08C17/02G01R19/06
    • H02J13/0075Y02E60/7853Y04S10/527Y04S40/126
    • A control device for measuring power quality used in distribution lines according to an embodiment of the present invention comprises a current and voltage sensor unit for converting first voltage into second voltage and first current into second current through distribution lines and for wirelessly transmitting the converted second voltage and the second current; and a power quality measuring unit receiving the second voltage and the second current from the current and voltage sensor unit, comparing the second voltage and the second current with a predetermined reference measuring value, and wirelessly transmitting the measured data included in the predetermined reference value to a centralized control system. The current and voltage sensor unit includes a current signal conversion unit for converting the first current into the second voltage which is proportional to a current change using a rogowski coil for wide-range current measurement; a main power unit for supplying the main power by converting the first voltage into the predetermined voltage using the induced electromotive force; and a sensor control unit for converting the main power into the operating power by receiving the main power from the main power unit and for wirelessly transmitting the second voltage by receiving the second voltage and the second current from the current signal conversion unit.
    • 根据本发明实施例的用于测量配电线路中使用电力质量的控制装置包括电流和电压传感器单元,用于将第一电压转换成第二电压和第一电流,并通过分配线将第二电流转换成第二电流,并且用于将转换后的第二电压 和第二电流; 以及电力质量测量单元,其从所述电流和电压传感器单元接收所述第二电压和所述第二电流,将所述第二电压和所述第二电流与预定的参考测量值进行比较,并将包括在所述预定参考值中的测量数据无线传输到 集中控制系统。 电流和电压传感器单元包括电流信号转换单元,用于使用用于宽范围电流测量的罗格斯基线圈将第一电流转换成与电流变化成比例的第二电压; 主电源单元,用于通过使用感应电动势将第一电压转换成预定电压来提供主电力; 以及传感器控制单元,用于通过从主电源单元接收主电力将主电力转换为工作电力,并且通过从当前信号转换单元接收第二电压和第二电流来无线传输第二电压。
    • 6. 发明公开
    • 오제어 방지 기능을 적용한 RTU DO 모듈 장치
    • 远程终端单元数字输出模块设备
    • KR1020130137439A
    • 2013-12-17
    • KR1020120061057
    • 2012-06-07
    • 주식회사 비츠로시스
    • 심종태김종우방상연
    • G05B19/04
    • G05B19/05G05B2219/1108G05B2219/15096
    • A remote terminal unit (RTU) digital output (DO) module device comprises a versa module eurocard (VME) bus unit, a main control unit, and a terminal board unit. The VME bus unit inputs and outputs a data signal and an address signal. The main control unit receives the data signal and the address signal; generates a first relay control signal or a second relay control signal by using an address decoding method; analyzes outputted point relay signal; and selects the output for a driving relay signal. The terminal board unit receives the point relay signal and the driving relay signal and drives. [Reference numerals] (110) VME BUS unit;(131) CPU unit;(133) CPLD unit;(135) LATCH circuit unit;(137) POINT RELAY unit;(139) FEED BACK circuit unit;(141) Driving relay unit;(150) Terminal board unit
    • 远程终端单元(RTU)数字输出(DO)模块设备包括反向模块欧洲卡(VME)总线单元,主控单元和终端板单元。 VME总线单元输入和输出数据信号和地址信号。 主控单元接收数据信号和地址信号; 通过使用地址解码方法生成第一中继控制信号或第二中继控制信号; 分析输出点继电器信号; 并选择驱动继电器信号的输出。 接线板单元接收点继电器信号和驱动继电器信号并驱动。 (110)VME BUS单元;(131)CPU单元;(133)CPLD单元;(135)LATCH电路单元;(137)点继电单元;(139)FEED BACK电路单元;(141) 单元;(150)端子板单元