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    • 63. 发明公开
    • 용선 운반 대차의 용선 레벨 측정 장치 및 방법
    • 用于测量TORPEDO LADLE车中铁的水平的装置和方法
    • KR1020140002266A
    • 2014-01-08
    • KR1020120070313
    • 2012-06-28
    • 현대제철 주식회사
    • 강기수김지성
    • G01F23/28G01F23/284F27D21/00C21C1/06
    • A device for measuring a level of molten iron of a molten iron delivery trailer according to an embodiment of the present invention includes: a molten iron repair tool formed in a molten iron delivery trailer for repairing the molten iron into the inside of the molten iron delivery trailer; a molten iron level measurement tool formed in the molten iron delivery trailer for measuring a level of the molten iron repaired into the inside of the molten iron delivery trailer; a microwave sensor for transmitting a microwave to the molten iron through the molten iron level measurement tool and for receiving a reflective wave of the microwave reflected from the molten iron through the molten iron level measurement tool; and a molten iron level measurement circuit for measuring the level of the molten iron using the difference between the transmitted time and received time of the microwave. [Reference numerals] (140) Molten iron level measurement circuit
    • 根据本发明的实施例的用于测量铁水输送拖车的铁水水平的装置包括:形成在铁水送料拖车中的铁水修复工具,用于将铁水修复到铁水输送的内部 拖车; 在铁水输送拖车中形成的铁水平测量工具,用于测量修复进入铁水输送拖车内部的铁水位; 微波传感器,用于通过铁水位测量工具将微波传输到铁水,并通过铁水液位测量工具接收从铁水反射的微波的反射波; 以及铁水量测量电路,用于使用所述传输时间与所述微波的接收时间之间的差来测量所述铁水位。 (附图标记)(140)熔融铁液位测量电路
    • 64. 发明公开
    • 부동접지구조를 개선한 레이더 레벨측정시스템
    • 一种改进浮动地基结构的雷达水位计系统
    • KR1020130045067A
    • 2013-05-03
    • KR1020110109518
    • 2011-10-25
    • 주식회사 파나시아
    • 이수태표태성이수규
    • G01F23/284G01F23/28G01S13/08
    • PURPOSE: A radar level measuring system with an improved floating ground structure is provided to improve the efficiency of outputting electromagnetic waves, to minimize a loss thereof, and to uniformly distributing capacitance throughout the whole surface of a PCB(Printed Circuit Board). CONSTITUTION: A radar level measuring system with an improved floating ground structure comprises an antenna(3) and a circuit unit(1). The antenna is positioned inside a tank for measuring the level of a tank of a vessel, thereby transceiving electromagnetic waves. The circuit unit generates electromagnetic waves received in the antenna and analyzes the same, thereby measuring the level of the inside of the tank. Parts of a circuit are seated in the circuit unit, and PCBs electrically connected to the circuit unit are formed into a multilayer. The whole substrate of the lowest layer of the PCB is float-grounded in a frame of the vessel without being connected to the circuit so that the capacitance is uniformly distributed throughout the PCB.
    • 目的:提供一种具有改进的浮地结构的雷达液位测量系统,以提高输出电磁波的效率,使其损耗最小化,并在PCB(印刷电路板)的整个表面均匀分布电容。 构成:具有改进的浮地结构的雷达液位测量系统包括天线(3)和电路单元(1)。 天线位于罐内用于测量容器的水箱的高度,从而收发电磁波。 电路单元产生在天线中接收的电磁波并对其进行分析,从而测量槽内的水平。 电路的一部分位于电路单元中,并且电连接到电路单元的PCB形成为多层。 PCB的最底层的整个基板在容器的框架中浮动接地而不连接到电路,使得电容均匀分布在整个PCB上。
    • 65. 发明公开
    • 탕면 레벨을 이용한 주편 품질 평가장치
    • 使用钢铁等级评估钢板质量的方法
    • KR1020120087523A
    • 2012-08-07
    • KR1020110008769
    • 2011-01-28
    • 현대제철 주식회사
    • 하태준문홍길장진수
    • B22D2/00B22D11/16G01N35/00G01F23/284
    • PURPOSE: A method for evaluating the quality of slab using a molten metal level is provided to predict the quality of slab by calculating the area of a reference period without fall-off of inclusion and the area of a period where fall-off of inclusion occurs and comparing the frequencies of the periods. CONSTITUTION: A method for evaluating the quality of slab using a molten metal level comprises the steps of: measuring the variation of molten metal surface using a molten metal level sensor(S10), extracting a frequency equal to or less than 0.1Hz from the frequencies of level signals of the molten metal level sensor and calculating the molten metal area of the classified frequency through a control device(S20), calculating the number of exceeding a reference level ±5mm through the control device(S30), and calculating an index indicating fall-off of inclusion formed in a submerged nozzle and displaying the index through a display device(S40).
    • 目的:提供一种使用熔融金属水平评价板坯质量的方法,通过计算参考周期的面积而不考虑夹杂物的脱落和夹杂物脱落的时间段的面积来预测板坯的质量 并比较周期的频率。 构成:使用熔融金属水平评估板坯质量的方法包括以下步骤:使用熔融金属液位传感器测量熔融金属表面的变化(S10),从频率提取等于或小于0.1Hz的频率 通过控制装置计算分类频率的熔融金属面积(S20),通过控制装置计算超过参考水平±5mm的数量(S30),并计算指示 在浸入式喷嘴中形成的夹杂物脱落,并通过显示装置显示索引(S40)。
    • 67. 发明公开
    • 레이저 측정 장치를 이용한 지그비 기반 원격 수위 감시시스템
    • 以激光设备,基于ZIGBEE网络为基础,远程水位MONITER系统
    • KR1020080056325A
    • 2008-06-23
    • KR1020060129087
    • 2006-12-18
    • (주) 웨이브링스
    • 석문칠
    • G01F23/28G01F23/284
    • G01F23/292G08B3/1033G08B5/223G08B21/0277G08C17/02H04L61/6081
    • A zigbee-based remote water level monitoring system is provided to send water level information to a manager through a zigbee-based network in real time by using a laser measurement device. A zigbee-based remote water level monitoring system comprises a zigbee-based remote water level measuring system(10) capable of transmitting a water level measured by a laser measurement device through a zigbee-based network, a data collecting device(20) and a management server(30) storing the water level information supplied from the data collecting device and supporting internet service. The laser measurement device calculates the water level by measuring the distance from the water surface and uses the principle of TOF(Time Of Flight). The data collecting device receives the water level from the system in real time to check whether the water level is normal, and then sends mobile or voice message to a manager or sends the information to the management server.
    • 提供了基于ZigBee的远程水位监控系统,通过使用激光测量设备实时通过基于ZigBee的网络向管理员发送水位信息。 一种基于ZigBee的远程水位监测系统,包括基于ZigBee的远程水位测量系统(10),其能够通过基于ZigBee的网络传输由激光测量装置测量的水位,数据采集装置(20)和 管理服务器(30),存储从数据采集装置提供的水位信息和支持因特网服务。 激光测量装置通过测量与水面的距离来计算水位,并使用TOF(飞行时间)的原理。 数据采集​​装置实时接收系统的水位,检查水位是否正常,然后向管理员发送移动或语音消息,或将信息发送给管理服务器。
    • 68. 发明公开
    • 레이더 수위 측정시스템 및 이러한 시스템에 사용을 위한전송선
    • 雷达电平测量系统和用于这种系统的传输线路探测器
    • KR1020080049831A
    • 2008-06-04
    • KR1020087009324
    • 2006-10-20
    • 로즈마운트 탱크 레이더 에이비
    • 에드바르드손올로프에릭손미카엘
    • G01F23/284G01F23/00G01S13/88
    • G01F23/284
    • A radar level gauge system, for measuring a filling level of a content contained in a tank, said radar level gauge system comprising a transmitter arranged outside said tank and configured to transmit microwave energy, a receiver arranged outside said tank and configured to receive reflected microwave energy, and a transmission line probe, comprising at least one probe line, configured to guide transmitted microwave energy towards and from said content, said probe at least partly disposed inside said tank, wherein said transmission line probe further comprises a dielectric enclosing structure enclosing at least a substantial part of said at least one probe line, wherein said dielectric enclosing structure is arranged to reduce the microwave energy attenuating effect caused by said content to be gauged. An advantage with the above system is its improved accuracy when measuring a filling level of a content contained in a tank, as the attenuation introduced by the content is reduced by the dielectric enclosing structure.
    • 一种雷达液位计系统,用于测量容纳在容器中的内容物的填充水平,所述雷达液位计系统包括布置在所述油箱外部并被配置为传送微波能量的发射器,布置在所述罐外部的接收器,并被配置为接收反射微波 能量和传输线探针,其包括至少一个探针线,其被配置为朝向和从所述内容物引导传输的微波能量,所述探针至少部分地设置在所述罐内,其中所述传输线探针还包括封闭在 所述至少一个探针线的至少大部分,其中所述电介质封闭结构被布置成减少由要测量的所述内容引起的微波能量衰减效应。 上述系统的优点在于,当测量包含在罐中的内容物的填充水平时,由于通过电介质封闭结构减少由内容引入的衰减,其精度提高。
    • 69. 发明公开
    • 이중-모드 레이더 레벨 계량 시스템
    • 双模式雷达电平测量系统
    • KR1020080043886A
    • 2008-05-19
    • KR1020087008867
    • 2006-10-13
    • 로즈마운트 탱크 레이더 에이비
    • 에드바르드손올로프
    • G01F23/284G01F23/00G01S13/08
    • H01Q1/225G01F23/284G01S7/4052G01S7/4056G01S13/88G01S2007/4082H01Q15/14
    • A radar level gauge system for gauging the level of a filling material in a container is disclosed. The system comprises a waveguide extending towards the surface of said filling material; a transmitter for transmitting a microwave signal of a first mode of propagation in the waveguide; and a receiver for receiving the microwave signal reflected against the surface of the filling material and propagating back through the waveguide. Further, it comprises a processing circuitry for determining the filling level of the container based on the reflected microwave signal; and a transition element connecting the waveguide and the transmitter, wherein the transition element is configured to allow a part of the transmitted microwave signal to leak into a second mode of propagation. The first and second modes of propagation are within a frequency band which admits propagation of said microwave signal in the two different modes of propagation in the waveguide, wherein the receiver is arranged to receive the microwave signal in the at least two different modes of propagation.
    • 公开了一种用于测量容器中填充材料的水平的雷达液位计系统。 该系统包括朝向所述填充材料的表面延伸的波导; 用于在所述波导中传送第一传播模式的微波信号的发射机; 以及接收器,用于接收反射到填充材料的表面并通过波导传播的微波信号。 此外,其包括用于基于反射的微波信号确定容器的填充水平的处理电路; 以及连接所述波导和所述发射器的过渡元件,其中所述过渡元件被配置为允许所发射的微波信号的一部分泄漏到第二传播模式中。 第一和第二传播模式在允许在波导中的两种不同传播模式中的所述微波信号的传播的频带内,其中接收机布置成以至少两种不同的传播方式接收微波信号。
    • 70. 发明公开
    • 레이더 수위 측정
    • 雷达电平测量
    • KR1020080023170A
    • 2008-03-12
    • KR1020070090596
    • 2007-09-06
    • 로즈마운트 탱크 레이더 에이비
    • 프뢰빅크리스터
    • G01F23/284G01F23/28G01F23/00
    • G01F23/284G01F25/0061
    • Radar level gauging is provided to analyze the quality of products in a tank and to use a radar level gauge as a water bottom sensor without installing any hardware on the bottom of the tank. During radar level gauging, a method for determining at least one process variable of a product(3) contained in a tank(2) includes the steps of: acquiring a set of distance pairs, wherein each pair includes a first distance measure of the distance to the surface(6) of the product and a second distance measure of the distance to the fixed location in the tank beneath the product surface, and wherein each distance pair is acquired by emitting microwaves into the tank, and allowing them to propagate towards the product, receiving reflected waves from the tank, and determining the first and second distance measures based on the emitted and received microwaves. The distance pairs are used to calculate at least one of the actual distance to the fixed location and a delay factor of the product, based on a relationship between the distance to the product surface, the actual distance to the fixed location, the distance measure of the distance to the fixed location, and the delay factor.
    • 提供雷达液位计,以分析油箱中产品的质量,并使用雷达液位计作为水底传感器,而无需在油箱底部安装任何硬件。 在雷达液位测量期间,用于确定容器(2)中包含的产品(3)的至少一个过程变量的方法包括以下步骤:获取一组距离对,其中每对包括距离的第一距离度量 到产品的表面(6),并且在产品表面下方的罐中的固定位置的距离的第二距离测量,并且其中每个距离对通过将微波发射到罐中而获得,并且允许它们朝向 产品,接收来自罐的反射波,以及基于发射和接收的微波确定第一和第二距离测量。 距离对用于基于与产品表面的距离,到固定位置的实际距离,到固定位置的实际距离,距离测量的距离度量来计算到固定位置的实际距离和产品的延迟系数中的至少一个 到固定位置的距离和延迟因子。