• 제목/요약/키워드: High-frequency floor

검색결과 145건 처리시간 0.03초

이동로봇을 위한 RFID Smart Floor (RFID Smart Floor for Mobile Robot)

  • 강수혁;김용호;문병준;김동한
    • 전자공학회논문지 IE
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    • 제48권4호
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    • pp.30-39
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    • 2011
  • 본 논문에서는 Smart Floor라는 새로운 개념의 정보공간을 제안한다. Smart Floor는 이동로봇의 경로유도에 필요한 정보를 저장하고 있는 공간으로, 이동로봇은 외부의 도움 없이 목표위치에 도달할 수 있다. 이를 위하여 RFID 태그 포장을 통하여 Smart Floor를 구현하고, UHF(Ultra High Frequency) 대역의 수동 RFID 시스템을 장착한 이동로봇을 제작하였다. Smart Floor에 저장되는 정보는 Q학습을 통해 미리 시뮬레이션 된 값으로, 임의의 시작위치에서 목표위치까지 가는데 필요한 방향값과 Q값이다. 본 연구는 Smart Floor의 구성과 정보를 이용하는 이동로봇 어플리케이션 개발에 도움을 줄 것이다.

경계조건의 조절에 따른 합성 데크플레이트 슬래브의 거동특성에 관한 연구 (A Study on the Dynamic Characteristics of Composite Deck Plate According to the Modification of Boundary Conditions)

  • 김우영;정은호;엄철환;김희철
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1998년도 춘계학술대회논문집; 용평리조트 타워콘도, 21-22 May 1998
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    • pp.371-376
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    • 1998
  • As the requirement of high-rise buildings in big cities increases, steel structural system becomes more popular in spite of the relatively higher material cost compared to that of the concrete structural system. Most of the steel structure adopts metal deck floor system because of the easiness in construction. However, the metal deck floor system has a weakness on vibration which became very important factor in office buildings, hotels and residential buildings as the more sensitive machines being used. Therefore, most, of the building codes in many countries restrict the natural frequency of the each floor should be higher than or equal to 15 Hz. Floor vibration of the KEM deck composite floor system which has been , developed recently from the engineers and scientists in Korea was measured. Also, the simplified analytical derivation of natural frequency for each floor was studied according to the measured natural frequency for each different boundary condition of the floor. As the length of the slab gets bigger, the natural frequency of the slab becomes lower even though the structural designer still considers it as a one-way slab.

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국내(國內) 인텔리전트 사무소(事務所) 건물(建物)의 건축계획(建築計劃) 관련지표(關聯指標) 추이(推移) 분석(分析) (An Analysis of the Transition of Architectural Data on the Intelligent Office Building in Korea)

  • 변계성
    • 한국디지털건축인테리어학회논문집
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    • 제2권1호
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    • pp.24-31
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    • 2002
  • The purpose of this study was to analyze the transition on architectural data such as valid indoor length, module, ratio of core, floor height, ceiling height and the type of structured cabling system according to the intelligent building grade through case study of the intelligent office buildings constructed in Korea since 1980. The results of this study were as follows. The average floor height was 3.80m, and it was higher in proportion to the IB grade. The average ceiling height was 2.57m, and it didn't have connection with the IB grade. The module of high frequency in application was $3.0{\times}3.0m$, and it showed 25% in the application frequency. The average valid indoor length was 12.27m. The average ratio of core was 24.49%. The type of high frequency in application for the structured cabling was Access Floor Type, and it showed 31% in the application frequency.

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공동주택에서 완충재를 이용한 바닥충격음 저감 System 연구 (Investigating of a Floor-Impact Isolation System Using Damping Materials In Apartment Buildings)

  • 송희수;정영;정정호;전진용
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 춘계학술대회논문집
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    • pp.499-504
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    • 2004
  • The purpose of this study is to investigate a investigating of a floor-impact isolation system using damping materials in apartment buildings. The stiffness elastic modulus(k) by puls impact forces were calculated loss factor by Hilbert transforms. It is absolved that natural frequency was moved floor shock-absorbing materials and the impact force was reduced by floor panel. The slab was constructed by damping materials. As towards a result, the system showed inverse A 45dB by heavy weight-impact noise and inverse A 52dB by light-impact noise. High frequencies impact-noise can be reduced by upgrading naturial frequency of vibration and noise in the system.

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Numerical study on Floor Response Spectrum of a Novel High-rise Timber-concrete Structure

  • Xiong, Haibei;Zheng, Yingda;Chen, Jiawei
    • 국제초고층학회논문집
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    • 제9권3호
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    • pp.273-282
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    • 2020
  • An innovative high-rise timber-concrete hybrid structure was proposed in previous research, which is composed of the concrete frame-tube structure and the prefabricated timber modules as main structure and substructures, respectively. Considering that the timber substructures are built on the concrete floors at a different height, the floor response spectrum is more effective in estimating the seismic response of substructures. In this paper, the floor response spectra of the hybrid structure with different structural parameters were calculated using dynamic time-history analysis. Firstly, one simplified model that can well predict the seismic response of the hybrid structure was proposed and validated. Then the construction site, the mass ratio and the frequency ratio of the main-sub structure, and the damping ratio of the substructures were discussed. The results demonstrate that the peaks of the floor response spectra usually occur near the vibration periods of the whole structure, among which the first two peaks stand out; In most cases, the acceleration amplification effect on substructures tends to be more evident when the construction site is farther from the fault rupture; On the other hand, the acceleration response of substructures can be effectively reduced with an appropriate increase in the mass ratio of the main-sub structure and the damping ratio of the substructures; However, the frequency ratio of the main-sub structure has no discernible effect on the floor response spectra. This study investigates the characteristics of the floor response spectrum of the novel timber-concrete structure, which supports the future applications of such hybrid structure in high-rise buildings.

Evaluation of Impact Sound Insulation Properties of Light-Framed Floor with Radiant Floor Heating System

  • Nam, Jin-Woo;Park, Joo-Saeng;Lee, Jun-Jae
    • Journal of the Korean Wood Science and Technology
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    • 제30권3호
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    • pp.75-84
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    • 2002
  • In order to find out impact insulation properties, various types of current radiant floor heating systems and light-framed floors that are used in light-framed residential buildings were evaluated for two types of impact sources at the same time. Sound Pressure Level (SPL) was different from each impact sources for those spectrum patterns and peaks. In case of light-framed floor framework, the excitation position and the assumed effective vibrating area have effects on sound pressure level but it is not considerable, and Normalized SPL was reduced for each frequency by increasing the bending rigidity of joist. The mortar layer in the radiant heating system had relatively high density and high impedance, therefore, it distributed much of the impact power when it was excited, and reduced the Normalized SPL considerably. Nevertheless, Increasing a thickness of mortar layer had little influence on SPL. Ceiling components reduced the sound pressure level about 5~25 dB for each frequency. Namely, it had excellent sound insulation properties in a range from 200 to 4,000 Hz frequency for both heavy and lightweight impact sources. Also, there was a somewhat regular sound insulation pattern for each center frequency. The resilient channel reduced the SPL about 2~11 dB, irrelevant to impact source. Consequently, current radiant floor heating systems which were established in light-framed residential buildings have quite good impact sound insulation properties for both impact sources.

연구소(硏究所) 건물(建物)의 슬래브 진동(振動) 성능개선(性能改善) 연구(硏究) (A Study on the Control of the Floor Vibration in a Research Building)

  • 백인희;강호섭;손영규
    • 한국건축시공학회지
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    • 제7권3호
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    • pp.75-82
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    • 2007
  • A vibration in the building occurs by influences of the facility equipment and the structural system. As the building recently becomes higher and bigger, the vibration in the floor slab is issued. Specially, the vibration with $4{\sim}8Hz$ frequency is harder to control than any other range of frequency. This vibration easily affects human sensibility and often makes the resonance phenomenon by corresponding with the floor slab's natural frequency when people and heavy equipments move. Moreover, the permission regulations for the vibration of the building are established by building's purposes. However, it is not subdivided in detail and sometimes ambiguous to each client. Even though the vibration could cause negative influences in a research building, there is not the vibration criterion for a research building. Therefore, it is necessary to set up its own vibration criterion with the client before building and to keep checking this vibration criterion under the construction. This study proposes the reasonable control methods and the vibration criterion for floor slab's vibration which are adapted to the R4-project. The R4-project is a research building and a high-rise building also. Accordingly, this study could help to the next similar project in the design and the construction phase.

Vibration behavior of large span composite steel bar truss-reinforced concrete floor due to human activity

  • Cao, Liang;Li, Jiang;Zheng, Xing;Chen, Y. Frank
    • Steel and Composite Structures
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    • 제37권4호
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    • pp.391-404
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    • 2020
  • Human-induced vibration could present a serious serviceability problem for large-span and/or lightweight floors using the high-strength material. This paper presents the results of heel-drop, jumping, and walking tests on a large-span composite steel rebar truss-reinforced concrete (CSBTRC) floor. The effects of human activities on the floor vibration behavior were investigated considering the parameters of peak acceleration, root-mean-square acceleration, maximum transient vibration value (MTVV), fundamental frequency, and damping ratio. The measured field test data were validated with the finite element and theoretical analysis results. A comprehensive comparison between the test results and current design codes was carried out. Based on the classical plate theory, a rational and simplified formula for determining the fundamental frequency for the CSBTRC floor is derived. Secondly, appropriate coefficients (βrp) correlating the MTVV with peak acceleration are suggested for heel-drop, jumping, and walking excitations. Lastly, the linear oscillator model (LOM) is adopted to establish the governing equations for the human-structure interaction (HSI). The dynamic characteristics of the LOM (sprung mass, equivalent stiffness, and equivalent damping ratio) are determined by comparing the theoretical and experimental acceleration responses. The HSI effect will increase the acceleration response.

구조물 및 기기의 내진성능 평가를 위한 고주파수 지진에 의한 원자력발전소의 지진응답 증폭계수 (Seismic Response Amplification Factors of Nuclear Power Plants for Seismic Performance Evaluation of Structures and Equipment due to High-frequency Earthquakes)

  • 임승현;최인길;전법규;곽신영
    • 한국지진공학회논문집
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    • 제24권3호
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    • pp.123-128
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    • 2020
  • Analysis of the 2016 Gyeongju earthquake and the 2017 Pohang earthquake showed the characteristics of a typical high-frequency earthquake with many high-frequency components, short time strong motion duration, and large peak ground acceleration relative to the magnitude of the earthquake. Domestic nuclear power plants were designed and evaluated based on NRC's Regulatory Guide 1.60 design response spectrum, which had a great deal of energy in the low-frequency range. Therefore, nuclear power plants should carry out seismic verification and seismic performance evaluation of systems, structures, and components by reflecting the domestic characteristics of earthquakes. In this study, high-frequency amplification factors that can be used for seismic verification and seismic performance evaluation of nuclear power plant systems, structures, and equipment were analyzed. In order to analyze the high-frequency amplification factor, five sets of seismic time history were generated, which were matched with the uniform hazard response spectrum to reflect the characteristics of domestic earthquake motion. The nuclear power plant was subjected to seismic analysis for the construction of the Korean standard nuclear power plant, OPR1000, which is a reactor building, an auxiliary building assembly, a component cooling water heat exchanger building, and an essential service water building. Based on the results of the seismic analysis, a high-frequency amplification factor was derived upon the calculation of the floor response spectrum of the important locations of nuclear power plants. The high-frequency amplification factor can be effectively used for the seismic verification and seismic performance evaluation of electric equipment which are sensitive to high-frequency earthquakes.

반송파 주파수 옵셋에 따른 OFDM M-ary QAM 시스템의 성능 분석 (Performance of OFDM M-ary QAM System in the presence of Carrier Frequency Offset)

  • 계선형;유형석;서종수
    • 한국통신학회논문지
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    • 제24권6B호
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    • pp.1024-1031
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    • 1999
  • 본 논문에서는 고속 광대역의 정보신호를 다중경로 페이딩 환경에서 효율적으로 전송하기 위하여 M-ary QAM(Quadrature Amplitude Modulation) 신호와 OFDM(Orthogonal Frequency Division Multiplexing : 직교 주파수 분할 다중화) 전송방식을 사용할 때, 반송파의 주파수 \ulcorner셋이 발생하는 동기오차가 수신시스템에 미치는 영향과 이에 따른 OFDM-16QAM 및 OFDM-64QAM의 수신 SER(Symbol Error Rate) 성능을 분석하였다. 분석 결과, OFDM 전송시스템에서 반송파의 주파수 \ulcorner셋에 의한 인접 부채널간 간섭은 부반송파의 개수에 비례하여 크게 증가하였고, 높은 신호대 잡음전력비에서도 SER 성능에 error floor가 발생하였다. 즉, OFDM-64QAM의 경우, OFDM-16QAM보다 주파수 \ulcorner셋에 의한 SER 성능열화가 커서 정규화된 반송파의 주파수 \ulcorner셋이 0.011일 때 SER=1$\times$10-7에서 error floor가 발생하였다. 따라서, 본 연구를 통해 OFDM-16QAM과 OFDM-64QAM 시스템에서 요구 SER 성능을 만족하기 위해 허용 가능한 최대 주파수 \ulcorner셋을 결정할 수 있다.

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