• Title/Summary/Keyword: 5G wireless communication

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Technical Trends of 5th Generation Wireless Backhaul (5세대 무선 백홀 기술 동향)

  • Moon, Y.J.;Lee, Y.S.;Bang, S.J.;Kim, J.W.;Moon, J.W.;Sohn, K.Y.;Lee, H.
    • Electronics and Telecommunications Trends
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    • v.33 no.5
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    • pp.24-32
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    • 2018
  • With the advent of new convergence services, the requirements of 5G mobile communication systems are being newly derived. The 5G mobile communication system has been evolving to solve requirements that cannot be satisfied with existing 4G mobile communication systems, such as a high user experience transmission rate, short transmission delay, and high connection density. The evolution of a 5G mobile communication system to meet the new requirements is expected to be dominated by the UDN environment in which a number of small cells are concentrated. The 5G wireless backhaul system, which has advantages in terms of initial installation and operation cost, is expected to be an indispensable choice for connecting many small cells and core networks. This paper therefore looks at the frequency band characteristics and requirements applicable to 5G wireless backhaul systems that can accommodate new situations, and introduces key related technologies that can satisfy the 5G wireless backhaul requirements.. In addition, we describe the research and development trends of a 5G wireless backhaul system that is currently under development.

Research Trends of Ultra-reliable and Low-latency Machine Learning-based Wireless Communication Technology (기계학습기반 초신뢰·저지연 무선통신기술 연구동향)

  • Lee, H.;Kwon, D.S.
    • Electronics and Telecommunications Trends
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    • v.34 no.3
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    • pp.93-105
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    • 2019
  • This study emphasizes the importance of the newly added Ultra-Reliable and Low-Latency Communications (URLLC) service as an important evolutionary step for 5G mobile communication, and proposes a remedial application. We analyze the requirements for the application of 5G mobile communication technology in high-precision vertical industries and applications, introduce the 5G URLLC design principles and standards of 3GPP, and summarize the current state of applied artificial intelligence technology in wireless communication. Additionally, we summarize the current state of research on ultra-reliable and low-latency machine learning-based wireless communication technology for application in ultra-high-precision vertical industries and applications. Furthermore, we discuss the technological direction of artificial intelligence technology for URLLC wireless communication.

A Study on the Implementation of simple Portable Directional Finding System for 5G Mobile Communication (5G 이동통신용 간이 방향탐지시스템 구현에 관한 연구)

  • Noh, Jowon;Joh, Eungyoung;Kim, Jin-Tea;Lee, Sunghwa
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.3
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    • pp.25-30
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    • 2020
  • This study is to provide high-quality mobile communication service to subscribers and wireless communication users in a Mobile communication environment. It is about a method to secure the quality of a call by early processing a faulty radio station. The purpose of this study is to design and implement a direction detection system suitable for a mobile communication environment and portable as a method for early detection and resolution of interference and illegal wireless stations occurring in 5G mobile communication. The basic configuration of a portable direction detection system was designed, and a method was proposed to find and repair a faulty wireless station in a short time through manufacturing and experimentation.

Wideband RF Interference Reduction Module

  • Kang, Sanggee;Hong, Heonjin;Chong, Youngjun
    • International journal of advanced smart convergence
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    • v.11 no.3
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    • pp.28-35
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    • 2022
  • Interference always exists between wireless communication systems used in the same frequency band or adjacent frequency bands. In order to deploy a new wireless communication system such as a 5G system, a new frequency band must be allocated to the system. For this purpose, after analyzing interference between the existing system and the new system, a method of setting a frequency guard band or a minimum separation distance has been used as a passive method to limit the interference effect. This paper presents a wideband RF IRM(Interference Reduction Module) that can actively reduce the influence of interference between wireless communication systems. The wideband RF IRM can reduce the interference effects of 5G signals on satellite signals. The principle and structure of the wideband RF IRM are presented. The wideband RF IRM can suppress approximately 20dB of interference signal in 100MHz bandwidth when only interference signal exists. It also shows that when a 5G interference signal of -45dBm/100MHz and a satellite signal of -55dBm/40MHz exist simultaneously at a center frequency of 3.83GHz, about 15dB of 5G interference signal can be reduced in the frequency range covered by the satellite signal. The experimental results demonstrate that the wideband RF IRM can actively reduce the 5G interference signal on the satellite signal and can be used for the purpose of reducing the interference effect in a similar environment.

Data Error Compensation Estimation Technology for Providing High Quality Contents in IoT Environment (IoT 환경에서 고품질 콘텐츠 제공을 위한 데이터 오류 보상 추정 기술)

  • Kim, Jeong Su
    • The Journal of the Convergence on Culture Technology
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    • v.5 no.3
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    • pp.333-338
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    • 2019
  • Cultural contents are the most important factor in high speed and high quality data communication. High-quality content includes VR and AR technology, and a variety of high-quality content can be streamed over wireless mobile phones via smartphones. In addition, network and wired/wireless communication are inevitably required in an Internet of Things (IoT) environment in which things are connected to a wireless Internet. IoT is used in various network technologies such as 4G, 5G mobile communication, WIFI wireless LAN, Bluetooth and so on. It is a technology that can use the connection between things anytime, anywhere, and can be achieved in a wireless mobile communication environment. Therefore, in this paper, we study data error compensation estimation method which can reduce data error based on mobile communication channel environment analysis so that high quality contents can be serviced even in high speed mobile environment.

An Enhanced Control Protocol Design for LADN in 5G Wireless Networks

  • Kim, Jae-Hyun
    • Journal of the Korea Society of Computer and Information
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    • v.25 no.12
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    • pp.109-117
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    • 2020
  • In this paper, we analyze LADN(Local Area Data Network) that provides high throughput, low latency and service localization for 5G wireless networks and propose an enhanced control protocol design for LADN in 5G wireless networks. The concept of LADN is newly introduced in 3GPP 5G communication system and the LADN is a data network to which the UE(User Equipment) can connect with a specific LADN session only when the UE is located in a certain service area. If the LADN information between the UE and core network is not identical, the LADN session cannot be properly established. The proposed approach promplty synchronizes the LADN information between the UE and core network by using the specific registration procedure and appropriately establishes the LADN session, when the establishment of the LADN session is failed. Consequently, the proposed enhanced control protocol design(ECP) can prevent unnecessary signalling overhead and communication delay for LADN in 5G wireless networks.

Technical Trends of Ultra-Reliable Low-Latency Communication for 5G (5G URLLC 기술 동향)

  • Park, O.S.;Kim, S.K.;Park, G.Y.;Shin, W.R.;Shin, J.S.
    • Electronics and Telecommunications Trends
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    • v.34 no.6
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    • pp.42-50
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    • 2019
  • The fifth generation (5G) wireless technology is expected to be the trigger for the fourth industrial revolution. In particular, 5G ultra reliable low latency communication (URLLC) is expected to lead the wireless automation in vertical domains. In this paper, we analyze use cases, key metrics, and physical layer technologies for 5G URLLC standardized in $3^{rd}$ Generation Partnership Project Radio Access Network (3GPP RAN). Additionally, we discuss enabling RAN technologies towards beyond 5G to support high reliability and low latency.

Calculation of TDD-based Occupied Frequency Bandwidth in Technique Criteria for 4G Mobile Communication (4세대 이동통신용 기술기준에 적합한 TDD 기반의 점유주파수 대역폭 도출)

  • Hyun, Young-Ju;Lee, Young-Hwan;Jang, Dong-Won;Kim, Kyung-Seok
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.7A
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    • pp.730-737
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    • 2007
  • The new wireless multimedia environment is coming because of the variety of an user requirement and a traffic increase which we can not accept in the IMT-2000 present systems. To offer the wireless multimedia service the world wireless communication company which included the ITU-R is developing the standard and technique of 4G systems. We analyzed the technique criteria of the 4G wireless communication system in this paper which is based on that of WiBro System. We referred to the technique criteria of the WiBro system and deduced an occupied frequency bandwidth which is the common element of the uplink and downlink system among main wireless communication technique criteria. And we verified this through the simulation. So we proposed the occupied frequency bandwidth for 4G wireless communication in this paper.

Implementation of Mini Chip Antenna suitable for Ubiquitous Environment (유비쿼터스 환경에 적합한 소형 칩 안테나 구현)

  • Kang, Jeong-Jin;Choi, Jong-In;Lee, Young-Dae;Hong, You-Sik
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.8 no.3
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    • pp.81-86
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    • 2008
  • The paradigm of information & communication is rapidly changed into ubiquitous environment based electromagnetic wave, and antenna technology in the wireless ubiquitous communication is remarkably developed. Mini chip antenna has its within small card compared to the external AP antenna. Designed and Fabricated WLAN antenna has a broadband characteristics of 2.4~2.5GHz and 4.9~5.85GHz, and can be used triple mode of IEEE 802.11.a,g.b, and it has comparatively a constant performance in the dual frequency band.

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Photonics-based Terahertz Wireless Communication (포토닉스 기반 테라헤르츠 무선통신 기술 동향)

  • Kim, H.S.;Lee, E.S.;Park, D.W.;Lee, I.M.;Moon, K.;Choi, D.H.;Shin, J.H.;Kim, M.G.;Choi, K.S.;Park, K.H.
    • Electronics and Telecommunications Trends
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    • v.34 no.3
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    • pp.75-85
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    • 2019
  • The bandwidth of wireless communication is expected to grow exponentially due to the expansion of mobile devices and the increase of real-time and realistic multimedia services. Recently, the studies on terahertz band wireless communication have been actively conducted for the next generation communication after 5G wireless communication. The terahertz band, which is the unallocated frequency band, has been applied to the non-contact, non-destructive quality inspection industry such as the terahertz imaging and spectral systems through the development of terahertz generating and detecting components. This article briefly describes recent research trends on terahertz wireless communication technologies and introduces the details of photonics-based terahertz devices and systems that have been focused on the Terahertz Basic Research Section of Electronics and Telecommunication Research Institute.