• Title/Summary/Keyword: IEEE 1588 PTP

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The study on effective PDV control for IEE1588 (초소형 기지국에서 타이밍 품질 향상을 위한 PDV 제어 방안)

  • Kim, Hyun-Soo;Shin, Jun-Hyo;Kim, Jung-Hun;Jeong, Seok-Jong
    • 한국정보통신설비학회:학술대회논문집
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    • 2009.08a
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    • pp.275-280
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    • 2009
  • Femtocells are viewed as a promising option for mobile operators to improve coverage and provide high-data-rate services in a cost-effective manner Femtocells can be used to serve indoor users, resulting in a powerful solution for ubiquitous indoor and outdoor coverage. TThe frequency accuracy and phase alignment is necessary for ensuring the quality of service (QoS) forapplications such as voice, real-time video, wireless hand-off, and data over a converged access medium at the femtocell. But, the GPS has some problem to be used at the femtocell, because it is difficult to set-up, depends on the satellite condition, and very expensive. The IEEE 1588 specification provides a low-cost means for clock synchronisation over a broadband Internet connection. The Time of Packet (ToP) specified in IEEE 1588 is able to synchronize distributed clocks with an accuracy of less than one microsecond in packet networks. However, the timing synchronization over packet switched networks is a difficult task because packet networks introduce large and highly variable packet delays. This paper proposes an enhanced filter algorithm to reduce ths packet delay variation effects and maintain ToP slave clock synchronization performance. The results are presented to demonstrate in the intra-networks and show the improved performance case when the efficient ToP filter algorithm is applied.

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A Method of the Grandmaster Selection and the Time Synchronization Using Single TimeSync Frame for Audio/Video Bridging (동기식 이더넷에서 단일 타임싱크 프레임을 이용한 그랜드마스터 결정 및 시간 동기 방법)

  • Kang, Sung-Hwan;Lee, Jung-Won;Kim, Min-Jun;Eom, Jong-Hoon;Kwon, Yong-Sik;Kim, Sung-Ho
    • Journal of KIISE:Information Networking
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    • v.35 no.2
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    • pp.112-119
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    • 2008
  • Today, A matter of concern of home network technology increase. The standard of communication between home network devices are required. IEEE 802.1 AVB(Audio/Video Bridging) specifies transmission method for time-sensitive data between these devices using Ethernet in bridged local area networks. IEEE 802.1 AVB and IEEE 1588 PTP(Precision Time Protocol) have various message type for grandmaster selection and synchronize the devices. These messages bring on complexity protocol. We propose a method that uses Single TimeSync frame in order to the problem. Our proposal is appropriate process complexity and low transmission delay for home network by using the TimeSync frame. Furthermore, after all devices are adjusted to the single TimeSync frame, a resource reservation, a forwarding and queueing rule are needed for a time-sensitive application.

The Development of Protocol for Construction of Smart Factory (스마트 팩토리 구축을 위한 프로토콜 개발)

  • Lee, Yong-Min;Lee, Won-Bog;Lee, Seung-Ho
    • Journal of IKEEE
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    • v.23 no.3
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    • pp.1096-1099
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    • 2019
  • In this paper, we propose the protocol for construction of smart factory. The proposed protocol for construction of smart factory consists of an OPC UA Server/Client, a technology of TSN realtime communication, a NTP & PTP time synchronization protocol, a FieldBus protocol and conversion module, a technology of saving data for data transmit latency and synchronization protocol. OPC UA server/client is a system integration protocol which makes interface industrial hardware device and supports standardization which allows in all around area and also in not independent from any platform. A technology of TSN realtime communication provides an high sensitive time management and control technology in a way of sharing specific time between devices in the field of high speed network. NTP & PTP time synchronization protocol supports IEEE1588 standardization. A fieldbus protocol and conversion module provide an extendable connectivity by converting industrial protocol to OPC. A technology of saving data for data transmit latency and synchronization protocol provide a resolution function for a loss and latency of data. Results from testing agencies to assess the performance of proposed protocol for construction of smart factory, response time was 0.1367ms, synchronization time was 0.404ms, quantity of concurrent access was 100ea, quantity of interacting protocol was 5ea, data saving and synchronization was 1,000 nodes. It produced the same result as the world's highest level.

Evaluation of Synchronization Performance with PTP (정밀 시각 프로토콜 동기 성능 평가)

  • Lee, Young-Kyu;Yang, Sung-Hoon;Lee, Chang-Bok;Lee, Jong-Goo;Park, Young-Mi;Lee, Moon-Seok
    • Journal of Institute of Control, Robotics and Systems
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    • v.20 no.6
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    • pp.669-675
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    • 2014
  • In this paper, we described the investigated theoretical time synchronization performances and experiment results obtained by commercially provided PTP (Precise Time Protocol) modules when the time of a slave clock is synchronized to the master clock. In the case of the theoretical performance analysis, we investigated 3 types of clock levels such as Crystal Oscillator (XO), TCXO (Temperature Compensated XO) and OCXO (Oven Controlled XO). From the analysis, it was observed that the synchronization performance is greatly influenced by the synchronization period and the required performance under 1 us can be achieved by using XO level clocks when the synchronization period is less than 2 seconds and the uncertainty of the propagation delay is under 100 ns. For the experiments using commercial PTP modules, the synchronization performance was investigated for direct, through 1 hub and through 2 hubs connections between the master clock and the slave clock. From the experiment results, we observed that time synchronization under 90 ns with 1,000 seconds observation interval can be achieved in the case of direct connection.

IED Redundancy Performance for Full Digital Substation (Full Digital 변전소용 보호 계전기 이중화 통신 기능)

  • Lim, Young-Bin;Kim, Kyung-Ho;Shin, Chul-Ho;Kim, Young-Geun
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.221-222
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    • 2015
  • 디지털 변전소를 위해 IEC61850 국제 표준 프로토콜을 적용한 보호계전기(IED), 게이트웨이, HMI등이 필드에서 사용되고 있고, 전체 디지털 변전소를 위한 병합장치(Merging Unit: MU)등도 실제 운영되고 있다. 디지털 변전소는 기존 변전소를 효과적으로 운영하기 위해 필요한 높은 수준의 가용성과 전송능력이 필요하다. IEC TC 57 WG10은 디지털 변전소를 위한 이중화 사양으로 IEC SG65C WG15의 IEC62439-3/4 고속 절체 네트워크 운영 프로토콜(Highly Available Seamless Redundancy: HSR),(Parallel Redundancy Protocol: PRP)들을 추천하고 있다. 본 논문에서는 프로세스 버스의 병합장치(MU)로부터 계측된 전류와 전압을 고속 이더넷을 통해 샘플 계측값(Sampled Measured Values: SMV)을 전송받고, 고정밀 IEEE1588v2 PTP(Precision Time Protocol) 시각동기를 하며, 스테이션 레벨에서 MMS와 GOOSE 통신을 하는 계전기와 성능에 대한 것이다.

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Technical Trend of Time Synchronization Equipment in Naro Space Center (나로우주센터 표준시각 동기화장비 기술동향)

  • Han, Yoo-Soo;Choi, Yong-Tae
    • Current Industrial and Technological Trends in Aerospace
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    • v.6 no.1
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    • pp.116-123
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    • 2008
  • In the launch mission, mission control systems and tracking systems need time synchronization for data monitoring and data analysis. There are several standards for time synchronization and an adequate standard is selected according to the requirement of time accuracy and cost among time synchronization standards. Oscillators are used to maintain time accuracy. There are some kinds of oscillators with diverse characteristics and an adequate oscillator can be adopted according to time accuracy. In this paper, we will specify characteristics of several oscillators and standards generally used for time synchronization. And we will also introduce TSDN(time synchronization and display network) for time synchronization in Naro Space Center.

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