• Title/Summary/Keyword: Mission-Critical Computer

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The Design and Reliability Analysis of A Mission-Critical Computer Using Extended Active Sparing Redundancy (확장 ASR 기법을 이용한 임무지향 컴퓨터의 설계 및 신뢰도 분석)

  • Shin, Jin-Beom;Kim, Sang-Ha
    • The KIPS Transactions:PartA
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    • v.16A no.4
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    • pp.235-244
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    • 2009
  • The mission-critical computer for air defense has to maintain its operation without any fault for a long mission time and is required to implement at low cost. Now the reliability of the mission critical-computer using Active Sparing Redundancy fault-tolerant technique is inferior to that of the computer using TMR technique. So in this paper are proposed Extended ASR(EASR) technique that provides higher reliability than that of the computer using TMR technique. The fault-tolerant performance of the implemented mission-critical computer is proven through reliability analysis and numbers of fault recovery test. Also, the reliability of the mission-critical computer using EASR technique is compared with those of computer using ASR and TMR techniques. EASR technique is very suitable to the mission-critical computer.

Design on Flight-Critical Function of Mission Computer for KUH (한국형기동헬기 임무컴퓨터 비행필수기능 설계)

  • Yu, Yeon-Woon;Kim, Tae-Yeol;Jang, Won-Hong;Kim, Sung-Woo;Lim, Jong-Bong
    • Journal of the Korea Institute of Military Science and Technology
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    • v.14 no.2
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    • pp.213-221
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    • 2011
  • Avionics system tends to be designed to have the integrated architecture, and it is getting difficult and complex to verify the flight-critical function because of sophisticated structure. In Korean Utility Helicopter, mission computer acts as the MUX Bus Controller to handle the data from both communication, identification, mission/display and survivability equipment inside Mission Equipment Package and aircraft subsystems such as fuel system and electrical system while it is interfacing with Automatic Flight Control System and Full-Authority Digital Engine Control via ARINC-429 bus. The Flight Displays which is classified as flight-critical function in aircraft is implemented on Primary Flight Display after mission computer processes data from AFCS in order to generate graphics. This paper defines the flight-critical function implemented in mission computer for KUH, and presents the static and dynamic test procedures which is performed on System Integration Laboratory along with Playback Recorder prior to flight test.

Safety Design and Validation of Mission Equipment Package for Korean Utility Helicopter (KUH 임무탑재시스템의 안전성설계 및 검증)

  • Kim, Yoo-Kyung;Kim, Myung-Chin;Kim, Tae-Hyun;Yim, Jong-Bong
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.38 no.8
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    • pp.813-822
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    • 2010
  • Integrated data processing for display of flight critical data and mission critical data was conducted without additional display instruments using glass cockpit design. Based on a pre-designed flight critical system and a mission critical system, this paper shows an optimal design of subsystem integration. The design satisfies safety requirements of flight control systems(FCS) and requires minimized modification of pre-designed systems. By conducting integration test using System Integration laboratory(SIL), it is confirmed that the introduced design approach meets the safety requirements of the MEP system.

A Fault-Tolerant Scheme Based on Message Passing for Mission-Critical Computers (임무지향 컴퓨터를 위한 메시지패싱 고장감내 기법)

  • Kim, Taehyon;Bae, Jungil;Shin, Jinbeom;Cho, Kilseok
    • Journal of the Korea Institute of Military Science and Technology
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    • v.18 no.6
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    • pp.762-770
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    • 2015
  • Fault tolerance is a crucial design for a mission-critical computer such as engagement control computer that has to maintain its operation for long mission time. In recent years, software fault-tolerant design is becoming important in terms of cost-effectiveness and high-efficiency. In this paper, we propose MPCMCC which is a model-based software component to implement fault tolerance in mission-critical computers. MPCMCC is a fault tolerance design that synchronizes shared data between two computers by using the one-way message-passing scheme which is easy to use and more stable than the shared memory scheme. In addition, MPCMCC can be easily reused for future work by employing the model based development methodology. We verified the functions of the software component and analyzed its performance in the simulation environment by using two mission-critical computers. The results show that MPCMCC is a suitable software component for fault tolerance in mission-critical computers.

Reliability Analysis of The Mission-Critical Engagement Control Computer Using Active Sparing Redundancy (ASR 기법을 적용한 임무지향 교전통제 컴퓨터의 신뢰도 분석)

  • Shin, Jin-Beom;Kim, Sang-Ha
    • The KIPS Transactions:PartA
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    • v.15A no.6
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    • pp.309-316
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    • 2008
  • The mission-critical engagement control computer for air defense has to maintain its operation without any fault for a long mission time. The mission performed by large-scale and complex embedded software is extremely critical in terms of dependability and safety of computer system, and it is very important that engagement control computer has high reliability. The engagement control computer was implemented using four processors. The distributed computer composed of four processors quarantees the dependability and safety, and ASR fault-tolerant technique applied to each processor guarantees the reliability. In this paper, the mechanism and performance of ASR fault-tolerant technique are analysed. And MTBF, reliability, availability, and cost-effectiveness for ASR, DMR and TMR techniques applied to the engagement control computer are analysed. The mission-critical engagement control computer using software-based ASR fault-tolerant technique provides high reliability and fast recovery time at a low cost. The mission reliability of the engagement control computer using ASR technique in 4 processors board is almost same the reliability of the computer using TMR technique in 6 processors board. ASR technique is most suitable to the mission-critical engagement control computer.

Optimized Security Algorithm for IEC 61850 based Power Utility System

  • Yang, Hyo-Sik;Kim, Sang-Sig;Jang, Hyuk-Soo
    • Journal of Electrical Engineering and Technology
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    • v.7 no.3
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    • pp.443-450
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    • 2012
  • As power grids are integrated into one big umbrella (i.e., Smart Grid), communication network plays a key role in reliable and stable operation of power grids. For successful operation of smart grid, interoperability and security issues must be resolved. Security means providing network system integrity, authentication, and confidentiality service. For a cyber-attack to a power grid system, which may jeopardize the national security, vulnerability of communication infrastructure has a serious impact on the power grid network. While security aspects of power grid network have been studied much, security mechanisms are rarely adopted in power gird communication network. For security issues, strict timing requirements are defined in IEC 61850 for mission critical messages (i.e., GOOSE). In this paper, we apply security algorithms (i.e., MD-5, SHA-1, and RSA) and measure their processing time and transmission delay of secured mission critical messages. The results show the algorithms satisfying the timing requirements defined in IEC 61850 and we observer the algorithm that is optimal for secure communication of mission critical messages. Numerical analysis shows that SHA-1 is preferable for secure GOOSE message sending.

A Study on Selection of Core Services for Deciding ISMS Scope

  • Kang, Hyunsik;Kim, Jungduk
    • Journal of the Korea Society of Computer and Information
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    • v.22 no.2
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    • pp.51-57
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    • 2017
  • The first thing to be prioritized is to set the scope of the management system when establishing an information security management system for systematic and effective information security management. It is important to set the scope for an organization's information security goals due to the scope affects the organization's overall information security activities. If the scope is set incorrectly, it might become impossible to protect important services and therefore, the scope of the management system should be determined in consideration of the core business services of the organization. We propose a core service selection model based on the organization's mission-critical service and high risk service in order to determine the effective information security management system scope in this paper. Core service selection criteria include the type of service, contribution to sales, socio-economic impact, and linkage with other services.

The OBC Reconfiguration Test on LEO Satellite (저궤도 위성에서 위성탑재컴퓨터의 재구성 시험)

  • Jeong, Jae-Yeop;Lee, Cheol-Hoon
    • Journal of Satellite, Information and Communications
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    • v.12 no.3
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    • pp.103-107
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    • 2017
  • The Satellite OBC(On Board Computer) manages critical functionality such as satellite attitude control, fault management, payload management, command/telemetry processing etc. The OBC consist of various modules. Each module perform mission critical operation. So all modules designed as hot or cold redundancy architecture. The redundancy design gives a guarantee high reliability and it allows normal operation of satellite using reconfiguration capability. In this paper, introduces reconfiguration unit operation and describe the results of testing in the ETB.

A Comparison of Fault Tolerant Ethernet Implementation Approaches (고장 극복 (Fault Tolerant) Ethernet 구현 방안의 비교 분석)

  • Kim, Se Mog;Ko, Yun Min;Choi, Han-Seok;Min, Jung Hyun;Hoang, Anh Pham;Lee, Dong Ho;Rhee, Jong Myung
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.1 no.2
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    • pp.13-20
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    • 2008
  • Reliability is absolutely necessary in most recent mission critical systems which usually utilize the Ethernet based computer networks. A typical way to increase system reliability is to equip the fault tolerant Ethernet. In this paper we try to formulate the fault tolerant dual Ethernet concept and presents a comparison of its implementation approaches. Two types of dual Ethernet configuration are analyzed; the divided and the connected. Then the characteristics of three current implementation approaches which are the hardware based, the software based, and the recently proposed hybrid approach are compared. The results show that the hardware based or the hybrid approaches can be a better solution for the real time mission critical systems. Also for the systems which require the use of Commercial-Off-The-Shelf (COTS) hardware for fault tolerant Ethernet the possible choice is the software based or the hybrid approach.

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Realtime Process Management in A Mission Critical System (미션 크리티컬시스템에서 실시간 처리를 위한 프로세스 관리 방법)

  • Han, Goan-Ho;Park, Geun-Ok;Lim, Jong-Tae
    • Proceedings of the Korea Information Processing Society Conference
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    • 2002.11c
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    • pp.2261-2264
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    • 2002
  • 미션 크리티컬 영역의 실시간 소프트웨어의 프로세스들은 시스템 요구사항에 맞게 제한된 시간안에 수행되도록 프로세스를 설계되고 구현되어야 한다. 본 논문에서는 원자력발전소의 감시와 제어를 담당하는 MMIUNIX 소프트웨어 실시간 프로세스들을 관리 통제하는 방법을 제안한다. 제안한 방법이 원자력 발전소의 특수한 환경에 적합하게 사용할 수 있는지 알아보기 위해서 시간제약 조건 관점에서 성능평가를 수행한다.

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