• 제목/요약/키워드: Sub-prime Security

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Professional Security Management and Investigation for the New Competitive Advantage

  • Button, Mark;Lee, Ju-Lak;Kim, Hak-Kyong
    • International Journal of Contents
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    • 제7권3호
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    • pp.71-81
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    • 2011
  • This paper is mainly associated with setting out an agenda for the transformation of security by creating a new framework for a security system, which can maximise its effectiveness. Noticeably, this research shows empirically that crimes are getting a major cost to organisations, which if reduced by security and investigations could reap substantial rewards to the finances of an organisation. However, the problem is that the delivery of security is frequently delegated to personnel (e.g. security guards) with limited training, inadequate education, and no real commitment to professionalism - 'sub-prime' security, finally causing security failures. Therefore, if security can be enhanced to reduce the crime cost, this will produce financial benefits to business, and consequently could produce a competitive advantage. For this, the paper basically draws upon Luke's theoretical framework for deconstructing 'power' into three dimensions. Using this three-dimensional approach, the paper further sets out a model of how security can be enhanced, utilising a new Security Risk Management (SRM) model, and how can this SRM model create competitive advantage in business. Finally, this paper ends with the six strategies needed to enhance the quality of security: refiguring as SRM, Professional Staff, Accurate Measurement, Prevention, Cultural Change, and Metrics.

ECC 기반의 공개키 보안 프로토콜을 지원하는 보안 SoC (A Security SoC supporting ECC based Public-Key Security Protocols)

  • 김동성;신경욱
    • 한국정보통신학회논문지
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    • 제24권11호
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    • pp.1470-1476
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    • 2020
  • 모바일 장치와 IoT의 보안 프로토콜 구현에 적합한 경량 보안 SoC 설계에 대해 기술한다. Cortex-M0을 CPU로 사용하는 보안 SoC에는 타원곡선 암호 (elliptic curve cryptography) 코어, SHA3 해시 코어, ARIA-AES 블록 암호 코어 및 무작위 난수 생성기 (TRNG) 코어 등의 하드웨어 크립토 엔진들이 내장되어 있다. 핵심 연산장치인 ECC 코어는 SEC2에 정의된 20개의 소수체와 이진체 타원곡선을 지원하며, 부분곱 생성 및 가산 연산과 모듈러 축약 연산이 서브 파이프라인 방식으로 동작하는 워드 기반 몽고메리 곱셈기를 기반으로 설계되었다. 보안 SoC를 Cyclone-5 FPGA 디바이스에 구현하고 타원곡선 디지털 서명 프로토콜의 H/W-S/W 통합 검증을 하였다. 65-nm CMOS 셀 라이브러리로 합성된 보안 SoC는 193,312 등가 게이트와 84 kbyte의 메모리로 구현되었다.

Evaluation of lines of NERICA 1 introgressed with Gn1a and WFP for yield and yield components as affected by nitrogen fertilization in Kenya

  • Makihara, Daigo;Samejima, Hiroaki;Kikuta, Mayumi;Kimani, John M.;Ashikari, Motoyuki;Angeles-Shim, Rosalyn;Sunohara, Hidehiko;Jena, Kshirod K.;Yamauchi, Akira;Doi, Kazuyuki
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.323-323
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    • 2017
  • In many sub-Saharan African countries, boosting rice production is a pressing food security issue. To contribute to the increase in rice production, we have developed lines of NERICA 1 introgressed with the gene for spikelet number, Gn1a, and the gene for primary rachis-branch number, WFP by cross breeding. The performance of rice lines introgressed with the genes for yield related traits can be affected by cultivation environment and management. Thus, in this study, we aimed to evaluate the lines of NERICA 1 introgressed with Gn1a or/and WFP for yield and yield components under different nitrogen fertilization conditions in Kenya. A field trial was conducted at a paddy field in Kenya Agricultural and Livestock Research Organization-Mwea, Kirinyaga County ($0^{\circ}39^{\prime}S$, $0^{\circ}20^{\prime}E$) from August 2016 to January 2017. Eight lines of NERICA 1 introgressed with Gn1a and/or WFP, and their parents, NERICA 1 and ST12, were grown under 0 (NF) and $75(SF)kg\;N\;ha^{-1}$. At maturity, five hills per plot were harvested to determine the yield and yield components. The number of primary and secondary rachis-branches per panicle was measured on the longest panicle in each hill. Under SF, the introgression of WFP to NERICA 1 increased the number of primary and secondary rachis-branches by 27 and 25%, respectively. On the other hand, Gn1a did not increase the number of primary rachis-branches, whereas the number of secondary rachis-branches was increased by 38% on average. The number of primary and secondary rachis-branches of the lines introgressed with both genes increased by 25 and 56%, respectively. Although grain number per panicle increased 33% by Gn1a, 34% by WFP, and 43% by Gn1a+WFP, the yield increase by Gn1a, WFP, and Gn1a+WFP was only 14, 7, and 14%, respectively. The suppression of the yield increase was mainly attributed to the decline in the filled grain ratio. Under NF, WFP increased the number of primary and secondary rachis-branches by 20 and 19%, respectively. The introgression of both genes increased the former and the later by 19 and 35%, respectively. However, Gn1a did not change them under NF. Thus, even under NF, grain yield increased 11% by WFP and 24% by Gn1a+WFP due to the increased grain number although filled grain ratio declined. Our findings suggest that the introgression of Gn1a and WFP could contribute to the rice productivity improvement in sub-Saharan Africa even under low fertility conditions. Improving filled grain ratio of the lines introgressed with these genes by further breeding and fertilization management will be the focus of subsequent work.

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