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3篇 您的检索式:作者名="G.Mazza"
    题名 作者 年代 出处 被引量
1Antioxidant activity and total phenolics in elected fruits,vegetables,and grain products显示文摘Y.S.Velioglu G.Mazza L.Gao B.D.Oomah 0,,:1
2CompactPCI/Linux Platform in FTU Slow Control System显示文摘In large fusion experiments, such as tokamak devices, there is a common trend for slow control systems. Because of complexity of the plants, the so-called 'Standard Model' (SM) in slow control has been adopted on several tokamak machines. This model is based on a three-level hierarchical control: 1) High-Level Control (HLC) with a supervisory function; 2) Medium-Level Control (MLC) to interface and concentrate I/O field equipments; 3) Low-Level Control (LLC) with hard real-time I/O function, often managed by PLCs. FTU control system designed with SM concepts has underwent several stages of developments in its fifteen years duration of runs. The latest evolution was inevitable, due to the obsolescence of the MLC CPUs, based on VME-MOTOROLA 68030 with OS9 operating system. A large amount of C code was developed for that platform to route the data flow from LLC, which is constituted by 24 Westinghouse Numalogic PC-700 PLCs with about 8000 field-points, to HLC, based on a commercial Object-Oriented Real-Time database on Alpha/CompaqTru64 platform. Therefore, we have to look for cost-effective solutions and finally a CompactPCI-Intel x86 platform with Linux operating system was chosen. A software porting has been done, taking into account the differences between OS9 and Linux operating system in terms of Inter/NetworkProcesses Communications and I/O multi-ports serial driver. This paper describes the hardware/software architecture of the new MLC system, emphasizing the reliability and the low costs of the open source solutions. Moreover, a huge amount of software packages available in open source environment will assure a less painful maintenance, and will openthe way to further improvements of the system itself.F.Iannone L.Wang C.Centioli M.Panella G.Mazza V.Vitale 2004Plasma Science and Technology2004,6,6:0
3《GAT》独特型网络的分子反应:以合成肽进行研究的一种反应显示文摘Jerne提出的独特型网络,以最简单的级联方式表示如下;G.mazza 柳增善 1989单克隆抗体通讯1989,,3:0
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