Sinusoid curve fit is a very useful method in precise measurement, based on the modeling measurement. There are many valuable uses. But, what′s the specifications of the sinusoid curve fit software, and how to eval...Sinusoid curve fit is a very useful method in precise measurement, based on the modeling measurement. There are many valuable uses. But, what′s the specifications of the sinusoid curve fit software, and how to evaluate the uncertainty of it are still unknown yet, because they involve manifold factors and are complicated. Every one using the sinusoid curve fit software wants to know it. In this paper, the basic process and the uses of sinusoid curve fit are described, and some specifications and evaluation methods are introduced. One evaluation example of sinusoid curve fit software is discussed, the results and the specification are good.展开更多
For a purpose of suitable system product development and acquisition successfully, it is extremely important to specify the quality requirement for target system during system design phase, and developing or selecting...For a purpose of suitable system product development and acquisition successfully, it is extremely important to specify the quality requirement for target system during system design phase, and developing or selecting a most suitable product finally from among the alternative candidate products. However, the quality requirements analysis is a very difficult matter because it is non-formulaic and demands much of product customer’s technical perceptiveness. Traditionally, analysis of quality requirements of a product has been conducted through questionnaires or interviews with customers based on survey investigator’s personal experience. This kind of lack of structure and incompleteness in the traditional approach introduced missing requirements and errors in prioritizing requirements to implement in the requirement analysis of a product. On the other hand, we have been working on developing the techniques (SQuaRE) for quality requirements and evaluation for system and software product for a long time in ISO/IECJTC1/SC7WG 6. For the purpose of specify the quality requirement of system product, the method of quantitative quality requirement definitions based on ISO/IEC9126 [1] quality model that includes six characteristics is widely recognized. However, independency among each quality characteristic is not sure and the suitability of method by using these six quality characteristics for quality requirement is not certified statistically. In this paper, we propose the concept of quality requirements definition method based on the SQuaRE quality models define in ISO/IEC25030 [2,3]. Also, this paper proposes the result of verification about effectiveness of quantitative quality requirement definition approach from the view point of six quality characteristics described in ISO/IEC9126.展开更多
射电天文台址内仪器设备众多,电磁环境复杂,电磁兼容设计、屏蔽设计及辐射评估均依赖基于测试的数据处理与分析,而程序化是提高测试及数据分析效率的唯一手段。浅析了电磁辐射评估系统的硬件组成、评估流程、软件开发目标及关键技术点;...射电天文台址内仪器设备众多,电磁环境复杂,电磁兼容设计、屏蔽设计及辐射评估均依赖基于测试的数据处理与分析,而程序化是提高测试及数据分析效率的唯一手段。浅析了电磁辐射评估系统的硬件组成、评估流程、软件开发目标及关键技术点;基于软件需求分析及评估过程中的数据传递、数据处理及数据存储,给出了评估软件的设计流程图、数据流图及二维差值算法流程图;分析了电磁辐射评估过程中主要数据特征,开发了基于数据源、数据库的数据存储及管理模块。其次,基于Microsoft Visual Studio 2010开发平台,通过大量的程序调试与界面优化,完成了电磁辐射评估软件开发,能够对仪器设备辐射特性进行快速测试、分析与评估,为射电天文台址电磁兼容性改造和射电望远镜系统兼容性设计提供重要的参考依据。展开更多
文摘Sinusoid curve fit is a very useful method in precise measurement, based on the modeling measurement. There are many valuable uses. But, what′s the specifications of the sinusoid curve fit software, and how to evaluate the uncertainty of it are still unknown yet, because they involve manifold factors and are complicated. Every one using the sinusoid curve fit software wants to know it. In this paper, the basic process and the uses of sinusoid curve fit are described, and some specifications and evaluation methods are introduced. One evaluation example of sinusoid curve fit software is discussed, the results and the specification are good.
文摘For a purpose of suitable system product development and acquisition successfully, it is extremely important to specify the quality requirement for target system during system design phase, and developing or selecting a most suitable product finally from among the alternative candidate products. However, the quality requirements analysis is a very difficult matter because it is non-formulaic and demands much of product customer’s technical perceptiveness. Traditionally, analysis of quality requirements of a product has been conducted through questionnaires or interviews with customers based on survey investigator’s personal experience. This kind of lack of structure and incompleteness in the traditional approach introduced missing requirements and errors in prioritizing requirements to implement in the requirement analysis of a product. On the other hand, we have been working on developing the techniques (SQuaRE) for quality requirements and evaluation for system and software product for a long time in ISO/IECJTC1/SC7WG 6. For the purpose of specify the quality requirement of system product, the method of quantitative quality requirement definitions based on ISO/IEC9126 [1] quality model that includes six characteristics is widely recognized. However, independency among each quality characteristic is not sure and the suitability of method by using these six quality characteristics for quality requirement is not certified statistically. In this paper, we propose the concept of quality requirements definition method based on the SQuaRE quality models define in ISO/IEC25030 [2,3]. Also, this paper proposes the result of verification about effectiveness of quantitative quality requirement definition approach from the view point of six quality characteristics described in ISO/IEC9126.
文摘射电天文台址内仪器设备众多,电磁环境复杂,电磁兼容设计、屏蔽设计及辐射评估均依赖基于测试的数据处理与分析,而程序化是提高测试及数据分析效率的唯一手段。浅析了电磁辐射评估系统的硬件组成、评估流程、软件开发目标及关键技术点;基于软件需求分析及评估过程中的数据传递、数据处理及数据存储,给出了评估软件的设计流程图、数据流图及二维差值算法流程图;分析了电磁辐射评估过程中主要数据特征,开发了基于数据源、数据库的数据存储及管理模块。其次,基于Microsoft Visual Studio 2010开发平台,通过大量的程序调试与界面优化,完成了电磁辐射评估软件开发,能够对仪器设备辐射特性进行快速测试、分析与评估,为射电天文台址电磁兼容性改造和射电望远镜系统兼容性设计提供重要的参考依据。