37 resultados para Software Development– metrics


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提出一种应用软件开发的新方法 ,称为“用户工程”.这是一种基于构件化软件系统结构的用户主导的面向领域的应用软件开发方法 ,强调用户在应用软件开发中的主导作用 ,试图将应用软件的开发过程变成用户详细定义过程 ,而不仅仅是传统的编程过程 .它为越来越多的应用软件开发需求提供了可能有效的一个途径

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在领域工程、基于构件的软件工程和并行工程的基础上,提出了面向大规模定制的软件开发模式。该模式以大规模开发标准软件的效益满足用户的个性化需求。介绍了面向大规模定制的软件开发过程,面向大规模定制的软件产品族体系结构,以及面向大模型定制软件开发的产品集成过程模型。最后介绍了一种面向大规模定制的敏捷软件开发组织。

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软件估算是有半个世纪发展历史的计算机科学领域的一个巨大挑战,因为软件估算涉及到软件项目的成本和计划。开发人员需要能够获得基于他们自己的程序得到的包含了工作量估算的实践。软件成本估算主要估算开发软件系统所需的工作量、时间、人力资源等。一种有效的方式是在项目早期确定成本时估算工作量。软件成本主要依据项目的需求规格说明书来确定。目前,实施可靠、准确的成本估算仍是软件工程领域的一个挑战。 在项目早期阶段,许多项目属性尚未确定。此时的软件估算通常是不准确的,估算 的准确程度取决于用于估算的可靠且可用的信息的数量。在后续的项目分析和设计阶段,对项目的了解更加深入,估算不确定性减少,估算准确性提高。大部分估算模型未考虑这种不确定性,只是得到了确定的估算结果。这些模型需要改进,以得到估计范围和估算结果的发生概率。 新的方法(如:模糊逻辑)可能提供了软件工作量估算的替代方案。软件开发总是可以用一组具有一定程度模糊性的参数来表征。这就需要在模型中引入一定程度的不确定性,以使模型更接近实际。模糊逻辑在这方面很合适。应用模糊逻辑可以解决目前工作量估算模型存在的许多问题。而且,模糊逻辑已经与算法的和非算法的工作量估算模型结合,用于解决固有不确定性问题。 本文提出一种基于模糊逻辑规模的软件开发工作量估算方法。软件规模不是一个单个数字,可以看作是一个三角模糊数(triangular fuzzy number, TFN)。应用本文方法,可以通过改变约束条件对任意常数中的工作量估算结果进行优化。基于对本文方法中模糊权重的平均方差解释%(Variance Accounted For, VAF%) , 提出了一种最优化算法。应用COCOMO 公开数据集进行了验证实验。与实际工作量估算的比较结果表明,基于偏差系数,本文提出的模型提供了较好的估算结果。 最后,提出了一种改进的基于模糊案例的推理(Fuzzy Case-Based Reasoning , FCBR)方法,该方法集成了agent 技术,可以从多个组织的分布式数据库中找到相似项目。基于该方法,可以从分布式预定义的项目成本数据库中收集软件成本数据,进而建立软件成本估算模型。该模型应用FCBR 方法,在不同软件组织的历史软件项目度量数据中找到类似项目。

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Chinese Acad Sci, ISCAS Lab Internet Software Technologies

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The OSGi component architecture for software development can better meet the requirements of current Internet environment in scalability, readability and reusability. This paper presents an approach to refactor legacy softwares towards service-oriented systems using the OSGi as the foundation framework. A case study on reconstructing our Web container system is also involved to validate the approach.

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主要讨论"面向方面软件开发"或"面向方面编程"要如何运用形式化的相关方法来进行模型检测。简单介绍面向方面软件开发的内容,并运用编译器的理论知识来分析面向方面编程相关工具的应用。解释面向方面软件开发在测试代码工作上容易遇到的困难点与常见问题,并解释如何运用已知形式化方法来分析描述这些问题,进行模型检测(model checking),找出代码出错的问题点,阐述如何让面向方面软件开发出来的代码更加强固、稳定与可靠。

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随着控制技术、计算机技术、通信技术的飞速发展,现场总线技术正逐渐取代集散控制技术。PROFIBUS现场总线技术作为应用最为广泛的现场总线技术之一,截止至2008年8月,其安装节点已经超过2500万个,市场份额超过20%。 本文首先深入研究了现场总线国际标准IEC61158-Type3(PROFIBUS标准),分析了PFOFIBUS 现场总线的层次结构模型、各层功能及层间通信关系,然后介绍了PROFIBUS PA的功能块模型,包括块的构成、分类、参数详解,以及把功能块模型映射到模块化DP从站设备的规则等。然后本文采用uC/OS-II嵌入式实时操作系统作为软件平台,应用瑞萨公司M16C/62P系列MCU与中科院沈阳自动化研究所自主研发的FBC0409现场总线通信控制器作为硬件平台,开发了支持PROFIBUS DPV0和DP V1的通信协议栈,并根据PA应用行规(V3.01)编写了相应的功能块程序,并且进行了验证。 本文给出了PROFIBUS DPV0、DPV1实现过程中的主要数据和功能定义,介绍了各层任务的创建初始化,处理过程,绘制了相关的软件流程图。本文给出了编写物理块、功能块、变换块和设备管理的参数定义和读写函数的方法。

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为了实现可重构装配系统的快速重构能力,在分析了传统控制结构的基础上,结合分层递阶和分布式控制的优点,提出了基于多智能体系统的混合控制体系结构。这种结构具有低复杂性、强鲁棒性、易维护性、可扩展性以及可重用性等特点,能够适应重构系统的要求。在遵守智能物理代理基金会规范的前提下,以Java智能体开发平台进行了装配系统中各层智能体的实例开发。

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根据小型自治遥控水下机器人SARV的运动特性,研制了光纤微缆收放的控制系统。设计使用了嵌入式QNX软件开发技术,系统稳定可靠。采用系统辨识的方法,获得被控对象的等效数学模型。采用单神经元自适应PID控制器对控制参数进行在线自调节,实现了SARV在水中运动时光纤收放的恒张力控制,满足光纤收放装置的设计要求。

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深海机器人推进电机系统中出现的混沌现象,直接影响深海机器人稳定性、可靠性和安全性.采用自适应控制技术对其混沌行为加以控制,对该方法的可行性和有效性进行了证明.设计和构造了易于工程实施的混沌控制器,用于深海机器人推进电机系统混沌控制.仿真实验表明,推进电机系统在自适应控制器的作用下可迅速脱离混沌状态,并进入持续稳定状态,控制效果明显.可以为深海机器人推进电机系统中可能出现的混沌运行行为提供控制策略和抑制预案,有利于混沌控制嵌入软件的开发,确保深海机器人稳定、可靠和安全地运行,具有一定的实用价值.

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介绍了一个热网分布式计算机监控系统。包括系统设计目标、系统构成、控制策略、系统通讯、软件实现及系统运行环境。该系统在铁煤集团热电厂运行 ,取得了较好的效果

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Synthetic Geology Information System (SGIS) is an important constituent part of the theory of Engineering Geomechanics Mate-Synthetic (EGMS), and is the information system more suited for the collection, storage, management, analysis and processing to the information coming from engineering geology,' geological engineering and geotechnical engineering. Its contents involve various works and methods of the investigation, design, and construction in different stages of the geological engineering. Engineering geological and three-dimensional modeling and visualization is the fundamental part of the SGIS, and is a theory, method and technique by which, adopting the computer graphics and image processing techniques, the data derived from engineering geological survey and the calculated results obtained from the geomechanical numerical simulation and analysis are converted to the graphics and images displayed on the computer screen and can be processed interactively. In this paper, the significance and realizing approaches of the three-dimensional modeling and visualization for the complex geological mass in the engineering geology are discussed and the methods of taking advantage of the interpolation and fitting for the scattered and field-surveyed data to simulate the geological layers, such as the topography and earth surface, the groundwater table and the stratum boundary, are researched into. At the mean time, in mind the characteristics of the structure of the basic data for three-dimensional modeling, its visual management can be resolved into the engineering surveyed database management module, plot parameter management module and data output module and the requirement for basic data management can be fulfilled. In the paper, the establishment and development of the three-dimensional geological information system are probed tentatively, and an instance of three-dimensional visual Engineering Distribution Information System (EDIS), theConstruction Management Information System for an airport, in which the functions, such as the real-time browse among the three-dimensional virtual-reality landscapes of the airport construction from start to finish, the information query to the airport facility and the building in the housing district and the recording and playback of the animation sets for the browse and the takeoff and landing of the planes, is developed by applying the component-mode three-dimensional virtual-reality geological information system (GIS) software development kits (SDK), so the three-dimensional visual management platform is provided for the airport construction. Moreover, in the gaper, integrated with the three-dimensional topography visualization and its application in the Sichuan-Tibet Highways, the method of the digital elevation model (DEM) data collection from the topographic maps is described, and the three-dimensional visualization and the roaming about the terrain along the highway are achieved through computer language programming. Understanding to the important role played by the varied and unique topographical condition in the gestation and germination of the highly-dense, frequently-arising and severely-endangered geological hazards can be deepened.

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The modeling of petroleum flow path (petroleum charging) and the detail of corresponding software development are presented in this paper, containing principle of petroleum charging, quantitative method, and practical modeling in two oil fields. The Modeling of Petroleum Flow Path is based on the result of basin modeling, according to the principle of petroleum migrating along the shortest path from the source to trap, Petroleum System Dynamics (Prof. Wu Chonglong, 1998), the concept of Petroleum Migration and Dynamic Accumulation (Zhou Donyan, Li Honhui, 2002), etc. The simulation is done combing with all parameters of basin, and considering the flow potential, non-uniformity of source and porous layer. It's the extending of basin modeling, but not belong to it. It is a powerful simulating tool of petroleum system, and can express quantitatively every kind of geology elements of a petroleum basin, and can recuperate dynamically the geology processes with 3D graphics. At result, we can give a result that the petroleum flow shows itself the phenomena of main path, and without using the special theory such as deflection flow in fractures(Tian Kaiming, 1989, 1994, Zhang Fawang, Hou Xingwei, 1998), and flow potential(England, 1987). The contour map of petroleum flow quantitative show clearly where the coteau - dividing slot is, and which convergence region are the main flow path of petroleum, and where is the favorable play of petroleum. The farsighted trap can be determined if there are enough information about structural diagram and can be evaluated, such as the entrapment extent, spill point, area, oil column thickness, etc. Making full use of the result of basin modeling with this new tool, the critical moment and scheme of the petroleum generation and expulsion can be showed clearly. It's powerful analysis tool for geologist.