877 resultados para user testing, usability testing, system integration, thinking aloud, card sorting
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当利用AFM作为纳米操作工具时,由于其缺乏实时的传感器信息反馈,操作完全在盲目的状态下进行,而使纳米操作难于进行。超媒体接口可以解决这个问题,在纳米操作过程中,超媒体接口不但可以为操作者提供实时动态更新的视觉反馈,还可以为操作者提供实时的三维力反馈,与此同时操作者还可以通过该接口直接控制探针的三维运动,实现人机交互式的纳米操作。纳米刻画以及多壁碳纳米管的推动实验验证了系统的效率和有效性。
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本文针对异构分布环境下的多机器人系统 ,提出了一种基于 CORBA规范和框架请求代理 (FRB)这一方式的应用系统集成模型 .为实现分布异构环境下的多机器人的通信、协同、编程 ,支持系统任务重组与重构、应用互操作提供一条有效途径 .并给出了一个自行设计的面向多机器人基于CORBA的对象互操作的方法、机制 .给出基于 CORBA的应用编程接口 (API)与扩展接口定义语言X- IDL,通过基于 CORBA的多机器人基本对象类的建立与对象的实现 ,实现基于 CORBA的多机器人互操作与开放分布处理原型系统 .
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简介了渤海造船厂计算机集成制造系统(BS-CIMS)的系统结构,系统组成(工程设计、经营管理、财务管理、生产管理、建造作业和质量管理6个应用分系统),信息分类编码原则,计算机支撑环境,分系统之间信息界面和系统集成方案。
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现在企业系统与控制系统的主流的集成技术为基于中间件的系统集成,即通过中间件的桥梁作用把各种ERP和MES系统连接起来,实现信息在两者之间的交互与共享。因此本文提出“信息集成内容遵循S95标准,消息封装格式应用XML技术,企业应用集成平台采用BizTalkserver来实现”的中间件集成方法,最后应用此中间件引擎给出了一个在MES与ERP系统之间实现信息集成的示例。
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随着网络技术、特别是Internet技术的发展,分布式系统的高睦能、高可靠性、高灵敏度、可扩展性和系统透明性使得基于分布式系统的应用越来越广泛。在分布式坏境下,信息系统的集成是必须认真考虑的问题。研究如何集成和统一访问分布的、异构的数据资源,实现各种数据的转换、交流与共享;以及如何建立一个开放、可扩展和异构兼容的新一代信息管理系统成为当今网络应用的重要研究方向。本文针对建立月球探测数据管理和集成系统的数据集成与操作集成两方面的内容,重点分析和研究了数据存储管理和系统集成技术,结合月球探测数据管理的应用集成需求与特点提出了基于XML技术的数据存储与管理和基于Web Service技术的系统集成方案。并利用XML/WebService技术基于Net平台开发了一个月球探测数据管理与集成系统实例。研究内容主要包括以下四个方面: (1)基于XML的数据模型与数据库存储。利用XML的自描述性、独立于平台和应用、半结构化,机器可处理、可扩展性以及便于网络传输和广泛支持的特性,实现了基于关系数据库的XML数据存储。对系统中的结构化和非结构化数据信息、都进行了XML标记定义,实现了信息存储和查询的小粒度,增强了数据的表示、查询、插入和删除等数据处理能力和效率。同时,利用XML作为月球探测数据交换和信息传输的格式,也为实现与异构系统数据的互操作提供了理想的角军决方案。(2)基于WebServices的分布式信息系统集成的体系结构。在对XML、SOAP、WSDL和UDDI关键技术和标准规范进行研究与探讨基础上,针对绕月探测数据管理的需求提出了基于XML/Web Service的三层分布式结构模型。分别是表示层、应用逻辑层、服务端数据层。实现了系统功能的可迁移性和可装配性、各层间传输过程中数据流的XML化、接口定义的动态性。与传统技术开发的耦合的分布式应用系统相比,系统在跨平台性、可配置性、可伸缩性、可维护性等方面都有了大幅度的提高。(3)基于,NET平台系统的开发与实现。深入分析和研究了Mic1’osoft.NET平台的核心技术与整体技术框架,在VisLla1Sttldio.NET开发环境中利用C#、ASP.NET、ADO.NET基于关系型数据库Oracle9i开发实现了统一身份认证系统和月球探测数据管理与集成系统。统一身份认证系统是一个通用的统一用户身份认证管理系统,包括用户管理、身份验证、实体管理、日志监控和消息、管理等功能,达到了一次登录,所有系统共用的目的。月球探测数据管理与集成系统包括数据管理、信息发布、系统管理、综合查询和应用集成五大功能模块,相对于原来的紧祸合的应用系统而言,系统的开发效率、重用性、祸合度、灵活性和自适 应性都有了很大的提高。(4)基于XML/WebServices的动态系统集成。分析了传统分布式对象模型在异构环境集成的弊端,基于XML、SOAP和WSDL等技术规范基础上,实现了统一身份认证系统、月球探测数据管理与集成系统、小空间碎片数据库系统以及其它语言开发的应用系统的信息集成、实现了资源时空的有效整合。通过这些集成应用实例,充分体现和说明了Web Services技术在应用系统集成方面的优越性。本研究的成果,也将为地球化学研究领域涉及海量数据的处理、管理和系统集成提供示范实例,推动地球化学数据的融合和综合应用。
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The M-Machine is an experimental multicomputer being developed to test architectural concepts motivated by the constraints of modern semiconductor technology and the demands of programming systems. The M- Machine computing nodes are connected with a 3-D mesh network; each node is a multithreaded processor incorporating 12 function units, on-chip cache, and local memory. The multiple function units are used to exploit both instruction-level and thread-level parallelism. A user accessible message passing system yields fast communication and synchronization between nodes. Rapid access to remote memory is provided transparently to the user with a combination of hardware and software mechanisms. This paper presents the architecture of the M-Machine and describes how its mechanisms maximize both single thread performance and overall system throughput.
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This report describes a domain independent reasoning system. The system uses a frame-based knowledge representation language and various reasoning techniques including constraint propagation, progressive refinement, natural deduction and explicit control of reasoning. A computational architecture based on active objects which operate by exchanging messages is developed and it is shown how this architecture supports reasoning activity. The user interacts with the system by specifying frames and by giving descriptions defining the problem situation. The system uses its reasoning capacity to build up a model of the problem situation from which a solution can interactively be extracted. Examples are discussed from a variety of domains, including electronic circuits, mechanical devices and music. The main thesis is that a reasoning system is best viewed as a parallel system whose control and data are distributed over a large network of processors that interact by exchanging messages. Such a system will be metaphorically described as a society of communicating experts.
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Poster pokazuje metody komunikacji z czytelnikiem stosowane w Bibliotece Uniwersyteckiej w Poznaniu w technologii mediów cyfrowych. Cyfrowe narzędzia komunikacji stały się bardzo pomocne, niemal niezbędne w pozyskiwaniu nowych czytelników, podtrzymywaniu i rozwijaniu współpracy w społeczności w sieci Web.2.0, zarówno tej globalnej, jak i lokalnej akademickiej. Strona WWW jako statyczna komunikacyjnie jest wspierana przez fora dyskusyjne, chaty, wideokonferencje, warsztaty informacyjne, które są prowadzone w czasie rzeczywistym. Twórczą siłę relacji społecznych z biblioteką rozwinęły interaktywne serwisy społecznościowe (Facebook) oraz komunikatory internetowe integrowane na platformie Ask a Librarian. Biblioteka stała się Biblioteką 2.0 ukierunkowaną na komunikację z czytelnikiem. Aktywne uczestnictwo i udział czytelników przy tworzeniu zasobów naukowych wdrożyliśmy w projekcie instytucjonalnego repozytorium - Adam Mickiewicz Repository (AMUR). Biblioteka zmienia się dla czytelników i z czytelnikami. Wykorzystywane platformy i serwisy społecznościowe dostarczają unikatowych danych o nowych potrzebach informacyjnych i oczekiwaniach docelowego Patrona 2.0, co skutkuje doskonaleniu usług istniejących i tworzeniu nowych. Biblioteka monitoruje usługi i potrzeby czytelników przez prowadzone badania społeczne. Technologie cyfrowe stosowane w komunikacji sprawiają, iż biblioteka staje się bliższa, bardziej dostępna, aby stać się w rezultacie partnerem dla stałych i nowych czytelników. Biblioteka Uniwersytecka w Poznaniu bierze udział w programach europejskich w zakresie katalogowania i digitalizacji zasobu biblioteki cyfrowej WBC, w zakresie wdrożenia nowych technologii i rozwiązań podnoszących jakość usług bibliotecznych, działalności kulturotwórczej (Poznańska Dyskusyjna Akademia Kominksu, deBiUty) i edukacji informacyjnej. Biblioteka Uniwersytecka w Poznaniu jest członkiem organizacji międzynarodowych: LIBER (Liga Europejskich Bibliotek Naukowych), IAML (Stowarzyszenie Bibliotek Muzycznych, Archiwów i Ośrodków Dokumentacji), CERL - Europejskie Konsorcjum Bibliotek Naukowych.
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After 9/11, it has become increasingly obvious that strongly held religious convictions about the end of the world cannot be dismissed as the predictable consequences of deprivation, as several generations of social scientists once claimed. Instead, it has become clear that these kinds of ideas, having a life of their own, may establish discourses which may have extraordinary capacity to cross nations, cultures and even religions, encouraging passive withdrawal from the political world as well as inspiring vicious and sometimes violent attempts at its subjugation, underwriting the ‘war on terror’ as well as inspiring some of those intent on the destruction of the United States. This article describes one of Ireland’s most successful intellectual exports – a very specific system of thinking about the end of the world known as ‘dispensational premillennialism.’ And the article will move from county Wicklow in the early nineteenth century, through the troubled decades of American modernity, to arrive, perhaps unexpectedly, in the company of the soldiers of radical jihad. The article will describe the globalisation of a discourse which was developed among the most privileged classes of early nineteenth-century Ireland to explain and justify their attempt to withdraw from the world, and which has more recently been used to explain and justify sometimes violent political interventions by both prominent Western politicians and some of the most marginalised and desperate inhabitants of our broken twenty-first century.
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Kurzel(2004) points out that researchers in e-learning and educational technologists, in a quest to provide improved Learning Environments (LE) for students are focusing on personalising the experience through a Learning Management System (LMS) that attempts to tailor the LE to the individual (see amongst others Eklund & Brusilovsky, 1998; Kurzel, Slay, & Hagenus, 2003; Martinez,2000; Sampson, Karagiannidis, & Kinshuk, 2002; Voigt & Swatman; 2003). According to Kurzel (2004) this tailoring can have an impact on content and how it’s accessed; the media forms used; method of instruction employed and the learning styles supported. This project is aiming to move personalisation forward to the next generation, by tackling the issue of Personalised e-Learning platforms as pre-requisites for building and generating individualised learning solutions. The proposed development is to create an e-learning platform with personalisation built-in. This personalisation is proposed to be set from different levels of within the system starting from being guided by the information that the user inputs into the system down to the lower level of being set using information inferred by the system’s processing engine. This paper will discuss some of our early work and ideas.
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With emergence of "Semantic Web" there has been much discussion about the impact of technologies such as XML and RDF on the way we use the Web for developing e-learning applications and perhaps more importantly on how we can personalise these applications. Personalisation of e-learning is viewed by many authors (see amongst others Eklund & Brusilovsky, 1998; Kurzel, Slay, & Hagenus, 2003; Martinez, 2000; Sampson, Karagiannidis, & Kinshuk, 2002; Voigt & Swatman, 2003) as the key challenge for the learning technologists. According to Kurzel (2004) the tailoring of e-learning applications can have an impact on content and how it's accesses; the media forms used; method of instruction employed and the learning styles supported. This paper will report on a research project currently underway at the eCentre in University of Greenwich which is exploring different approaches and methodologies to create an e-learning platform with personalisation built-in. This personalisation is proposed to be set from different levels of within the system starting from being guided by the information that the user inputs into the system down to the lower level of being set using information inferred by the system's processing engine.
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The curing of a thermosetting polymer materials utilized on micro-electronics packaging applications can be performed using microwave systems. The use of microwave energy enables the cure process to be completed more rapidly than with alternative approaches due to the ability to heat volumetrically. Furthermore, advanced dual-section microwave systems enable curing of individual components on a chip-on-board assembly. The dielectric properties of thermosetting polymer materials, commonly used in microelectronics packaging applications, vary significantly with temperature and degree of cure. The heating rate within a material subjected to an electric field is primarily dependant on the dielectric loss properties of the material itself. This article examines the variation in dielectric properties of a commercially available encapsulant paste with frequency and temperature and the resulting influence on the cure process. The 'FAMOBS' dual section microwave system and its application to microelectronics manufacture are described. The measurement of the dielectric properties of 'Henkel EO1080' encapsulant paste uses a commercially available 'dielectric probe kit' and is described in this paper. The FAMOBS heating system is used to encapsulate a small op-amp chip. A numerical model formulated to assess the cure process in thermosetting polymer materials under microwave heating is outlined. Numerical results showing that the microwave processing systems is capable of rapidly and evenly curing thermosetting polymer materials are presented.
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The trend towards miniaturization of electronic products leads to the need for very small sized solder joints. Therefore, there is a higher reliability risk that too large a fraction of solder joints will transform into Intermetallic Compounds (IMCs) at the solder interface. In this paper, fracture mechanics study of the IMC layer for SnPb and Pb-free solder joints was carried out using finite element numerical computer modelling method. It is assumed that only one crack is present in the IMC layer. Linear Elastic Fracture Mechanics (LEFM) approach is used for parametric study of the Stress Intensity Factors (SIF, KI and KII), at the predefined crack in the IMC layer of solder butt joint tensile sample. Contrary to intuition, it is revealed that a thicker IMC layer in fact increases the reliability of solder joint for a cracked IMC. Value of KI and KII are found to decrease with the location of the crack further away from the solder interfaces while other parameters are constant. Solder thickness and strain rate were also found to have a significant influence on the SIF values. It has been found that soft solder matrix generates non-uniform plastic deformation across the solder-IMC interface near the crack tip that is responsible to obtain higher KI and KII.
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This paper describes a prognostic method which combines the physics of failure models with probability reasoning algorithm. The measured real time data (temperature vs. time) was used as the loading profile for the PoF simulations. The response surface equation of the accumulated plastic strain in the solder interconnect in terms of two variables (average temperature, and temperature amplitude) was constructed. This response surface equation was incorporated into the lifetime model of solder interconnect, and therefore the remaining life time of the solder component under current loading condition was predicted. The predictions from PoF models were also used to calculate the conditional probability table for a Bayesian Network, which was used to take into account of the impacts of the health observations of each product in lifetime prediction. The prognostic prediction in the end was expressed as the probability for the product to survive the expected future usage. As a demonstration, this method was applied to an IGBT power module used for aircraft applications.
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This paper presents the challenges encountered in modelling biofluids in microchannels. In particular blood separation implemented in a T-microchannel device is analysed. Microfluids behave different from the counterparts in the microscale and a different approach has been adopted here to model them, which emphasize the roles of viscous forces, high shear rate performance and particle interaction in microscope. A T-microchannel design is numerically analysed by means of computational fluid dynamics (CFD) to investigate the effectiveness of blood separation based on the bifurcation law and other bio-physical effects. The simulation shows that the device can separate blood cells from plasma.