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Software Architecture for a Virtual Environment for Nano Scale Assembly (VENSA)

机译:纳米级装配虚拟环境(VENSA)的软件架构

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摘要

A Virtual Environment (VE) uses multiple computer-generated media to let a user experience situations that are temporally and spatially prohibiting. The information flow between the user and the VE is bidirectional and the user can influence the environment. The software development of a VE requires orchestrating multiple peripherals and computers in a synchronized way in real time. Although a multitude of useful software components for VEs exists, many of these are packaged within a complex framework and can not be used separately. In this paper, an architecture is presented which is designed to let multiple frameworks work together while being shielded from the application program. This architecture, which is called the Virtual Environment for Nano Scale Assembly (VENSA), has been constructed for interfacing with an optical tweezers instrument for nanotechnology development. However, this approach can be generalized for most virtual environments. Through the use of VENSA, the programmer can rely on existing solutions and concentrate more on the application software design.
机译:虚拟环境(VE)使用多种计算机生成的媒体来让用户体验在时间和空间上都处于禁止状态的情况。用户和VE之间的信息流是双向的,用户可以影响环境。 VE的软件开发要求以同步方式实时协调多个外围设备和计算机。尽管存在大量用于VE的有用软件组件,但是其中许多组件都打包在复杂的框架中,不能单独使用。在本文中,提出了一种体系结构,该体系结构旨在使多个框架能够协同工作,同时不受应用程序的影响。这种体系结构被称为纳米级装配虚拟环境(VENSA),旨在与用于纳米技术开发的光镊仪器接口。但是,这种方法可以推广到大多数虚拟环境。通过使用VENSA,程序员可以依靠现有的解决方案,而将精力更多地集中在应用软件设计上。

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