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End-to-end Adaptation Scheme For Ubiquitous Remote Experimentation

机译:无处不在的远程实验的端到端适应方案

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Remote experimentation is an effective e-learning paradigm for supporting hands-on education using laboratory equipment at distance. The current trend is to enable remote experimentation in mobile and ubiquitous learning. In such a context, the remote experimentation software should enable effective telemonitoring and tele-operation, no matter the kind of device used to access the equipment. It should also be sufficiently lenient so as to handle the rapidly evolving wireless and mobile communication environment. While the current Internet bandwidth allows remote experimentation to work flawlessly on fixed connections such as LANs, mobile users suffer from both the versatile nature of wireless communications and the limitation of the mobile devices. These conditions impose that the remote experimentation software should integrate adaptation features. For effective ubiquitous remote experimentation, it should ideally be guaranteed that the information representing the state of the remote equipment is rendered (to the end user) at the same pace at which it has been acquired, yet possibly at the cost of a somewhat minimal time delay between the acquisition and rendering phases. In this respect, an end-to-end adaptation scheme is proposed that explicitly handles the inherent variability of the connection and the versatility of the mobile devices considered in ubiquitous remote experimentation. Instead of relying on a stochastic approach, the proposed adaptation scheme relies on a deterministic mass-balance equivalence model. The effectiveness of the proposedrnadaptation scheme is demonstrated in critical conditions corresponding to remote experimentation carried out using a PDA over a Bluetooth link.
机译:远程实验是一种有效的电子学习范式,可支持在远距离使用实验室设备进行动手教学。当前的趋势是在移动和无处不在的学习中实现远程实验。在这种情况下,无论用于访问设备的设备是哪种类型,远程实验软件都应能够实现有效的远程监控和远程操作。它也应该足够宽松,以应对迅速发展的无线和移动通信环境。虽然当前的Internet带宽允许远程实验在LAN等固定连接上完美运行,但移动用户同时遭受无线通信的通用性和移动设备的限制。这些条件要求远程实验软件应集成适应功能。为了进行有效的无处不在的远程实验,理想情况下应确保以与获取远程设备状态相同的速度(向最终用户)呈现代表远程设备状态的信息,但可能会花费最少的时间在获取和渲染阶段之间延迟。在这方面,提出了一种端到端的适应方案,该方案显式处理了连接的固有可变性以及在无处不在的远程实验中考虑的移动设备的多功能性。提出的适应方案不是依赖于随机方法,而是依赖于确定性质量平衡等效模型。在与使用PDA通过蓝牙链路进行的远程实验相对应的关键条件下,证明了拟议的适应方案的有效性。

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