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Dynamic Reconfiguration of a RGBD Sensor Based on QoS and QoC Requirements in Distributed Systems

机译:分布式系统中基于QoS和QoC要求的RGBD传感器的动态重新配置

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摘要

The inclusion of embedded sensors into a networked system provides useful information for many applications. A Distributed Control System (DCS) is one of the clearest examples where processing and communications are constrained by the client’s requirements and the capacity of the system. An embedded sensor with advanced processing and communications capabilities supplies high level information, abstracting from the data acquisition process and objects recognition mechanisms. The implementation of an embedded sensor/actuator as a Smart Resource permits clients to access sensor information through distributed network services. Smart resources can offer sensor services as well as computing, communications and peripheral access by implementing a self-aware based adaptation mechanism which adapts the execution profile to the context. On the other hand, information integrity must be ensured when computing processes are dynamically adapted. Therefore, the processing must be adapted to perform tasks in a certain lapse of time but always ensuring a minimum process quality. In the same way, communications must try to reduce the data traffic without excluding relevant information. The main objective of the paper is to present a dynamic configuration mechanism to adapt the sensor processing and communication to the client’s requirements in the DCS. This paper describes an implementation of a smart resource based on a Red, Green, Blue, and Depth (RGBD) sensor in order to test the dynamic configuration mechanism presented.
机译:将嵌入式传感器包含到网络系统中可为许多应用程序提供有用的信息。分布式控制系统(DCS)是最清晰的示例之一,在该示例中,处理和通信受到客户需求和系统容量的限制。具有先进处理和通信功能的嵌入式传感器可提供高级信息,这些信息是从数据采集过程和对象识别机制中抽象出来的。嵌入式传感器/执行器作为智能资源的实现允许客户端通过分布式网络服务访问传感器信息。通过实现基于自我感知的自适应机制,智能资源可以提供传感器服务以及计算,通信和外围设备访问,该自适应机制将执行配置文件适应上下文。另一方面,在动态调整计算过程时必须确保信息的完整性。因此,该处理必须适合于在一定的时间间隔内执行任务,但始终确保最低的处理质量。同样,通信必须尝试在不排除相关信息的情况下减少数据流量。本文的主要目的是提出一种动态配置机制,以使传感器处理和通信适应DCS中客户的需求。本文介绍了一种基于红色,绿色,蓝色和深度(RGBD)传感器的智能资源的实现,以测试所提出的动态配置机制。

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