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Energy-driven optimization of hardware and software for distributed embedded systems.

机译:能源驱动的分布式嵌入式系统的硬件和软件优化。

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摘要

Distributed embedded computing systems are special-purpose computer systems designed for particular applications and set up in a networked or distributed manner. A practical application domain for such a distributed system setup is the domain of wireless sensor network (WSN) applications. In this thesis, studies of architectures, applications, and methodologies for distributed embedded systems will be covered by addressing a number of important energy and performance optimization problems for translating highlevel representations of distributed embedded applications into system implementations. This thesis is also concerned about systematic design methodologies and optimization problems for both software and hardware implementations.;With advances in integrated circuit technology, distributed embedded platforms such as wireless sensor nodes can be equipped with increasing amounts of computational resources, such as digital signal processing (DSP) subsystems that can handle intensive computational tasks. By incorporating such dedicated DSP processing, a distributed embedded platform can enhance its functional capabilities for processing data before transmitting the data to other parts of the network or to an associated base station (central node). Therefore, this thesis presents a design methodology for distributing DSP applications across wireless sensor networks and optimizing associate trade-offs between computation and communication.;A low-power, application-specific sensor node platform for distributed WSN systems is designed and demonstrated in this thesis. This platform provides mixed-signal integration of streamlined digital circuits for protocol control and data processing, along with required analog subsystems, such as transceiver circuitry. Building on this optimized platform, this thesis demonstrates a complete system design of an application-specific WSN system with compact size and low power features. This system design is the result of an integrated effort across design space exploration, algorithm development, cross-layer protocol design, and most importantly, the completion of various hardware prototype implementations for validating and demonstrating proposed design techniques.;This thesis also presents a system-level synthesis methodology for finding the most suitable resource configurations for distributed, embedded systems. System-level synthesis is attractive because the carefully designed system-level models can be analyzed and evaluated rapidly, and the complex, inter-related design decisions can be explored and evaluated at a high level before mapping into low level implementations. We demonstrate the accuracy and efficiency of our system-level synthesis approach, and its ability to capture an important range of high level interactions that are relevant to the design of distributed, embedded systems.
机译:分布式嵌入式计算系统是为特定应用程序设计并以网络或分布式方式设置的专用计算机系统。这种分布式系统设置的实际应用领域是无线传感器网络(WSN)应用领域。在本文中,将通过解决将分布式嵌入式应用程序的高级表示转换为系统实现的许多重要的能源和性能优化问题,来涵盖分布式嵌入式系统的体系结构,应用程序和方法论的研究。本文还关注软件和硬件实现的系统设计方法和优化问题。随着集成电路技术的进步,诸如无线传感器节点之类的分布式嵌入式平台可以配备越来越多的计算资源,例如数字信号处理。 (DSP)子系统,可以处理大量的计算任务。通过合并这样的专用DSP处理,分布式嵌入式平台可以增强其处理数据的功能,然后再将数据传输到网络的其他部分或关联的基站(中央节点)。因此,本文提出了一种在无线传感器网络中分布DSP应用并优化计算与通信之间的权衡取舍的设计方法。;本文设计并演示了一种针对分布式WSN系统的低功耗,专用传感器节点平台。该平台提供流线型数字电路的混合信号集成,用于协议控制和数据处理,以及所需的模拟子系统,例如收发器电路。在此优化平台的基础上,本文演示了具有紧凑尺寸和低功耗特性的专用WSN系统的完整系统设计。该系统设计是跨设计空间探索,算法开发,跨层协议设计,以及最重要的是完成各种硬件原型实现以验证和演示所提出的设计技术的综合努力的结果。级别的综合方法,可为分布式嵌入式系统找到最合适的资源配置。系统级综合之所以具有吸引力,是因为可以快速分析和评估精心设计的系统级模型,并且可以在映射到低级实现之前在高层次上探索和评估复杂的,相互关联的设计决策。我们展示了我们系统级综合方法​​的准确性和效率,以及其捕获与分布式嵌入式系统设计相关的重要高层交互范围的能力。

著录项

  • 作者

    Shen, Chung-Ching.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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