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Towards a design framework for heterogeneous Wireless Sensor Networks

机译:迈向异构无线传感器网络的设计框架

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Wireless Sensor Networks consist of resource-constrained (energy, memory and processing) sensor nodes that are deployed at different locations, in order to monitor physical or environmental conditions. Several limitations exist nowadays, at simulation and at programming level, especially for heterogeneous Wireless Sensor Networks (composed of different hardware devices). Indeed, to optimize a self-organized network, it is essential to be able to exchange functionalities between nodes. First, it is difficult to explore design space with accurate hardware-level models for network-level simulations since these two aspects have very different levels. We propose a simulator - based on SystemC language- that allows such explorations. It is composed of a library of electrical devices and software stacks, experimentally validated. More and more sophisticated software support is implemented in our simulator. As trend is to deploy heterogeneous nodes, it becomes a challenge to consider energy-aware reprogramming of different nodes, and to be able to simulate this aspect. We propose a new solution -cross-architecture in-situ compilation- that allows firmware update for functionality exchange, and that is being integrated in the simulator.
机译:无线传感器网络由部署在不同位置的资源受限的(能源,内存和处理)传感器节点组成,以监视物理或环境状况。如今,在仿真和编程级别都存在一些局限性,特别是对于异构无线传感器网络(由不同的硬件设备组成)而言。实际上,为了优化自组织网络,必须能够在节点之间交换功能。首先,由于这两个方面的层次非常不同,因此很难使用精确的硬件层次模型来探索设计空间以进行网络层次的仿真。我们提出了一种基于SystemC语言的模拟器,该模拟器可以进行这种探索。它由经过实验验证的电气设备和软件堆栈库组成。在我们的模拟器中实现了越来越复杂的软件支持。随着部署异构节点的趋势,考虑不同节点的能量感知重新编程并能够模拟这一方面成为一个挑战。我们提出了一种新的解决方案-跨体系结构的原位编译-允许固件更新以进行功能交换,并且该解决方案已集成在模拟器中。

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