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首页> 外文期刊>Journal of Parallel and Distributed Computing >Wireless ad hoc lattice computers (WAdL)
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Wireless ad hoc lattice computers (WAdL)

机译:无线临时格子计算机(WAdL)

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We propose an architecture to harness the comparatively low computational power of geographically concentrated mobile devices (such as in a wireless ad hoc network, especially a sensor network) to build a wireless ad hoc lattice computer (WAdL). The primary contribution of the WAdL design is the ability to maintain, despite the mobility of the participating devices, a virtual lattice where the devices represent lattice points. WAdL is a cellular automaton-like architecture designed to carry out simulations of the unfolding of physical phenomena (e.g., fluid flow, system of moving, interacting objects, etc.) in the bounded region of Euclidean space represented by the underlying virtual lattice of WAdL. We present the design and algorithms of the WAdL architecture, and demonstrate its use with an example application (lift and drag on an airplane wing in flight) implemented on a simulated WAdL environment. We also discuss current issues and future directions of work on the WAdL architecture.
机译:我们提出一种架构,以利用地理上集中的移动设备(例如,在无线自组织网络中,尤其是在传感器网络中)相对较低的计算能力来构建无线自组织网格计算机(WAdL)。 WAdL设计的主要贡献在于,尽管参与设备具有移动性,但仍能够维持虚拟晶格,其中设备代表晶格点。 WAdL是一种类似于细胞自动机的体系结构,旨在对以WAdL的底层虚拟晶格表示的欧几里得空间的有界区域中的物理现象(例如,流体流动,运动系统,物体之间的相互作用等)展开进行模拟。 。我们介绍WAdL架构的设计和算法,并通过在模拟的WAdL环境中实现的示例应用程序(在飞行中的机翼上抬起并拖动)演示其使用。我们还将讨论WAdL体系结构的当前问题和未来的工作方向。

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