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Layering residential peer networks and geospatial building networks to model change in energy saving behaviors

机译:分层住宅对等网络和地理空间建​​筑网络,以模拟节能行为的变化

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Complex human or engineered network systems can be examined as a series of coexisting layers. A variety of dynamic perturbations, such as information flows across computer networks, traffic flows across transportation networks and the spread of energy saving practices across human networks, have been treated separately as single networks in previous research. However, because these phenomena often consist of human networks interacting with engineered networks, analyzing the properties of the multi-layer network systems may provide more accurate insights. In this paper, we examine a multilayer network system to provide insight into the diffusion of energy consumption practices through peer networks within and across residential buildings. We introduce a new model-the Layered Network Model-that treats that treats a residential peer network and a geospatial building network as a single, layered network. We compare this model to a previously published Multi-Layer Interactive Network Model by simulating diffusion through a real multi-layer network system consisting of a residential peer network and a geospatial building network from three experimental data-sets. We found our model to be more accurate and efficient, hence contributing an efficient mathematical model and set of simulation algorithms that accurately capture the post-perturbation response of a layered, residential peer network and a geospatial building network.
机译:复杂的人员或工程网络系统可以作为一系列共存的层进行检查。各种动态扰动,例如计算机网络中的信息流,运输网络中的交通流以及人类网络中节能实践的传播,在先前的研究中已被单独视为单个网络。但是,由于这些现象通常由与工程网络交互的人为网络组成,因此分析多层网络系统的属性可能会提供更准确的见解。在本文中,我们研究了多层网络系统,以深入了解住宅建筑内部和整个建筑之间通过对等网络进行的能耗实践扩散。我们引入了一种新模型-分层网络模型-该模型将住宅对等网络和地理空间建​​筑网络视为一个单独的分层网络。通过将真实的多层网络系统(由一个住宅对等网络和一个地理空间建​​筑网络组成)从三个实验数据集中模拟扩散,我们将该模型与以前发布的多层交互式网络模型进行了比较。我们发现我们的模型更加准确和高效,因此提供了一个有效的数学模型和一组仿真算法,可以准确捕获分层的住宅对等网络和地理空间建​​筑网络的扰动后响应。

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