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A smart grid technology for electrical power transmission lines by a self-organized optical network using LED

机译:通过使用LED的自组织光网络的电力传输线智能电网技术

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We have demonstrated a new smart grid model by our novel green photonics technology based on self-organized optical networks realizing an autonomous peer-to-peer electric power transmissions without centralized control for the power grid. In this optical network, we introduced an adaptive algorithm for concurrent peer-to-peer communications, with a simple optical-electrical hybrid bistable circuit composed of such as light emitting diode (LED) and photo diode (PD) by utilizing optical nonlinearity depending only on the signal strength passing through the network. In the experiment, the method uses a simple, local adaptation of transmission weights at each network node, which we call a power gate unit (PGU) that enables self-organizing functions of the network. Based on this method, we have demonstrated experimentally a new smart grid model applicable for ad-hoc electric power distribution systems mediated power consumptions. In this model, electric power flow is controlled autonomously through the self-organized network nodes associated with individual power facilities having photovoltaics and electric storage devices, etc., and the nodes convert the amounts of electric power supply and/or consumption to the light intensity values using above mentioned transmission weights at each node. As a consequence, we have experimentally demonstrated a simple short haul system model for ad-hoc electric power distribution with a self-organized optical network as a novel green photonics technology application for smart grid consumptions. In this model, electric power flow is controlled autonomously through the self-organized network nodes associated with individual power facilities having photovoltaics and electric storage devices, etc., and the nodes convert the amounts of electric power supply and/or consumption to the light intensity values using above mentioned transmission weights at each node. As a consequence, we have experimentally demonstrated a simple short haul system model for ad-hoc electric power distribution with a self-organized optical network as a novel green photonics technology application for smart grid.
机译:我们已经通过基于自组织光网络的新型绿色光子技术展示了一种新的智能电网模型,该网络实现了自治的对等电力传输,而无需对电网进行集中控制。在此光网络中,我们引入了一种自适应的并发对等通信算法,该算法具有一个简单的光电混合双稳态电路,该电路由发光二极管(LED)和光电二极管(PD)等组成,其利用的光非线性仅取决于通过网络的信号强度。在实验中,该方法对每个网络节点的传输权重进行了简单的本地调整,我们称其为可实现网络自组织功能的功率门单元(PGU)。基于此方法,我们已通过实验证明了一种适用于自组织配电系统介导的功耗的新型智能电网模型。在该模型中,通过与具有光伏装置和蓄电装置等的各个电力设施相关联的自组织网络节点自主地控制电力流,并且节点将电力供应和/或消耗量转换为光强度。在每个节点上使用上述传输权重来确定这些值。结果,我们通过实验证明了一个简单的短距离系统模型,用于具有自组织光网络的自组织电力分配,这是一种用于智能电网消耗的新型绿色光子技术应用。在该模型中,通过与具有光伏装置和蓄电装置等的各个电力设施相关联的自组织网络节点自主地控制电力流,并且节点将电力供应和/或消耗量转换为光强度。在每个节点上使用上述传输权重来确定这些值。结果,我们通过实验证明了一个简单的短距离系统模型,用于具有自组织光网络的自组织电力分配,作为智能电网的新型绿色光子技术应用程序。

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