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A neurofuzzy QoS-aware routing protocol for smart grids

机译:用于智能电网的神经模糊QoS感知路由协议

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Smart Grid (SG), designed to integrate high-speed, reliable, and secure data communication networks to manage the complex power systems effectively and intelligently, uses two-way flows of electricity and information to create a widely distributed automated energy delivery network. One of the main challenges of SGs is routing optimization that the data transmission of power price must be equipped with Quality of Service (QoS) guarantee. Using artificial intelligence in routing schemes is appropriate to develop complex tasks such as path discovery. The proposed routing algorithm, namely neurofuzzy-based Optimization Multi-Constrained Routing (NFOMCR), has the novelty of being based on the introduction of artificial neural network and fuzzy logic. Other main challenge of SG is finding a feasible solution to a class of nonlinear inequalities defined on a graph. A neurofuzzy system is proposed to tackle this problem. Convergence of the neural network and the solution feasibility to the defined problem are both theoretically proven. The proposed neural network features a parallel computing mechanism and a distributed topology isomorphic to the corresponding graph. Thus, it is suitable for distributed real-time computation. Optimization of performance that concluded from minimizing the cost and error of this network is obviously achieved. Experimental results obtained by this routing protocol show the improvement of the performance achieved in this networks.
机译:智能电网(SG)旨在集成高速,可靠和安全的数据通信网络,以有效,智能地管理复杂的电力系统,它利用双向的电力和信息流来创建广泛分布的自动化能源输送网络。 SG的主要挑战之一是路由优化,即电价数据传输必须配备服务质量(QoS)保证。在路由方案中使用人工智能适合开发诸如路径发现之类的复杂任务。所提出的路由算法,即基于神经模糊的优化多约束路由(NFOMCR),具有基于人工神经网络和模糊逻辑的引入的新颖性。 SG的另一个主要挑战是为图上定义的一类非线性不等式找到可行的解决方案。提出了一种神经模糊系统来解决这个问题。理论上证明了神经网络的收敛性和所定义问题的解决方案可行性。所提出的神经网络具有并行计算机制和与相应图同构的分布式拓扑。因此,它适合于分布式实时计算。由最小化该网络的成本和错误而得出的性能优化显然是可以实现的。通过该路由协议获得的实验结果表明,该网络中实现的性能有所提高。

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