A distribution network plays an extremely important role in the safe and efficient operation of a power grid.As the core part of a power grid’s operation,a distribution network will have a significant impact on the s...A distribution network plays an extremely important role in the safe and efficient operation of a power grid.As the core part of a power grid’s operation,a distribution network will have a significant impact on the safety and reliability of residential electricity consumption.it is necessary to actively plan and modify the distribution network’s structure in the power grid,improve the quality of the distribution network,and optimize the planning of the distribution network,so that the network can be fully utilized to meet the needs of electricity consumption.In this paper,a distribution network grid planning algorithm based on the reliability of electricity consumption was completed using ant colony algorithm.For the distribution network structure planning of dual power sources,the parallel ant colony algorithm was used to prove that the premise of parallelism is the interactive process of ant colonies,and the dual power distribution network structure model is established based on the principle of the lowest cost.The artificial ants in the algorithm were compared with real ants in nature,and the basic steps and working principle of the ant colony optimization algorithm was studied with the help of the travelling salesman problem(TSP).Then,the limitations of the ant colony algorithm were analyzed,and an improvement strategy was proposed by using python for digital simulation.The results demonstrated the reliability of model-building and algorithm improvement.展开更多
To efficiently complete a complex computation task,the complex task should be decomposed into subcomputation tasks that run parallel in edge computing.Wireless Sensor Network(WSN)is a typical application of parallel c...To efficiently complete a complex computation task,the complex task should be decomposed into subcomputation tasks that run parallel in edge computing.Wireless Sensor Network(WSN)is a typical application of parallel computation.To achieve highly reliable parallel computation for wireless sensor network,the network's lifetime needs to be extended.Therefore,a proper task allocation strategy is needed to reduce the energy consumption and balance the load of the network.This paper proposes a task model and a cluster-based WSN model in edge computing.In our model,different tasks require different types of resources and different sensors provide different types of resources,so our model is heterogeneous,which makes the model more practical.Then we propose a task allocation algorithm that combines the Genetic Algorithm(GA)and the Ant Colony Optimization(ACO)algorithm.The algorithm concentrates on energy conservation and load balancing so that the lifetime of the network can be extended.The experimental result shows the algorithm's effectiveness and advantages in energy conservation and load balancing.展开更多
在静态栅格地图中,针对传统蚁群算法进行AGV(Automated Guided Vehicle,自动引导车)路径规划收敛慢且搜索结果容易陷入局部最优的问题,提出一种融合跳点搜索(Jump Point Search,JPS)和双向并行蚁群搜索的改进算法.首先,对实际研究环境...在静态栅格地图中,针对传统蚁群算法进行AGV(Automated Guided Vehicle,自动引导车)路径规划收敛慢且搜索结果容易陷入局部最优的问题,提出一种融合跳点搜索(Jump Point Search,JPS)和双向并行蚁群搜索的改进算法.首先,对实际研究环境进行栅格化建模,使用改进的跳点搜索算法生成双向搜索的初始次优路径,为双向蚁群搜索提供初始搜索方向参考.其次,在双向并行蚁群搜索过程中采用改进的转移概率启发函数,该函数在确定下一个转移节点时考虑了避免AGV与障碍物碰撞的因素,同时通过设计信息素共享机制并结合改进的信息素增量及浓度两种融合模型,共享和更新全局信息素浓度,以更好地探索和优化路径,保证双向路径连结.最后,与传统蚁群算法进行实验结果对比,验证了改进算法的全局搜索能力、效率和安全性.展开更多
文摘A distribution network plays an extremely important role in the safe and efficient operation of a power grid.As the core part of a power grid’s operation,a distribution network will have a significant impact on the safety and reliability of residential electricity consumption.it is necessary to actively plan and modify the distribution network’s structure in the power grid,improve the quality of the distribution network,and optimize the planning of the distribution network,so that the network can be fully utilized to meet the needs of electricity consumption.In this paper,a distribution network grid planning algorithm based on the reliability of electricity consumption was completed using ant colony algorithm.For the distribution network structure planning of dual power sources,the parallel ant colony algorithm was used to prove that the premise of parallelism is the interactive process of ant colonies,and the dual power distribution network structure model is established based on the principle of the lowest cost.The artificial ants in the algorithm were compared with real ants in nature,and the basic steps and working principle of the ant colony optimization algorithm was studied with the help of the travelling salesman problem(TSP).Then,the limitations of the ant colony algorithm were analyzed,and an improvement strategy was proposed by using python for digital simulation.The results demonstrated the reliability of model-building and algorithm improvement.
基金supported by Postdoctoral Science Foundation of China(No.2021M702441)National Natural Science Foundation of China(No.61871283)。
文摘To efficiently complete a complex computation task,the complex task should be decomposed into subcomputation tasks that run parallel in edge computing.Wireless Sensor Network(WSN)is a typical application of parallel computation.To achieve highly reliable parallel computation for wireless sensor network,the network's lifetime needs to be extended.Therefore,a proper task allocation strategy is needed to reduce the energy consumption and balance the load of the network.This paper proposes a task model and a cluster-based WSN model in edge computing.In our model,different tasks require different types of resources and different sensors provide different types of resources,so our model is heterogeneous,which makes the model more practical.Then we propose a task allocation algorithm that combines the Genetic Algorithm(GA)and the Ant Colony Optimization(ACO)algorithm.The algorithm concentrates on energy conservation and load balancing so that the lifetime of the network can be extended.The experimental result shows the algorithm's effectiveness and advantages in energy conservation and load balancing.
文摘在静态栅格地图中,针对传统蚁群算法进行AGV(Automated Guided Vehicle,自动引导车)路径规划收敛慢且搜索结果容易陷入局部最优的问题,提出一种融合跳点搜索(Jump Point Search,JPS)和双向并行蚁群搜索的改进算法.首先,对实际研究环境进行栅格化建模,使用改进的跳点搜索算法生成双向搜索的初始次优路径,为双向蚁群搜索提供初始搜索方向参考.其次,在双向并行蚁群搜索过程中采用改进的转移概率启发函数,该函数在确定下一个转移节点时考虑了避免AGV与障碍物碰撞的因素,同时通过设计信息素共享机制并结合改进的信息素增量及浓度两种融合模型,共享和更新全局信息素浓度,以更好地探索和优化路径,保证双向路径连结.最后,与传统蚁群算法进行实验结果对比,验证了改进算法的全局搜索能力、效率和安全性.