ID 原文 译文
46206 现有工作中,对于多假设集合获取的研究并未得到关注。 However, the acquiring of the hypothesis set has not been concerned in existing works.
46207 提出一种多参考帧假设集合优化选择(MRHO)算法, A reconstruction algorithm based on multi-reference frames hypothesis optimization (MRHO) was proposed.
46208 增加参考帧数目以扩大假设选择范围,通过假设优化选择,在相同假设集合尺寸下提高了集合质量。 This algorithm expanded the selection of hypothesis vectors by increasing the number of reference frames. The quality of the prediction set was improved by hypotheses optimization selection under the same size with the original hypothesis set.
46209 仿真表明,MRHO 算法有效提高了视频重构质量。 Simulation results show that the proposed MRHO algorithm effectively improves the reconstructed quality of the distributed compressed video sensing scheme.
46210 针对分布式软件定义网络中控制平面可靠性差和控制器负载不均衡问题,提出一种基于可靠性评估的多控制器均衡部署策略。 The control plane has low reliability and controller loads were unbalanced in distributed software defined net-works, and a multi-controller balancing deployment strategy based on reliability evaluation was proposed.
46211 首先,通过综合权衡节点效能和路径质量评估节点可靠性,并在网络中设定均衡因子,优化控制器部署位置; Firstly, node reliability was evaluated by weighting node efficiency and path quality, optimizing the controller location with balancing factor.
46212 然后,改进 k-center 聚类方法,引入冗余函数,根据节点吸引度和控制器负载均衡率完成交换机分配,实现合理的 SDN 子域规划。 Then based on improved k-center clustering, the redundant functions was introduced and the switch allocation was completed according to node attractiveness degree and controller load balancing rate, achieving a reasonable SDNsub-domain planning.
46213 仿真结果表明,与现有策略相比,所需控制器数量平均减少 22.1%, The simulations show that compared with the existing strategy the number of required controllers is reduced by an average of 22.01.
46214 控制平面弹性明显增强,控制器负载均衡性能得到较大提升。 The control plane elasticity is enhanced, and the controller load balancing performance has been improved significantly.
46215 目前的 OpenFlow 延迟测量方法占用较多的网络资源,且测量精度较差。 At present, delay measurement methods in OpenFlow network have the disadvantage of excessive network re-sources and poor measurement accuracy.