Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmiss...Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmission capacity in single-mode fiber and single-core fiber. However, spectrum fragmentation issue becomes more serious in SDM-EONs compared with simple elastic optical networks(EONs) with single mode fiber or single core fiber. In this paper, multicore virtual concatenation(MCVC) scheme is first proposed considering inter-core crosstalk to solve the spectrum fragmentation issue in SDM-EONs. Simulation results show that the proposed MCVC scheme can achieve better performance compared with the baseline scheme, i.e., single-core virtual concatenation(SCVC) scheme, in terms of blocking probability and spectrum utilization.展开更多
为了减少多核处理器系统全局调度算法中共享L2cache抖动,在Pfair调度算法基础上提出一种新的Cache感知的软实时公平调度算法.通过对WSS(work set size)、子任务截止时间和任务负载建立多因素优先级模型,并将此优先级模型应用到改进后的P...为了减少多核处理器系统全局调度算法中共享L2cache抖动,在Pfair调度算法基础上提出一种新的Cache感知的软实时公平调度算法.通过对WSS(work set size)、子任务截止时间和任务负载建立多因素优先级模型,并将此优先级模型应用到改进后的Pfair算法中,该算法的调度决策在系统负载较重的系统中对WSS具有自适应性.模拟实验结果显示:在对称4核和8核处理器系统中,该算法任务丢失率低,且在系统负载重时能够减少共享L2cache抖动,其整体调度性能优于传统的G-EDF(global-earliest deadline first)调度算法和Pfair调度算法.展开更多
基金supported in part by NSFC project (61571058, 61601052)
文摘Spatial division multiplexing enabled elastic optical networks(SDM-EONs) are the potential implementation form of future optical transport networks, because it can curve the physical limitation of achievable transmission capacity in single-mode fiber and single-core fiber. However, spectrum fragmentation issue becomes more serious in SDM-EONs compared with simple elastic optical networks(EONs) with single mode fiber or single core fiber. In this paper, multicore virtual concatenation(MCVC) scheme is first proposed considering inter-core crosstalk to solve the spectrum fragmentation issue in SDM-EONs. Simulation results show that the proposed MCVC scheme can achieve better performance compared with the baseline scheme, i.e., single-core virtual concatenation(SCVC) scheme, in terms of blocking probability and spectrum utilization.
文摘为了减少多核处理器系统全局调度算法中共享L2cache抖动,在Pfair调度算法基础上提出一种新的Cache感知的软实时公平调度算法.通过对WSS(work set size)、子任务截止时间和任务负载建立多因素优先级模型,并将此优先级模型应用到改进后的Pfair算法中,该算法的调度决策在系统负载较重的系统中对WSS具有自适应性.模拟实验结果显示:在对称4核和8核处理器系统中,该算法任务丢失率低,且在系统负载重时能够减少共享L2cache抖动,其整体调度性能优于传统的G-EDF(global-earliest deadline first)调度算法和Pfair调度算法.