Islip

网络  艾斯利普; 伊斯利普; 艾斯利普市; 艾斯利普镇

BNC.43732



双语例句

  1. Stevens 'boss, 61-year-old Jackie Brucia, is one of the West Islip controllers for Atlantic Automotive Group, a billion-dollar dealership operator.
    史蒂文斯的老板名叫杰姬•布鲁西亚,今年61岁,是大西洋汽车集团西伊斯利普控制器生产商的一员,该集团是价值过十亿美元的代理商。
  2. Improvement and comparison of input queue iSLIP algorithm
    输入排队iSLIP算法的改进与比较
  3. Several representative maximal matching algorithms such as PIM, iSLIP, FIRM and Output Serial Polling are studied in this paper.
    研究了几种典型的极大匹配调度算法:PIM,iSLIP,FIRM和输出串行调度算法。
  4. Crossbar Scheduling Algorithm Based on Pre-Matched iSlip
    基于匹配预测的交换调度算法
  5. The CROSSBAR Based iSLIP Algorithm and its Implementation in Hardware
    基于CROSSBAR的iSLIP调度算法及其硬件实现
  6. FPGA Design and Implementation of High-speed Crossbar Switch Scheduler Based on iSLIP
    基于iSLIP算法的高速Crossbar调度器的FPGA设计与实现
  7. Prioritized iSLIP Algorithm and Simulation
    基于优先权的iSLIP算法及其仿真试验
  8. This paper introduces the iSLIP schedule algorithm widely adopted in CROSSBAR switch fabric with its performance analyzed.
    iSLIP是一种高效的队列调度算法,并且易于硬件实现。该文主要介绍基于CROSSBAR交换结构的调度算法iSLIP原理和及其在硬件中的实现;
  9. ISLIP algorithm is easily implemented in hardware and accomplishes convergence by no more than log_2N times, but it has not high efficiency in burst communication; it is suitable for small and middle scale high speed switch fabrics.
    iSLIP算法易于硬件实现,不大于log2N次迭代即可实现收敛,但对于突发通信效率不高,适用于中小规模的高速交换结构;
  10. The simulation results show that the DSA scheduler outperforms iSLIP scheduling algorithm under all traffic. DSA can work efficiently in VOQ switch.
    仿真结果表明:在各种流量下,DSA算法都比信元调度算法具有更好的调度性能。
  11. Through the in-depth analysis in the scheduling process of the iSLIP algorithm, it is found that the algorithm can not guarantee the FIFO requirement and therefore a new FIFO-iSLIP algorithm is proposed.
    我们通过深入分析iSLIP算法的调度过程,揭示该算法不能保证FIFO要求,因此提出了改进算法:FIFO-iSLIP算法。
  12. This improved algorithm maintains the original iSLIP priority scheduling mechanism and at the same time ensures the FIFO feature, ensuring an orderly transfer for real-time businesses, without too much increase in the complexity of the original algorithm.
    此改进算法在保持iSLIP算法原有优先级调度机制的同时又能保证FIFO特性,确保业务实时有序的传输,而不会过多地增加原算法的复杂性。