在船舶设计过程中经常会出现随机新设计任务,为船舶设计任务调度方案的制订带来一定的困难。基于反向传播(Back Propagation, BP)算法,引入动量-自适应学习率反向传播(Momentum and Self-Adaptive Learning Rate Back Propagation, MSBP...在船舶设计过程中经常会出现随机新设计任务,为船舶设计任务调度方案的制订带来一定的困难。基于反向传播(Back Propagation, BP)算法,引入动量-自适应学习率反向传播(Momentum and Self-Adaptive Learning Rate Back Propagation, MSBP)算法预测随机新设计任务是否可加入制订的船舶设计任务调度方案,以解决扰动情况下的船舶设计任务动态调度(Dynamic Scheduling of Ship Design Tasks, DSSDT)问题。为减小求解空间和训练难度,选择对调度结果具有重大影响的属性作为MSBP算法的特征值。基于抽取的特征值构建MSBP算法模型,并采用大量数据完成对模型的训练。对比试验结果表明,MSBP算法的准确性优于未改进的BP算法,某项随机新设计任务的可调度性与其优先级最为密切。展开更多
随着多核处理器片上集成核数的不断增多,并行任务的调度能力越来越成为制约性能提升的关键因素。文章设计一种面向异构多核计算系统的动态任务调度控制器,主要实现动态监控处理单元的负载情况、动态任务唤醒、乱序任务发射、任务写回安...随着多核处理器片上集成核数的不断增多,并行任务的调度能力越来越成为制约性能提升的关键因素。文章设计一种面向异构多核计算系统的动态任务调度控制器,主要实现动态监控处理单元的负载情况、动态任务唤醒、乱序任务发射、任务写回安全管理等功能;研究一种降低计算任务结果数据回写双倍数据速率(double data rate,DDR)外存储器次数的方法,大幅节省了访存开销,进一步提升了计算性能。仿真及性能测试显示,在典型应用场景下,与已有的无动态调度功能的任务发射控制器相比,实现了显示并行化编程向任务并行的自动化控制过渡,编程友好度显著提高,在不同类型的测试案例中,分别提升了11.3%~37.9%的计算性能。展开更多
This paper analyzes the threat of TCG Software Stack(TSS)/TCM Service Module(TSM) deadlock in multi-user environment such as cloud and discusses its causes and mechanism.In addition,this paper puts forward a dynamic p...This paper analyzes the threat of TCG Software Stack(TSS)/TCM Service Module(TSM) deadlock in multi-user environment such as cloud and discusses its causes and mechanism.In addition,this paper puts forward a dynamic priority task scheduling strategy based on value evaluation to handle this threat.The strategy is based on the implementation features of trusted hardware and establishes a multi-level ready queue.In this strategy,an algorithm for real-time value computing is also designed,and it can adjust the production curves of the real time value by setting parameters in different environment,thus enhancing its adaptability,which is followed by scheduling and algorithm description.This paper also implements the algorithm and carries out its performance optimization.Due to the experiment result from Intel NUC,it is shown that TSS based on advanced DPTSV is able to solve the problem of deadlock with no negative influence on performance and security in multi-user environment.展开更多
文摘随着多核处理器片上集成核数的不断增多,并行任务的调度能力越来越成为制约性能提升的关键因素。文章设计一种面向异构多核计算系统的动态任务调度控制器,主要实现动态监控处理单元的负载情况、动态任务唤醒、乱序任务发射、任务写回安全管理等功能;研究一种降低计算任务结果数据回写双倍数据速率(double data rate,DDR)外存储器次数的方法,大幅节省了访存开销,进一步提升了计算性能。仿真及性能测试显示,在典型应用场景下,与已有的无动态调度功能的任务发射控制器相比,实现了显示并行化编程向任务并行的自动化控制过渡,编程友好度显著提高,在不同类型的测试案例中,分别提升了11.3%~37.9%的计算性能。
基金supported by the State Key Program of National Natural Science Foundation of China(Grant No.91118003)the National Natural Science Foundation of China(Grant No.61173138,61272452,61332019)+1 种基金the National Basic Research Program of China("973"Program)(Grant No.2014CB340600)the National High-Tech Research and Development Program of China("863"Program)(Grant No.2015AA016002)
文摘This paper analyzes the threat of TCG Software Stack(TSS)/TCM Service Module(TSM) deadlock in multi-user environment such as cloud and discusses its causes and mechanism.In addition,this paper puts forward a dynamic priority task scheduling strategy based on value evaluation to handle this threat.The strategy is based on the implementation features of trusted hardware and establishes a multi-level ready queue.In this strategy,an algorithm for real-time value computing is also designed,and it can adjust the production curves of the real time value by setting parameters in different environment,thus enhancing its adaptability,which is followed by scheduling and algorithm description.This paper also implements the algorithm and carries out its performance optimization.Due to the experiment result from Intel NUC,it is shown that TSS based on advanced DPTSV is able to solve the problem of deadlock with no negative influence on performance and security in multi-user environment.