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101.
在分析了EPON的拓扑结构及其调度机制的基础上,根据分布式计算的特点,提出了一种优化的可适用于分布式光网络的动态带宽分配算法CPDBA.该算法根据分布式计算任务的实时性和时序性,进行动态调度,并利用数据包的相关性,进行预测动态分配信用带宽.该算法能适用于分布式光网络,并减少了数据包的时延.  相似文献   
102.
This article describes a methodology for selecting days that are comparable in terms of the conditions faced during air traffic flow management initiative planning. This methodology includes the use of specific data sources, specific features of calendar days defined using these data sources, and the application of a specific form of classification and then cluster analysis. The application of this methodology will produce results that enable historical analysis of the use of initiatives and evaluation of the relative success of different courses of action. Several challenges are overcome here including the need to identify the appropriate machine learning algorithms to apply, to quantify the differences between calendar days, to select features describing days, to obtain appropriate raw data, and to evaluate results in a meaningful way. These challenges are overcome via a review of relevant literature, the identification and trial of several useful models and data sets, and careful application of methods. For example, the cluster analysis that ultimately selects sets of similar days uses a distance metric based on variable importance measures from a separate classification model of observed initiatives. The methodology defined here is applied to the New York area, although it could be applied by other researchers to other areas.  相似文献   
103.
This paper presents a probabilistic delay model for signalized intersections with right‐turn channelization lanes considering the possibility of blockage. Right‐turn channelization is used to improve the capacity and to reduce delay at busy intersections with a lot of right‐turns. However, under heavy traffic conditions the through vehicles will likely block the channelization entrance that accrues delay to right‐turn vehicles. If the right‐turn channelization gets blocked frequently, its advantage in reducing the intersection delay is neglected and as a result the channelization lane becomes inefficient and redundant. The Highway Capacity Manual (HCM) neglects the blockage effect, which may be a reason for low efficiency during peak hours. More importantly, using HCM or other standard traffic control methods without considering the blockage effects would lead to underestimation of the delay. To overcome this issue, the authors proposed delay models by taking into account both deterministic and random aspects of vehicles arrival patterns at signalized intersections. The proposed delay model was validated through VISSIM, a microscopic simulation model. The results showed that the proposed model is very precise and accurately estimates the delay. In addition, it was found that the length of short‐lane section and proportion of right‐turn and through traffic significantly influence the approach delay. For operational purposes, the authors provided a step‐by‐step delay calculation process and presented approach delay estimates for different sets of traffic volumes, signal settings, and short‐lane section lengths. The delay estimates would be useful in evaluating adequacy of the current lengths, identifying the options of extending the short‐lane section length, or changing signal timing to reduce the likelihood of blockage. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   
104.
The average delay experienced by vehicles at a signalized intersection defines the level of service (LOS) at which the intersection operates. A major challenge in this regard is the ability to accurately estimate all the components underlying the overall control delay, including the uniform, incremental and initial queue delays. This paper tackles this challenging task by proposing a novel exact model of the uniform control delay component with a view to enhancing the accuracy of the existing approximate models, notably, the one reported in the Highway Capacity Manual 2010. Both graphical and analytical proofs are employed to derive exact closed‐form expressions for the uniform control delay at undersaturated signalized intersections. The high degree of accuracy of the proposed models is analysed through extensive simulations to demonstrate their abilities to exactly characterize the performance of real‐life intersections in terms of the resulting vehicle delay. Unlike the existing widely adopted uniform delay models, which tend to overestimate the LOS of real‐life intersections, the delay models introduced in this paper have the merit of exactly capturing such a LOS. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   
105.
针对保障行人过街道舒适性和安全性的信号控制问题,考虑行人的过街需求,分右转车与两进口行人完全分离、特定时间段右转控制两种条件,建立信号控制延误和行人干扰延误的分析模型,进而提出相应的右转车辆控制条件。以一四相位十字形信号交叉口为研究对象,采用与左转相位相同和进口人行道绿灯相位禁行两种控制方式进行应用仿真,结果表明,在右转车流量一定时,右转车不受控制时延误与行人流量成正比,当行人流量达到1 000人/h、右转车流量达到400 veh/h时,右转车延误超过C级服务水平延误值的上限;实施控制后,右转车延误随流量的增加而递增,与行人流量无关,且第2种控制方式下的延误更小。  相似文献   
106.
在斜交十字交叉口内设置车辆待行区的研究   总被引:1,自引:0,他引:1  
针对斜交十字交叉口存在的安全隐患等问题,提出为锐角进入交叉口的次路车流设置车辆待行区,使支路车流可以分两个阶段通过交叉口.以一级公路为例,运用概率论和排队论计算了车辆待行区所适应的交通量范围,给出了通行能力的计算方法.在不同交通量情况下,比较了普通让行、信号灯和设置车辆待行区三种交叉口控制方式的延误.  相似文献   
107.
不确定性时滞系统时滞相关鲁棒镇定   总被引:2,自引:0,他引:2  
讨论了具有状态时滞的数值界不确定性线性系统的时滞相关鲁棒控制问题.将矩阵分解的思想应用于线性时滞系统的控制综合,利用Lyapunov-Krasovskii泛函方法,通过牛顿-莱布尼茨各项相互关系引入"0"阵,得到了系统的一种新的经过状态反馈控制后可鲁棒镇定的、基于LMI的、保守性较低的时滞相关条件.该方法既不需要对原系统进行模型变换,也不需要对交叉项进行界定.用算例说明了该方法的有效性.  相似文献   
108.
针对短时延的多包传输网络控制系统,研究了数据包传输次序不确定情况下系统的建模及控制问题.引入了补偿器来补偿多包传输过程中部分数据丢失对系统的影响,同时考虑不确定短时延的影响,将其建模成一类具有参数不确定的离散随机切换系统,并对系统的稳定性进行了分析.仿真结果证明了该方法的有效性.  相似文献   
109.
针对信号控制环形交叉口这一特殊的控制对象,运用理论解析结合计算机仿真检验的方法,分别给出环形交叉口直行和左转的延误计算模型;并在此基础上提出了一种以交叉口车均延误最小为目标,适合于在非饱和状态下采用多进口道放行协同环道控制环形交叉口的最佳周期值计算方法。最后通过模拟试验和实例分析对模型的适用性进行了检验。结果表明:该模型有较高的精度和可靠性,为求解环形交叉口信号控制最佳周期提供了一种有效的新算法。  相似文献   
110.
研究了诱发电位的主要检测参数潜伏期变化的估计测定方法:广义相关时间延迟方法、处适应时间延迟估计方法和自适应相位谱时间延迟估计方法,并分析了动态跟踪潜伏期时变规律的有效性。  相似文献   
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