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281.
在船舶电缆敷设过程中,很难借助有效的工装提高劳动效率,低空间的高强度作业存在严重的安全风险。以船舶电缆自动化敷设系统为分析对象,介绍系统组成和系统接口,采用比例积分微分(Proportion Integration Differentiation,PID)算法计算系统行程,通过PROFINET总线完成数据传输,以人机界面(Human Machine Interface,HMI)实现系统性能要求。在风电安装平台上的实际运用表明,该系统可解决造船行业劳动力成本高和安全风险大的问题。  相似文献   
282.
The state of the practice traffic signal control strategies mainly rely on infrastructure based vehicle detector data as the input for the control logic. The infrastructure based detectors are generally point detectors which cannot directly provide measurement of vehicle location and speed. With the advances in wireless communication technology, vehicles are able to communicate with each other and with the infrastructure in the emerging connected vehicle system. Data collected from connected vehicles provides a much more complete picture of the traffic states near an intersection and can be utilized for signal control. This paper presents a real-time adaptive signal phase allocation algorithm using connected vehicle data. The proposed algorithm optimizes the phase sequence and duration by solving a two-level optimization problem. Two objective functions are considered: minimization of total vehicle delay and minimization of queue length. Due to the low penetration rate of the connected vehicles, an algorithm that estimates the states of unequipped vehicle based on connected vehicle data is developed to construct a complete arrival table for the phase allocation algorithm. A real-world intersection is modeled in VISSIM to validate the algorithms. Results with a variety of connected vehicle market penetration rates and demand levels are compared to well-tuned fully actuated control. In general, the proposed control algorithm outperforms actuated control by reducing total delay by as much as 16.33% in a high penetration rate case and similar delay in a low penetration rate case. Different objective functions result in different behaviors of signal timing. The minimization of total vehicle delay usually generates lower total vehicle delay, while minimization of queue length serves all phases in a more balanced way.  相似文献   
283.
简要阐述青岛地铁线网无线统一调度系统互联互通实施方案的系统架构、核心设备功能、纵向统一调度方案、横向集群业务互联互通方案以及相应的业务流程等。该方案实现了青岛地铁不同品牌TETRA系统的线网纵向统一调度和线网横向集群业务的互联互通功能,解决了青岛地铁线路多品牌系统跨线运营的问题。  相似文献   
284.
鱼雷定深运动方程含有诸多的非线性项,用传统的分析方法对其稳定性进行研究有较大难度。运用非线性科学中的分叉理论,选定鱼雷定深运动方程中的某一流体动力系数扰动值为分叉参数,系统地分析在经典比例微分深度控制系统作用下,鱼雷在退化平衡点处的航行稳定性。利用中心流形定理,推导出系统状态变量解析表达式,对系统 Hopf分叉进行分析,并进行仿真验证。结果表明,流体动力系数变化使定深航行产生 Hopf分叉,并给出了确保鱼雷稳定航行的流体动力参数取值范围。  相似文献   
285.
Traffic flow optimization and driver comfort enhancement are the main contributions of an Adaptive Cruise Control (ACC) system. If communication links are added, more safety and shorter gaps can be reached performing a Cooperative-ACC (CACC). Although shortening the inter-vehicular distances directly improves traffic flow, it can cause string unstable behavior. This paper presents fractional-order-based control algorithms to enhance the car-following and string stability performance for both ACC and CACC vehicle strings, including communication temporal delay effects. The proposed controller is compared with state-of-the-art implementations, exhibiting better performance. Simulation and real experiments have been conducted for validating the approach.  相似文献   
286.
Traffic congestion and energy issues have set a high bar for current ground transportation systems. With advances in vehicular communication technologies, collaborations of connected vehicles have becoming a fundamental block to build automated highway transportation systems of high efficiency. This paper presents a distributed optimal control scheme that takes into account macroscopic traffic management and microscopic vehicle dynamics to achieve efficiently cooperative highway driving. Critical traffic information beyond the scope of human perception is obtained from connected vehicles downstream to establish necessary traffic management mitigating congestion. With backpropagating traffic management advice, a connected vehicle having an adjustment intention exchanges control-oriented information with immediately connected neighbors to establish potential cooperation consensus, and to generate cooperative control actions. To achieve this goal, a distributed model predictive control (DMPC) scheme is developed accounting for driving safety and efficiency. By coupling the states of collaborators in the optimization index, connected vehicles achieve fundamental highway maneuvers cooperatively and optimally. The performance of the distributed control scheme and the energy-saving potential of conducting such cooperation are tested in a mixed highway traffic environment by the means of microscopic simulations.  相似文献   
287.
无接缝、平整、行车舒适、噪音低以及振动小、易于养护等优点,使沥青混凝土路面成为我国国内公路面层普遍采用的一种比较好的结构形式。但是如果施工中不能按照施工工艺严格的进行施工质量控制,则很容易导致路面的一系列质量问题,这不仅影响使用功能,还影响影响其社会效益。  相似文献   
288.
对水泥混凝土工程中常见的裂缝问题进行分析,提出了一些预防、控制及处理措施。  相似文献   
289.
This research proposes an optimal controller to improve fuel efficiency for a vehicle equipped with automatic transmission traveling on rolling terrain without the presence of a close preceding vehicle. Vehicle acceleration and transmission gear position are optimized simultaneously to achieve a better fuel efficiency. This research leverages the emerging Connected Vehicle technology and utilizes present and future information—such as real-time dynamic speed limit, vehicle speed, location and road topography—as optimization input. The optimal control is obtained using the Relaxed Pontryagin’s Minimum Principle. The benefit of the proposed optimal controller is significant compared to the regular cruise control and other eco-drive systems. It varies with the hill length, grade, and the number of available gear positions. It ranges from an increased fuel saving of 18–28% for vehicles with four-speed transmission and 25–45% for vehicles with six-speed transmission. The computational time for the optimization is 1.0–2.1 s for the four-speed vehicle and 1.8–3.9 s for the six-speed vehicle, given a 50 s optimization time horizon and 0.1 s time step. The proposed controller can potentially be used in real-time.  相似文献   
290.
以某主跨390 m的独塔流线型钢箱梁斜拉桥为工程依托,采用风洞试验与计算流体动力学(Computational Fluid Dynamics,CFD)相结合的方法对流线型钢箱梁涡激振动机理与气动控制措施进行研究。首先,采用几何缩尺比为1∶30的主梁节段模型进行主梁涡振性能与气动控制措施优化研究;其次,采用CFD方法对主梁涡振响应进行流固耦合计算,将Newmark-β算法嵌入ANSYS Fluent用户自定义函数(User Defined Functions,UDFs)实现主梁结构振动响应求解,同时结合动网格技术实现主梁断面流固耦合分析;并根据判断条件来检索箱梁壁面上的网格单元,以获得主梁断面振动过程中的表面压力,然后结合主梁结构振动响应、表面压力以及流场特征等对主梁涡激振动机理进行分析。结果表明:该桥主梁原设计方案存在涡激共振现象,将梁底检修车轨道内移120 cm可有效抑制主梁涡振响应;主梁涡激振动响应的数值模拟结果与风洞试验结果吻合较好;检修车轨道内移120 cm后主要改变了箱梁下表面平均压力系数分布特性,且箱梁表面各测点脉动压力卓越频率不一致,有效减小了主梁涡激振动响应;流线型箱梁靠近迎风侧的“被动区域”对结构涡振响应贡献较小,背风侧“驱动区域”发生周期性旋涡脱落是影响流线型箱梁涡振的主要因素。  相似文献   
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