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661.
A novel method to extract multiple input and multiple output (MIMO) chaotic signals was proposed using the blind neural algorithm after transmitting in nonideal channel. The MIMO scheme with different chaotic signal generators was presented. In order to separate the chaotic source signals only by using the sensor signals at receivers, a blind neural extraction algorithm based on higher-order statistic (HOS) technique was used to recover the primary chaotic signals. Simulation results show that the proposed approach has good performance in separating the primary chaotic signals even under nonideal channel.  相似文献   
662.
Research on using high-resolution event-based data for traffic modeling and control is still at early stage. In this paper, we provide a comprehensive overview on what has been achieved and also think ahead on what can be achieved in the future. It is our opinion that using high-resolution event data, instead of conventional aggregate data, could bring significant improvements to current research and practices in traffic engineering. Event data records the times when a vehicle arrives at and departs from a vehicle detector. From that, individual vehicle’s on-detector-time and time gap between two consecutive vehicles can be derived. Such detailed information is of great importance for traffic modeling and control. As reviewed in this paper, current research has demonstrated that event data are extremely helpful in the fields of detector error diagnosis, vehicle classification, freeway travel time estimation, arterial performance measure, signal control optimization, traffic safety, traffic flow theory, and environmental studies. In addition, the cost of event data collection is low compared to other data collection techniques since event data can be directly collected from existing controller cabinet without any changes on the infrastructure, and can be continuously collected in 24/7 mode. This brings many research opportunities as suggested in the paper.  相似文献   
663.
不同业务优先级高速铁路用户的爆炸式业务需求与稀缺频谱资源的矛盾日益突出。针对运行于不同地形环境、在相同eNB覆盖范围内的高速铁路次用户的频谱共享博弈问题进行研究。基于次用户承载业务的不同优先级,提出模糊综合评判-优先级调度算法,将次用户间的频谱竞争建模为非合作博弈,通过次服务的频谱效用函数、主系统的频谱交易价格函数实现次用户间的差异化动态频谱共享。仿真结果表明,算法较好地反映了真实的频谱共享情形,可以更加准确地对次用户频谱需求进行业务优先级划分,提高频谱利用率的同时保证了其最大效用。  相似文献   
664.
邻近既有高铁新建线的地基加固会严重影响既有高铁运营安全,地基加固方案优选是近接工程研究的焦点问题之一,但目前针对近接工程地基方案优选研究较少。结合既有高铁近接工程特点,在综合考虑影响地基加固方案选择因素基础上,建立地基加固方案优选指标;提出基于三角模糊数-TOPSIS优选模型,并将其应用于新建曲阜至临沂线近接京沪高铁地基加固方案优选进行分析验证。研究结果表明:该模型对于近接既有高铁地基加固方案优选具有一定可靠性与实用性,不仅为近接地基加固方案优选提供了一种新方法,同时为建立近接工程类似项目的综合评价指标和优选方案奠定了理论基础。  相似文献   
665.
本文提出一种兼顾电池SOC限值方法的混合动力汽车多种群遗传模糊控制策略。引入模糊逻辑控制以增强整车控制系统鲁棒性、实时性;用多种群遗传算法对模糊变量隶属度函数进行优化,使在模糊逻辑控制下整车燃油消耗得到降低;使用电池SOC限值方法避免电池在SOC过低时继续放电。利用matlab平台联合advisor软件进行联合仿真实验,仿真结果表明多种群遗传模糊模糊控制策略能够比advisor软件默认的电机辅住控制策略燃油经济性提高6.96%的情况,SOC限值方法使电池工作在更加合理的SOC值区间范围内,有效保护电池。  相似文献   
666.
The interdependence and complexity of socio-technical systems and availability of a wide variety of policy measures to address policy problems make the process of policy formulation difficult. In order to formulate sustainable and efficient transport policies, development of new tools and techniques is necessary. One of the approaches gaining ground is policy packaging, which shifts focus from implementation of individual policy measures to implementation of combinations of measures with the aim of increasing efficiency and effectiveness of policy interventions by increasing synergies and reducing potential contradictions among policy measures. In this paper, we describe the development of a virtual environment for the exploration and analysis of different configurations of policy measures in order to build policy packages. By developing systematic approaches it is possible to examine more alternatives at a greater depth, decrease the time required for the overall analysis, provide real-time assessment and feedback on the effect of changes in the configurations, and ultimately form more effective policies. The results from this research demonstrate the usefulness of computational approaches in addressing the complexity inherent in the formulation of policy packages. This new approach has been applied to the formulation of policies to advance sustainable transportation.  相似文献   
667.
668.
为了监测与评判道路上行驶的智能汽车的实时状态,基于研发的智能汽车的车载感知系统,包括通过视觉传感器、激光雷达、GPS定位、车载传感器系统及车载总线获取车内及周围环境信息。采用V2X通讯设备等获取路侧端雷视一体机、路侧传感器、气象传感器传输的交通信息,通过V2X通讯设备、4G通讯模块传送到云服务器并建立模糊评判模型。基于可信度的模糊推理算法对环境信息和交通信息进行融合,并以此为依据对行驶车辆的状态进行评判。首先,建立针对车辆行驶状态的模糊评判集合和各参数隶属度函数,计算出各参数的隶属度,并对行驶车辆的各个参数建立典型的行驶状态评判参数数据集合。其次,采用模糊假言推理方法,以典型的数据集合为基础建立带可信度和阈值的模糊规则库。应用麦姆德尼方法,建立与规则库的每个规则所对应的模糊关系矩阵库。以车辆行驶时接收到的车载端和路侧端信息作为输入,应用规则库规则进行带有可信度的模糊推理。然后,以相似度作为匹配度,对推理规则设定阈限,按照证据与规则的前件不相等的情况,计算结论的可信度得出结论。对结论进行冲突消解时,冲突消解的策略为取可信度高的结论。最后,应用匹配度对结论的可靠性进行验证,并在多个道路场景实时行驶的车辆上对算法进行试验验证。研究结果表明:算法对行驶车辆状态的评判与实车的状态相一致,可实现对车辆不安全状态的报警与行驶状态的干预,对保障行车安全有显著积极的实际应用意义。  相似文献   
669.
670.
In the past few years, vehicular ad hoc networking (VANET) has attracted significant attention and many fundamental issues have been investigated, such as network connectivity, medium access control (MAC) mechanism, routing protocol, and quality of service (QoS). Nevertheless, most related work has been based on simplified assumptions on the underlying vehicle traffic dynamics, which has a tight interaction with VANET in practice. In this paper, we try to investigate VANET performance from the vehicular cyber-physical system (VCPS) perspective. Specifically, we consider VANET connectivity of platoon-based VCPSs where all vehicles drive in platoon-based patterns, which facilitate better traffic performance as well as information services. We first propose a novel architecture for platoon-based VCPSs, then we derive the vehicle distribution under platoon-based driving patterns on a highway. Based on the results, we further investigate inter-platoon connectivity in a bi-directional highway scenario and evaluate the expected time of safety message delivery among platoons, taking into account the effects of system parameters, such as traffic flow, velocity, platoon size and transmission range. Extensive simulations are conducted which validate the accuracy of our analysis. This study will be helpful to understand the behavior of VCPSs, and will be helpful to improve vehicle platoon design and deployment.  相似文献   
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