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1.
声表面波气体传感器器件的设计   总被引:1,自引:0,他引:1  
论述了声表面波气体传感器器件的结构设计及设计参数的选择,设计了ST和AT不同切向的石英晶体材料做压电基片材料的三种振荡器,通过电性能参数的测试,比较了三种振荡器的性能优劣。  相似文献   
2.
为解决目前自主式水下滑翔机的导航技术、水声通信以及组网技术3个分支专利数量较少,存在一定的技术瓶颈和技术壁垒的问题,本文基于自主式水下滑翔机的功能、效果、适用等技术需求,将其研究范围扩展至水下航行器领域,通过对扩展领域中导航技术、水声通信技术以及组网技术的专利申请进行多角度分析,得到了3个分支在扩展领域的专利申请趋势、主要技术来源地、活跃度以及国内主要申请人等结论,以对自主式水下滑翔机的研究进行技术支撑。  相似文献   
3.
针对行人轨迹预测具有复杂、拥挤的场景和社会交互问题,基于长短时记忆网络(Long Short-term Memory Network, LSTM)对行人与车辆、行人与其他行人的交互进行建模,提出一种基于人-车交互的行人轨迹预测模型(VP-LSTM)。该模型同时考虑了行人与行人的交互、行人与车辆的交互,更适用于复杂的交通场景。所构建的VP-LSTM包括3个输入,以行人的方向和速度作为历史轨迹序列输入,行人与行人的相对位置作为人-人交互信息输入,行人与车辆的相对位置作为人-车交互信息输入。该方法首先设计扇形人-人交互邻域和圆形人-车交互邻域来准确捕捉对被预测行人有相互作用的行人和车辆;其次建立3种不同的LSTM编码层来编码历史行人轨迹序列、人-人、人-车社交信息;然后定义人-人、人-车交互的防碰撞函数和方向注意力函数作为人-车、人-人社交信息的权重,进一步提高社会信息的精度;再将人-人、人-车交互信息输入到注意力模块中筛选出对行人影响大的社会信息;最后将筛选后的社会信息与行人历史轨迹序列一起输入到LSTM神经网络中进行行人轨迹预测,并在构建的DUT人-车交互数据集上验证提出的网络。研究结果表明:提出的方法能够准确地预测出交通场景中,人-车交互行人未来一段时间内的运动轨迹,有效提高了预测精度,提高了智能驾驶决策的准确性。  相似文献   
4.
本文模拟建立了潜艇均衡系统自流注水试验系统,对不同假海压力、不同系统流量、不同出口背压及串联2台调节阀时自流注水稳定过程振动噪声进行研究。结果表明:潜艇均衡注水振动噪声随着假海深度的增大而增大;空气噪声随流量调节阀开度的增大而增大,在流量调节阀开度为60°-70°之间,振动加速度及水动力噪声产生峰值;在出口背压为0-0.5 MPa之间时,振动噪声值均大于无背压状态,峰值为0.2 MPa;串联2台流量调节阀可大幅降低自流注水振动噪声。  相似文献   
5.
With trajectory data, a complete microscopic and macroscopic picture of traffic flow operations can be obtained. However, trajectory data are difficult to observe over large spatiotemporal regions—particularly in urban contexts—due to practical, technical and financial constraints. The next best thing is to estimate plausible trajectories from whatever data are available. This paper presents a generic data assimilation framework to reconstruct such plausible trajectories on signalized urban arterials using microscopic traffic flow models and data from loops (individual vehicle passages and thus vehicle counts); traffic control data; and (sparse) travel time measurements from whatever source available. The key problem we address is that loops suffer from miss- and over-counts, which result in unbounded errors in vehicle accumulations, rendering trajectory reconstruction highly problematic. Our framework solves this problem in two ways. First, we correct the systematic error in vehicle accumulation by fusing the counts with sparsely available travel times. Second, the proposed framework uses particle filtering and an innovative hierarchical resampling scheme, which effectively integrates over the remaining error distribution, resulting in plausible trajectories. The proposed data assimilation framework is tested and validated using simulated data. Experiments and an extensive sensitivity analysis show that the proposed method is robust to errors both in the model and in the measurements, and provides good estimations for vehicle accumulation and vehicle trajectories with moderate sensor quality. The framework does not impose restrictions on the type of microscopic models used and can be naturally extended to include and estimate additional trajectory attributes such as destination and path, given data are available for assimilation.  相似文献   
6.
Recently connected vehicle (CV) technology has received significant attention thanks to active pilot deployments supported by the US Department of Transportation (USDOT). At signalized intersections, CVs may serve as mobile sensors, providing opportunities of reducing dependencies on conventional vehicle detectors for signal operation. However, most of the existing studies mainly focus on scenarios that penetration rates of CVs reach certain level, e.g., 25%, which may not be feasible in the near future. How to utilize data from a small number of CVs to improve traffic signal operation remains an open question. In this work, we develop an approach to estimate traffic volume, a key input to many signal optimization algorithms, using GPS trajectory data from CV or navigation devices under low market penetration rates. To estimate traffic volumes, we model vehicle arrivals at signalized intersections as a time-dependent Poisson process, which can account for signal coordination. The estimation problem is formulated as a maximum likelihood problem given multiple observed trajectories from CVs approaching to the intersection. An expectation maximization (EM) procedure is derived to solve the estimation problem. Two case studies were conducted to validate our estimation algorithm. One uses the CV data from the Safety Pilot Model Deployment (SPMD) project, in which around 2800 CVs were deployed in the City of Ann Arbor, MI. The other uses vehicle trajectory data from users of a commercial navigation service in China. Mean absolute percentage error (MAPE) of the estimation is found to be 9–12%, based on benchmark data manually collected and data from loop detectors. Considering the existing scale of CV deployments, the proposed approach could be of significant help to traffic management agencies for evaluating and operating traffic signals, paving the way of using CVs for detector-free signal operation in the future.  相似文献   
7.
随着对舰船声隐身性能要求的不断提高,舰船隔声材料不仅要轻质还应具有优良的隔声性能。夹层板结构具有轻质,且在高频段具有良好的隔声性能,但其在中低频段隔声性能不是很理想。薄膜型声学超材料结构具有良好的低频带隔声性能,因此本文将薄膜型声学超材料引入传统蜂窝夹层板结构中,设计新的超材料蜂窝夹层板结构。通过数值方法对不同形状质量块超材料结构的隔声特性进行分析,并探讨蜂窝边框形状、质量块大小以及薄膜预应力对米字形质量块超材料结构隔声特性的影响。  相似文献   
8.
为了解决传统匝道控制车流汇入时车辆需要减速至停止,从而造成延误时间过长的问题,提出了一种智能网联车环境下的高速匝道汇入车辆轨迹优化的两阶段优化模型,其中,第1 阶段优化车辆进入匝道口的时序;第2 阶段基于第1 阶段的最优时序,优化车辆轨迹. 根据所构建的模型设计了一种启发式算法优化车辆通过匝道冲突区域的时序,然后结合 GPOPS工具优化车辆的轨迹.为了验证所提出方法的有效性,将所提出的方法应用到20 min 随机到达的车流,进行仿真实验.实验结果表明,与先进先出的方法相比,本文所提出的方法能够使总延误减少59.7%,总油耗减少10.5%,说明该方法能够实现车辆以较高的速度通过匝道冲突区域,有效地减少了车辆汇入延误,同时也节约了油耗.  相似文献   
9.
This paper investigates the market potential and environmental benefits of replacing internal combustion engine (ICE) vehicles with battery electric vehicles (BEVs) in the taxi fleet in Nanjing, China. Vehicle trajectory data collected by onboard global positioning system (GPS) units are used to study the travel patterns of taxis. The impacts of charger power, charging infrastructure coverage, and taxi apps on the feasibility of electric taxis are quantified, considering taxi drivers’ recharging behavior and operating activities. It is found that (1) depending on the charger power and coverage, 19% (with AC Level 2 chargers and 20% charger network coverage) to 56% (with DC chargers and 100% charger network coverage) of the ICE vehicles can be replaced by electric taxis without driving pattern changes; (2) by using taxi apps to find nearby passengers and charging stations, drivers could utilize the empty cruising time to charge the battery, which may increase the acceptance of BEVs by up to 82.6% compared to the scenario without taxi apps; and (3) tailpipe emissions in urban areas could be significantly reduced with taxi electrification: a mixed taxi fleet with 46% compressed-natural-gas-powered (CNG) and 54% electricity-powered vehicles can reduce the tailpipe emissions by 48% in comparison with the fleet of 100% CNG taxis.  相似文献   
10.
Carpooling has been considered a solution for alleviating traffic congestion and reducing air pollution in cities. However, the quantification of the benefits of large-scale carpooling in urban areas remains a challenge due to insufficient travel trajectory data. In this study, a trajectory reconstruction method is proposed to capture vehicle trajectories based on citywide license plate recognition (LPR) data. Then, the prospects of large-scale carpooling in an urban area under two scenarios, namely, all vehicle travel demands under real-time carpooling condition and commuter vehicle travel demands under long-term carpooling condition, are evaluated by solving an integer programming model based on an updated longest common subsequence (LCS) algorithm. A maximum weight non-bipartite matching algorithm is introduced to find the optimal solution for the proposed model. Finally, road network trip volume reduction and travel speed improvement are estimated to measure the traffic benefits attributed to carpooling. This study is applied to a dataset that contains millions of LPR data recorded in Langfang, China for 1 week. Results demonstrate that under the real-time carpooling condition, the total trip volumes for different carpooling comfort levels decrease by 32–49%, and the peak-hour travel speeds on most road segments increase by 5–40%. The long-term carpooling relationship among commuter vehicles can reduce commuter trips by an average of 30% and 24% in the morning and evening peak hours, respectively, during workdays. This study shows the application potential and promotes the development of this vehicle travel mode.  相似文献   
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