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31.
Mode decision based on rate-distortion optimization algorithm brings high compression efficiency to H.264/AVC. However, heavy computation load is also added to the encoder at the same time. In order to reduce the computation burden of mode decision, this paper presented a fast mode decision method based on mode information of the previously coded frame. Moreover, all coding modes were activated when scene change occurs and a scheme to detect scene change was proposed. The simulation results show that compared to the original encoder, the proposed method achieves a reduction of over 38% encoding time and keeps almost the same PSNR and bitrate for a wide range of quantization parameter. 相似文献
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公路轻型砌块式挡土墙受力特性及设计计算方法研究 总被引:2,自引:0,他引:2
提出一种运用于公路的轻型砌块挡土墙,对其结构体系及组成进行了概述。利用Marc有限元程序对局部砌块单元以及整体结构的变形及受力进行了受力分析,对该挡土结构的整体设计计算及稳定性分析方法进行了探讨。分析结果与工程实用经验表明,H形砌块挡土结构能充分利用材料的抗压性能,施工速度快、排水性能良好、可承受一定的沉降量及沉降差等优点。 相似文献
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路中高架车站的景观设计 总被引:3,自引:0,他引:3
论述高架车站景观设计的研究背景;从行人对外部空间的感受入手,对路中高架车站景观设计中首先应当考虑的核心要素(城市、行人、车站功能等)进行分析;通过建立计算机模型、分析建成车站实例、引入D/H理论(D为视点到视觉对象的距离,H为视觉对象的高度)等方法,对这些核心要素进行研究. 相似文献
36.
刘国梁 《铁路通信信号工程技术》2011,8(3):43-47
H.264虽然是一个划时代的数字视频压缩标准,但是随着数字视频产业链的高速发展,H.264的局限性逐步显现,并且由于H.264标准核心压缩算法的完全固化,并不能够通过调整或扩充来更好地满足当前高清数字视频应用。通过描述H.264的关键技术,重点分析H.264的优缺点,并指出H.264向H.265数字视频压缩技术升级带来的变化和技术提升。 相似文献
37.
在对沥青路面施工系统分析的基础上,建立了基于GPSS/H系统仿真软件的沥青路面机械化施工仿真模型.对某路段沥青路面施工实例进行了仿真分析,确定了沥青路面机群施工机械的优化配置方案,该方案实现了沥青路面施工机械的最佳配置,提高了施工效率. 相似文献
38.
用~3H和地高辛配基标记肿瘤坏死因子-αcDNA探针以及原位杂文技术检测33例子宫颈癌和28例阴道尖锐湿疣活检标本中的TNF mRNA。结果表明,两种标记探针原位杂交结果基本一致,~3H标记探针敏感性稍高于地高辛配基标记探针。但放射性核素探针的固有缺点及非同位素探针的安全、快速、方便使非同位素探针有着日益广泛的应用前景。 相似文献
39.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(5):385-412
This paper presents an approach to design the H ∞/GH 2 static-output feedback controller for vehicle suspensions by using linear matrix inequalities (LMIs) and genetic algorithms (GAs). Three main performance requirements for an advanced vehicle suspension are considered in this paper. Among these requirements, the ride-comfort performance is optimized by minimizing the H ∞ norm of the transfer function from the road disturbance to the sprung mass acceleration, while the road-holding performance and the suspension deflection limitation are guaranteed by constraining the generalized H 2 (GH 2) norms of the transfer functions from the road disturbance to the dynamic tyre load and the suspension deflection to be less than their hard limits, respectively. At the same time, the controller saturation problem is considered by constraining its peak response output to be less than a given limit using the GH 2 norm as well. A four-degree-of-freedom half-car model with active suspension system is applied in this paper. Several kinds of H ∞/GH 2 static-output feedback controllers, which use the available sprung mass velocities or the suspension deflections as feedback signals, are obtained by using the GAs to search for the possible control gain matrices and then resolving the LMIs together with the minimization optimization problem. These designed H ∞/GH 2 static-output feedback controllers are validated by numerical simulations on both the bump and the random road responses which show that the designed H ∞/GH 2 static-output feedback controllers can achieve similar or even better active suspension performances compared with the state-feedback control case in spite of their simplicities. 相似文献
40.
ABSTRACTAccurate identification of vehicle inertial parameters is essential to the design of vehicle dynamics control systems. In this paper, a novel vehicle inertial parameter identification method based on the dual H infinity filter (DHIF) for electric vehicles (EVs) is proposed. The filter algorithm employs a nonlinear longitudinal vehicle model with three vehicle states. A hierarchical framework is engaged by the DHIF to estimate the vehicle states and inertial parameters concurrently. In order to minimise the disturbance of unknown noise, the vehicle states are estimated by using the linear H infinity filter (LHIF), while the nonlinear H infinity filter (NHIF) utilises the observed states to identify the vehicle inertial parameters. Finally, the proposed estimation method is verified and compared through the dSPACE based hardware-in-the-loop (HIL) simulation experiments. The results indicate that the DHIF-based estimation method is effective to identify the vehicle inertial parameters with high precision, remarkable robustness, and quick convergence. 相似文献