为解决当前移动无线传感网数据控制传输中存在的链路抖动难以控制、同步误差较大以及网络拓扑结构不稳定等问题,提出了一种基于似然估计补偿机制的移动无线传感网数据控制同步传输算法(Data Transmission Synchronization algorithm In ...为解决当前移动无线传感网数据控制传输中存在的链路抖动难以控制、同步误差较大以及网络拓扑结构不稳定等问题,提出了一种基于似然估计补偿机制的移动无线传感网数据控制同步传输算法(Data Transmission Synchronization algorithm In Mobile Wireless Sensor Networks based on Likelihood Estimation Compensation Mechanism,DTS-LECM算法).首先,通过移动无线传感网MAC层的标记可移动特性,设计了基于分层区域节点-子节点的数据传输结构,联合广播机制,实现了区域节点的初始化,有效降低了数据控制同步误差,提高区域节点-子节点结构的生存质量;随后,基于数据分组双向交互方式,构建似然估计补偿机制,以实现区域节点控制信息同步,有效促进区域节点之间数据控制同步传输过程中链路的稳定性,且能够对频率偏移、相位偏移的精确计算,显著提高传输过程中的数据稳定性;最后,再次利用数据分组双向交互方式对区域子节点的信息进行精确同步,取得了较好的数据同步效果,且具有数据抖动发生频率低的效果.仿真实验表明,与当前常见的时间同步控制算法(Time Synchronization Control Algorithm,TSC算法)、相位同步控制算法(Phase Synchronization Control Algorithm,PSC算法)和信息片层次分组控制同步算法(Synchronization algorithm for Hierarchical Packet Control of Slices,HPCS-S算法)相比,DTS-LECM算法具有更高的控制精度与更低的分组丢包率,且链路抖动频率分布更加集中.所提算法具有较高的数据传输性能,可运用于公安系统的信号定位,以及抗洪抢险等领域,具有一定的实际应用价值.展开更多
This article analyzes the shift factors of the descending node local time for sun-synchronous satellites and proposes a shift control method to keep the local time shift within an allowance range. It is found that the...This article analyzes the shift factors of the descending node local time for sun-synchronous satellites and proposes a shift control method to keep the local time shift within an allowance range. It is found that the satellite orbit design and the orbit injection deviation are the causes for the initial shift velocity, whereas the atmospheric drag and the sun gravitational perturbation produce the shift acceleration. To deal with these shift factors, a shift control method is put forward, through such methods as orbit variation design, orbit altitude, and inclination keeping control. The simulation experiment and practical application have proved the effectiveness of this control method.展开更多
A reliable multiphase flow simulator is an important tool to improve wellbore integrity and production decision-making.To develop a multiphase flow model with high adaptability and high accuracy,we first build a multi...A reliable multiphase flow simulator is an important tool to improve wellbore integrity and production decision-making.To develop a multiphase flow model with high adaptability and high accuracy,we first build a multiphase flow database with 3561 groups of data and developed a drift closure relationship with stable continuity and high adaptability.Second,a high-order numerical scheme with strong fault capture ability is constructed by effectively combining MUSCL technology,van Albada slope limiter and AUSMV numerical scheme.Finally,the energy equation is coupled into the AUSMV numerical scheme of the drift flow model in the form of finite difference.A transient non-isothermal wellbore multiphase flow model with wide applicability is formed by integrating the three technologies,and the effects of various factors on the calculation accuracy are studied.The accuracy of the simulator is verified by comparing the measurement results with the blowout experiment of a full-scale experimental well.展开更多
文摘为解决当前移动无线传感网数据控制传输中存在的链路抖动难以控制、同步误差较大以及网络拓扑结构不稳定等问题,提出了一种基于似然估计补偿机制的移动无线传感网数据控制同步传输算法(Data Transmission Synchronization algorithm In Mobile Wireless Sensor Networks based on Likelihood Estimation Compensation Mechanism,DTS-LECM算法).首先,通过移动无线传感网MAC层的标记可移动特性,设计了基于分层区域节点-子节点的数据传输结构,联合广播机制,实现了区域节点的初始化,有效降低了数据控制同步误差,提高区域节点-子节点结构的生存质量;随后,基于数据分组双向交互方式,构建似然估计补偿机制,以实现区域节点控制信息同步,有效促进区域节点之间数据控制同步传输过程中链路的稳定性,且能够对频率偏移、相位偏移的精确计算,显著提高传输过程中的数据稳定性;最后,再次利用数据分组双向交互方式对区域子节点的信息进行精确同步,取得了较好的数据同步效果,且具有数据抖动发生频率低的效果.仿真实验表明,与当前常见的时间同步控制算法(Time Synchronization Control Algorithm,TSC算法)、相位同步控制算法(Phase Synchronization Control Algorithm,PSC算法)和信息片层次分组控制同步算法(Synchronization algorithm for Hierarchical Packet Control of Slices,HPCS-S算法)相比,DTS-LECM算法具有更高的控制精度与更低的分组丢包率,且链路抖动频率分布更加集中.所提算法具有较高的数据传输性能,可运用于公安系统的信号定位,以及抗洪抢险等领域,具有一定的实际应用价值.
基金supported by the China Postdotoral Science Foundation(20060401004)
文摘This article analyzes the shift factors of the descending node local time for sun-synchronous satellites and proposes a shift control method to keep the local time shift within an allowance range. It is found that the satellite orbit design and the orbit injection deviation are the causes for the initial shift velocity, whereas the atmospheric drag and the sun gravitational perturbation produce the shift acceleration. To deal with these shift factors, a shift control method is put forward, through such methods as orbit variation design, orbit altitude, and inclination keeping control. The simulation experiment and practical application have proved the effectiveness of this control method.
基金The work was supported by the National Natural Science Foundation of China(No.51874045)National Natural Science Foundation-Youth Foundation(52104056)+2 种基金Department of Natural Resources of Guangdong Province(GDNRC[2021]56)Postdoctoral innovative talents support program in China(BX2021374)Scientific Research Program of Hubei Provincial Department of Education(T2021004).
文摘A reliable multiphase flow simulator is an important tool to improve wellbore integrity and production decision-making.To develop a multiphase flow model with high adaptability and high accuracy,we first build a multiphase flow database with 3561 groups of data and developed a drift closure relationship with stable continuity and high adaptability.Second,a high-order numerical scheme with strong fault capture ability is constructed by effectively combining MUSCL technology,van Albada slope limiter and AUSMV numerical scheme.Finally,the energy equation is coupled into the AUSMV numerical scheme of the drift flow model in the form of finite difference.A transient non-isothermal wellbore multiphase flow model with wide applicability is formed by integrating the three technologies,and the effects of various factors on the calculation accuracy are studied.The accuracy of the simulator is verified by comparing the measurement results with the blowout experiment of a full-scale experimental well.