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1)  network-induced delay
网络诱导延时
1.
The object of simulation is chosen from Benchmark Challenge II established by ALSTOM,and the results show that neural-network based PI controller can make a good control performance and the network-induced delay will deteriorate the control performance even make the system unsteady.
利用MATLAB/SIMULINK对以神经网络整定的网络先进控制系统进行了仿真,仿真对象采用的是ALSTOM提出的BENCHMARK CHALLENGE II中的汽化器模型,从仿真结果可以看出基于神经网络整定PI的控制器有较好的控制效果,但是网络诱导延时的引入对神经网络调节PI参数会造成较大影响,甚至导致系统不稳定。
2)  network-induced delay
网络诱导时延
1.
In terms of the NCS model,the sufficient condition for NCS stability is given by using Lyapunov theorem and Razumikhin theorem,and also the bound of network-induced delay is given.
针对传感器为时钟驱动、执行器、控制器均为事件驱动的一类非线性网络控制系统(net-worked control systems,NCS),通过在信息接收端设置一定长度的缓存,可以将时变的网络诱导时延转化为固定时延,并且将此类NCS建模为一类具有输入输出时延的非线性时延系统。
2.
This paper researches the design of sliding-mode controller and stability problem for networked control systems with network-induced delay is studied.
研究具有网络诱导时延的网络控制系统滑模控制器设计及稳定性分析问题。
3.
To offset the adverse influence caused by network-induced delay,based on analyzing delay characteristic of Ethernet,a kind of improved neuron PID controller independing on the mathematical model of network-induced delay is proposed.
为了解决网络诱导时延给网络化控制系统(Networked Control Systems,NCSs)带来的不利影响,在分析Ethernet时延特性的基础上,提出了一种不依赖于网络诱导时延精确数学模型的改进的神经元PID控制器。
3)  network-induced time delay
网络诱导时延
1.
A discrete sliding mode control is proposed for the problem of network-induced time delays in networked control systems.
针对网络化控制系统中存在的网络诱导时延问题,提出了一种离散滑模控制方法。
2.
A networked linear quadratic Gauss (LQG) optimal control algorithm based on optimal predictive state estimation was proposed for networked control systems with network-induced time delay and packet loss.
针对网络化控制系统中存在的时变网络诱导时延和数据包丢失,提出基于最优预测状态估计的网络化线性二次型高斯(LQG)最优控制算法。
3.
To solve the problems of data packet dropout and network-induced time delay,the networked control system for something as a singular system is modeled to become an asynchronously dynamical discrete system if the relevant sensors and controllers/actuators are time-driven and event-driven,respectively.
基于数据包丢失现象和网络诱导时延的存在,当传感器采用时间驱动,控制器和执行器采用事件驱动时,将被控制对象为广义系统的网络控制系统建成异步动态的离散系统模型。
4)  network induced delay
网络诱导时延
1.
Some basic problems including time-varying transˉmission period,network scheduling,network induced delay,single-packet and multiple-transmission,wrong order of netˉwork packet,dropping network packets,driving mode of node and clock synchronization are discussed.
介绍了网络控制系统的概念 ,论述了网络控制系统中的基本问题 :时变传输周期、网络诱导时延、数据包丢失、单包传输和多包传输、数据包的时序错乱、网络调度、节点的驱动方式及时钟同步等。
5)  the self-similarity of network-induced delay
网络诱导延时自相似特性
6)  network induced delay
网络诱导时滞
补充资料:M67式延时杀伤手榴弹
m67式延时杀伤手榴弹
m67式延时杀伤手榴弹

概述

m67式延时杀伤手榴弹是在m33式防御型手榴弹基础上改进而成的,与m33式不同之处是多了一个保险夹。目前,该弹作为美陆军标准手榴弹之一种,仍在装备使用,且主要用于防御作战时杀伤有生目标。

结构特点

m67式手榴弹由弹体和引信组成。球形弹体用钢材制成,内装b炸药。引信为m213式延期引信。引信保险机构上增加一保险夹,可防止保险销被意外拉出,从而避免事故的发生,保险夹呈s形,用弹簧钢丝制成,一端套在引信体上,另一端夹住保险杆。使用时,卸掉保险夹后才能拔出保险销。

球形弹体是爆炸型弹最理想的弹体形状,弹体爆炸后破片分布均匀。

性能数据

弹径----63.5mm

全弹长----89.7mm

全弹质量----390g

弹体材料----钢

装药类型----b炸药

装药质量----180g

引信类型----m213式延期

延期时间----4~5s

有效杀伤半径----15m

投掷距离----40m

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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