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21.
22.
利用北斗授时技术实现高速铁路信号系统时钟自动同步,有利于提高系统信息安全和维护水平,但目前北斗授时技术在铁路信号系统中尚无应用先例。结合高速铁路信号系统地面设备时钟同步应用现状,分析信号地面设备时钟同步需求;通过分析世界上主流卫星导航系统优缺点,结合中国铁路信号系统需求,选择北斗授时技术作为高速铁路信号系统地面设备的时钟同步技术;构建基于北斗授时技术的总体方案和具体应用方案;最后对时钟同步设备功能、系统接口和测试方案进行说明。研究成果已在中国铁路广州铁路局集团有限公司广深线实施,实现了信号系统地面设备的时钟自动同步。 相似文献
23.
以重庆沙坪坝铁路枢纽综合改造工程开挖形成的岩质直立边坡为原型,利用FLAC3D软件建立数值计算模型,分析预应力锚板墙边坡支护结构在不同开挖位置的爆破荷载作用下的动力响应特性。在此基础上,讨论锚杆预应力大小、爆破峰值荷载和锚固段长度几种参数对于支护结构受力状态和结构变形的影响。计算结果表明:爆破作用下锚杆轴力增量分布与静力作用下相似,并且锚杆轴力增量和板墙位移都在边坡中部达到最大,而上下位置较小。对比锚杆轴力增量和板墙水平位移增量的数值模拟和理论计算结果,验证了板—锚结构之间存在的变形协调现象。通过各种影响因素的计算结果分析得到了岩质边坡预应力锚板墙支护在爆破作用下的动力变化规律。 相似文献
24.
从工程设计实际应用出发,对采用网络规划软件进行网络规划前期各设计阶段的无线网络覆盖预测方法进行了探讨。 相似文献
25.
基于周期时变特点的城市轨道交通短期客流预测研究 总被引:1,自引:0,他引:1
分析了城市轨道交通客流的周期时变性特征,并根据该特征在GM(1,1)灰色预测模型的基础上改进了马尔科夫算法,以适用于城市轨道交通短期客流预测。用无偏GM(1,1)模型拟合系统的发展变化趋势,再以此为基础进行了马尔科夫链预测,并采用多转移矩阵排除客流数据中噪声数据的扰动。试验结果表明,改进后的模型在城市轨道交通客流短期预测中具有良好的精确性。 相似文献
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28.
K. J. Spyrou 《Journal of Marine Science and Technology》1995,1(1):24-36
The behavior of a ship encountering large regular waves from astern at low frequency is the object of investigation, with a parallel study of surf-riding and periodic motion paterns. First, the theoretical analysis of surf-riding is extended from purely following to quartering seas. Steady-state continuation is used to identify all possible surf-riding states for one wavelength. Examination of stability indicates the existence of stable and unstable states and predicts a new type of oscillatory surf-riding. Global analysis is also applied to determine the areas of state space which lead to surf-riding for a given ship and wave conditions. In the case of overtaking waves, the large rudder-yaw-surge oscillations of the vessel are examined, showing the mechanism and conditions responsible for loss of controllability at certain vessel headings.List of symbols
c
wave celerity (m/s)
-
C(p)
roll damping moment (Ntm)
-
g
acceleration of gravity (m/s2)
-
GM
metacentric height (m)
-
H
wave height (m)
-
I
x
,I
z
roll and yaw ship moments of inertia (kg m2)
-
k
wave number (m–1)
-
K
H
,K
W
,K
R
hull reaction, wave, rudder, and propeller
-
K
p
forces in the roll direction (Ntm)
-
m
ship mass (kg)
-
n
propeller rate of rotation (rpm)
-
N
H
,N
W
,N
R
hull reaction, wave, rudder, and propeller
-
N
P
moments in the yaw direction (Ntm)
-
p
roll angular velocity (rad/s)
-
r
rate-of-turn (rad/s)
-
R(,x)
restoring moment (Ntm)
-
Res(u)
ship resistance (Nt)
-
t
time (s)
-
u
surge velocity (m/s)
-
U
vessel speed (m/s)
-
v
sway velocity (m/s)
-
W
ship weight (Nt)
-
x
longitudinal position of the ship measured from the wave system (m)
-
x
G
,z
G
longitudinal and vertical center of gravity (m)
-
x
S
longitudinal position of a ship section (S), in the ship-fixed system (m)
-
X
H
,X
W
,X
R
hull reaction, wave, rudder, and propeller
-
X
P
forces in the surge direction (Nt)
-
y
transverse position of the ship, measured from the wave system (m)
-
Y
H
,Y
W
,Y
R
hull reaction, wave, rudder, and propeller
-
Y
p
forces in the sway direction (Nt)
-
z
Y
vertical position of the point of action of the lateral reaction force during turn (m)
-
z
W
vertical position of the point of action of the lateral wave force (m)
Greek symbols
angle of drift (rad)
-
rudder angle (rad)
-
wavelength (m)
-
position of the ship in the earth-fixed system (m)
-
water density (kg/m3)
-
angle of heel (rad)
-
heading angle (rad)
-
e
frequency of encounter (rad/s)
Hydrodynamic coefficients
K
roll added mass
-
N
v
,N
r
yaw acceleration coefficients
-
N
v
N
r
N
rr
N
rrv
,N
vvr
yaw velocity coefficients K. Spyrou: Ship behavior in quartering waves
-
X
u
surge acceleration coefficient
-
X
u
X
vr
surge velocity coefficients
-
Y
v
,Y
r
sway acceleration coefficients
-
Y
v
,Y
r
,Y
vv
,Y
rr
,Y
vr
sway velocity coefficients
European Union-nominated Fellow of the Science and Technology Agency of Japan, Visiting Researcher, National Research Institute of Fisheries Engineering of Japan 相似文献
29.
阐述利用示波器对柴油发动机喷油系统压力波形进行检测,并利用检测的压力波形对其故障进行诊断的基本原理和方法。 相似文献
30.
The timing and duration of an activity episode are two important temporal aspects of activity-travel behavior. Understanding the causal relationship between these two variables would be useful in the development of activity-based travel demand modeling systems. This paper investigates the relationship between these two variables by considering two different causal structures – one structure in which time-of-day choice is determined first and influences duration and a second structure in which activity duration is determined first and affects time-of-day choice. These two structures are estimated within a discrete-continuous simultaneous equations framework employing a full-information maximum likelihood methodology that allows error covariance. The estimation is performed separately for commuter and non-commuter samples drawn from a 1996 household travel survey data set from the Tampa Bay area in Florida. The results of the model estimation effort show that the causal structure in which activity duration precedes or affects activity timing (time of day choice) performs better for the non-commuter sample. For the commuter sample, the findings were less conclusive with both causal structures offering equally good statistical measures of fit. In addition, for the commuter sample, all error correlations were found to be zero. These two findings suggest that time of day choice and activity episode duration are only loosely related for the commuter sample, possibly due to the relatively non-discretionary and inflexible work activity and travel. 相似文献