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91.
调频连续波具有较长的脉宽和较大的信号带宽,通常采用去调频的处理方式,但是,去调频的处理会引入空变的相位误差。从去调频的处理方式入手,根据发射信号相位误差缓变的特点,提出了依据发射信号相位误差模型补偿空变相位误差的方法,并在理论上对该方法进行了推导。该补偿方法分为两步,从差频信号中去除发射信号相位误差,在残余视频相位误差校正之后,通过与补偿函数相乘去除剩余的相位误差。仿真和实测的实验结果表明,该方法能够克服目标距离的限制,有效地补偿空变相位误差带来的影响,提高脉压水平。提出的误差补偿方法能够很好地平衡系统负载、误差补偿精度和算法开销,具有较强实用性。 相似文献
92.
Fangruo Chen 《海军后勤学研究》2000,47(5):422-439
Consider a distribution system with a central warehouse and multiple retailers. Customer demand arrives at each of the retailers continuously at a constant rate. The retailers replenish their inventories from the warehouse which in turn orders from an outside supplier with unlimited stock. There are economies of scale in replenishing the inventories at both the warehouse and the retail level. Stockouts at the retailers are backlogged. The system incurs holding and backorder costs. The objective is to minimize the long‐run average total cost in the system. This paper studies the cost effectiveness of (R, Q) policies in the above system. Under an (R, Q) policy, each facility orders a fixed quantity Q from its supplier every time its inventory position reaches a reorder point R. It is shown that (R, Q) policies are at least 76% effective. Numerical examples are provided to further illustrate the cost effectiveness of (R, Q) policies. © 2000 John Wiley & Sons, Inc. Naval Research Logistics 47: 422–439, 2000 相似文献
93.
In this paper, two different kinds of (N, T)‐policies for an M/M/m queueing system are studied. The system operates only intermittently and is shut down when no customers are present any more. A fixed setup cost of K > 0 is incurred each time the system is reopened. Also, a holding cost of h > 0 per unit time is incurred for each customer present. The two (N, T)‐policies studied for this queueing system with cost structures are as follows: (1) The system is reactivated as soon as N customers are present or the waiting time of the leading customer reaches a predefined time T, and (2) the system is reactivated as soon as N customers are present or the time units after the end of the last busy period reaches a predefined time T. The equations satisfied by the optimal policy (N*, T*) for minimizing the long‐run average cost per unit time in both cases are obtained. Particularly, we obtain the explicit optimal joint policy (N*, T*) and optimal objective value for the case of a single server, the explicit optimal policy N* and optimal objective value for the case of multiple servers when only predefined customers number N is measured, and the explicit optimal policy T* and optimal objective value for the case of multiple servers when only predefined time units T is measured, respectively. These results partly extend (1) the classic N or T policy to a more practical (N, T)‐policy and (2) the conclusions obtained for single server system to a system consisting of m (m ≥ 1) servers. © 2000 John Wiley & Sons, Inc. Naval Research Logistics 47: 240–258, 2000 相似文献
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基于不可逆能量耗散的损伤变量定义方法和动态线粘弹性理论,建立了固体推进剂累积损伤模型,利用不同拉伸速率下的试验数据,拟合得到了推进剂破坏耗散能表达式,进而给出了推进剂在周期应力响应下的累积损伤计算式,并讨论了周期应力幅值和频率对累积损伤的影响,最后对某舰载发动机药柱进行了累积损伤及使用寿命分析。提出的累积损伤分析方法,为固体发动机贮存寿命预估提供了一条有益的技术途径。 相似文献
97.
推导了二元共晶系的热力学模型,改进了单参数的Margules方程,引入了温度项,利用实验值对方程中的参数进行了回归,结果表明该热力学模型是可行的,从而可以应用该模型计算二元共晶系相变材料的最低共熔点和组成。 相似文献
98.
采用粒子仿真方法直接跟踪颗粒相运动轨迹,采用NND格式求解NS方程,数值模拟了气-固两相自由射流流场.计算结果表明,将粒子仿真与CFD方法相结合是研究气-固两相流动问题的有效途径.颗粒相参数变化将对气体流场产生一定影响. 相似文献
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In this paper we study a machine repair problem in which a single unreliable server maintains N identical machines. The breakdown times of the machines are assumed to follow an exponential distribution. The server is subject to failure and the failure times are exponentially distributed. The repair times of the machine and the service times of the repairman are assumed to be of phase type. Using matrix‐analytic methods, we perform steady state analysis of this model. The time spent by a failed machine in service and the total time in the repair facility are shown to be of phase type. Several performance measures are evaluated. An optimization problem to determine the number of machines to be assigned to the server that will maximize the expected total profit per unit time is discussed. An illustrative numerical example is presented. © 2003 Wiley Periodicals, Inc. Naval Research Logistics 50: 462–480, 2003 相似文献