The efficient solver for EM scattering from complex target includes two meaning.
复杂目标电磁散射的高效求解包含两方面的含义。
The moment of method (MOM) and finite difference time domain (FDTD) are used to calculate the EM scattering from the 3D complex target.
利用矩量法(MOM)和时域有限差分法(FDTD)对复杂目标模型的电磁散射进行了数值计算和分析。
For the precise location of laser spot center on the complex target, a method based on residual pruning with geometric feature constraints is proposed.
为满足复杂靶标背景下激光光斑形心的高精度定位要求,提出了一种基于几何特征约束残差修剪的定位方法。
It can not only apply in calculating of target optical scatting, but also in modeling and simulating for microwave scattering characteristics of complex target.
不但可在目标光散射计算中得到应用,也可应用于对复杂目标的微波散射特性计算建模和仿真中。
The key and difficulty of the modeling is how to solve the problem that different parts of the complex target occlude each other and light scatters in the target.
对于卫星等复杂空间目标,进行光散射建模计算的关键点和难点是解决复杂目标不同部件之间的遮挡关系和光线在目标内部的再次散射问题。
A method to solve the scattering acoustic field of complex target was proposed for the near-field scattering characteristics of an underwater target in high-frequency.
针对水下目标高频近场散射特性,提出了一种求解水下复杂目标散射声场的方法。
To realize efficient solution of electromagnetic(EM) scattering from complex target has very practical value for the design of radar system and identify of radar target.
复杂目标电磁散射的高效求解对于雷达系统设计与雷达目标识别具有十分重要的意义。
Angular glint is a characteristic of Complex target, which can reflect the target structure. Researching of target angular glint can help suppressing it and classifying target.
复杂目标角闪烁是目标的固有特性,反映了目标的结构信息,对它的研究有助于角闪烁的抑制和目标识别。
Electromagnetic environment of ship, an extremely large complex target with various electromagnetic equipments, was simulated by parallel multi-level fast multipole algorithm (MLFMA).
针对舰船目标尺寸巨大、形状复杂、电磁设备繁多的特点,选取并行多层快速多极子技术来模拟仿真其电磁环境。
Based on the existing methods of high frequency RCS simulation of complex target, the methods of complex target's high frequency wideband radar signatures simulation, including HRR...
并通过仿真目标和实际复杂目标的高频区宽带雷达特征信号的仿真实验结果验证了该文方法的有效性。
Based on the complex ray method and source expansion with a set of Gaussian beams, a new method for analysis and calculation of radar cross-section (RCS) of a complex target is presented.
本文根据复射线分析和场的高斯波束展开,提出了一种计算复杂目标电磁散射特性的简便方法。
The present paper applies fast multipole method (FMM) and multilevel fast multipole algorithm (MLFMA) based on the higher order moment of method (mom) to solve scattering from complex target.
本文采用基于高阶矩量法的快速多极子方法(FMM)及多层快速多极子方法(MLFMA)计算复杂目标的电磁散射。
Following, based on the above research foundation and aimed at resolving the scattering by the complex target with high efficient solution, extensive study of the FMM and MLFMA has been carried out.
最后,在上述研究基础上,针对高效求解复杂目标电磁散射的问题研究了复杂度分别为和的快速多极子方法以及多层快速多极子方法。
In this paper, the ground wave scattering from a complex target is investigated by combining the FDTD technique of solving the semi-space scattering problem with the theory of ground wave propagation.
本文把求解半空间散射问题的FDTD技术与地波传播理论相结合,研究任意复杂目标的地波散射特性。
However, the actual target production environment is usually significantly more complex, and you need specialized skills to determine how to partition the application for deployment.
然而,实际的目标产品环境通常是更加复杂的,并且你需要具有特定的技能来决定如何划分应用以进行部署。
Although many of the fields from the source message directly map into fields in the target message, a few of them require more complex manipulation.
尽管源消息的许多字段可以直接映射到目标消息中的字段,但是有些字段需要更复杂的操作。
It takes a simple or complex field on the source side and moves it unchanged from the source to the target.
它在源端有一个简单或复杂的字段,然后不加修改地将该字段从源移动到目标。
These conditions combine to make the challenge of ensuring that the solution fits the target market even more complex.
这些条件联合起来使保证这个方案能适合目标市场的风险变得更加复杂。
Using queries as the target of a data change operation allows deletion or updates of rows determined by complex SQL including ORDER by.
通过使用作为数据更改操作的目标的查询,可以删除或更新由复杂的SQL(包括ORDERBY)确定的行。
The idea then, is to design “sensor systems that can enter living cells and complex environments and remain in an ‘off’ state until exposure to a target leads to a [signal].
根据方案,将如此设计:敏感元件系统能记录活细胞并在复杂环境下保持关闭状态,直到接收到目标型号。
In general, a request made by an integration interface to a target application is fairly complex and can take seconds to process.
通常,集成接口向目标应用程序发出的请求相当复杂,可能需要数秒进行处理。
Using this technique to style complex archetypes is particularly useful when trying to target the same source XML document type for different target media.
当对于不同目标媒体用相同的源xml文档类型时,将该技术应用于样式复杂的原型会特别有用。
You will learn how to pass complex data types between portlets, and how to switch views in the target portlet in response to changes in the source.
你将会了解到如何在portlet之间进行复杂数据类型的传递,以及如何在目标portlet中交互数据以响应源数据的变化。
Summary: The previous mock target was simple, but you can also write mock targets to simulate complex join points (such as cflow ) or sequences of join points that you wish to affect.
概述:上一个mock目标是简单的,但是也可以将mock目标编写为模拟复杂的联结点(如cflow)或者要影响的一系列联结点。
Move is the most basic refinement -- it takes a simple or complex field on the source side and move it unchanged from the source to the target.
Move是最为基本的映射——它获取源上的简单或复杂字段,并将其不加更改从源移动到目标。
In cases in which a target MBean attribute is a nonstandard complex type, you need to ensure that the class defining that type is in your collector's classpath.
对于目标MBean属性是非标准复杂类型的情况,您需要确保定义该类型的类在收集器的类路径中。
The fire control software, jointly developed by Raytheon and THAAD prime contractor Lockheed Martin, also performed successfully, engaging the target complex and initializing the launch sequence.
火控软件是雷声公司与洛·马公司联合开发的,其测试也获得了成功,实现了初始化发射次序以及作战等功能。
Since the target surface is one big, very complex projector you should treat every face on it as if it where an inverse UV projector, sucking up the image instead of projecting it.
因为目标表面是一个大的,非常复杂的放射体,你需要处理它上面的每一个面,例如在那些uv投影反转的地方,会使图像凹进去而不是凸起来。
The system can not only evaluate the performance of multi target track algorithm in EW environment, but also evaluate the integrate performance of netted radar in complex EW environment.
该系统不仅可以用来评价多目标跟踪算法在电子战条件下的性能,而且也可以用来评估雷达网在复杂电子战条件下的综合性能。
Under the complex hydrological condition, this method can give the target position not only accurately but also quickly.
在复杂水文条件下应用此计算方法可以既迅速又准确地求出目标的位置。
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