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非刚性的 meaning in Chinese

nonrigid

Examples

  1. Due to the short distance among the planes which fly in a group , the conventional low resolution radar can not distinguish them in both distance and azimuth ? if we use the technology of isar to resolve the difference among doppler frequency of the targets and obtain a fine resolution cross - cross image , we may separate them , but a long time of coherent processing is needed < , for the formation targets , it can be approximately divided to rigid body and nonrigid body , so for the formation targets , that can be regarded as rigid which has a relative position and an identical movement , can be approximately considered as a large target , and be compensated by translational phase with the rule of minimum entropy , but for the most those cannot accord with the approximation of rigid , being the doppler - frequency of the aim is linear changed , by the relax method with short data , increases the resolving performance of multiple target to the aim in the frequency domain , since cross - range resolution is based on the accumulative time , so it is greatly improve the resolution to formation targets by the instant cross - range image which produced by radon - wigner transformation
    低分辨isan成像及干涉技术应用研究一因此直接无法分辨编队目标的架数,我们借鉴isar的技术,通过较长时间的相干积累,在多普勒频域上对目标进行分辨。而对于编队目标,可分为近似刚性的多目标和非刚性的多目标,所以对于可以近似为刚体的编队目标相对位置固定,运动方式一致,可以近似看作一个大目标,采用最小墒准则对平动相位的进行补偿,但是大多数并不满足刚体近似的编队目标,由于目标在相干积累时间的多普勒频率近似呈线性变化,通过对较短数据利用relax的时频分析方法,提高了频率域上目标分辨的性能。由于横向分辨率取块于横向积累时间,所以利用radnwigner变换得到瞬时的一维横向距离像大大提高了对编队目标的分辨,对仿真和实测数据的大量分析结果表明此方法的有效性和可行。
  2. A side stream is recycled to the external feed stream of the column through an equilibrator as an internal feed stream . the simulation results indicate effects on the characteristics of cryogenic distillation column . consideration is given to the behavior and characteristics of the set of ordinary differential equations
    3 、分析了浓度极稀物系动态精馏模型的特点,建立了此类物系动态模型的求解策略,通过对模型中状态变量的转换,使原本刚性较强的微分方程组转化为一非刚性的常微分方程组。

Related Words

  1. 工资刚性
  2. 木材刚性
  3. 刚性齿轮
  4. 刚性需求
  5. 刚性面
  6. 刚性度
  7. 刚性元件
  8. 刚性渗流
  9. 刚性美
  10. 刚性壳
  11. 非刚性
  12. 非刚性车道
  13. 非刚性分子
  14. 非刚性节点
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