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component code造句

"component code"是什么意思   

例句与造句

  1. Component code generator
    组件程序代码产生器
  2. The result is almost a kind of magic - by following a few simple rules , a j2ee application can automatically gain transactional semantics with little or no additional component code
    结果简直是一种魔术通过遵守几条简单的规则, j2ee应用程序就可以自动获得事务性语义,只需极少或根本不需要额外的组件代码。
  3. The parameters include generator polynomial of component codes , interleave length and the type of interleavers , iterative decoding algorithms and iteration number , code rates and channel models et al
    这些参数主要包括分量码、交织长度和交织器类型、迭代译码算法和译码迭代次数、编码速率以及信道条件等。
  4. Bandwidth efficient multilevel coded modulation system based on ldpc codes is described in the last part of this thesis . furthermore , the designing method of combining component code rate and degree distribution is introduced
    介绍了ldpc码的多层编码调制系统中,分量码码率与度序列分布联合最优的设计准则,并给出了相应的理论分析。
  5. Fortunately , the java transaction service and the j2ee container do much of the work of managing transactions for you automatically , so you don t have to integrate transaction awareness directly into your component code
    幸运的是, java事务服务( java transaction service , jts )和j2ee容器自动为您做了大量的事务管理工作,这样您就不必将事务意识直接集成到组件代码中。
  6. It's difficult to find component code in a sentence. 用component code造句挺难的
  7. Thirdly , with the analyzing the bit error upper bound of sccc and simulating performance in the matlab environment , the factors that affect the performance of sccc such as scheme of component codes and interleave ) : are addressed and the some design criteria are given
    继而通过对sccc性能限的分析以及matlab仿真,探讨了影响sccc纠错性能的主要因素,如内码外码方案、交织器方案等,并给出了其设计原则。
  8. Not only does this make the resulting component code easier to read because it is not cluttered with transaction management code , but it has another , more significant advantage - the transactional semantics of the component can be changed at application assembly time , without modifying or even accessing the source code for the component
    这不仅使结果组件代码更加易读(因为它不与事务管理代码混在一起) ,而且它还有另一个更重要的优点不必修改,甚至不必访问组件的源代码,就可以在应用程序装配时改变组件的事务性语义。
  9. Several key reuse - based techniques , as well as the design and implementation of the system , in the development of component information classification and coding system ( ciccs ) , are studied in this paper , such as component coding structure model , developing pattern based on component / framework , design of the classification method , half - layered software architecture model , component variation point and its implement mechanism
    从软构件的编码结构模型、基于构件构架的开发模式、软构件的分类方法设计、半层次化的软件体系结构模型以及构件的变点及其实现机制等方面,研究了软构件信息分类编码系统开发中基于软件复用的设计和实现方法。
  10. In order to further improve the performance , we propose two new kinds of codes , which are ldpc / turbo code , simply denoted by “ l / t ” code , and the product code with generator - based systematic irregular ldpc codes as its component codes in rows and columns . the factors that can impact the performance of the coded systems are investigated and concluded through the simulations
    为了进一步提高信道编码的性能,本文又提出了两种新的编码方法,即l / t码(组合ldpc和turbo编码)和基于生成矩阵非正规ldpc码的乘积码,并在awgn信道下对其性能分别进行了仿真,总结出码长,迭代次数等不同因素对译码性能的影响。
  11. Based on the simulation results , the key techniques for the design of turbo codes , including the choice of component codes , the design of interleaver , trellis termination schemes and puncturing methods , are discussed deeply . by measuring the statistical characteristic of extrinsic information from component decoders , new iterative stopping criteria and snr estimation updator are devised . also , it is used to implement synchronization of carrier phase
    本文首先对turbo码的基本编译码原理进行分析,在仿真结果的基础上对turbo码设计中的分量码选择、交织器设计、编码器状态归零方案以及删余方式等部分关键问题进行探讨;通过考察外部信息的统计特性,设计了新的迭代停止准则和snr估计更新器,并利用外部信息实现串联载波相位同步;最后对turbo均衡进行简要分析。
  12. The research for key techniques of turbo codes is processed . it includes , ? the design of optimal component codes and the performance of asymmetric turbo codes are analyzed ; ? a search algorithm for short random interleaver based on the distance spectrum and ids criteria is carried out and simplified ; ? random puncturing method to improve the weight distribution of turbo codes with some special code rates is analyzed and simulated . ? the effect of different schemes of trellis termination to the performance of turbo codes is analyzed ; ? a new low complexity decoder structure is provided ; 5
    对turbo码的部分关键问题进行分析和改进,主要包括: ?分析了最优分量码的设计和非对称turbo码的性能; ?设计了基于距离谱和ids的短随机交织器搜索算法并进行了简化; ?提出了采用随机删余方式改善特定高码率turbo码重量分布特性的方法; ?分析了不同编码器状态归零方案对turbo码性能的影响; ?提出了一种降低实现复杂性的turbo迭代译码器结构。

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