uep
- 网络统一网管平台;不等错误保护;铀浓缩项目;保护
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Controlling UEP Method of Stability Analysis in Network Structure Preserving Power System Model ;
提出了一种利用连续法求解电力系统相关不稳定平衡点的方法。
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The Construction and Implementation of Several New Classes of UEP Codes
几类新型不等保护能力码的构造与实现
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An adaptive UEP method based on joint source channel coding
一种基于联合信源信道自适应的不等错误保护方法
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The simulation results show that such UEP coding scheme may achieve improved performance .
仿真结果表明,运用删截卷积码实现的UEP编码能获得较好的性能。
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Application of UEP Code in Communication-Based Train Control System
不等保护码在CBTC系统中的应用
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Joint optimized transmission based on M-QAM and UEP for wireless scalable video
基于M-QAM和UEP的无线可伸缩视频联合优化传输
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Secondly , a video data grouping was devise in order to design UEP schemes .
其次,在视频数据分组的基础上设计UEP方案。
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Simulation results showed that the proposed algorithm had a better UEP performance than the one proposed in literature [ 45 ] .
数值仿真表明,相比于文献[45]中的方案,所提算法具有更好的UEP性能。
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Image Transmission Using Turbo Codes with UEP
具有UEP特性的Turbo码图像传输技术研究
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The lower part of PV curve contains abundant information about UEP bifurcating as power changes .
常用电力系统P-V曲线的下半部分包含有不稳定平衡点随功率P变化的丰富信息。
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To seek more reliable information transmission , some UEP coding schemes have been devised .
为了寻求更可靠的信息传输,人们提出了一些不等错误保护(UEP)编码方案。
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A Turbo Multilevel Coded Modulation Scheme of High UEP
具有不均匀保护特性的Turbo码多级编码调制方案
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It designs the software of configuration management subsystem in mobile network management system based on UEP ( Uniform Element network management Platform ) .
设计了基于统一网管平台下的移动网络管理系统中的配置管理子系统软件,给出了软件体系结构和系统处理流程。
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The optimization problem of UEP could be reformulated as a knapsack problem with additional constraints .
UEP的优化问题可以重新建模为带额外约束的多选择背包问题。
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A transient angle unstable mode of power system closely relates to a controlling unstable equilibrium point ( UEP ) .
电力系统暂态功角失稳模式同相关不稳定平衡点密切相关。
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This paper presents a new decoding algorithm of unequal error protection ( UEP ) code , which is called tree topology .
提出一种新的不等保护分组码译码算法&树状图算法。
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We study the performance of the presented UEP , and deduce the BER performance equations of three UEP techniques .
研究了这两种UEP技术的性能,给出了各自的BER性能近似表达式。
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So it becomes an excellent choice that designing unequal error protection ( UEP ) scheme based on Turbo code with high performance .
现实通信中的信息往往具有不同的重要性,因而基于高性能的Turbo码的不等差错保护(UEP)方案成为一个极佳的选择。
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On the research of Unequal Error Protection ( UEP ), constellation partitioning scheme and designing of component codes is analyzed .
通过研究高阶调制的不等错误保护特性(UEP:UnequalErrorProtection),进行了基于MLC系统的信号集分割方案以及分量码的设计。
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Simulation results reveal that both of the proposed UEP schemes have higher power efficiency than equal error protection ( EEP ) schemes .
仿真结果表明,与等错误保护(equalerrorprotection,EEP)方案相比,所提出的UEP方案具有更高的功率有效性。
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One-Step Completely Orthogonalizable Binary UEP Codes and Their Soft-Decision Decoding
二进制一步完备正交UEP码及其软判决译码
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Then according to the UEP . we construct a non-product B-spline tight frame by using the bivariate B-spline .
根据UEP准则,用二元B-样条函数B(x,y)构造了一个非张量积的紧框架。
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We introduce an unequal error protection coding scheme with punctured convolutional codes , and study the performance of introduced UEP coding scheme by simulations .
本文介绍了一种通过删截卷积码(CC)实现UEP编码的方案,并通过仿真分析了该UEP编码的性能。
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This paper discusses the jump behavior in the network preserving model and difficulties caused by the application of traditional Controlling Unstable Equilibrium Points ( UEP ) Method to it .
该文讨论了结构保持模型中的跳变行为以及将传统的ControllingUEP理论方法应用于该模型的难点;
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Unequal error protection ( UEP ) for transmitting scalable image and video bitstreams over packet erasure networks has been extensively studied .
在分层视频码流的网络实时传输中,非均匀错误保护(UEP)技术已经被广泛地研究。
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At the same time , based on the traditional Equal Error Protection ( EEP ) scheme , an Unequal Error Protection ( UEP ) scheme is proposed .
同时,在传统的等差错保护(EEP)方法基础之上,提出了不等差错保护方案(UEP),并获得了优于等差错保护的良好效果。
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Bounds of undetected error probability ( UEP ) for binary constant weight codes ( BCWCs ) are studied in this paper .
本文研究了二元等重码不可检错误概率(UEP)的界。
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The whole system uses the concept of " software reuse " to divide the architecture into three layers : the UEP , the CAF and the Service layer .
整个网管系统在设计中突出软件复用的概念,软件架构上分为三个层次:统一网管平台UEP层、公共应用功能CAF层和业务层。
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Under the light of energy function method , angle instability and voltage instability can be thought as different unstable mode , and be distinguished from each other by characteristic of UEP .
在能量函数法的思想下,功角稳定和电压稳定的关系可以通过不稳定平衡点模式来研究,并由不稳定平衡点模式的不同而区分出两者。
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The expression of energy margin is given using full differential formula . And the energy margin sensitivity is calculated by state variable sensitivity computation in fault clearing point and controlling UEP .
从能量裕度的数学表达式出发,利用能量裕度的全微分公式,将能量裕度的灵敏度计算转化为故障清除时刻以及相关不稳定平衡点处系统状态变量的灵敏度计算。