LCAS
- abbr.动态链路容量调整(Link Capacity Adjustment Scheme);轻型近距离空中支援(Light Close Air Support)
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Virtual Concatenation EOS Realization and Performance Analysis Based on LCAS
基于LCAS虚级联实现EOS及性能分析
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The transmission delay of virtual concatenation and the delay due to the LCAS protocol are analyzed .
分析了虚级联的传输延时和由LCAS协议引入的固定延时。
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Chip Design and FPGA Implementation of VCAT and LCAS in EoS
EoS中虚级联及LCAS功能的芯片设计与FPGA实现
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Effect of heat - treatment on the interfacial bonding and mechanical properties of SiC fibre / lcas glass-ceramic composite
热处理对SiC纤维/LCAS微晶玻璃复合材料界面结合及力学性能的影响
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Finally the technique of intelligent multiplexing is explained , which includes LCAS and auto protection switching ( APS ) .
论文最后对SDH网的智能复用技术进行了说明,包括动态链路容量调整(LCAS)技术和保护倒换技术,并对SDH技术的发展进行了展望。
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Implementation of LCAS Based on Embedded-processor and FPGA
基于嵌入式处理器及FPGA的LCAS实现
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The characteristics and functional realization of Link capacity adjustment scheme ( LCAS ) for virtual concatenated signals and Implementation of Bandwidth on Demand for Next-Generation SDH
虚级联信号的链路容量调整机制LCAS及其在新一代SDH智能带宽响应中的应用
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Since their appearance 30 years ago , low-cost airlines ( LCAs ) have succeeded all over the world , and have recently become a globally prevailing trend .
低成本航空公司诞生三十多年来,在世界各地取得成功,特别是近年来已经成为世界范围的一个历史性潮流。
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The paper introduces the LCAS Protocol of in OTN / SDH , the control principle of state machine of virtual concatenation member at the source and sink ends .
介绍了OTN/SDH传输网中虚级联信号的链路容量调整方案LCAS协议以及虚级联成员源端和宿端状态机的控制原理。
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In this paper , the simulation of LCAS based on imbedded processors combined with FPGA is presented and a number of technical problems in the simulation by finite state machines explored .
文章仿真了基于嵌入式处理器和现场可编程门阵列(FPGA)的软硬件结合的LCAS实现方案,探讨了有限状态机的仿真中存在的一些技术问题。
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The impact to SDH network introduced by LCAS - fixed system delay - is proposed , and calculates the critical point of delay , proposes some critical problem when implementing LCAS .
分析了LCAS协议引入的固定系统延时对SDH网络性能的影响,计算出了延时的临界点,提出了有效敷设LCAS的若干关键问题。
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On one hand , the optimization of data services have impelled a series of new technologies , such as LCAS , GFP , MPLS and RPR , to turn into business applications ;
一方面,围绕数据业务的优化改进促使一系列新技术如链路容量调整方案(LCAS)、通用成帧协议(GFP)、多协议标签交换(MPLS)、弹性分组环(RPR)等不断走向商用;
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Pr ~ ( 3 + ) - doped Li_2O-CdO-Al_2O_3-SiO_2 glass ( LCAS glass ) has been synthesized . The absorption spectra and fluorescence spectra of the glass were measured .
合成了Pr3+掺杂Li2O-CdO-Al2O3-SiO2(以下简称LCAS)玻璃,对其吸收光谱和荧光光谱进行了测试和分析。
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Making the bandwidth distribution in Metropolitan Area Transport Network more flexible and stable , Link Capacity Adjustment Scheme ( LCAS ) is a function that the new generation Multi-Service Transport Platform ( MSTP ) products must have .
链路容量(带宽)调整机制(LCAS)使城域传送网的带宽分配更加灵活、稳定,是新一代多业务传送平台(MSTP)产品必须具备的功能。
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This paper discusses the synchronization between data steam and lcas package , and client signal mapping , analyzes how to process CRC field of control package , and the generating and carrying manner of the sink member status .
讨论了数据流和LCAS控制同步实现及客户信号的映射等问题,分析了宿端回送成员状态的产生及传送方式和控制包CRC域的处理过程。
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The key technologies of SDH such as asynchronous mapping , pointer processing , Virtual Concatenation ( Vcat ) and Link Capacity Adjustment Scheme ( LCAS ) are applied in this system with which the primary block signal E1 and Ethernet data can be accessed through SDH network together .
该系统综合运用了SDH的异步映射、指针处理、虚级联(Vcat)、动态链路容量调整(LCAS)等关键技术,实现了一次群信号E1和以太网数据在SDH上的接入。