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Segment routing for traffic engineering and effective recovery in low-earth orbit satellite constellations
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作者 Shengyu Zhang Xiaoqian Li Kwan Lawrence Yeung 《Digital Communications and Networks》 SCIE CSCD 2024年第3期706-715,共10页
Low-Earth Orbit Satellite Constellations(LEO-SCs)provide global,high-speed,and low latency Internet access services,which bridges the digital divide in the remote areas.As inter-satellite links are not supported in in... Low-Earth Orbit Satellite Constellations(LEO-SCs)provide global,high-speed,and low latency Internet access services,which bridges the digital divide in the remote areas.As inter-satellite links are not supported in initial deployment(i.e.the Starlink),the communication between satellites is based on ground stations with radio frequency signals.Due to the rapid movement of satellites,this hybrid topology of LEO-SCs and ground stations is time-varying,which imposes a major challenge to uninterrupted service provisioning and network management.In this paper,we focus on solving two notable problems in such a ground station-assisted LEO-SC topology,i.e.,traffic engineering and fast reroute,to guarantee that the packets are forwarded in a balanced and uninterrupted manner.Specifically,we employ segment routing to support the arbitrary path routing in LEO-SCs.To solve the traffic engineering problem,we proposed two source routings with traffic splitting algorithms,Delay-Bounded Traffic Splitting(DBTS)and DBTS+,where DBTS equally splits a flow and DBTS+favors shorter paths.Simu-lation results show that DBTS+can achieve about 30%lower maximum satellite load at the cost of about 10%more delay.To guarantee the fast recovery of failures,two fast reroute mechanisms,Loop-Free Alternate(LFA)and LFA+,are studied,where LFA pre-computes an alternate next-hop as a backup while LFA+finds a 2-segment backup path.We show that LFA+can increase the percentage of protection coverage by about 15%. 展开更多
关键词 Fast reroute Low-earth orbit satellite constellation Segment routing traffic engineering traffic splitting
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TRAFFIC ENGINEERING IN IP BACKBONE NETWORK
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作者 李文正 万淑芸 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2002年第2期192-198,共7页
This paper discusses traffic engineering with multi protocol label switching (MPLS) in a backbone of Internet data center (IDC) network. The traditional SPF routing limitations are analyzed and the traffic engineerin... This paper discusses traffic engineering with multi protocol label switching (MPLS) in a backbone of Internet data center (IDC) network. The traditional SPF routing limitations are analyzed and the traffic engineering concept is given. MPLS, resource reservation protocol (RSVP) and enhanced link status Protocols intermediate system to intermediate system (IS IS) are reviewed to provide a background for traffic engineering, the general issues of designing an MPLS system of IDC network for traffic engineering are then discussed. Finally a practical example with MPLS traffic engineering is shown. 展开更多
关键词 traffic engineering multi protocol label switching data centre resource reservation protocol
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Performance Evaluation of Traffic Engineering Signal Protocols in IPV6 MPLS Networks 被引量:2
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作者 Mahmoud M. Al-Quzwini Sarmad K. Ibrahim 《Communications and Network》 2012年第4期298-305,共8页
This paper studies the performance of Traffic Engineering (TE) signal protocols used for load balancing in Multi-Protocol Label Switching (MPLS) networks, namely;Constraint Based Routed Label Distribution Protocol LDP... This paper studies the performance of Traffic Engineering (TE) signal protocols used for load balancing in Multi-Protocol Label Switching (MPLS) networks, namely;Constraint Based Routed Label Distribution Protocol LDP (CR-LDP) and Resource Reservation Protocol (RSVP). Furthermore, the performance of an MPLS network uses these TE signal protocols is compared to that of a conventional Internet Protocol (IP) network. Different applications including voice, video, File Transfer Protocol (FTP) and Hyperlink Text Transfer Protocol (HTTP) are used for the performance evaluation. Simulation results show superior performance of the MPLS network with CR-LDP TE signal protocol in all tested applications. 展开更多
关键词 MPLS LSP traffic engineering LSR LER LDP FEC QOS
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Traffic Engineering in Dynamic Hybrid Segment Routing Networks 被引量:2
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作者 Yingya Guo Kai Huang +2 位作者 Cheng Hu Jiangyuan Yao Siyu Zhou 《Computers, Materials & Continua》 SCIE EI 2021年第7期655-670,共16页
The emergence of Segment Routing(SR)provides a novel routing paradigm that uses a routing technique called source packet routing.In SR architecture,the paths that the packets choose to route on are indicated at the in... The emergence of Segment Routing(SR)provides a novel routing paradigm that uses a routing technique called source packet routing.In SR architecture,the paths that the packets choose to route on are indicated at the ingress router.Compared with shortest-path-based routing in traditional distributed routing protocols,SR can realize a flexible routing by implementing an arbitrary flow splitting at the ingress router.Despite the advantages of SR,it may be difficult to update the existing IP network to a full SR deployed network,for economical and technical reasons.Updating partial of the traditional IP network to the SR network,thus forming a hybrid SR network,is a preferable choice.For the traffic is dynamically changing in a daily time,in this paper,we propose a Weight Adjustment algorithm WASAR to optimize routing in a dynamic hybrid SR network.WASAR algorithm can be divided into three steps:firstly,representative Traffic Matrices(TMs)and the expected TM are obtained from the historical TMs through ultrascalable spectral clustering algorithm.Secondly,given the network topology,the initial network weight setting and the expected TM,we can realize the link weight optimization and SR node deployment optimization through a Deep Reinforcement Learning(DRL)algorithm.Thirdly,we optimize the flow splitting ratios of SR nodes in a centralized online manner under dynamic traffic demands,in order to improve the network performance.In the evaluation,we exploit historical TMs to test the performance of the obtained routing configuration in WASAR.The extensive experimental results validate that our proposed WASAR algorithm has superior performance in reducing Maximum Link Utilization(MLU)under the dynamic traffic. 展开更多
关键词 traffic engineering routing optimization segment routing deep reinforcement learning ultra-scalable spectral clustering
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A comprehensive survey on Segment Routing Traffic Engineering 被引量:1
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作者 Duo Wu Lin Cui 《Digital Communications and Networks》 SCIE CSCD 2023年第4期990-1008,共19页
Traffic Engineering(TE)enables management of traffic in a manner that optimizes utilization of network resources in an efficient and balanced manner.However,existing TE solutions face issues relating to scalability an... Traffic Engineering(TE)enables management of traffic in a manner that optimizes utilization of network resources in an efficient and balanced manner.However,existing TE solutions face issues relating to scalability and complexity.In recent years,Segment Routing(SR)has emerged as a promising source routing paradigm.As one of the most important applications of SR,Segment Routing Traffic Engineering(SR-TE),which enables a headend to steer traffic along specific paths represented as ordered lists of instructions called segment lists,has the capability to overcome the above challenges due to its flexibility and scalability.In this paper,we conduct a comprehensive survey on SR-TE.A thorough review of SR-TE architecture is provided in the first place,reviewing the core components and implementation of SR-TE such as SR Policy,Flexible Algorithm and SR-native algorithm.Strengths of SR-TE are also discussed,as well as its major challenges.Next,we dwell on the recent SR-TE researches on routing optimization with various intents,e.g.,optimization on link utilization,throughput,QoE(Quality of Experience)and energy consumption.Afterwards,node management for SR-TE are investigated,including SR node deployment and candidate node selection.Finally,we discuss the existing challenges of current research activities and propose several research directions worth of future exploration. 展开更多
关键词 Segment routing traffic engineering SR Policy Routing optimization Segment list computation
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Traffic Engineering Based on Deep Reinforcement Learning in Hybrid IP/SR Network 被引量:1
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作者 Bo Chen Penghao Sun +3 位作者 Peng Zhang Julong Lan Youjun Bu Juan Shen 《China Communications》 SCIE CSCD 2021年第10期204-213,共10页
Segment Routing(SR)is a new routing paradigm based on source routing and provide traffic engineering(TE)capabilities in IP network.By extending interior gateway protocol(IGP),SR can be easily applied to IP network.How... Segment Routing(SR)is a new routing paradigm based on source routing and provide traffic engineering(TE)capabilities in IP network.By extending interior gateway protocol(IGP),SR can be easily applied to IP network.However,upgrading current IP network to a full SR one can be costly and difficult.Hybrid IP/SR network will last for some time.Aiming at the low flexibility problem of static TE policies in the current SR networks,this paper proposes a Deep Reinforcement Learning(DRL)based TE scheme.The proposed scheme employs multi-path transmission and use DRL to dynamically adjust the traffic splitting ratio among different paths based on the network traffic distribution.As a result,the network congestion can be mitigated and the performance of the network is improved.Simulation results show that our proposed scheme can improve the throughput of the network by up to 9%than existing schemes. 展开更多
关键词 SDN deep reinforcement learning segment routing traffic engineering equal cost multiple paths
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Research of MPLS traffic engineering over differentiated services
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作者 Yang Hu, Yang Yang, and Weidong HaoInformation Engineering School, University of Science and Technology Beijing, Beijing 100083, China 《Journal of University of Science and Technology Beijing》 CSCD 2002年第6期474-477,共4页
An approach to traffic engineering that uses differentiated services (DS) andmulti-protocol label switching (MPLS) to provide quantitative network quality of service (QoS)guarantees over an IP network was proposed. Th... An approach to traffic engineering that uses differentiated services (DS) andmulti-protocol label switching (MPLS) to provide quantitative network quality of service (QoS)guarantees over an IP network was proposed. The traffic associated with assured forwarding (AF)Per-Hop behavior (PHB) in differentiated services enabled IP network was modeled. Furthermore, theeffect of such traffic on network resources with die objective of developing efficient trafficengineering methodologies was analyzed and the optimization problem relating to traffic engineeringin DS networks with an MPLS core was formulated. The service received by TCP and UDP flows when theyshare either a link or a MPLS traffic trunk was also compared and found that in order to benefitfrom traffic engineering, MPLS trunks should be implemented end-end (first router to last router).If some part of the network is MPLS trunk-unaware, the benefits are reduced or eliminated. 展开更多
关键词 MPLS differentiated services QOS traffic engineering
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A Scalable Architecture Supporting QoS Guarantees Using Traffic Engineering and Policy Based Routing in the Internet
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作者 Priyadarsi NANDA Andrew SIMMONDS 《International Journal of Communications, Network and System Sciences》 2009年第7期583-591,共9页
The study of Quality of Service (QoS) has become of great importance since the Internet is used to support a wide variety of new services and applications with its legacy structure. Current Internet architecture is ba... The study of Quality of Service (QoS) has become of great importance since the Internet is used to support a wide variety of new services and applications with its legacy structure. Current Internet architecture is based on the Best Effort (BE) model, which attempts to deliver all traffic as soon as possible within the limits of its abilities, but without any guarantee about throughput, delay, packet loss, etc. We develop a three-layer policy based architecture which can be deployed to control network resources intelligently and support QoS sensi-tive applications such as real-time voice and video streams along with standard applications in the Internet. In order to achieve selected QoS parameter values (e.g. loss, delay and PDV) within the bounds set through SLAs for high priority voice traffic in the Internet, we used traffic engineering techniques and policy based routing supported by Border Gateway Protocol (BGP). Use of prototype and simulations validates function-ality of our architecture. 展开更多
关键词 QoS BGP Policy Based ROUTING traffic engineering BANDWIDTH BROKER (BB)
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A coarse-grained differentiated routing algorithm in multi-protocol label switching traffic engineering
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作者 杜荔 于军相 王晓静 《Journal of Central South University》 SCIE EI CAS 2010年第6期1258-1263,共6页
A new coarse-grained differentiated least interference routing algorithm(CDLI) with DiffServ-Aware was presented.This algorithm is composed of off-line and on-line stages,taking into account both real-time traffic and... A new coarse-grained differentiated least interference routing algorithm(CDLI) with DiffServ-Aware was presented.This algorithm is composed of off-line and on-line stages,taking into account both real-time traffic and best-effort traffic.Off-line stage is to determine the shortest path set disjointed path(DP) database for real-time traffic,and to identify link critical value by traffic profile information of real-time traffic and DP database.On-line stage is at first to select route in the DP database for real-time traffic,if there is no path to meet the needs,the dynamic routing will be operated.On-line routing algorithm chooses the relatively short path for real-time traffic to meet their bandwidth requirements,and for best-effort traffic it chooses a lighter load path.The simulation results show that compared with the dynamic online routing algorithm(DORA) and constrained shortest path first(CSPF) algorithm,the new algorithm can significantly improve network throughput and reduce the average path length of real-time traffic.This guarantees quality of service(QoS) of real-time traffic while improving the utilization of network resources. 展开更多
关键词 multi-protocol label switching (MPLS) traffic engineering constraint-based routing explicit routing
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AN ALGORITHM FOR END-TO-END PERFORMANCE ANALYSIS OF NETWORK BASED ON TRAFFIC ENGINEERING
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作者 Liu Huailiang Zhang Xin Wang Dong Xu Guohua (School of Mechano-electronic Engineering, Xidian Univ., Xi’an 710071) 《Journal of Electronics(China)》 2003年第4期293-298,共6页
Based on traffic engineering, the network topology is described with network graph. An algorithm for the derivation of data communication capability in network links and the analysis of connectivity performance betwee... Based on traffic engineering, the network topology is described with network graph. An algorithm for the derivation of data communication capability in network links and the analysis of connectivity performance between node pairs is given through standardized transformation of the original descriptive matrix for the link performance, and resolution of transitive closure for adjacent-incident matrix of network in view of randomness of network events, which provides a feasible way for analysis and improvement of network performance. 展开更多
关键词 traffic engineering Network topology CONNECTIVITY Adjacent-incident matrix Transitive closure
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Wavelength Routing Algorithmof All Optical Network Based on Traffic Engineering
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作者 GUO Ai-huang LIAO Shu-yan 《Semiconductor Photonics and Technology》 CAS 2006年第1期47-50,共4页
General multi-protocol label switching(GMPLS) based on traffic engineering is one of the possible methods to implement all-optical network. This method implements the network with IP technique and guarantees the quali... General multi-protocol label switching(GMPLS) based on traffic engineering is one of the possible methods to implement all-optical network. This method implements the network with IP technique and guarantees the quality of service with traffic engineering. Based on the establishment of selecting schemes of optical path and methods of traffic calculation, the wavelength routing algorithm of all-optical network based on traffic engineering is presented by combining with prior route of shortest path and traffic engineering, the algorithm procedures are given, and the actual examples are introduced as well as the analysis on simulation calculation. This research results have certain significance for the achievement of optical switching technique of all-optical network. 展开更多
关键词 traffic engineering All-optical network Wavelength routing algorithm
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An Evaluation of Routing Algorithms in Traffic Engineering and Quality of Service Provision of Network on Chips
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作者 Efthymios N. Lallas 《Engineering(科研)》 2021年第1期1-17,共17页
Nowadays the number of cores that are integrated into NoC (Network on Chip) systems is steadily increasing, and real application traffic, running in such multi-core environments requires more and more bandwidth. In th... Nowadays the number of cores that are integrated into NoC (Network on Chip) systems is steadily increasing, and real application traffic, running in such multi-core environments requires more and more bandwidth. In that sense, NoC architectures should be properly designed so as to provide efficient traffic engineering, as well as QoS support. Routing algorithm choice in conjunction with other parameters, such as network size and topology, traffic features (time and spatial distribution), as well as packet injection rate, packet size, and buffering capability, are all equivalently critical for designing a robust NoC architecture, on the grounds of traffic engineering and QoS provision. In this paper, a thorough numerical investigation is achieved by taking into consideration the criticality of selecting the proper routing algorithm, in conjunction with all the other aforementioned parameters. This is done via implementation of four routing evaluation traffic scenarios varying each parameter either individually, or as a set, thus exhausting all possible combinations, and making compact decisions on proper routing algorithm selection in NoC architectures. It has been shown that the simplicity of a deterministic routing algorithm such as XY, seems to be a reasonable choice, not only for random traffic patterns but also for non-uniform distributed traffic patterns, in terms of delay and throughput for 2D mesh NoC systems. 展开更多
关键词 Network on Chip QoS traffic engineering XY DyAD Routing Algorithm Hotspot traffic
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Application and Development of Systems Engineering in Road Traffic Management
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作者 LIU Guangping ZHAI Runping 《Journal of Traffic and Transportation Engineering》 2018年第5期223-229,共7页
Traffic management is an important contribution in the sustainable development of urban traffic.The complexity of traffic problems determines the difficulty of traffic management.Therefore,traffic management needs the... Traffic management is an important contribution in the sustainable development of urban traffic.The complexity of traffic problems determines the difficulty of traffic management.Therefore,traffic management needs the guidance of scientific theories.This paper explores traffic management systems engineering for management road traffic.First,the paper looks at the contents of road traffic management from a systems perspective.Second,the paper briefly describes systems engineering,and explains the necessity and feasibility of the combination of the traffic management and systems engineering.At last,the paper puts forward the concept of traffic management systems engineering using a systems framework. 展开更多
关键词 traffic MANAGEMENT SYSTEMS engineering traffic MANAGEMENT SYSTEMS engineering
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Software Defined Traffic Engineering for Improving Quality of Service
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作者 Xiaoming Li Jinyao Yan Hui Ren 《China Communications》 SCIE CSCD 2017年第10期12-25,共14页
The Software Defined Networking(SDN) paradigm separates the control plane from the packet forwarding plane, and provides applications with a centralized view of the distributed network state. Thanks to the flexibility... The Software Defined Networking(SDN) paradigm separates the control plane from the packet forwarding plane, and provides applications with a centralized view of the distributed network state. Thanks to the flexibility and efficiency of the traffic flow management, SDN based traffic engineering increases network utilization and improves Quality of Service(QoS). In this paper, an SDN based traffic scheduling algorithm called CATS is proposed to detect and control congestions in real time. In particular, a new concept of aggregated elephant flow is presented. And then a traffic scheduling optimization model is formulated with the goal of minimizing the variance of link utilization and improving QoS. We develop a chaos genetic algorithm to solve this NP-hard problem. At the end of this paper, we use Mininet, Floodlight and video traces to simulate the SDN enabled video networking. We simulate both the case of live video streaming in the wide area backbone network and the case of video file transferring among data centers. Simulation results show that the proposed algorithm CATS effectively eliminates network congestions in subsecond. In consequence, CATS improves the QoS with lower packet loss rate and balanced link utilization. 展开更多
关键词 SDN traffic engineering/traffic scheduling aggregated elephant flow congestion link utilization QoS video streaming
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Discussion on Design Methods of Road Traffic Engineering
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作者 CHENJunhao 《外文科技期刊数据库(文摘版)工程技术》 2022年第1期056-059,共4页
With the rapid development of China's economy, great changes have taken place in urban construction. While promoting further sustainable economic development, transportation construction plays a very important rol... With the rapid development of China's economy, great changes have taken place in urban construction. While promoting further sustainable economic development, transportation construction plays a very important role in it. The construction of road engineering has improved the conditions of people's travel and material transportation. However, judging from the current situation of road traffic in China, traffic congestion frequently occurs in major cities, which has become the focus of increasing attention. The above problems need more scientific and advanced road traffic design methods to solve. The scientific wisdom of professionals should be integrated into the design of road traffic engineering and traffic analysis, so as to improve the scientific and technological level of operators and help to realize the efficient operation of roads. Therefore, this paper makes a detailed analysis of road traffic, and brings new weather to traffic development through brand-new traffic engineering technology construction. 展开更多
关键词 traffic analysis traffic engineering design techniques method analysis
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Analysis of the Construction Treatment of Pavement Base in the Process of Traffic Engineering Construction
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作者 LIUSuxia 《外文科技期刊数据库(文摘版)工程技术》 2022年第4期028-031,共4页
With the growing economic strength of our country, the urbanization construction has achieved rapid development, and the level of urban modernization has been continuously improved. In order to meet the travel needs o... With the growing economic strength of our country, the urbanization construction has achieved rapid development, and the level of urban modernization has been continuously improved. In order to meet the travel needs of the majority of residents and the needs of economic development, the construction of transportation infrastructure has also gradually improved. The technical level of highway engineering construction has also achieved leaps and bounds, which can effectively reduce the impact of changes in climate conditions and natural disasters, and improve the quality and service capabilities of highways. In the construction process of highway transportation facilities, the construction of the pavement base is the basic project, and it is also an important guarantee for the smooth operation of the highway. In view of this, this paper focuses on analyzing the main points of highway pavement base construction and the existing problems, and explores effective strategies that can promote the construction of highway pavement base construction. 展开更多
关键词 traffic engineering CONSTRUCTION PAVEMENT construction treatment
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Thoughts on Construction Management and Quality Control of Traffic Engineering
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作者 LUOJun 《外文科技期刊数据库(文摘版)工程技术》 2022年第1期187-191,共5页
In a modern society, people pursue convenience in life, and transportation engineering is one of the important infrastructures to meet people's needs for convenience in life, and it undertakes the important task o... In a modern society, people pursue convenience in life, and transportation engineering is one of the important infrastructures to meet people's needs for convenience in life, and it undertakes the important task of transportation. At the same time, the construction of transportation engineering can also promote the further development of regional economy, which is of great significance to the overall development of the region. Taking the construction management and quality control of traffic engineering as the research object, this paper probes into the specific characteristics of traffic engineering and the significance of relevant management control, and at the same time puts forward some specific solutions to some problems occurring in the construction process of traffic engineering for reference. 展开更多
关键词 traffic engineering construction management quality control
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Discussion on Construction Management and Quality Control Methods of Traffic Engineering
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作者 WANGZhili 《外文科技期刊数据库(文摘版)工程技术》 2022年第4期103-107,共5页
At present, with the rapid development of urbanization, higher requirements are gradually put forward for traffic engineering. Quality control is the most important work in the construction of traffic engineering. Onl... At present, with the rapid development of urbanization, higher requirements are gradually put forward for traffic engineering. Quality control is the most important work in the construction of traffic engineering. Only by constantly strengthening quality management and control can the construction quality of traffic engineering be improved, people's normal travel can be ensured, and thus the social and economic development can be effectively promoted. Therefore, the relevant departments and staff must pay attention to the construction management, effectively manage the construction and continuously improve the construction management efficiency. 展开更多
关键词 traffic engineering construction management quality control
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Research on the Construction Treatment of Pavement Base in the Process of Traffic Engineering Construction
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作者 LIJun 《外文科技期刊数据库(文摘版)工程技术》 2022年第4期178-181,共4页
The construction quality of traffic engineering is directly related to people's life and economic development. In highway construction, the construction quality of pavement base is directly related to the quality ... The construction quality of traffic engineering is directly related to people's life and economic development. In highway construction, the construction quality of pavement base is directly related to the quality of the whole project. Both asphalt and cement should pay attention to their strength, quality and even the whole life. Aiming at some problems existing in the construction of traffic engineering in our country at present, this paper probes into the design of construction scheme, construction process and matters needing attention in construction, etc., so as to ensure the construction quality of the project, make the comprehensive performance of the whole project be brought into full play to the maximum extent, and achieve the goal of eliminating the hidden danger of construction safety. 展开更多
关键词 traffic engineering road base construction treatment
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Research on Construction Management and Quality Control of Traffic Engineering
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作者 ZHOU Jie YUE Shujuan 《外文科技期刊数据库(文摘版)工程技术》 2021年第8期865-867,共5页
In recent years, the rapid development of China's social economy has put forward higher requirements for the transportation environment. Strengthening the construction of transportation projects is one of the prim... In recent years, the rapid development of China's social economy has put forward higher requirements for the transportation environment. Strengthening the construction of transportation projects is one of the primary tasks of the current society. Based on the current severe traffic situation, in the process of traffic engineering project construction, enterprise needs to be control of the project and the implementation of project construction economy. At the same time, strengthen quality control, using quality of transportation engineering projects, and promote the construction of our country social economy, reduce the number of traffic accidents and the overall development to make positive contribution to society. 展开更多
关键词 traffic engineering construction management the quality control
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