设计了一种适合网络实时传输海量地形数据的传输协议,使系统充分利用网络带宽同时又不浪费带宽。
Furthermore, one type of protocol real-timely transferring massive terrain data on network is introduced for plenty using but not wasting the bandwidth resource of network.
RETHER是一种基于以太网的定时令牌总线协议,能够对数据传输提供实时性能。
RETHER is a timed-token-passing bus protocol based on Ethernet. It provides the real-time transfer performance.
论述了组播传输技术的原理和相关的路由协议,设计了一个视频信息的采集系统,分析了实时视频信息组播传输网络。
The paper describes the principle of multicast and its route protocol, designs a system of collecting video data, and analyses a network of real time video data transmission.
为了解决该问题提出了支持多媒体实时传输的协议rtp。
To solve this problem, RTP protocol, which supports real time transmission, is brought for-ward.
实时流协议rtsp是一个流媒体表示控制协议,用于控制具有实时特性的数据发送,但RTSP本身并不传输数据。
RTSP is a streaming media presentation control protocol used to manage the delivery of real-time data. It doesn't transfer streaming data by itself.
文章介绍了适合实时数据传输的运输协议RTP在多点投递场合的实现。
This paper presents the implementation of RTP, a transport protocol which supports the real-time dare transmission in multicast session.
模拟结果表明,该协议能满足话音的实时要求,性能良好,且数据传输性能没有明显下降。
Simulation result shows that the protocol is suitable for real-time voice communications and the performance for data transmission has no significant degradation.
并给出了在网络处理器IP2022中实现实时传输协议的主函数的流程图及局端与用户端的实现方法流程图。
The flow chart of RTP main function and the realization method flow chart of office end and user end are presented based on IP2022.
并给出了在网络处理器IP2022中实现实时传输协议的主函数的流程图及局端与用户端的实现方法流程图。
The flow chart of RTP main function and the realization method flow chart of office end and user end is presented based on IP2022.
MPEG流是由多个层次构成的复杂的媒体流,实时传输协议(rtp)是针对多媒体数据进行实时传输的协议。
MPEG streams are complex media composed of streams of several layers and real-time Transport Protocol (RTP) is for real-time multimedia data transmission.
为了进一步降低以太网平台的传输时延从而改善模拟器的性能,本文还首次提出了基于MAC地址的实时传输协议。
In order to further strengthen the real-time performance of platform to improve the performance of the simulator, the paper firstly presents a MAC address-based RTTP.
在简述rtp协议原理的基础上阐明了用于MPEG - 2视频传输的RTP载荷格式,并提出了一种基于RTP的MPEG - 2实时传输系统,给出了其系统结构。
Based on the principium of RTP, this paper explains the RTP payload format for MPEG-2 video and puts forward a real-time MPEG-2 transport system and its system structure in detail.
本文主要论述了在网络之间传输多媒体信息的一些基本概念和技术,着重讨论了实时运输协议RTP的主要技术内容及原型实现。
This paper describes some technical foundations of the new real-time multimedia services, where a realtime transport protocol (RTP) and its prototype implementation are focused on.
文中基于嵌入式实时操作系统,实现了MIMO传输系统中的协议处理、业务汇聚和高速数据传输。
Based on embedded operation system, the high layer protocol model and its implementation in MIMO wireless communication system is introduced.
针对多媒体传输所具有的特点,分析了RTP协议、H。263协议和视频纠错技术在视频实时传输中相结合的技术。
According to the characters of multimedia transport, the technology of combing RTP Protocol, H. 263 Protocol and put right errors is discussed in this paper.
其中实时传输技术主要是采用实时传输协议RTP。
The Real-time transmission technology makes use of RTP transport protocol.
近年来,TCP协议不适合传输实时的多媒体数据,新的为实时传输多媒体数据的RTP协议也就应运而生。
TCP protocol is not suitable for real time multimedia data transmission. And RTP is a new protocol specifically designed for it.
包括视频压缩协议、音频压缩协议、流媒体实时传输协议以及无线以太网技术。
The video compressing technology, the audio compressing technology, the stream media real-time transfer protocol and the technology about wireless network are also discussed in detail.
利用多线程技术和优化了的实时传输协议RTP实现了视频数据的无线网络传输和智能网络控制功能。
The system's wireless network video transmission and intelligent network control functions are implemented with the use of multi-thread technology and optimized Real-time Transport Protocol (RTP).
着重介绍了振动检测单元的硬件实现,基于有限脉冲响应(FIR)数字滤波与快速傅里叶变换(FFT)的实时数据处理过程,以及基于用户数据报协议(UDP)的数据传输过程。
The paper mainly introduces the hardware implement of inspection unit for vibration, real-time data process on FIR and FFT, and data transmitting process on UDP.
针对这些问题,对当前的多媒体数据压缩、网络通信技术和网络协议进行了比较和研究,详细介绍了当前解决实时多媒体信息传输所涉及的一些新方法和新技术。
To solve these problems, study and compare the present communication technology and network protocal, introduce the new ways and new technology of present real-time multimedia transfer.
因此,设计运行于因特网的编码标准、协议以及实时视频传输传输机制会遇到更多的挑战。
Thus, designing coding, protocols and mechanisms for real time video transmissions over the Internet poses many challenges.
系统实现了对监控目标的烟雾浓度,温度的实时监测,采用了基于最小跳数的路由协议,每个节点只需记忆自己的转发节点集,网络中的数据都是沿着最短路径进行传输。
It takes advantage of the routing protocol based on minimum hop, in which every node does only local routing maintenance, and data is transmitted along the shortest path.
避免了使用传统TCP协议进行语音通信实时性差的缺点,减小了网络延时,改善了语音传输质量。
This avoids the disadvantage for real-time when audio-data is transmitted based on TCP, minishes the delay of network, improves the quality of audio-data transmission.
该文介绍了一种实时传输协议rtp,并给出了采用该协议进行音频数据实时传输的实现过程及方法。
In this article, real-time transport protocol (RTP) is introduced, mechanism and method of audio-data transmission based on RTP is demonstrated.
深入研究了用于流媒体传输的实时传输与控制协议RTP/RTCP,掌握其结构与规则。
Secondly, this paper studies some related technologies of streaming media, researches deeply on the RTP/RTCP protocol used in streaming media transmission, mastering its structure and rules.
使用多媒体数据流的传输协议、实时传输协议(RTP)和实时流协议(RTSP)实现了这一技术。
Real-time Transport Protocol(RTP)and Real Time Streaming Protocol(RTSP)are protocols to be use transport digital multi-media streaming.
本文以H . 261视频数据传输为例,研究了如何利用实时传输协议(rtp)来保证视频数据流的实时传输。
In this paper, through an example of H. 261 video stream transportation, we study how to guarantee the real time transportation of video stream by RTP (real - time transport protocol).
RTP/RTCP协议为网络实时数据提供端到端的传输、时序重构、帧遗失检测、数据安全、拥塞控制等多种服务,支持多播或单播网络。
RTP/RTCP provides end-to-end transmission, timing reconstruction, frame loss detection, data security, congestion control, and other services for real-time data over multicast or unicast network.
RTP/RTCP协议为网络实时数据提供端到端的传输、时序重构、帧遗失检测、数据安全、拥塞控制等多种服务,支持多播或单播网络。
RTP/RTCP provides end-to-end transmission, timing reconstruction, frame loss detection, data security, congestion control, and other services for real-time data over multicast or unicast network.
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