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A high bandwidth radar operation over the Internet: Signal analysis, network protocols and experimental validation.

机译:互联网上的高带宽雷达操作:信号分析,网络协议和实验验证。

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摘要

The Virtual-CHILL (VCHILL) project is an initiative to provide full operation of the CSU-CHILL radar over the Internet. As part of this project, VCHILL aims to transmit Digitized Radar Signal (DRS) in real-time over high-bandwidth data network, estimate radar parameters at remote sites, and distribute them for display and further applications. This concept is referred to as the high-bandwidth VCHILL. The distribution of real-time DRS enables the remote users to process the digitized signals according to their interests.; First, a new digital-IF receiver, which operates in parallel with the existing digital receiver (DRX) of the CSU-CHILL radar, was developed. The parallel receiver operates in conjunction with the DRS network server so that the server arranges the DRS into a specified format in real-time and transmits it to clients at up to a few hundred Mbps. Subsequently, end-system architectures for the high-bandwidth VCHILL were developed. The architecture design includes various functions, such as DRS acquisition, DRS transmission, DRS receive/radar parameter computation, and parameter transmission, as well as generic packet and data structures for the data transmission and sharing. Third, transmission waveform design scheme for congestion control was developed to make the real-time operation tolerable and provide high quality end products under unpredictable network conditions. The developed scheme relies on the operating principle of the pulsed-Doppler radar and estimation theory of the radar parameters. A combination of this waveform design scheme and a source-based rate control algorithm with Additive Increase and Proportionate Decrease based on the feedback provides the highest quality of service possible. Performance evaluation of the system, while operating the CSU-CHILL radar in real-time, shows the linearity of the end-to-end TCP throughput proportional to the data rate, coincidence with the output of the DRX system, quality improvement of display, as well as apparent congestion control functionality. Finally, to increase computing capacity at client sites, a concept of distributed DRS client was developed. The essential idea is that the computation loads are evenly distributed among the computing nodes that are connected to each other in networked environment.; Another aspect of the VCHILL is networked radar operation. In this scenario, a networked radar system can be readily used for the simultaneous observation of a same target by multiple radars, and the replacement of a large centralized radar with multiple small radars. Operational models, end-system architectures, and network models to make possible the notion of the networked real-time weather radar system are proposed. Scalability of the networked radar system was studied in terms of power consumption for pulse transmission, computation load, and communication load varying the Quality of Service parameters of spatial resolution and data accuracy.
机译:Virtual-CHILL(VCHILL)项目是一项计划,旨在通过Internet提供CSU-CHILL雷达的全部功能。作为该项目的一部分,VCHILL旨在通过高带宽数据网络实时传输数字化雷达信号(DRS),估算远程站点的雷达参数,并将其分发以供显示和进一步应用。此概念称为高带宽VCHILL。实时DRS的分发使远程用户可以根据自己的兴趣处理数字化信号。首先,开发了一种新的数字中频接收机,该接收机与CSU-CHILL雷达的现有数字接收机(DRX)并行运行。并行接收器与DRS网络服务器协同工作,以便该服务器将DRS实时排列为指定格式,并以高达几百Mbps的速率将其传输到客户端。随后,开发了用于高带宽VCHILL的终端系统架构。该体系结构设计包括各种功能,例如DRS采集,DRS传输,DRS接收/雷达参数计算和参数传输,以及用于数据传输和共享的通用数据包和数据结构。第三,开发了用于拥塞控制的传输波形设计方案,以使实时操作可以容忍,并在不可预测的网络条件下提供高质量的最终产品。所开发的方案基于脉冲多普勒雷达的工作原理和雷达参数的估计理论。将此波形设计方案与基于源的速率控制算法(基于反馈的加法增加和比例减少)相结合,可提供最高的服务质量。在实时操作CSU-CHILL雷达时,系统的性能评估显示了与数据速率成比例的端到端TCP吞吐量的线性,与DRX系统的输出一致,显示质量提高,以及明显的拥塞控制功能。最后,为了增加客户端站点的计算能力,开发了分布式DRS客户端的概念。基本思想是计算负载在网络环境中彼此连接的计算节点之间平均分配。 VCHILL的另一个方面是联网雷达操作。在这种情况下,联网的雷达系统可以轻松地用于多个雷达同时观测同一目标,并用多个小型雷达代替大型集中式雷达。提出了使网络实时气象雷达系统的概念成为可能的操作模型,终端系统架构和网络模型。研究了网络雷达系统的可扩展性,涉及脉冲传输的功耗,计算负载和通信负载,这些负载会改变空间分辨率和数据准确性的服务质量参数。

著录项

  • 作者

    Cho, Yoong-Goog.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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