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以太網(wǎng)供電技術在光通信節(jié)點設備中的設計和實現(xiàn)

發(fā)布時間:2018-04-19 21:01

  本文選題:以太網(wǎng)供電 + IEEE802.3at; 參考:《武漢郵電科學研究院》2014年碩士論文


【摘要】:自以太網(wǎng)誕生之日起,以太網(wǎng)都是用來傳輸數(shù)據(jù),以太網(wǎng)設備都需要外接電源適配器或者自備蓄電池才能工作。2003年底發(fā)布的IEEE802.3af標準讓數(shù)據(jù)信號和直流電源能夠同時在一根網(wǎng)線上傳輸成為了可能,但隨著新的應用對功率需求的越來越大,于2009年發(fā)布了新一代的IEEE802.3at標準,該標準為以太網(wǎng)應用擴寬了應用領域,使得以太網(wǎng)供電技術成為了具有廣闊應用前景的新興技術。本文針對基于PowerPC的光通信節(jié)點設備進行了重新設計,主要是在基于MPC8306微處理器上,完成光通信節(jié)點設備的最小系統(tǒng)的設計,使用以太網(wǎng)供電技術給最小系統(tǒng)提供穩(wěn)定電源供應,同時根據(jù)最小系統(tǒng)的功能將其劃分為處理器、存儲器、網(wǎng)口、串行調試接口、供電復位等模塊,并完成各個模塊的設計,從而達到以下目的:(1)光通信節(jié)點設備能夠使用PoE系統(tǒng)供電;(2)基于MPC8306的最小系統(tǒng)能夠完成對系統(tǒng)各個業(yè)務卡的監(jiān)控以及控制;(3)根據(jù)系統(tǒng)對電磁兼容性的特殊要求,解決設備在特殊要求下的電磁干擾問題;(4)完成系統(tǒng)的軟件設計,方便系統(tǒng)管理。本論文設計了主要的硬件電路,包括PSE、PD、供電芯片、CPLD、復位電路、時鐘分配,DDR2電路,Flash電路、通信接口電路。同時對以太網(wǎng)供電系統(tǒng)的設計方法做了詳細的分析,對系統(tǒng)硬件設計中的電磁兼容性設計做了詳細說明并提出了可靠的解決方案,針對該最小系統(tǒng)開發(fā),給出了幾個主要模塊的主程序流程圖和配置信息等,以完成對業(yè)務卡的控制和監(jiān)控。
[Abstract]:Since the birth of Ethernet, Ethernet has been used to transmit data. Ethernet devices require external power adapters or self-contained batteries to work. The IEEE802.3af standard issued at the end of 2003 made it possible for data signals and DC power to be transmitted simultaneously over a network line. However, with the increasing demand for power from new applications, a new generation of IEEE802.3at standards was released in 2009, which broadens the application fields of Ethernet applications and makes Ethernet power supply technology a new technology with broad application prospects. In this paper, the optical communication node equipment based on PowerPC is redesigned, mainly based on the MPC8306 microprocessor, the minimum system of the optical communication node equipment is designed, and the power supply technology of Ethernet is used to provide the stable power supply to the minimum system. At the same time, according to the function of the minimum system, it is divided into processor, memory, network port, serial debugging interface, power supply reset and other modules, and the design of each module is completed. Thus, the following objectives are achieved: 1) the optical communication node equipment can use the PoE system to supply power. (2) the minimum system based on MPC8306 can complete the monitoring and control of each service card of the system. (3) according to the special requirements of the system for electromagnetic compatibility, To solve the problem of electromagnetic interference (EMI) under special requirements, the software design of the system is completed and the system management is facilitated. In this paper, the main hardware circuits are designed, including PSEP, CPLD, reset circuit, clock distribution DDR2 circuit, Flash circuit and communication interface circuit. At the same time, the design method of Ethernet power supply system is analyzed in detail, the electromagnetic compatibility design in the hardware design of the system is explained in detail, and a reliable solution is put forward. The main program flow chart and configuration information of several main modules are given in order to control and monitor the business card.
【學位授予單位】:武漢郵電科學研究院
【學位級別】:碩士
【學位授予年份】:2014
【分類號】:TN929.1

【參考文獻】

相關期刊論文 前1條

1 ;飛思卡爾為成本敏感的網(wǎng)絡和工業(yè)應用推出新處理器[J];單片機與嵌入式系統(tǒng)應用;2010年12期



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