Embedded Ethernet technology has been utilized increasingly widely as the communication mode in the substation automation system(SAS).This paper introduces the current applying situation about embedded Ethernet in SAS...Embedded Ethernet technology has been utilized increasingly widely as the communication mode in the substation automation system(SAS).This paper introduces the current applying situation about embedded Ethernet in SAS First.After analyzing the protocol levels used in SAS based on embedded Ethernet and the differences between the TCP and UDP,UDP/IP is selected as the communication protocol between the station-level and bay-level devices for its real-time characteristic.Then a new kind of implementation of the embedded Ethernet is presented based on hardware protocol stack.The designed scheme can be implemented easily,reduce cost significantly and shorten developing cycle.展开更多
针对传统嵌入式以太网系统存在的数据传输速率低、硬件不能升级、实时性和通用性不足等问题,提出了基于内嵌有Nios II CPU的Altera Cyclone系列FPGA的以太网控制器设计方案.该方案针对以太网协议利用Quartus II和Nios II IDE为开发工具...针对传统嵌入式以太网系统存在的数据传输速率低、硬件不能升级、实时性和通用性不足等问题,提出了基于内嵌有Nios II CPU的Altera Cyclone系列FPGA的以太网控制器设计方案.该方案针对以太网协议利用Quartus II和Nios II IDE为开发工具,对硬件进行重新配置,以提高系统集成度;采用SOPC技术构建了嵌入式网络硬件平台;基于μC/OS-II实现了Niche Stack TCP/IP协议栈的移植及顶层应用程序的编写.系统测试结果表明,数据能够以400 Mb/s的速率正确收发,满足了以太网通信速率的要求,并可根据实际情况灵活配置.展开更多
文摘Embedded Ethernet technology has been utilized increasingly widely as the communication mode in the substation automation system(SAS).This paper introduces the current applying situation about embedded Ethernet in SAS First.After analyzing the protocol levels used in SAS based on embedded Ethernet and the differences between the TCP and UDP,UDP/IP is selected as the communication protocol between the station-level and bay-level devices for its real-time characteristic.Then a new kind of implementation of the embedded Ethernet is presented based on hardware protocol stack.The designed scheme can be implemented easily,reduce cost significantly and shorten developing cycle.
文摘针对传统嵌入式以太网系统存在的数据传输速率低、硬件不能升级、实时性和通用性不足等问题,提出了基于内嵌有Nios II CPU的Altera Cyclone系列FPGA的以太网控制器设计方案.该方案针对以太网协议利用Quartus II和Nios II IDE为开发工具,对硬件进行重新配置,以提高系统集成度;采用SOPC技术构建了嵌入式网络硬件平台;基于μC/OS-II实现了Niche Stack TCP/IP协议栈的移植及顶层应用程序的编写.系统测试结果表明,数据能够以400 Mb/s的速率正确收发,满足了以太网通信速率的要求,并可根据实际情况灵活配置.