The network-on-chip (NoC) design methodology is an important trend for large system-on-chip designs to reduce the bandwidth and power constraints in traditional synchronous bus architectures. In the design of packet...The network-on-chip (NoC) design methodology is an important trend for large system-on-chip designs to reduce the bandwidth and power constraints in traditional synchronous bus architectures. In the design of packet-based NoC, the packet-length plays an important role in the NoC throughput, latency, and energy consumption. The appropriate NoC packet-length was selected based on simulation and analysis of the packet-length effect on NoC for variable average data block length (ADBL) configuration parameters. A trade-off curve among throughput, latency, and energy consumption was developed and shows that the optimum packet length increases as the ADBL increases.展开更多
为了解决TCP(transmission control protocol)和UDP(user datagram protocol)在诸如卫星信道和无线信道等高误码率信道中遇到的问题,提出了一种基于跨层设计的简单可靠UDP协议。通过增加2个字节的包头建立了确认机制和重传机制,保证了...为了解决TCP(transmission control protocol)和UDP(user datagram protocol)在诸如卫星信道和无线信道等高误码率信道中遇到的问题,提出了一种基于跨层设计的简单可靠UDP协议。通过增加2个字节的包头建立了确认机制和重传机制,保证了数据包的可靠交付;通过增加1个字节的跨层信息,建立了自适应变包长机制,提高了协议效率。分析和仿真结果表明,该协议兼有UDP协议高效和TCP协议保证可靠交付的优点,可以很好地适用于卫星、无线等高误码率信道。展开更多
基金Supported by the National Natural Science Foundation of China(No. 90607009)the National High-Tech Research and Development (863) Program of China (No. 2008AA01Z107)the Na-tional Key Basic Research and Development (973) Program of China (No. 2007CB310701)
文摘The network-on-chip (NoC) design methodology is an important trend for large system-on-chip designs to reduce the bandwidth and power constraints in traditional synchronous bus architectures. In the design of packet-based NoC, the packet-length plays an important role in the NoC throughput, latency, and energy consumption. The appropriate NoC packet-length was selected based on simulation and analysis of the packet-length effect on NoC for variable average data block length (ADBL) configuration parameters. A trade-off curve among throughput, latency, and energy consumption was developed and shows that the optimum packet length increases as the ADBL increases.
文摘为了解决TCP(transmission control protocol)和UDP(user datagram protocol)在诸如卫星信道和无线信道等高误码率信道中遇到的问题,提出了一种基于跨层设计的简单可靠UDP协议。通过增加2个字节的包头建立了确认机制和重传机制,保证了数据包的可靠交付;通过增加1个字节的跨层信息,建立了自适应变包长机制,提高了协议效率。分析和仿真结果表明,该协议兼有UDP协议高效和TCP协议保证可靠交付的优点,可以很好地适用于卫星、无线等高误码率信道。