为了适应嵌入式应用的要求,提高轻量级协议栈(light weight internet protocol,LWIP)的响应速度和实时性,提出了两种优化方法。第一种优化方法是采用混合TCP-UDP协议,对少量数据的传输采用UDP协议,而对大量数据的传输采用TCP协议;另一...为了适应嵌入式应用的要求,提高轻量级协议栈(light weight internet protocol,LWIP)的响应速度和实时性,提出了两种优化方法。第一种优化方法是采用混合TCP-UDP协议,对少量数据的传输采用UDP协议,而对大量数据的传输采用TCP协议;另一种方法是分别定义紧急数据等待队列与普通数据等待队列,只有在所有紧急数据处理完成后,才可以处理普通数据。实例测试表明,这两种优化方法可以提高嵌入式设备的网络性能。展开更多
IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLL...IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLLQ+CBWFQ algorithm is achieved, and the minimum bandwidth is assigned according to priority or request.展开更多
文摘为了适应嵌入式应用的要求,提高轻量级协议栈(light weight internet protocol,LWIP)的响应速度和实时性,提出了两种优化方法。第一种优化方法是采用混合TCP-UDP协议,对少量数据的传输采用UDP协议,而对大量数据的传输采用TCP协议;另一种方法是分别定义紧急数据等待队列与普通数据等待队列,只有在所有紧急数据处理完成后,才可以处理普通数据。实例测试表明,这两种优化方法可以提高嵌入式设备的网络性能。
文摘IP Quality of Service (QoS) guarantee is realized by managing and avoiding congestion in network. In thispaper ,the primary queue algorithms are compared in managing congestion. On the basis of these theories, a newLLQ+CBWFQ algorithm is achieved, and the minimum bandwidth is assigned according to priority or request.