Energy Consumption Optimization by Increasing The Processor Speed of Moving Communication Devices in Transport Layer Protocol

F. Razi, Ipan Suandi, F. Fahmi
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Abstract

The energy efficiency of mobile devices becomes very important, considering the development of mobile device technology starting to lead to smaller dimensions and with the higher processor speed of these mobile devices. Various studies have been conducted to grow energy-aware in hardware, middleware and application software. The step of optimizing energy consumption can be done at various layers of mobile communication network architecture. This study focuses on examining the energy consumption of mobile devices in the transport layer protocol, where the processor speed of the mobile devices used in this experiment is higher than the processor speed used in similar studies. The mobile device processor in this study has a speed of 1.5 GHz with 1 GHz RAM capacity. While in similar studies that have been carried out, mobile device processors have a speed of 369 MHz with a RAM capacity of less than 0.5 GHz. This study conducted an experiment in transmitting mobile data using TCP and UDP protocols. Because the video requires intensive delivery, so the video is the traffic that is being reviewed. Energy consumption is measured based on the amount of energy per transmission and the amount of energy per package. To complete the analysis, it can be seen the strengths and weaknesses of each protocol in the transport layer protocol, in this case the TCP and UDP protocols, also evaluated the network performance parameters such as delay and packet loss. The results showed that the UDP protocol consumes less energy and transmission delay compared to the TCP protocol. However, only about 22% of data packages can be transmitted. Therefore, the UDP protocol is only effective if the bit rate of data transmitted is close to the network speed. Conversely, despite consuming more energy and delay, the TCP protocol is able to transmit nearly 96% of data packets. On the other hand, when compared to mobile devices that have lower processor speeds, the mobile devices in this study consume more energy to transmit video data. However, transmission delay and packet loss can be suppressed. Thus, mobile devices that have higher processor speeds are able to optimize the energy consumed to improve transmission quality.Key words: energy consumption, processor, delay, packet loss, transport layer protocol
提高传输层协议中移动通信设备处理器速度的能耗优化
考虑到移动设备技术的发展开始导致这些移动设备的尺寸更小,处理器速度更高,移动设备的能源效率变得非常重要。为了在硬件、中间件和应用软件中增强能源意识,已经进行了各种各样的研究。优化能耗的步骤可以在移动通信网络体系结构的各个层进行。本研究重点考察传输层协议中移动设备的能耗,本实验中使用的移动设备的处理器速度高于类似研究中使用的处理器速度。本研究的移动设备处理器速度为1.5 GHz, RAM容量为1 GHz。而在已经进行的类似研究中,移动设备处理器的速度为369 MHz, RAM容量小于0.5 GHz。本研究利用TCP和UDP协议进行了移动数据传输实验。因为视频需要密集的传递,所以视频是被审查的流量。能源消耗是根据每次传输的能量和每个包装的能量来衡量的。为了完成分析,可以看到传输层协议中每个协议的优缺点,在本例中为TCP和UDP协议,还评估了延迟和丢包等网络性能参数。结果表明,UDP协议比TCP协议消耗更少的能量和传输延迟。然而,只有大约22%的数据包可以传输。因此,UDP协议只有在传输数据的比特率接近网络速度时才有效。相反,尽管消耗更多的能量和延迟,TCP协议能够传输近96%的数据包。另一方面,与处理器速度较低的移动设备相比,本研究中的移动设备在传输视频数据时消耗的能量更多。但是,传输延迟和丢包可以被抑制。因此,具有更高处理器速度的移动设备能够优化所消耗的能量以提高传输质量。关键词:能耗,处理器,延迟,丢包,传输层协议
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