⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文提出了一种28nm工艺下的异构多处理四核CPU与双GPU设计,旨在通过任务调度和功耗管理优化性能、功耗和热平衡。解决了移动SoC中异构计算资源协同工作时的效率与散热问题。
Processor Alice Wang1, Tsung-Yao Lin2, Shichin Ouyang3, Wei-Hung Huang2, Jidong Wang1, Shu-Hsin Chang2, Sheng-Ping Chen2, Chun-Hsiung Hu2, Jim C. Tai2, Koan-Sin Tan2, Meng-Nan Tsou2, Ming-Hsien Lee2, Gordon Gammie1, Chi-Wei Yang2, Chih-Chieh Yang2, Yeh-Chi Chou2, Shih-Hung Lin2, Wuan Kuo2, Chi-Jui Chung2, Lee-Kee Yong2, Chia-Wei Wang2, Kin Hooi Dia2, Cheng-Hsing Chien2, You-Ming Tsao2, Nitin Kumar Singh1, Rolf Lagerquist1, Chih-Cheng Chen2, Uming Ko1 MediaTek, Austin, TX, MediaTek, Hsinchu, Taiwan, 3 MediaTek, San Jose, CA 1 2 Driven by consumer demand, mobile devices such as smartphones and tablets are offering more desktop-like capabilities. High-performance CPUs and GPUs, which handle compute-intensive tasks, are key to enhancing the user experience in applications such as 3D gaming, high-definition video and internet browsing. A CPU and GPU on a tablet device, however, can together consume up to 90%
Dual-GPU Design for Optimal Performance, Power, and Thermal Tradeoffs in a 28nm Mobile Application