本设计在Quartus II 11.0和NIOS II 11.0sp1 IDE开发环境下,以EP4CR6F17C8为核心,完成对全新工业级中文字库液晶显示器模块12864ZW的SOPC IP核的硬件架构和软核的驱动设计。完整的硬件构架和软件设计,实现了12864ZW液晶模块的字符、文...本设计在Quartus II 11.0和NIOS II 11.0sp1 IDE开发环境下,以EP4CR6F17C8为核心,完成对全新工业级中文字库液晶显示器模块12864ZW的SOPC IP核的硬件架构和软核的驱动设计。完整的硬件构架和软件设计,实现了12864ZW液晶模块的字符、文字和图片的显示。展开更多
Due to 5G's stringent and uncertainty traffic requirements,open ecosystem would be one inevitable way to develop 5G.On the other hand,GPP based mobile communication becomes appealing recently attributed to its str...Due to 5G's stringent and uncertainty traffic requirements,open ecosystem would be one inevitable way to develop 5G.On the other hand,GPP based mobile communication becomes appealing recently attributed to its striking advantage in flexibility and re-configurability.In this paper,both the advantages and challenges of GPP platform are detailed analyzed.Furthermore,both GPP based software and hardware architectures for open 5G are presented and the performances of real-time signal processing and power consumption are also evaluated.The evaluation results indicate that turbo and power consumption may be another challengeable problem should be further solved to meet the requirements of realistic deployments.展开更多
文摘本设计在Quartus II 11.0和NIOS II 11.0sp1 IDE开发环境下,以EP4CR6F17C8为核心,完成对全新工业级中文字库液晶显示器模块12864ZW的SOPC IP核的硬件架构和软核的驱动设计。完整的硬件构架和软件设计,实现了12864ZW液晶模块的字符、文字和图片的显示。
基金funded in part by National Natural Science Foundation of China(grant NO.61471347)National S&T Mayor Project of the Ministry of S&T of China(grant NO.2016ZX03001020-003)+1 种基金key program for international S&T Cooperation Program of China(grant NO.2014DFA11640)Shanghai Natural Science Foundation(grant NO.16ZR1435100)
文摘Due to 5G's stringent and uncertainty traffic requirements,open ecosystem would be one inevitable way to develop 5G.On the other hand,GPP based mobile communication becomes appealing recently attributed to its striking advantage in flexibility and re-configurability.In this paper,both the advantages and challenges of GPP platform are detailed analyzed.Furthermore,both GPP based software and hardware architectures for open 5G are presented and the performances of real-time signal processing and power consumption are also evaluated.The evaluation results indicate that turbo and power consumption may be another challengeable problem should be further solved to meet the requirements of realistic deployments.