项目名称: 适用于下一代移动通信的序列设计方法研究
项目编号: No.60872164
项目类型: 面上项目
立项/批准年度: 2009
项目学科: 石油、天然气工业
项目作者: 曾凡鑫
作者单位: 中国人民解放军重庆通信学院
项目金额: 30万元
中文摘要: 本项目立足于第四代移动通信为我国的通信产业发展带来了前所未有的契机,对制约4G移动通信技术发展的瓶颈- - 序列设计展开研究,其研究理念是"建立属于我国的自主知识产权,培养研究下一代移动通信的科研骨干,推动无多址干扰思想在4G移动通信中向实用化进步,为我国在第四代移动通信中建立世界级的产业优势做好技术上、人才上的储备"。项目组严格按照批准的计划书要求,在拟定的五个研究内容上展开研究,每个研究内容都取得了一定的研究成果,并有一些研究成果达到世界领先水平,主要包括 "8-QAM+周期互补序列的构造方法"、"16-QAM互补序列的构造方法"、"16-QAM ZCZ序列的构造方法"、"四相阵列的构造方法"、"完美多相序列与相互正交ZCZ序列集的构造方法"和"具有最优自相关性能的四相序列的构造方法"。项目组获得重庆市自然科学三等奖1项,出版专著和教材各1 部,发表论文48篇,SCI收录9篇,EI收录26篇和ISTP收录2篇,申请中国专利6项,培养博士4人,硕士4人的成绩。项目组高标准、高质量地完成了申请书的预期目标。
中文关键词: 序列;序列数量;互补序列;Z互补序列;4G移动通信
英文摘要: Grasping an opportunity of development of communication industry in China, which results from the fourith generation (4G) mobile communication, we investigate sequuence design that plays quite an important role in development of 4G mobile commuication. Our aims are to found our own intellectual property and develop researchers for investigating next generation mobile communication, and implement 4G mobile communication without multiple access interference,including preparation of technologies and scientists so that chinese communication industry is more advantageous than the other ones in the world in 4G mobile communication. We strictly carry out the plans so that each of predefined investigation fields obtains good results, some of which arrive at the best technique level in the world, including "construction methods of 8-QAM+ and 16-QAM complementary sequence sets", "constructions of 16-QAM ZCZ sequences", "constructions of quadriphase arrays", and "perfect polyphase sequences and mutullay orthogonal ZCZ polyphase sequence sets". After the end of the project, we are returned by Chongqing natural science award, a book and a textbook, 49 papers, and 6 chinese patents pending. And apart from the above, 4 PhD.students and 4 Master students have finished school under help of this project.In conclusion, We accomphlish the project with high quality.
英文关键词: sequence;family size;complementary sequence;ZCZ sequence;4G generation communication