计算机工程与应用
計算機工程與應用
계산궤공정여응용
COMPUTER ENGINEERING AND APPLICATIONS
2014年
2期
70-74
,共5页
赵振新%韩昌彩%王安国%陈华
趙振新%韓昌綵%王安國%陳華
조진신%한창채%왕안국%진화
协作通信%译码转发%分布式空时编码%非相干检测%半定松弛
協作通信%譯碼轉髮%分佈式空時編碼%非相榦檢測%半定鬆弛
협작통신%역마전발%분포식공시편마%비상간검측%반정송이
cooperative communications%decode-and-forward%distributed space-time block codes%noncoherent detec-tion%semidefinite relaxation
针对译码转发(DF)协议下分布式空时编码(DSTBC)的多中继协作系统,提出了基于半定松弛(SDR)算法的协作系统非相干检测方案。将协作系统的非相干检测转化为布尔二次方程(BQP)形式,采用SDR算法,把NP难的BQP问题转换为多项式时间复杂度的半定规划问题。进一步结合SDR算法的特点,提出了一种中继加入信道信息估计的协作方案。与相干检测相比,SDR非相干检测虽然存在一定的性能损失,但目的节点无需任何信道信息,降低了系统的复杂度;提出的协作方案进一步降低了中继节点对源到中继间信道信息的要求。另外,比较了不同接收天线数目对系统检测性能的影响。
針對譯碼轉髮(DF)協議下分佈式空時編碼(DSTBC)的多中繼協作繫統,提齣瞭基于半定鬆弛(SDR)算法的協作繫統非相榦檢測方案。將協作繫統的非相榦檢測轉化為佈爾二次方程(BQP)形式,採用SDR算法,把NP難的BQP問題轉換為多項式時間複雜度的半定規劃問題。進一步結閤SDR算法的特點,提齣瞭一種中繼加入信道信息估計的協作方案。與相榦檢測相比,SDR非相榦檢測雖然存在一定的性能損失,但目的節點無需任何信道信息,降低瞭繫統的複雜度;提齣的協作方案進一步降低瞭中繼節點對源到中繼間信道信息的要求。另外,比較瞭不同接收天線數目對繫統檢測性能的影響。
침대역마전발(DF)협의하분포식공시편마(DSTBC)적다중계협작계통,제출료기우반정송이(SDR)산법적협작계통비상간검측방안。장협작계통적비상간검측전화위포이이차방정(BQP)형식,채용SDR산법,파NP난적BQP문제전환위다항식시간복잡도적반정규화문제。진일보결합SDR산법적특점,제출료일충중계가입신도신식고계적협작방안。여상간검측상비,SDR비상간검측수연존재일정적성능손실,단목적절점무수임하신도신식,강저료계통적복잡도;제출적협작방안진일보강저료중계절점대원도중계간신도신식적요구。령외,비교료불동접수천선수목대계통검측성능적영향。
A noncoherent receiver based on Semidefinite Relaxation(SDR)approach is proposed for Decode and Forward (DF)cooperative system with distributed orthogonal space-time codes. In the scheme, noncoherent detection is simpli-fied to a Boolean Quadratic Program(BQP), and then, using the SDR approach, the Nondeterministic Polynomial-time hard(NP-hard)BQP problem is transformed into the optimization of a Semidefinite Program(SDP)of polynomial-time hard. Furthermore, a relaying protocol with a combination of channel estimation and detection at relays is also proposed. Compared with the coherent detection, the channel state information is not a necessary in the proposed algorithm at desti-nation and the system complexity is reduced, although there is acceptable performance loss. The proposed relaying scheme further reduces the requirements of source-relay channel state information. In addition, the performance of the noncoherent detection scheme with different number of receiving antennas at the destination is compared.