电讯技术
電訊技術
전신기술
TELECOMMUNICATIONS ENGINEERING
2015年
8期
854-859
,共6页
认知无线电%动态频谱接入%空间复用%信道选择优化%博弈模型%势能博弈%纳什均衡
認知無線電%動態頻譜接入%空間複用%信道選擇優化%博弈模型%勢能博弈%納什均衡
인지무선전%동태빈보접입%공간복용%신도선택우화%박혁모형%세능박혁%납십균형
cognitive radio%dynamic spectrum access%spatial reuse%channel selection optimization%poten-tial game%game model%Nash equilibrium
在异构认知网络中,认知用户相对于主用户空间位置的不同可能提供空间复用的频谱接入机会,且空间复用的机会受限于干扰容限。首先引入用户空间位置干扰图,度量干扰和评估空间复用机会,在此基础上讨论了基于空间复用的系统吞吐量优化问题,并借助博弈论求解一组最优信道选择集合,主要工作是证明了该博弈问题是至少具有一个纯策略纳什均衡的精确势能博弈,且纳什均衡点是上述优化问题的最优解。最后,数值仿真验证了理论分析的正确性,同时证明考虑认知用户位置带来的空间复用后,系统吞吐量显著增加,有效提高了频谱利用率。
在異構認知網絡中,認知用戶相對于主用戶空間位置的不同可能提供空間複用的頻譜接入機會,且空間複用的機會受限于榦擾容限。首先引入用戶空間位置榦擾圖,度量榦擾和評估空間複用機會,在此基礎上討論瞭基于空間複用的繫統吞吐量優化問題,併藉助博弈論求解一組最優信道選擇集閤,主要工作是證明瞭該博弈問題是至少具有一箇純策略納什均衡的精確勢能博弈,且納什均衡點是上述優化問題的最優解。最後,數值倣真驗證瞭理論分析的正確性,同時證明攷慮認知用戶位置帶來的空間複用後,繫統吞吐量顯著增加,有效提高瞭頻譜利用率。
재이구인지망락중,인지용호상대우주용호공간위치적불동가능제공공간복용적빈보접입궤회,차공간복용적궤회수한우간우용한。수선인입용호공간위치간우도,도량간우화평고공간복용궤회,재차기출상토론료기우공간복용적계통탄토량우화문제,병차조박혁론구해일조최우신도선택집합,주요공작시증명료해박혁문제시지소구유일개순책략납십균형적정학세능박혁,차납십균형점시상술우화문제적최우해。최후,수치방진험증료이론분석적정학성,동시증명고필인지용호위치대래적공간복용후,계통탄토량현저증가,유효제고료빈보이용솔。
In heterogeneous cognitive radio networks,spectrum access opportunities with spatial reuse may be provided by the different secondary users’ space position,respecting to the primary users’ ,and spatial reuse opportunities is limited by interference tolerance. To measure interference and evaluate the spatial re-use opportunity,the interference graph of user’ s space position is introduced in this paper. An optimization problem of maximizing system throughput based on spatial reuse is investigated, which is solved by the Game Theory and an optimal channel selection set is derived. The main work of this paper is to prove that this game is an exact potential game,which has at least one pure strategy Nash equilibrium and the Nash e-quilibrium point is the optimal solution of the above-mentioned optimization problem as well. Finally simu-lation results are given to verify the correctness of the theoretical analysis. Meanwhile,after considering spa-tial reuse by users' position,the system throughput is significantly increased,thus the spectrum utilization rate is effectively improved.