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- Successive linear programming method 序列線(xiàn)性規劃方法
- A SUCCESSIVE LINEAR PROGRAMMING BASED ON-LINE STATIC SECURITY CORRECTIVE CONTROL APPROACH 一種基于連續線(xiàn)性規劃技術(shù)的在線(xiàn)靜態(tài)安全校正算法
- Simplex Method for Linear Programming. 線(xiàn)性規劃的單純形算法。
- Thurs, Linear programming take home exam. 從開(kāi)學(xué)到現在一直跟不上。
- Deng Youman,Zhang Boming,Xiang Niande.A successive linear integer programming methodology for capacitor switching on distribution system[J].Proceedings of the CSEE,1995,15(6):375-383(in Chinese). [3]鄧佑滿(mǎn);張伯明;相年德.;配電網(wǎng)電容器實(shí)時(shí)優(yōu)化投切的逐次線(xiàn)性整數規劃法[J]
- successive linear programing 逐線(xiàn)性規劃
- One significant development was the introduction of linear programming. 一個(gè)重大的發(fā)展是線(xiàn)性規劃的采用。
- The type line forces every meaning to translate itself into a successive linear punctuation. 分行迫使每一個(gè)意思轉譯為一種連續的線(xiàn)性的句讀。
- It does not use the aux-iliary remedy of solving linear programming. 算法不再使用求解線(xiàn)性規劃的輔助措施。
- The crop planning problem is often formulated as a linear programming. 莊稼規劃問(wèn)題常被認為是一個(gè)線(xiàn)性?xún)?yōu)化問(wèn)題。
- Chapter five deals with some specializations of the simplex method and the development of optimality criteria in linear programming. 第五章處理一些專(zhuān)門(mén)的單純形法和建立了線(xiàn)性規劃的最優(yōu)準則。
- Firstly, implicit complementarity problems (Abbr. ICP) is introduced by some optimization problems such as linear programming, quadratic programming. 首先通過(guò)線(xiàn)性規劃、二次規劃等最優(yōu)化問(wèn)題引出了文章要解決的對象。
- The thesis uses 0-1 integer linear programming to construct algorithm-hardware mapping models. 論文運用運籌學(xué)中的0-1整數規劃方法建立算法-硬件映射模型。
- The Linear Programming only consider the cost, the quantity of Australian ore is too high to order. 一般線(xiàn)性規劃方法得到的配礦方案單純地考慮了成本因素,所需澳礦數量超出了目前所能提供的數量。
- The main contents of this course include linear programming, simplex arithmetic. 線(xiàn)性規劃、單純形法、西北角法、最大優(yōu)化法,最短距離法。
- General linear programming has disadvantages of static, unadapted movement with objects and remarkable excursion. 因一般線(xiàn)性規劃是靜態(tài)的,不能適應研究對象系統的發(fā)展變化,解的漂移大。
- LPSVR decreased computational complexity of time and space by replacing quadratic programming with linear programming. LPSVR采用線(xiàn)性規劃取代二次規劃,使得計算的時(shí)間和空間復雜度大為降低。
- General linear programming has the disadvantages of static, unadapted movement with objects and remarkable excursion. 因一般線(xiàn)性規劃是靜態(tài)的,不能適應研究對象系統的發(fā)展變化,解的漂移大。
- Linear programming models seem tailor-made for solving capital budgeting problems when resources are limited. 當資源是有限的時(shí)候,線(xiàn)性規劃模型似乎用定制的辦法來(lái)解決資本預算問(wèn)題。
- The discussion of the relation of bilevel linear programming problem(BLPP) and BBPP is also given. 此外,還討論了二層線(xiàn)性規劃與雙目標規劃的關(guān)系。