mixing entropy 中文意思是什麼

mixing entropy 解釋
混合熵
  • mixing : n. 混合;【電影】錄音;【無線電】混頻。
  • entropy : n. 1. 【物理學】熵。2. 【無線電】平均信息量。
  1. This last equation does not contradict the entropy-of-mixing formula.

    此式與混合熵公式並不矛盾。
  2. The problem discussed in this paper is to separate two ( or more ) input signals from observed signals which are generated by passing input signals through diffrent unknown multi - input multi - output linear systems. it is proved that the input signals can be separated when they are independent identitically distributed ( i. i. d ) signals. a new algorithm for multi - input multi - output blind deconvolution via maximum entropy is presented which needs no information about the input signals and mixing filters

    本文研究的問題是從觀察信號中分離出兩個(或者更多個)輸入信號,其中每一組信號分別通過不同的未知多輸入多輸出線性系統.本文證明了當輸入信號是兩兩相互獨立的獨立同分佈信號時可以分離出輸入信號,並導出了基於最大熵的多輸入多輸出盲解卷新演算法.這個演算法不需要任何關于輸入信號和混合濾波器的先驗知識
  3. Mole entropy of mixing

    摩爾混合熵
  4. The mixing degree model was established to study the mixing progress of primary and secondary flow. the loss elements of all zones were deeply analyzed and thus the quantitative loss models based on total pressure loss and entropy increase respectively were constructed. the results show that the performance loss magnitude and distribution in ejecting mode of rbcc can be better described by the quantitative loss model expressed by entropy increase

    提出用摻混度模型來研究一次流與二次流的摻混程度,並深入分析了各流動區域的損失因素,建立了以總壓損失和熵增分析為基礎的損失量化分析模型,計算的結果表明,採用熵增模型描述的損失因子能量化反應引射摻混損失的分佈和大小。
  5. The mixing degree of atomic initial state has no influence on the entropy squeezing of the atom in motion

    原子初態的混合度對運動原子的信息熵壓縮幾乎沒有影響。
  6. Measured hole mass flows and a constant static pressure mixing analysis, together with the measured losses, allowed the decomposition of the losses into three distinct entropy generation mechanisms : loss generation within the hole, loss generation due to the mixing of the coolant with the mainstream, and change in secondary loss generation in the " blade passage

    論文還進行了葉片冷卻孔質量流的測量與常靜壓氣流混合分析,結合前述氣動力損失和冷卻空氣損耗的測量結果表明,端壁氣膜冷卻的綜合損失明顯地由三個部分組成:葉片冷卻孔內產生的損失;由於冷卻空氣與主流熱空氣的混合產生的損失;二次流的變化產生的損失。
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