array vt. 1.打扮,裝飾。 2.使…列隊(duì),排列。 3.提出(陪審官)名單,使(陪審官)列席,召集(陪審官)。 The general arrayed his troops for battle. 將軍使軍隊(duì)列隊(duì)準(zhǔn)備戰(zhàn)斗。 The girl arrayed herself in her finest clothes. 這女孩打扮得花枝招展。 The count and his men arrayed themselves against the king. 伯爵舉兵對(duì)抗國(guó)王。 n. 1.整列,隊(duì)列,陣(列);陣容。 2.〔詩(shī)〕衣裳,裝扮,打扮。 3.陪審官名單。 4.一大批,一大群,一連串。 5.【數(shù)學(xué)】排列。 a battle array 戰(zhàn)斗隊(duì)形,列陣。 holiday array 節(jié)日盛裝。 be in fine array 盛裝。 an array of actors 演員的陣容。 a window array 櫥窗陳列品。 an array of (umbrellas) 一排(傘)。 in battle array 列陣,嚴(yán)陣。 in proud array 堂堂正正。
Microsoft s . net also recognizes this wrapped array pattern and generates friendly c code Net也認(rèn)可這種包裝的數(shù)組模式,并且生成友好的c #代碼。
It ' s necessary to take mutual coupling of arrays into account in the research of array pattern synthesis 摘要在天線陣綜合的實(shí)際情況中,考慮陣元間的互耦影響是十分必要的。
Simulation and experiments show that for point array or hole array patterns with the same sizes maskless interference photolithography is much simple than the traditional photolithography 模擬和實(shí)驗(yàn)結(jié)果表明,對(duì)點(diǎn)陣或孔陣圖形,在同樣的圖形尺度下,無(wú)掩模干涉光刻比傳統(tǒng)光刻簡(jiǎn)單得多。
Until standards bodies recognize and map this wrapped array pattern appropriately , this solution is something you should apply only if you really must distinguish a null array from an empty array 只有在標(biāo)準(zhǔn)組織適當(dāng)?shù)卣J(rèn)可和映射這個(gè)包裝的數(shù)組模式之后,您才能應(yīng)用這一解決方法(如果您確實(shí)需要區(qū)別零數(shù)組和空數(shù)組的話) 。
On the base of above it , this paper discuss the synthesis of optimum distributed arrays by nonuniform spacing in the sense of dolph - chebyshev . having derived the equations of optimum element distribution , we analyze the exponentially spaced array , which are optimum when the elements are isotropic and equally weighted , and the array by general raised cosine function . the formulate for estimating the sidelobe envelope , beamwidth of the array pattern and clean region width are obtained 推導(dǎo)了最佳陣元分布方程,分別對(duì)陣元無(wú)方向性和等加權(quán)時(shí)的最佳分布式陣列? ?指數(shù)間隔陣列和采用廣義升余弦加權(quán)的最佳分布式陣列進(jìn)行了分析,推導(dǎo)了天線方向圖旁瓣包絡(luò)、波束寬度,干凈掃描區(qū)寬度的估計(jì)公式,給出了近軸旁瓣電平與陣列參數(shù)的關(guān)系。
The main tasks finished in this paper include : 1 . this thesis deduces circular arrays and line arrays pattern ’ s synthesis function and compares their performance and characteristics according to simulation results . also the influence of amplitude and phase quantification is analyzed in array signal 本文主要完成的工作: 1 .推導(dǎo)圓形陣列和線形陣列方向圖綜合函數(shù),根據(jù)仿真結(jié)果分析并比較了圓陣和線陣的性能和特點(diǎn),并在此基礎(chǔ)上分析了幅相量化在陣列信號(hào)處理中產(chǎn)生的影響。
In chapter 4 , a chebyshev method beamforming for uniform circular arrays ( ucas ) is proposed based on dolph - chebyshev method for uniform linear arrays ( ulas ) . this method is that it computationally efficient which makes it eminently suitable for real - time beamforming and beamstearing applications . we describe the new approach for synthesizing array patterns with guaranteed least sidelobe levels for any look direction 我們對(duì)基于均勻線陣dolph - chebyshev波束合成方法進(jìn)行研究,提出了基于均勻圓陣dolph - chebyshev波束合成算法,即期望信號(hào)在任意入射角度時(shí),均能保證同樣的主瓣寬度和最小旁瓣電平的陣列方向圖合成算法。