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花開(kāi)半夏a金蟲(chóng) (初入文壇)
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[求助]
求助有關(guān)于昆蟲(chóng)仿生的文獻(xiàn)翻譯 已有1人參與
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求大神幫忙翻譯這段話 2. The main research areas of insect bionics Bionic products are the results of systemic approach of the nature and the device engineering of artefacts. The research involves three major steps: (1) Looking for insect model. According to the problems required, an in-depth study of the corresponding functional characteristics of insects is carried out, such as the exploration of the structure and function of insect’s compound eyes and olfactory system, the control mechanism of nervous system, the chemical structure of the hormone, the flapping wing mode and energy consumption characteristics during the flying process of insects. (2) Establishing mathematical model. Based on characteristics of insects and quantization and hipping technique, a mathematical approach to quantitative modeling is developed, which provide the basis for the establishment of hardware model. The model can used to study the flexion index of six limbs of leaping insects, the wings vibration frequency of flying insects, the lair three-dimensional parameters of nesting insects, etc. (3) Building hardware model. That is to juxtapose and embed modular materials for fabricating products with bionic function on the basis of the mathematical model parameters or the model of insects, such as jumping robots, flying machine flies and ground speed meters. The main species studied and utilized in insect bionics are butterflies, moths, flies, bees, beetles, dragonflies, fleas. And more and more insects will become research objects with the increasing development of insect bionics and other related disciplines. Recently, research on insect bionics are mainly related to physical structures, structure and function of the organ, behavior, hormone, voice, nest structure, and research on applications are mainly related to structure and function bionics, molecular bionics, energy bionics, information and control bionics, acoustic bionics (Li et al., 2004). Further research is needed to explore new materials and fields. |

銅蟲(chóng) (初入文壇)
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2 昆蟲(chóng)仿生學(xué)的主要研究領(lǐng)域 仿生產(chǎn)品是自然和設(shè)備工程系統(tǒng)研究的結(jié)果。這項(xiàng)研究包括三個(gè)主要步驟: (1)尋找昆蟲(chóng)模型。根據(jù)所需的問(wèn)題,深入研究昆蟲(chóng)進(jìn)行相應(yīng)的功能特性,如探索昆蟲(chóng)復(fù)眼的結(jié)構(gòu)和功能,嗅覺(jué)系統(tǒng),神經(jīng)系統(tǒng)的控制機(jī)制,激素的化學(xué)結(jié)構(gòu),撲翼模式和在昆蟲(chóng)的飛行過(guò)程的能源消耗特征等。 (2)建立數(shù)學(xué)模型。根據(jù)昆蟲(chóng)的特點(diǎn)及量化和模式化技術(shù),提供硬件模型建立的基礎(chǔ)的數(shù)學(xué)量化建模方法已得到開(kāi)發(fā)。該模型可以用于研究跳躍昆蟲(chóng)六肢的彎曲指數(shù),飛行昆蟲(chóng)翅膀的振動(dòng)頻率,筑巢昆蟲(chóng)巢穴的三維參數(shù)等。 (3)構(gòu)建硬件模型。就是并置和嵌入模塊化的產(chǎn)品來(lái)制造基于數(shù)學(xué)模型參數(shù)或昆蟲(chóng)模型的仿生產(chǎn)品,如跳躍機(jī)器人,飛行器配件和地面速度測(cè)量表。 用于研究和仿生學(xué)的昆蟲(chóng)物種主要是蝴蝶,飛蛾,蒼蠅,蜜蜂、瓢蟲(chóng)、蜻蜓、跳蚤。并且隨著昆蟲(chóng)仿生和其他相關(guān)學(xué)科的發(fā)展,越來(lái)越多的昆蟲(chóng)將成為研究對(duì)象。最近,研究昆蟲(chóng)仿生主要是與物理結(jié)構(gòu)、器官結(jié)構(gòu)和功能,行為,激素,聲音,巢穴結(jié)構(gòu)相關(guān)的,研究應(yīng)用主要是與仿生結(jié)構(gòu)和功能相關(guān),分子仿生學(xué)、能源仿生學(xué),信息與控制仿生,聲學(xué)仿生學(xué)相關(guān)的(李等 .,2004)。進(jìn)一步的研究需要探索新的材料和領(lǐng)域。 僅供參考 |
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