图形设计视觉词典:全面解析与理解

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《图形设计可视化词典》是一本专为图形设计爱好者和专业人士打造的权威指南,它将图形设计领域内广泛使用的术语系统化并直观呈现。作者Gavin Ambrose 和 Paul Harris 的合作使得这本书不仅涵盖了抽象概念如"抽象"、"时代精神"(Zeitgeist)、现代设计运动如"Bauhaus"和"Psychedelia",还有色彩理论如"色相"(Chroma)以及创新技法如"精致尸体"(Exquisite Corpse)。书中深入解析了超过250个常见的图形设计术语,从实用的术语如"不对称"、"层次结构"和"色调",到风格流派如超现实主义(Surrealism)、点彩画派(Pointillism)和后现代主义(Postmodernism),再到现代技术名词如位图(Bitmap)、笔触(Mark Making)和民间语言(Vernacular)。 这本书旨在帮助读者深化对图形设计语言的理解,不仅限于专业术语,还包括了传统仍在广泛使用的术语。通过丰富的插图和详细的解释,读者可以快速掌握每个概念的含义及其在实际设计中的应用。无论是初学者还是经验丰富的设计师,都能从中受益匪浅,提高他们的设计技能和理论素养。 此外,《图形设计可视化词典》由AVAPublishingSA出版,位于瑞士洛桑的Rue des Fontenailles 16号,提供联系方式以供读者查询或订购。在北美地区,由Thames&Hudson代理发行,其伦敦办事处位于High Holborn 181a。这本词典凭借其全面性和实用性,是每个图形设计学习者和实践者不可或缺的参考工具。

Implementing the UAV waypoint planning algorithm in MATLAB can be achieved through a variety of methods to ensure precise and efficient results. Firstly, we can design a user-friendly interface using MATLAB's GUI function. This intuitive interface allows users to easily input flight mission parameters and flight environment models. Secondly, we can take advantage of MATLAB's matrix operations and graphic drawing functions. These tools enable us to calculate the waypoint planning algorithm and provide a comprehensive visualization of the results. Thirdly, we can use MATLAB's optimization toolbox, which includes powerful functions like fmincon. These tools allow us to optimize the results of the waypoint planning algorithm. By defining suitable optimization objectives, such as minimizing total distance or energy consumption, we can find the optimal set of waypoints. Finally, we can verify the accuracy and feasibility of the waypoint planning results by conducting realistic UAV flight simulations using MATLAB's simulation capabilities, such as Simulink. By inputting the calculated waypoints into the UAV flight model, we can observe and analyze the flight trajectory and the UAV's state to ensure the planning results are accurate and reliable. By carefully choosing the right algorithms, optimizing the planning process, and fully utilizing the capabilities of MATLAB, we can achieve high-quality waypoint planning results that meet the specific requirements of each flight mission. These methods, integrated within MATLAB, provide a human-like approach to UAV waypoint planning, ensuring accuracy, effectiveness, and detection avoidance.还能检测出来,这个基础上再修改

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