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The Technology of the Gaps: An Evolvable Hardware Synthesized Oscillator for the Control of a Flapping-Wing Micro Air Vehicle

机译:缝隙技术:用于控制拍击翼微型飞行器的可演化硬件综合振荡器

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摘要

To date, work in evolvable and adaptive hardware (EAH) has been largely isolated from primary inclusion into larger design processes. Almost without exception, EAH efforts are aimed at creating systems whole cloth, creating drop-in replacements for existing components of a larger design, or creating after-the-fact fixes for designs found to be deficient. This paper will discuss early efforts in integrating EAH methods into the design of a controller for a flapping-wing micro air vehicle (FWMAV). The FWMAV project is extensive, multidisciplinary, and on going. Because EAH methods were in consideration during its earliest design stages, this project provides a rich environment in which to explore means of effectively combining EAH and traditional design methodologies. In addition to providing a concrete EAH design that addresses potential problems with FWMAV flight in a unique way, this paper will also provide a provisional list of EAH design integration principles, drawn from our experiences to date.
机译:迄今为止,可扩展的自适应硬件(EAH)的工作已与主要包含在较大的设计过程中基本隔离开来。几乎毫无例外,EAH的工作旨在创建系统整体,为大型设计的现有组件创建直接替代品,或为发现不足的设计创建事后修正。本文将讨论将EAH方法集成到襟翼微型飞机(FWMAV)控制器设计中的早期工作。 FWMAV项目是广泛的,跨学科的,并且正在进行中。由于EAH方法是在其最早的设计阶段就考虑在内的,因此该项目提供了一个丰富的环境,可在其中探索将EAH与传统设计方法有效结合的方法。除了提供以独特方式解决FWMAV飞行潜在问题的具体EAH设计之外,本文还将根据我们迄今为止的经验提供EAH设计集成原则的临时列表。

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