首页> 外文会议>Hybrid Intelligent Systems, 2006. HIS '06. Sixth International Conference on >Towards Organic Sensing System-First Measurement Result of Self-x Sensor Signal Amplifier
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Towards Organic Sensing System-First Measurement Result of Self-x Sensor Signal Amplifier

机译:迈向有机传感系统-Self-x传感器信号放大器的首批测量结果

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The adaptation and robust sensing capabilities of living organisms remains envy to engineers. Numerous research efforts have been started to mimic these capabilities of living beings such as self-configuration, self-diagnosis and self-healing etc., and exploit them in technical devices, systems, and appliances. Ubiquitous embedded systems comprises of indispensable analog and mixed-signal component for sensor and actuator interfacing. The regarded sensor electronics are vulnerable to numerous static and dynamic influences, mismatches and to substrate noise. Specific generic cells for sensor amplifiers and analog/mixed-signal arrays are regarded in our work, which can be configured and changed/repaired under the control of an optimisation technique based on swarm intelligence. The approach targets on yielding fast, flexible, adaptive HW/SW platform supporting rapid prototyping and maintaining quality. The first chip design of a reconfigurable sensor signal amplifier has been tested by extrinsically generated PSO based configurations. The embedded system architecture and the measured results will be presented and an outlook on intrinsic system design will be given.
机译:活生物体的适应能力和强大的传感能力仍然令工程师们羡慕不已。已经开始许多研究工作来模仿生物的这些能力,例如自我配置,自我诊断和自我修复等,并在技术设备,系统和设备中加以利用。无处不在的嵌入式系统包括必不可少的模拟和混合信号组件,用于传感器和执行器接口。公认的传感器电子设备容易受到众多静态和动态影响,失配和基板噪声的影响。在我们的工作中考虑了用于传感器放大器和模拟/混合信号阵列的特定通用单元,可以在基于群体智能的优化技术的控制下对其进行配置和更改/修复。该方法的目标是产生支持快速原型制作和保持质量的快速,灵活,自适应的硬件/软件平台。可重配置传感器信号放大器的第一个芯片设计已通过外部生成的基于PSO的配置进行了测试。将介绍嵌入式系统架构和测量结果,并对内在系统设计进行展望。

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