Bio-inspired cognitive phones based on human nervous system

C. Moy
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引用次数: 1

Abstract

A lot of research in the radio domain has focussed on integrating autonomy and smartness capabilities inside future radio equipments like mobile phones. Such a smart radio is called a cognitive radio. This requires complementary management facilities to be added to the radio signal processing facilities present in traditional radios. Hierarchical and Distributed Cognitive Radio Architecture Management (HDCRAM) has been proposed as a solution for managing cognitive radio equipments. HDCRAM can realize the cognitive radio paradigm by integrating all three cognitive cycle stages: sensing, decision making and real-time adaptation. This paper aims at showing an analogy between HDCRAM, a cognitive radio equipment management architecture defined for cognitive radio, and the human nervous system, including both the central and the peripheral nervous systems. This is an originality in this field, as generally electronics has only considered the copying of brain functions (neurons in particular). Obvious similarities have been identified although this was never an a priori goal. This can be verified at several levels: (i) the structure of the cognitive management itself with a general manager (brain) made of, (ii) sensors and their management (sensorial sub-system), (iii) processing functions and their configuration management (motor sub-system), (iv) but also mechanisms which are very close to the biological model, such as reflex principle for real-time reactivity.
基于人类神经系统的仿生认知手机
无线电领域的许多研究都集中在将自主和智能功能集成到未来的无线电设备(如移动电话)中。这种智能无线电被称为认知无线电。这就要求在传统无线电中现有的无线电信号处理设施之外增加补充性的管理设施。分层分布式认知无线电体系结构管理(HDCRAM)是一种对认知无线电设备进行管理的解决方案。HDCRAM可以通过整合所有三个认知周期阶段:感知、决策和实时适应来实现认知无线电范式。本文旨在展示HDCRAM(一种为认知无线电而定义的认知无线电设备管理架构)与人类神经系统(包括中枢和周围神经系统)之间的类比。这是该领域的一个独创性,因为通常电子学只考虑大脑功能的复制(特别是神经元)。已经发现了明显的相似之处,尽管这从来都不是一个先验的目标。这可以在几个层面上得到验证:(i)由总经理(大脑)组成的认知管理本身的结构,(ii)传感器及其管理(感觉子系统),(iii)处理功能及其配置管理(运动子系统),(iv)以及非常接近生物模型的机制,例如实时反应的反射原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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