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Design and construction of a balanced ternary ALU with potential future cybernetic intelligent systems applications

机译:具有潜在未来控制论智能系统应用的平衡三元ALU的设计和构建

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Central to the operation of any future cybernetic intelligent system based on digital principles is the method of representation of individual states in the system, together with the fundamental operations for moving from one state to the next. All modern computer systems on which these cybernetic systems are based have the binary representational system at their core. This system uses just two states representing variously the numerical values zero and one, or the logic values true and false. However the potential benefits of the balanced ternary method of representing symbolic data have been known for some time. We restate these benefits within a brief historical context and propose the adoption of a convenient standardised nomenclature. We then describe the design and construction of a 1-trit (trit being the ternary equivalent of the bit) balanced ternary ALU (Arithmetic and Logic Unit) based on DPDT (double-pole double-throw) relays. The potential use of this device as an educational tool in teaching computer science students basic principles of ternary and other multiple-value computing paradigms is also discussed. We briefly conclude with a look at some visions of the future where ternary computing may form the core of cybernetic intelligent systems based on advances in nanoelectromechanical technology.
机译:未来任何基于数字原理的控制论智能系统的核心工作是表示系统中各个状态的方法,以及从一种状态转移到另一种状态的基本操作。这些控制论系统所基于的所有现代计算机系统的核心都是二进制表示系统。该系统仅使用两种状态,分别表示数字值零和一,或逻辑值true和false。但是,表示符号数据的平衡三元方法的潜在好处已有一段时间了。我们在简短的历史背景下重申了这些好处,并建议采用一种方便的标准化术语。然后,我们描述基于DPDT(双刀双掷)继电器的1-trit(trit是比特的三进制等效)平衡三进制ALU(算术和逻辑单元)的设计和构造。还讨论了该设备作为教育工具在计算机科学专业学生教学中的潜在用途,以指导三元和其他多值计算范例的基本原理。我们简要地总结了对未来的一些展望,其中基于纳米机电技术的进步,三元计算可能会构成控制论智能系统的核心。

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