Technology for Project Liftoff

C. Hewitt
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引用次数: 3

Abstract

This article discusses technology for universal Integrative Secure Intelligent Systems with the following technology stack: Actor myriad-cores architecture with ActorScript(TM) for massive robust concurrency, strongly-typed architecture (without doubling the pointer size) to protect security of Actors including dynamic relocation and automatic pause-less storage reclamation, 10ns average communication latency Actor communication to provide quick response time to users, Services for underlying operations, e.g., interoperation with datacenters and other Citadels, Massive Inference-Robust Ontology [Guarino and Musen 2015, Hewitt 2016-2019] for operations on massive amounts of pervasively inconsistent information including statistics and correlations, Matrix [Bender, Flickinger, and Oepen 2002, Bender et. al. 2010] for discourse, rhetoric and narratology, Experiences [Gurman 2017, Mundy 2016, Shapiro, et. al. 2015] for collaborations, gestures, video, etc. Citadels [Hewitt 2019] for increased performance and robustness with no single point of failure and rectifying mistakes ASAP. Project Liftoff(TM) is to develop the above technologies for universal deployment in this decade. The project stands to be a huge development effort comparable to the Apollo Project. Education will be crucial to the success of Project Liftoff because there is an enormous talent shortage. Project Liftoff for education, science, and technology to create universal Integrative Secure Intelligent Systems by 2030. Integrative Secure Intelligent Systems, as envisioned, will over considerable time become the most complex software that has ever been created.
项目发射技术
本文通过以下技术栈讨论通用集成安全智能系统的技术:Actor多核架构,采用ActorScript(TM)实现大规模稳健并发,强类型架构(不增加指针大小的两倍)保护Actor的安全性,包括动态重定位和自动无暂停存储回收,平均10ns通信延迟Actor通信为用户提供快速响应时间,底层操作服务,例如与数据中心和其他Citadels的互操作,海量推理-稳健本体(Massive Inference-Robust Ontology) [Guarino and Musen 2015, Hewitt 2016-2019]用于对大量普遍不一致的信息(包括统计数据和相关性)进行操作,Matrix [Bender, Flickinger, and Oepen 2002, Bender等人,2010]用于话语、修辞和叙事,Experiences [Gurman 2017, Mundy 2016, Shapiro等人,2015]用于协作、手势、视频等。Citadels [Hewitt 2019]用于提高性能和鲁棒性,无单点故障,并尽快纠正错误。“腾空计划”(TM)将在未来十年内开发上述技术以实现普遍部署。该项目将是一项巨大的开发工作,可与阿波罗计划相媲美。教育对升空计划的成功至关重要,因为人才严重短缺。到2030年,推动教育、科学和技术发展,创建通用的综合安全智能系统。正如所设想的那样,综合安全智能系统将在相当长的时间内成为有史以来最复杂的软件。
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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