Abstract

본 논문은 항공전자 시스템 통제와 항법 및 사격통제, 커시브 및 라스터 그래픽 심볼 생성 둥의 기능이 통합된 항공전자시스템컴퓨터(ASC) 개발을 위한 실시간 다중 프로세서 병렬처리 기법을 제안한다. 4개의 32비트 RISC 프로세서간 논리적 계층구조는 마스터-슬레이브 다중 처리방식의 비대칭 구조를 가지며, Interaction 정도는 시분할 공통 시스템 버스와 공유 메모리 등을 활용한 밀 결합 방식을 채택하고, 효율적인 버스 중재방식을 고안하여 최적성능을 구현하였다. 일련의 비행시험을 통해 개발된 ASC를 검증하였으며, 전기적 시험과 환경 및 전자기 간섭 등 관련시험 또한 수행하였다. This paper presents a technique for real time multiprocessor parallel processing to develop an avionic system computer(ASC) which integrates the avionics control, navigation and fire control, cursive and raster graphic symbol generation into one line replaceable unit. The proposed method has optimal performance by adopting a logically asymmetric structure between four 32bit RISC processors based on the master-slave multiprocessing, a tightly coupled interaction level with the time shared common bus and global memory, and an efficient bus arbitration algorithm. The ASC has been verified through a series of flight tests. The relevant tests also have been rigorously conducted on the prototype ASC such as electrical test, environmental test, and electromagnetic interference test.

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