一种基于单SOC芯片的强隔离MCS系统及实现方法

By dividing a single SOC chip into shared subsystems and dedicated subsystems, and combining various isolation technologies, a balance between isolation, flexibility, and performance loss in the MCS system is achieved. This solves the problem that traditional isolation methods cannot achieve and meets the requirements of high real-time performance and high security.

CN122044898BActive Publication Date: 2026-07-17SIENGINE TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SIENGINE TECH CO LTD
Filing Date
2026-04-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing MCS systems based on a single SOC chip cannot simultaneously meet the requirements of isolation, flexibility, and performance loss, and traditional isolation methods cannot achieve compatibility.

Method used

It adopts an architecture of shared subsystems and dedicated subsystems, and achieves isolation through register transfer level (RTL). Combined with memory protection unit (MPU) access control list (ACL), memory system resource partitioning and monitoring (MPAM) technology, device hardware virtualization technology, and hardware multi-instance technology, it achieves three-level isolation and multi-level isolation.

Benefits of technology

While ensuring isolation, the system's flexibility is improved and performance loss is significantly reduced, meeting the requirements of high real-time performance, high reliability, and high security.

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Abstract

一种基于单SOC芯片的强隔离MCS系统及实现方法,涉及计算机技术领域,包括共享子系统和专用子系统,两者在RTL级实现隔离,专用子系统的资源基于RTL‑ MPU‑ACL实现三级隔离;而在共享子系统中,通过MPAM、设备硬件虚拟化技术、硬件多实例技术实现硬件级隔离,通过分区机制实现系统级隔离,以及通过容器技术实现应用级隔离。通过本申请可在保证共享、隔离的同时具备灵活性特征,且能显著降低性能损失。
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