自适应容错的多方安全计算SMPC动态调度方法及装置

By adopting an adaptive and fault-tolerant multi-party secure computation (SMPC) dynamic scheduling method, this paper solves the problems of redundant execution of repetitive subtasks, insufficient fault tolerance reliability of containers, lack of targeted task scheduling, unreasonable node selection, and incomplete privacy and security protection in large-scale computing tasks, and achieves efficient and secure SMPC joint computation.

CN122195685BActive Publication Date: 2026-07-17TIANJIN URBAN PLANNING & DESIGN INST CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TIANJIN URBAN PLANNING & DESIGN INST CO LTD
Filing Date
2026-05-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing SMPC scheduling schemes suffer from problems such as redundant execution of repetitive subtasks, insufficient container fault tolerance and reliability, lack of targeted task scheduling, unreasonable node selection, incomplete privacy and security protection, and poor cloud-native adaptability in large-scale computing tasks.

Method used

The adaptive fault-tolerant multi-party secure computation (SMPC) dynamic scheduling method adopts a multi-level recursive decomposition of subtasks, constructs feature vectors to determine containerizable subtasks, creates dedicated container execution templates, implements a primary and backup container chain hot standby mechanism, schedules non-containerizable subtasks according to priority, and combines multi-dimensional load assessment and self-learning mechanisms to perform node selection and resource management.

Benefits of technology

It enhances the flexibility and scalability of SMPC scheduling, optimizes the stability and practicality of joint computing, improves computing efficiency, saves resources, strengthens fault tolerance and privacy security, and adapts to diverse task requirements.

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Abstract

本发明提出一种自适应容错的多方安全计算SMPC动态调度方法及装置,将SMPC联合计算任务进行多层级递归分解,对子任务构建特征向量,并判定是否可容器化;对可容器化子任务按其特征向量创建专属容器执行模板,并选择主容器执行所述可容器化子任务,创建一级备用容器,调用与主容器相同的专属容器执行模板,在主容器执行所述可容器化子任务过程中与主容器形成链式热备机制;对不可容器化子任务进行优先级分级,分别根据对应的调度策略选择SMPC节点执行;对各子任务执行后输出的加密结果进行完整性与安全性校验,校验通过后,将所有子任务的结果进行聚合。本发明提升SMPC调度的灵活性与可扩展性,整体优化SMPC联合计算的稳定性与实用性。
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