RTOS风险优化可靠性工程的动态半群模型

P. Patra, P. Pradhan
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引用次数: 0

摘要

可靠性工程是指系统产品如处理器、内存、文件、Sh、K和加密密钥服务、业务和资源在最低成本下的高利用率。实时操作系统以最优的成本和时间提供最高的服务。可靠性工程提供处理器、内存、文件、Sh、内核和其他相互依赖的子组件的最大性能、责任、可靠性、可扩展性、完整性和可用性。可靠性工程是单个部件的最大功能与最小成本的比值。RE = k P, M, F, k /最小成本。k是比例常数。RE与风险成反比。RE最大限度地提高业务和系统的吞吐量和决策过程,并优化风险和停机时间。我们必须开发可靠性工程模型和机制,以便在多种业务和技术的复杂实时操作系统中进行风险优化。该模型将SE、RE、SC与全球范围内的产品、业务和资源进行整合和映射。同时,业务、工程和技术与产品、服务、运营和服务保持平衡。这种半群体模式绝对满足了我们的目标。当可靠性随着容错能力的提高而提高时,风险将根据业务和资源需求进行优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Semi-Group Model for Reliability Engineering Optimizing the Risk on RTOS
The reliability engineering is the high utilization of system Product i.e. Processor, Memory, File, Sh, K & Encryption key Services, Business and Resources at minimal cost. The Real Time Operating System providing highest services at optimal cost and time. The reliability engineering provides the maximum performance, accountability, reliability, scalability, integrity and availability of processor, memory, file, Sh, Kernel and other inter dependency sub-components. The reliability engineering is the ratio of the maximum functionality of individual components to the minimal cost. RE = k P, M, F, K/minimal cost. Where k is the proportionality constant. The RE is inversely proportional to the risk. The RE maximizes the throughput & decision process of business and system as well optimize the risk and down time. We have to develop the reliability engineering model & mechanism for risk optimization over a complex real time operating system for multiple business & technology. This proposed model integrate and mapping the SE, RE, SC with Product, Business & Resources in around the globe. Meanwhile Business, Engineering & Technology keep balance with product, services, operation & services as per CE. This semi-group model definitely resole our objective at high level of satisfaction. When reliability is increases with the fault tolerance increases and mean while the risk will be optimized as per business and resource requirement.
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