SOA和ESB,摘录自virtuas公司

Virtuas公司是Appfuse作者Matt Raible所在公司,位于美国丹佛,是咨询公司,提供SOA+ESB服务。介绍了SOA和ESB概念,还提及开源软件ServiceMix,它集成Spring,与多个应用服务器集成,Virtuas在相关领域有专业知识可提供服务。

virtuas公司就是Appfuse的作者Matt Raible的公司,这个公司位于USA的丹佛,他是由一群独立的顾问组成的咨询公司。他们也提供SOA+ESB的服务。

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Service-Oriented Architecture (SOA) and Enterprise Service Bus (ESB) are two buzzwords in enterprise IT today. But many organizations do not fully understand or take advantage of what they have to offer.

An SOA is essentially a collection of services. These services communicate with each other. The communication can involve either simple data passing or could involve two or more services coordinating some activity. Some means of connecting services to each other is needed.

An ESB is a standards-based integration platform that combines messaging, web services, and data transformation to reliably connect and coordinate the interaction of significant numbers of diverse applications across extended enterprises with transactional integrity.

Open source software and SOA/ESB are not co-joined by projects such as ServiceMix, released under the Apache license. It is lightweight and embeddable, has integrated Spring support and can be run at the edge of the network (inside a client or server), as a standalone ESB provider or as a service within another ESB. You can use ServiceMix in Java SE or a Java EE application server. ServiceMix is completely integrated into Apache Geronimo, which allows you to deploy JBI components and services directly into Geronimo. ServiceMix is being JBI certified as part of the Geronimo project. ServiceMix is also integrated with JBoss application server.

Virtuas has extensive domain expertise in ServiceMix, Geronimo and JBoss, and can provide the services necessary to bring them safely and successfully into your environment.

【直流微电网】径向直流微电网的状态空间建模与线性化:一种耦合DC-DC变换器状态空间平均模型的方法 (Matlab代码实现)内容概要:本文介绍了径向直流微电网的状态空间建模与线性化方法,重点提出了一种基于耦合DC-DC变换器状态空间平均模型的建模策略。该方法通过对系统中多个相互耦合的DC-DC变换器进行统一建模,构建出整个微电网的集中状态空间模型,并在此基础上实施线性化处理,便于后续的小信号分析与稳定性研究。文中详细阐述了建模过程中的关键步骤,包括电路拓扑分析、状态变量选取、平均化处理以及雅可比矩阵的推导,最终通过Matlab代码实现模型仿真验证,展示了该方法在动态响应分析控制器设计中的有效性。; 适合人群:具备电力电子、自动控制理论基础,熟悉Matlab/Simulink仿真工具,从事微电网、新能源系统建模与控制研究的研究生、科研人员及工程技术人员。; 使用场景及目标:①掌握直流微电网中多变换器系统的统一建模方法;②理解状态空间平均法在非线性电力电子系统中的应用;③实现系统线性化并用于稳定性分析与控制器设计;④通过Matlab代码复现扩展模型,服务于科研仿真与教学实践。; 阅读建议:建议读者结合Matlab代码逐步理解建模流程,重点关注状态变量的选择与平均化处理的数学推导,同时可尝试修改系统参数或拓扑结构以加深对模型通用性适应性的理解。
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