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所在平台: Udemy |
课程主页: https://www.udemy.com/course/mastering-interlocking-in-bess-substations/
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课程名称:掌握BESS变电站的互锁系统 课程概述:变电站是电力传输和配电网络的核心,确保电力安全可靠的流动。了解变电站的基本组成部分和互锁系统,对于电气工程师、保护专家和变电站设计师至关重要。本课程提供了一个结构化和实用的方法,帮助学员掌握主要设备、互锁机制以及变电站自动化的最新进展。 课程内容首先从对主要变电站设备的基础知识开始,涵盖隔离开关、接地开关、断路器、电流互感器、 voltage transformer (VT) 和浪涌保护器等。课程详细探讨每个组件的操作原理、应用和最佳设计及维护实践,使学员明确这些设备如何贡献于变电站的可靠性和安全性。 接下来,课程深入探讨单线图(SLD)和高程图的解析,帮助工程师有效解读和分析变电站布局。特别强调负载母线转移方案,以确保变电站电源的平稳切换。同时,课程详细讨论了初级与次级工程的区别,帮助专业人士理解其在变电站设计和保护中的相互依赖关系。 本课程的一个重要亮点是对互锁系统的深入探索,尤其是电池储能系统(BESS)的应用。随着电力行业向可再生能源的整合,BESS解决方案在电网稳定性中扮演着至关重要的角色。课程涵盖BESS特定的SLD、互锁表以及实际的互锁案例,以加深学员对这些系统在实际应用中实施方式的理解。 此外,课程介绍了Castell钥匙互锁系统,这是一种广泛用于变电站机械安全互锁的装置。参与者将学习这些系统如何防止不安全操作并增强人员安全。同时,课程还涉及了Bay控制单元(BCUs)及其在实现软逻辑互锁策略中的作用。 现代变电站的一个关键方面是GOOSE通信,这是一种先进的IEC 61850协议,能够实现保护与互锁功能的实时点对点通信。课程提供了GOOSE消息的概述及其在互锁中的应用,展示了其如何提升系统的效率与灵活性。 通过本课程,参与者将获得以下能力: - 理解主要变电站设备的操作原理和应用。 - 解读和分析单线图和高程图。 - 深入掌握负载母线转移方案与初级与次级工程概念。 - 学习互锁基础,包括传统及先进的数字互锁方法。 - 探索电池储能系统(BESS)的互锁策略。 - 理解Castell钥匙互锁及其在变电站安全中的应用。 - 熟悉Bay控制单元(BCUs)及其在软逻辑互锁中的作用。 - 学习GOOSE通信的基础知识及其在变电站自动化中的应用。 本课程适合电气工程师、变电站设计师、保护工程师以及希望扩展现代变电站工程知识的专业人士。无论您是该领域的新手还是希望提升专业知识的工程师,本课程都提供了在变电站设计、自动化和保护系统中成功所需的技术基础。
Mastering Interlocking in BESS Substations:Substations are the backbone of power transmission and distribution networks, ensuring the safe and reliable flow of electricity. Understanding their fundamental components and interlocking systems is crucial for electrical engineers, protection specialists, and substation designers. This course provides a structured and practical approach to mastering primary equipment, interlocking mechanisms, and the latest advancements in substation automation.The course begins with a foundational understanding of primary substation equipment, covering isolators, earth switches, circuit breakers, current transformers (CTs), voltage transformers (VTs), and surge arrestors. Each component is explored in detail, with a focus on its operational principles, applications, and best practices in design and maintenance. Engineers will gain a clear understanding of how these devices contribute to substation reliability and safety.Moving forward, the course delves into single-line diagrams (SLDs) and elevation reviews, helping engineers interpret and analyze substation layouts effectively. A special emphasis is placed on on-load bus transfer schemes, which ensure a smooth transition of power sources in substations. The distinction between primary and secondary engineering is also thoroughly discussed, helping professionals understand their interdependencies in substation design and protection.A major highlight of this course is its in-depth exploration of interlocking systems, particularly for Battery Energy Storage Systems (BESS). As the power industry shifts towards renewable energy integration, BESS solutions play a vital role in grid stability. The course covers BESS-specific SLDs, interlock tables, and practical examples of interlocking to enhance understanding of how these systems are implemented in real-world applications.Additionally, the course introduces Castell key interlocking systems, widely used for mechanical safety interlocking in substations. Participants will learn how these systems prevent unsafe operations and enhance personnel safety. The course also covers Bay Control Units (BCUs) and their role in implementing soft logic-based interlocking strategies.A key aspect of modern substations is GOOSE communication, an advanced IEC 61850 protocol enabling real-time, peer-to-peer communication for protection and interlocking functions. The course provides an overview of GOOSE messaging, its applications in interlocking, and how it enhances system efficiency and flexibility.By the end of this course, participants will:*Understand the operational principles and applications of primary substation equipment.* Interpret and analyze single-line diagrams and elevation drawings.* Gain expertise in on-load bus transfer schemes and primary vs. secondary engineering concepts.* Learn about interlocking fundamentals, including traditional and advanced digital interlocking methods.* Explore interlocking strategies for Battery Energy Storage Systems (BESS).* Understand Castell key interlocking and its applications in substation safety.* Familiarize themselves with Bay Control Units (BCUs) and their role in soft logic-based interlocking.* Learn the basics of GOOSE communication and its application in substation automation.This course is designed for electrical engineers, substation designers, protection engineers, and professionals seeking to expand their knowledge in modern substation engineering. Whether you are new to the field or looking to enhance your expertise, this course provides the necessary technical foundation to excel in substation design, automation, and protection systems.