استفاده از قابلیتصهای هاب انرژی در مدیریت گرفتگی خطوط انتقال
Parallel Title Proper
Application Of Energy Hub Capabilities In Congestion Management Of Transmission Lines
First Statement of Responsibility
/آرش شمس اله زاده
.PUBLICATION, DISTRIBUTION, ETC
Name of Publisher, Distributor, etc.
: مهندسی برق و کامپیوتر
Date of Publication, Distribution, etc.
، ۱۳۹۸
Name of Manufacturer
، افشاری
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
۸۲ص
NOTES PERTAINING TO PUBLICATION, DISTRIBUTION, ETC.
Text of Note
چاپی - الکترونیکی
DISSERTATION (THESIS) NOTE
Dissertation or thesis details and type of degree
کارشناسی ارشد
Discipline of degree
برق قدرت
Date of degree
۱۳۹۸/۱۱/۱۹
Body granting the degree
تبریز
SUMMARY OR ABSTRACT
Text of Note
پیشرفت سیستمصهای انرژی و گسترش استفاده از آنها در کنار محاسن و مزایایی که برای رفاه اجتماعی ایجاد کرده است نگرانیصهای جدیدی نیز برای صاحبان سیستمصها به همراه داشته است .زیرا وقوع وقفه در ارائه خدمات ممکن است صدمات جبران ناپذیر و هزینهصهای سنگینی به مصرفصکنندگان وارد کند .بنابراین تأمین انرژی و پاسخگویی به تقاضای مشترکین به صورت بدون وقفه و با قابلیت اطمینان زیاد هموراه دغدغه اصلی تأمینصکنندگان انرژی بوده تا از آن طریق امنیت کاری مشتریان خود را تأمین کنند و رضایت آنها را بدست آورند .کمبود منابع تولید انرژی، ناپایداری ولتاژی، گرفتگی خطوط انتقال را میصتوان از جمله مواردی دانست که باعث ایجاد قطعی در ارائه خدمات به مشتریان میصشوند .به طور کلی تأمین انرژی مورد نیاز مصرفصکنندگان از سالیان قبل توسط حاملصهای انرژی مختلفی صورت گرفته است .در این میان حاملصهای مختلف برق و گاز طبیعی با دارا بودن بیشترین شبکه سراسری و بیشترین مقبولیت هم در میان مصرفصکنندگان و هم در میان سرویس دهندصگان، بدلیل قابلیتصهای انتقال و ذخیرهصسازی آسان نقش بسیار پررنگی در تأمین انرژی مصرفصکنندگان دارند .از سوی دیگر ورود واحدهایی مانند نیروگاهصهای گازسوز، مولدهای تولید همزمان و دیگر تجهیزات چند حاملی و در کل هاب انرژی، باعث ایجاد نقاط اتصال و تعامل مابین این دو شبکه سراسری شده است که این مسأله امکان تأثیرگذاری و تأثیرپذیری حاملصها از یکدیگر را فراهم میصکند .در چنین شرایطی بهرهصبرداران و اپراتورهای سیستمصهای انرژی قادر خواهند بود از مزایا و قابلیتصهای موجود در یکی از حاملصها برای مدیریت نواقص حامل دیگر استفاده کنند .حضور حاملصهای مختلف انرژی در کنار یکدیگر مزایای مهمی همچون افزایش قابلیت اطمینان سیستمصها، ارائه راهکارهای جدید برای حل مشکلات شبکهصها، انعطافصپذیری در پاسخگویی به بارها و مقابله با ماهیت نوسانی منابع انرژی تجدیدپذیر را نسبت به شبکه انفرادی دارا میصباشد
Text of Note
The development of energy systems and the expansion of their use, along with the benefits and advantages it has created for social welfare, have also raised new concerns for system owners. This is because interruptions in service can cause irreparable damage and heavy costs to consumers. Therefore, energy supply and responding to customer demand without interruption and with high reliability have always been the main concerns of energy suppliers to ensure the security of their customers' work and gain their satisfaction. Lack of energy production resources, voltage instability, congestion transmission lines can be considered as factors that cause certainty in providing services to customers. In general, the energy needs of consumers have been met by various energy carriers for many years. Meanwhile, various carriers of electricity and natural gas, with having the largest global network and the highest acceptance among both consumers and service providers, due to their easy transfer and storage capabilities, have a very important role in providing energy to consumers. On the other hand, the entry of units such as gas-fired power plants, combine heat and power generators and other multi-carrier equipment, and in general the energy hub, has created connection points and interaction between these two global networks, which makes it possible for carriers to influence each other. In such cases operators of energy systems will be able to use the advantages and capabilities of one carrier to manage the shortcomings of another carrier. The presence of different energy carriers together has important advantages such as increasing the reliability of systems, providing new solutions to network problems, flexibility in responding to loads and combating the volatile nature of renewable energy sources compared to the individual network. In this Thesis, the congestion management of transmission lines has been analyzed using energy hub capabilities to use the synergistic effects of energy carriers on each other to examine the possibility of line congestion management and increase system efficiency. The methods of managing and preventing congestion of transmission lines that have been considered in this Thesis are divided into the following three categories: The first group uses the capabilities of flexible alternating current transmission systems, the second group uses optimization methods to manage the facilities available in the systems, and the third group uses the capabilities and facilities of renewable energy sources to manage congestion in transmission lines. In order to fully understand the capabilities available in multi-pregnancy systems, resources and references related to energy hubs have also been studied. Finally, by modeling and formulation electrical systems and systems for natural gas, as well as formulas that govern the system of multi-carrier, two testing systems: 1) conventional (fully electric) 2) multi-carrier (including electricity and gas) Have been simulated to evaluate the effectiveness of the proposed method. The optimization issues raised in the studied systems have been solved by Gams optimization software and then the locational marginal price indices, line congestion costs and the share of each line of line congestion costs have been calculated to more accurately assess the effectiveness of the proposed method
PARALLEL TITLE PROPER
Parallel Title
Application Of Energy Hub Capabilities In Congestion Management Of Transmission Lines