Structure Optimization of Power Systems with Renewable Energy Sources
暫譯: 可再生能源系統的電力系統結構優化

Zaporozhets, Artur, Kulyk, Mykhailo, Babak, Vitalii

  • 出版商: Springer
  • 出版日期: 2025-02-15
  • 售價: $7,360
  • 貴賓價: 9.5$6,992
  • 語言: 英文
  • 頁數: 146
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3031836960
  • ISBN-13: 9783031836961
  • 相關分類: 控制系統 Control-systems
  • 海外代購書籍(需單獨結帳)

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商品描述

This book develops a method for economic-technological forecasting of the optimal functioning and parameters of the energy system. The relevance of this work is determined by current trends and challenges in the field of energy and sustainable development, considering the following key points: 1. transition to renewable energy: Optimizing the structure of integrated energy systems with a focus on renewable energy sources and distributed generation is crucial for achieving sustainable development goals and mitigating climate change. 2. Technological progress: Continuous advancements in generation technologies, energy storage, and smart grid development provide new opportunities for the optimal integration of renewable energy into existing and new energy systems. Models and tools that can promptly track the variability and intermittency of renewable sources are essential for making optimal management decisions to ensure the reliability and resilience of energy systems. 3. Environmental impact: Optimizing energy systems using renewable sources helps reduce greenhouse gas emissions and minimize negative environmental impacts. 4. Integration of energy storage: Effective use of energy storage technologies is a key aspect of optimizing energy systems with a high share of renewable energy sources. Models that address the optimal integration of energy storage (batteries) and demand response strategies are crucial for maintaining the stability of electricity generation and supply. 5. Social significance: Research into models and means of optimizing the implementation of renewable energy can contribute to creating effective scenarios. 6. Economic competitiveness: Reducing the costs of renewable energy technologies combined with the potential savings from optimizing the operation modes of traditional generation makes the integration of renewable energy economically attractive. Thus, the task of developing new and improving existing methods and economic-mathematical models for studying the directions and optimal parameters of the technological development of energy system elements is a relevant scientific problem that needs to be addressed.

商品描述(中文翻譯)

本書發展了一種經濟技術預測方法,用於最佳運行和能源系統參數的預測。這項工作的相關性由當前能源和可持續發展領域的趨勢與挑戰所決定,考慮以下幾個關鍵點:

1. 轉向可再生能源:優化綜合能源系統的結構,重點放在可再生能源和分散式發電上,對於實現可持續發展目標和減緩氣候變化至關重要。

2. 技術進步:在發電技術、能源儲存和智慧電網發展方面的持續進步,為可再生能源的最佳整合提供了新的機會,無論是在現有還是新建的能源系統中。能夠及時追蹤可再生能源變化性和間歇性的模型和工具,對於做出最佳管理決策以確保能源系統的可靠性和韌性至關重要。

3. 環境影響:使用可再生能源優化能源系統有助於減少溫室氣體排放並最小化對環境的負面影響。

4. 能源儲存的整合:有效利用能源儲存技術是優化高比例可再生能源系統的關鍵方面。針對能源儲存(電池)和需求響應策略的最佳整合的模型,對於維持電力生成和供應的穩定性至關重要。

5. 社會意義:研究優化可再生能源實施的模型和手段,可以促進有效情境的創建。

6. 經濟競爭力:降低可再生能源技術的成本,加上優化傳統發電運行模式所帶來的潛在節省,使得可再生能源的整合在經濟上具有吸引力。因此,開發新方法和改進現有的經濟數學模型,以研究能源系統元素的技術發展方向和最佳參數,是一個需要解決的相關科學問題。