论文标题
能源系统优化的量子计算:挑战和机遇
Quantum computing for energy systems optimization: Challenges and opportunities
论文作者
论文摘要
本文的目的是探讨量子计算在能源系统优化问题上的应用,并讨论量子计算机采用技术来克服它们所面临的一些挑战。还讨论了与经典同行相比,量子计算的基本概念及其独特的特征。除了对两个市售量子系统的不同硬件体系结构描述外,还提供了使用开源软件工具的示例,作为潜入新的编程量子计算机领域的第一步,以解决系统优化问题。还讨论了这两个量子体系结构的质量之间的权衡。能源系统由于其结构以及大量的设计和操作约束而导致的复杂性质使能源系统优化成为大多数可用算法的困难问题。诸如能源系统基础架构开发的设施位置分配,电力系统操作的单位承诺以及属于能源系统优化类别的热交换器网络合成等问题,使用在常规CPU计算机上实现的经典算法和在量子计算上实现的量子算法实现。他们的设计,实施和结果已被陈述。此外,本文描述了最先进的量子计算机的局限性及其影响能量系统优化领域的巨大潜力。
The purpose of this paper is to explore the applications of quantum computing to energy systems optimization problems and discuss some of the challenges faced by quantum computers with techniques to overcome them. The basic concepts underlying quantum computation and their distinctive characteristics in comparison to their classical counterparts are also discussed. Along with different hardware architecture description of two commercially available quantum systems, an example making use of open-source software tools is provided as a first step for diving into the new realm of programming quantum computers for solving systems optimization problems. The trade-off between qualities of these two quantum architectures is also discussed. Complex nature of energy systems due to their structure and large number of design and operational constraints make energy systems optimization a hard problem for most available algorithms. Problems like facility location allocation for energy systems infrastructure development, unit commitment of electric power systems operations, and heat exchanger network synthesis which fall under the category of energy systems optimization are solved using both classical algorithms implemented on conventional CPU based computer and quantum algorithm realized on quantum computing hardware. Their designs, implementation and results are stated. Additionally, this paper describes the limitations of state-of-the-art quantum computers and their great potential to impact the field of energy systems optimization.