Our simulation-based experiments are aimed to demonstrate a use case on the feasibility of fulfillment of global energy demand by primarily relying on solar energy through the integration of a longitudinally-distributed grid. These experiments demonstrate the availability of simulation technologies, good approximation models of grid components, and data for simulation. We also experimented with integrating different tools to create realistic simulations as we are currently developing a detailed tool-chain for experimentation. These experiments consist of a network of model houses at different locations in the world, each producing and consuming only solar energy. The model includes houses, various appliances, appliance usage schedules, regional weather information, floor area, HVAC systems, population, number of houses in the region, and other parameters to imitate a real-world scenario. Data gathered from the power system simulation is used to develop optimization models to find the optimal solar panel area required at the different locations to satisfy energy demands in different scenarios.
翻译:我们的模拟实验旨在展示实现全球能源需求可行性的实用案例,主要是通过整合纵向分布式电网,主要依靠太阳能来满足全球能源需求。这些实验展示了模拟技术、电网元件的良好近似模型和模拟数据。我们还试验了各种工具,以创造现实的模拟,因为我们目前正在开发一个详细的实验工具链。这些实验包括世界不同地点的模型房网络,每个都只生产和消耗太阳能。模型包括房屋、各种电器、设备使用时间表、区域天气信息、地面面积、HVAC系统、人口、本区域房屋数量以及其他参数,以模拟现实世界情景。从电源系统模拟中收集的数据被用来开发优化模型,以寻找不同地点所需的最佳太阳能电池板区,满足不同情景下的能源需求。