Time:2024.12.23Browse:0
According to foreign media reports, Japan's University of Tokyo (UTokyo), Toyota Motor Corporation and TRENDE will test the next generation power system (P2P power trading) at Toyota's Higashifuji Technical Center (Higashifuji Technical Center) and its surrounding areas starting on June 17. ). This next-generation power system will use blockchain technology to connect homes, businesses and electric vehicles to the grid for power transactions. As distributed power sources such as solar panels, batteries and electric vehicles become increasingly common, Japan's electricity supply system is in a transitional phase from a traditional large-scale unified system to a distributed power supply system in which individuals and businesses have their own power supplies. The purpose of this test is to verify the economic benefits of producers and sellers (using their own distributed power generation and trading electricity with electricity consumers through the electricity trading market at prices that reflect supply and demand conditions) and to evaluate the feasibility of a two-way, autonomous power supply system. , the system will enable direct transactions with other producers and sellers. Specific steps for this test include creating a power exchange for households and businesses participating in the test, and installing an AI-powered power management system (power trading agent) in each home and business. The power trading agent places orders to buy and sell power on the power exchange based on electricity usage by homes and businesses and forecasts of solar panel power generation. Electricity trading between individuals is enabled by an algorithm that matches order data for each household and business buying and selling on the electricity exchange. This is the world's first test of personal power trading, using plug-in hybrid electric vehicles (PHEV) as distributed power sources in addition to solar panels and batteries. The test aims to verify the economic advantages of electricity consumers and producers and sellers trading electricity through market transactions. In addition, the test will simulate distance-based electricity consignment charges, as well as validate algorithms for predicting electricity demand for electric vehicles, whose power consumption levels vary with cruising distance. 1. The power exchange collects the power bidding information of each household, enterprise and PHEV in a unified manner. Electric vehicles, black technology, forward-looking technology, batteries, Toyota University of Tokyo, Toyota blockchain technology, Toyota next-generation power system, Toyota power trading, new automotive technology 2. The power exchange completes transactions by matching buying and selling conditions. Electric vehicles, black technology, forward-looking technology, batteries, Toyota University of Tokyo, Toyota blockchain technology, Toyota next-generation power system, Toyota power trading, new automotive technologies
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