Optimal Planning with Consumer Feedback: A Simulation of a Socialist Economy

2022 ◽  
pp. 1-21
Author(s):  
Jan Philipp Dapprich
1969 ◽  
Vol 12 (7) ◽  
pp. 3-29 ◽  
Author(s):  
N. Fedorenko ◽  
S. Shatalin

Author(s):  
Lily Chumley

The last three decades have seen a massive expansion of China's visual culture industries, from architecture and graphic design to fine art and fashion. New ideologies of creativity and creative practices have reshaped the training of a new generation of art school graduates. This is the first book to explore how Chinese art students develop, embody, and promote their own personalities and styles as they move from art school entrance test preparation, to art school, to work in the country's burgeoning culture industries. The book shows the connections between this creative explosion and the Chinese government's explicit goal of cultivating creative human capital in a new “market socialist” economy where value is produced through innovation. Drawing on years of fieldwork in China's leading art academies and art test prep schools, the book combines ethnography and oral history with analyses of contemporary avant-garde and official art, popular media, and propaganda. Examining the rise of a Chinese artistic vanguard and creative knowledge-based economy, the book sheds light on an important facet of today's China.


Soviet Review ◽  
1984 ◽  
Vol 25 (1) ◽  
pp. 62-77 ◽  
Author(s):  
Iu. Bromlei ◽  
O. Shkaratan
Keyword(s):  

Energies ◽  
2021 ◽  
Vol 14 (12) ◽  
pp. 3400
Author(s):  
Jie Xing ◽  
Peng Wu

Bidirectional coupling systems for electricity and natural gas composed of gas units and power-to-gas (P2G) facilities improve the interactions between different energy systems. In this paper, a combined optimization planning method for an electricity-natural gas coupling system with P2G was studied. Firstly, the characteristics of the component model of the electricity-natural gas coupling system were analyzed. The optimization planning model for the electricity-natural gas coupling system was established with the goal of minimizing the sum of the annual investment costs and the annual operation costs. Based on the established model, the construction statuses for different types of units, power lines, and pipelines and the output distribution values for gas units and P2G stations were optimized. Then, the immune algorithm was proposed to solve the optimization planning model. Finally, an electricity-natural gas coupling system composed of a seven-node natural gas system and a nine-node power system was taken as an example to verify the rationality and effectiveness of the model under different scenarios.


Energies ◽  
2021 ◽  
Vol 14 (8) ◽  
pp. 2045
Author(s):  
Pierpaolo Garavaso ◽  
Fabio Bignucolo ◽  
Jacopo Vivian ◽  
Giulia Alessio ◽  
Michele De Carli

Energy communities (ECs) are becoming increasingly common entities in power distribution networks. To promote local consumption of renewable energy sources, governments are supporting members of ECs with strong incentives on shared electricity. This policy encourages investments in the residential sector for building retrofit interventions and technical equipment renovations. In this paper, a general EC is modeled as an energy hub, which is deemed as a multi-energy system where different energy carriers are converted or stored to meet the building energy needs. Following the standardized matrix modeling approach, this paper introduces a novel methodology that aims at jointly identifying both optimal investments (planning) and optimal management strategies (operation) to supply the EC’s energy demand in the most convenient way under the current economic framework and policies. Optimal planning and operating results of five refurbishment cases for a real multi-family building are found and discussed, both in terms of overall cost and environmental impact. Simulation results verify that investing in building thermal efficiency leads to progressive electrification of end uses. It is demonstrated that the combination of improvements on building envelope thermal performances, photovoltaic (PV) generation, and heat pump results to be the most convenient refurbishment investment, allowing a 28% overall cost reduction compared to the benchmark scenario. Furthermore, incentives on shared electricity prove to stimulate higher renewable energy source (RES) penetration, reaching a significant reduction of emissions due to decreased net energy import.


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