In many sectors of the industry, for example in agriculture, many countries find alternative sources of energy as an acceptable and feasible choice, given the high energy requirements on the one hand and the negative environmental effect of fossil fuels, on the other. Sustainable agriculture is a delicate equilibrium to increase crop production and preserve economic stability while reducing the use of scarce natural resources and the negative effects of the environment. The use of renewable energy systems for sustainable agriculture, therefore, needs to be promoted. This paper is a state of art on the numerous update and feasible technologies of renewable energy applications in the agricultural sectors. It also discusses the significance of renewable energy as environmentally clean technologies and the most reliable energy source. This study covers different types of renewable energy sources like solar systems, biomass energy, and hydropower. Such forms of renewables have been proven to be suitable options in agriculture, and in particular for remote rural areas.
This article examines a 128kW solar photovoltaic plant (SPP) connected to a 0.4kV distribution network in Pop district, Namangan region. The research revealed the effect of ambient temperature on the quality indicators of electricity generated by SPP. Ambient temperature affects not only the SPP production capacity, but also the inverter performance, which is the most basic device for SPP. The results were obtained on July 21-22, 2019 year when the air temperature was 350-450 C.
This article highlights the combined use of solar and hydropower based on a rational combination of traditional and renewable energy sources for powering agriculture and water management. At the same time, a combined integrated power supply system was formed. Provided, the energy is required from renewable sources, it fully provides the consumer, and the excess energy is transferred to the centralized network (N″), if the energy received from the network is less than the energy entering the network, the recommended system is efficient (N′″).
This article addresses the issues of monitoring energy consumption modes to reduce production costs when tariffs that divide consumers’ electricity bills by day, weekdays, and seasons. Taking into account the aforementioned issue, the proper use of time-differentiated tariffs has led to some changes in the operating mechanisms of industrial enterprises to monitor their operating modes.
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