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Taking the characteristics of ICLs into consideration, optical design methodology for balancing the photocurrent of each sub-cell in the tandem cell is presented.
This paper discusses a methodology for balancing competing requirements by evaluating the thermal resistance, fire performance, sustainability, cost, acoustic damping, and durability objectives of various insulating materials through implementation of a weighted mean.
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Nevertheless, further studies and control methodologies for balancing the active power in power systems with power system withlarge-scale wind power integration, taking into account hour-ahead dispatch power plan for generating plants and power exchange with neighbouring power systems, are necessary to enhance the stability of future power systems with large-scale wind power integration.
On the basis of our results, we discuss general computational strategies for balancing efficiency and accuracy, and we explain how our methodology can be combined with other techniques for speeding up imputation.
This paper presents a general methodology for exergy balance in chemical and thermal processes integrated in ProSimPlus® as a well-adapted process simulator for energy efficiency analysis.
Methodology for mass balance of rotary fixture developed by investigators mostly act as post-mortem tool; calculating unbalanced mass after fixture is manufactured.
This paper presents a general methodology for exergy balance in chemical and thermal processes in order to be integrated in a process simulator.
The methodology for the balance power control of future power systems with large-scale wind power integration is described and exemplified considering the generation and power exchange capacities in 2020 for Danish power system.
For example, Cochran and Bharti describe a multistage methodology to balance inpatient bed utilization in a hospital [ 17].
The paper presents a new methodology for active power balance control in future interconnected power system with large scale wind power penetration.
Using this methodology for lyocell the balance between stored and in the product production emitted CO2 emissions are 0.04 tCO2/tlyocell, where this product gives positive impact on environment.
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