Environment driven consumer EC model incorporating complexities of consumer body dynamics

Yes === Energy consumption (EC) of consumers primarily depends on comfort level (CL) affirmed by brain sensations of the central nervous system. Environmental parameters such as surroundings, relative humidity, air temperature, solar irradiance, air pressure, and cloud cover directly influence consu...

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Main Authors: Ali, S.M., Khan, B., Mokryani, Geev, Mehmood, C.A., Jawad, M., Farid, U.
Language:en
Published: 2019
Subjects:
Online Access:http://hdl.handle.net/10454/17106
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-171062019-08-31T03:05:08Z Environment driven consumer EC model incorporating complexities of consumer body dynamics Ali, S.M. Khan, B. Mokryani, Geev Mehmood, C.A. Jawad, M. Farid, U. Neurophysiology Humidity control Closed loop systems Medical control systems Atmospheric temperature Building management systems Feedback Environmental factors Quality control Humidity Evaporation Yes Energy consumption (EC) of consumers primarily depends on comfort level (CL) affirmed by brain sensations of the central nervous system. Environmental parameters such as surroundings, relative humidity, air temperature, solar irradiance, air pressure, and cloud cover directly influence consumer body temperature that in return affect blood dynamics perturbing brain comfort sensations. This CL (either in summer, winter, autumn, or spring season) is a function of external environment and internal body variations that force a consumer toward EC. To develop a new concept of consumer's EC, first the authors described environment parameters in detail with relation to surroundings and EC. Considering this, they tabulated a generic relation of consumer's CL with EC and environment temperature. Second, to build an inter-related bond between the environmental effects on consumer body dynamics, they analysed theoretically and mathematically above mutual relations between medical and environmental sciences. Finally, they present their conceptual EC model based on a closed-loop feedback system. This model is a complex non-linear adaptive system with environmental and surrounding parameters as input to the system resulting in an optimised EC, considering consumer CL as a key parameter for the system. 2019-06-04T12:49:08Z 2019-06-04T12:49:08Z 2019 2019-02-14 2019-02-18 Article Published version Ali SM, Khan B, Mokryani G et al (2019) Environment driven consumer EC model incorporating complexities of consumer body dynamics. IET Energy Systems Integration. Accepted for publication http://hdl.handle.net/10454/17106 en https://doi.org/10.1049/iet-esi.2018.0051 (c) 2019 The Authors. This is an Open Access article distributed under the Creative Commons CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/)
collection NDLTD
language en
sources NDLTD
topic Neurophysiology
Humidity control
Closed loop systems
Medical control systems
Atmospheric temperature
Building management systems
Feedback
Environmental factors
Quality control
Humidity
Evaporation
spellingShingle Neurophysiology
Humidity control
Closed loop systems
Medical control systems
Atmospheric temperature
Building management systems
Feedback
Environmental factors
Quality control
Humidity
Evaporation
Ali, S.M.
Khan, B.
Mokryani, Geev
Mehmood, C.A.
Jawad, M.
Farid, U.
Environment driven consumer EC model incorporating complexities of consumer body dynamics
description Yes === Energy consumption (EC) of consumers primarily depends on comfort level (CL) affirmed by brain sensations of the central nervous system. Environmental parameters such as surroundings, relative humidity, air temperature, solar irradiance, air pressure, and cloud cover directly influence consumer body temperature that in return affect blood dynamics perturbing brain comfort sensations. This CL (either in summer, winter, autumn, or spring season) is a function of external environment and internal body variations that force a consumer toward EC. To develop a new concept of consumer's EC, first the authors described environment parameters in detail with relation to surroundings and EC. Considering this, they tabulated a generic relation of consumer's CL with EC and environment temperature. Second, to build an inter-related bond between the environmental effects on consumer body dynamics, they analysed theoretically and mathematically above mutual relations between medical and environmental sciences. Finally, they present their conceptual EC model based on a closed-loop feedback system. This model is a complex non-linear adaptive system with environmental and surrounding parameters as input to the system resulting in an optimised EC, considering consumer CL as a key parameter for the system.
author Ali, S.M.
Khan, B.
Mokryani, Geev
Mehmood, C.A.
Jawad, M.
Farid, U.
author_facet Ali, S.M.
Khan, B.
Mokryani, Geev
Mehmood, C.A.
Jawad, M.
Farid, U.
author_sort Ali, S.M.
title Environment driven consumer EC model incorporating complexities of consumer body dynamics
title_short Environment driven consumer EC model incorporating complexities of consumer body dynamics
title_full Environment driven consumer EC model incorporating complexities of consumer body dynamics
title_fullStr Environment driven consumer EC model incorporating complexities of consumer body dynamics
title_full_unstemmed Environment driven consumer EC model incorporating complexities of consumer body dynamics
title_sort environment driven consumer ec model incorporating complexities of consumer body dynamics
publishDate 2019
url http://hdl.handle.net/10454/17106
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AT mehmoodca environmentdrivenconsumerecmodelincorporatingcomplexitiesofconsumerbodydynamics
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