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The objective of this paper is to propose a building energy management (BEM) platform that allows sensing and control of equipment in small- and medium-sized buildings. The proposed platform aims to improve energy efficiency, reduce energy consumption, and foster demand response (DR) implementation by controlling three major loads in buildings, including HVAC, lighting and plug loads. In addition,...
The objective of this paper is to present a multiagent system (MAS) that can enable integration of a number of IoT devices to allow grid-interactive and intelligent building operation. The proposed platform called BEMOSS — Building Energy Management Open Source Software is developed toallow sensing and control of HVAC, lighting and plug load controllers in small- and medium-sized commercial buildings...
The objective of this paper is to propose a human expert-based approach to electrical peak demand management. The proposed approach helps to allocate demand curtailments (MW) among distribution substations (DS) or feeders in an electric utility service area based on requirements of the central load dispatch center. Demand curtailment allocation is quantified by taking into account demand response...
It is important to note that air-conditioning and mechanical ventilating system (ACMV) and lighting system consume the most electrical energy in a building in Malaysia. In University Malaysia Pahang (UMP), due to the nature of the buildings, split units air-conditioning systems are used in the faculty office blocks and the lecture halls. It is found that a major portion of the energy consumed came...
Summary form only given. This presentation deals with a new paradigm where a mix of central station generation, distributed generation and energy efficiency/demand side management practices will provide an alternative and sustainable way to meet the growing needs for electricity. The proposed concept takes into account the availability of cleaner, more efficient and cost-effective small-scale generation...
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