Ezmin Abdullah, Eber Lazareen Anak Ignatius, N. Hidayat, N. I. Shuhaimi, R. Mohamad
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This inefficient process cause the unsynchronized date and time, different logging period and logging time interval which consequently leads to high cost of equipment used, manpower, time consuming and low accuracy of data taken. The aims of this project was to develop a tool dedicated to energy auditor to improve the energy audit process during field data collection named variable input/output data logger that combined various parameters under one tool. This project utilized Field Programmable Gate Array board (FPGA) on the design part using platform designer software (QSYS) to generate the Verilog coding in the Quartus Prime Lite software and Altera DE1-Soc development board for the prototype. In this project, the developed data logger had the ability to measure and logged three essential parameters that would be used for energy analysis which were voltage, current and temperature. The results showed all the parameters worked concurrently and time synchronized controlled by only one data logger. The time interval for each parameter can be easily set to the any other counting at the clock set in the Qsys software. Lastly, the logged data from the logger could be displayed in real time when connected to computer for immediate observation and also could be saved systematically in Excel format for energy report analysis. 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引用次数: 0
摘要
能源审计是一个了解能源使用方式和地点的系统过程。从审计中,能源审计员可以识别节能潜力,并根据报告确定能源管理任务。然而,在进行能源审计时,需要考虑几个重要的挑战,特别是在收集多个地点的不同参数的现场数据时。以前,能源审计人员需要一定数量的数据记录器,以便记录来自不同参数的数据,如电压、电流、温度、湿度和勒克斯。这些记录器来自不同的品牌、软件和用途。这种低效率的过程造成了日期和时间不同步,测井周期和测井时间间隔不同,从而导致使用的设备成本高,人力,耗时,数据准确性低。该项目的目的是开发一种专用于能源审计员的工具,以改善现场数据收集过程中的能源审计过程,该工具名为可变输入/输出数据记录器,将各种参数组合在一个工具下。本项目在设计部分使用现场可编程门阵列板(FPGA),使用平台设计软件(QSYS)在Quartus Prime Lite软件和Altera DE1-Soc开发板中生成Verilog编码。在这个项目中,开发的数据记录仪能够测量和记录三个基本参数,这些参数将用于能量分析,即电压,电流和温度。结果表明,所有参数同时工作,时间同步,仅由一个数据记录器控制。每个参数的时间间隔可以很容易地设置为在Qsys软件中设置的时钟上的任何其他计数。最后,记录仪记录的数据与计算机连接后可实时显示,便于即时观察,并可系统保存成Excel格式,供能源报表分析使用。该项目为能源审计人员的审计工作和报告编制节省了时间和成本,同时由于日期和时间的同步,提高了数据的可靠性。
Variable Input/Output Data Logging System Using FPGA for Energy Audit
Energy audit is a systematic process to understand how and where the energy is being used. From the audits, energy auditor can identify the energy saving potential and can decide energy management tasks base on the report. However, there are several important challenges need to be considered in conducting energy audits especially in collecting field data at the multiple locations with various parameters. Previously, energy auditors need some number of data loggers in order to log the data from different parameters such as voltage, current, temperature, humidity and lux. The loggers come from various brands, software’s and purposes. This inefficient process cause the unsynchronized date and time, different logging period and logging time interval which consequently leads to high cost of equipment used, manpower, time consuming and low accuracy of data taken. The aims of this project was to develop a tool dedicated to energy auditor to improve the energy audit process during field data collection named variable input/output data logger that combined various parameters under one tool. This project utilized Field Programmable Gate Array board (FPGA) on the design part using platform designer software (QSYS) to generate the Verilog coding in the Quartus Prime Lite software and Altera DE1-Soc development board for the prototype. In this project, the developed data logger had the ability to measure and logged three essential parameters that would be used for energy analysis which were voltage, current and temperature. The results showed all the parameters worked concurrently and time synchronized controlled by only one data logger. The time interval for each parameter can be easily set to the any other counting at the clock set in the Qsys software. Lastly, the logged data from the logger could be displayed in real time when connected to computer for immediate observation and also could be saved systematically in Excel format for energy report analysis. This project benefits energy auditor for their auditing works and report preparation in term of time consume, cost and increase data reliability due to synchronization of date and time.