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Intelligent Energy Utilization Analysis Using IUA-SMD Model Based Optimization Technique for Smart Metering Data
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作者 K.Rama Devi V.Srinivasan +1 位作者 G.Clara Barathi Priyadharshini J.Gokulapriya 《Journal of Harbin Institute of Technology(New Series)》 CAS 2024年第1期90-98,共9页
Smart metering has gained considerable attention as a research focus due to its reliability and energy-efficient nature compared to traditional electromechanical metering systems. Existing methods primarily focus on d... Smart metering has gained considerable attention as a research focus due to its reliability and energy-efficient nature compared to traditional electromechanical metering systems. Existing methods primarily focus on data management,rather than emphasizing efficiency. Accurate prediction of electricity consumption is crucial for enabling intelligent grid operations,including resource planning and demandsupply balancing. Smart metering solutions offer users the benefits of effectively interpreting their energy utilization and optimizing costs. Motivated by this,this paper presents an Intelligent Energy Utilization Analysis using Smart Metering Data(IUA-SMD)model to determine energy consumption patterns. The proposed IUA-SMD model comprises three major processes:data Pre-processing,feature extraction,and classification,with parameter optimization. We employ the extreme learning machine(ELM)based classification approach within the IUA-SMD model to derive optimal energy utilization labels. Additionally,we apply the shell game optimization(SGO)algorithm to enhance the classification efficiency of the ELM by optimizing its parameters. The effectiveness of the IUA-SMD model is evaluated using an extensive dataset of smart metering data,and the results are analyzed in terms of accuracy and mean square error(MSE). The proposed model demonstrates superior performance,achieving a maximum accuracy of65.917% and a minimum MSE of0.096. These results highlight the potential of the IUA-SMD model for enabling efficient energy utilization through intelligent analysis of smart metering data. 展开更多
关键词 electricity consumption predictive model data analytics smart metering machine learning
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Embedded TLS 1.2 Implementation for Smart Metering & Smart Grid Applications 被引量:1
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作者 Atta Kofi Nsiah Axel Sikora +1 位作者 Andreas Walz Artem Yushev 《Journal of Electronic Science and Technology》 CAS CSCD 2015年第4期373-378,共6页
Digital networked communications are the key to all Internet-of-things applications, but especially to smart metering systems and the smart grid. In order to ensure a safe operation of systems and the privacy of users... Digital networked communications are the key to all Internet-of-things applications, but especially to smart metering systems and the smart grid. In order to ensure a safe operation of systems and the privacy of users, the transport layer security (TLS) protocol, a mature and well standardized solution for secure communications, may be used. We implemented the TLS protocol in its latest version in a way suitable for embedded and resource-constrained systems. This paper outlines the challenges and opportunities of deploying TLS in smart metering and smart grid applications and presents performance results of our TLS implementation. Our analysis shows that given an appropriate implementation and configuration, deploying TLS in constrained smart metering systems is possible with acceptable overhead. 展开更多
关键词 Embedded software smart grids smart metering transport layer security.
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A Prepaid Smart Metering Scheme Based on WiMAX Prepaid Accounting Model 被引量:2
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作者 Reduan H. Khan Tanzim F. Aditi +1 位作者 Victor Sreeram Herbert H. C. Iu 《Smart Grid and Renewable Energy》 2010年第2期63-69,共7页
Prepaid energy meters have been widely adopted by utilities in different countries across the world as an innovative solution to the problem of affordability and consumption management. However, the present smart card... Prepaid energy meters have been widely adopted by utilities in different countries across the world as an innovative solution to the problem of affordability and consumption management. However, the present smart card based systems have some inherent problems like added cost, low availability and lack of security. In the future Smart Grid paradigm, use of smart meters can completely overhaul these prepaid systems by introducing centralized accounting, monitoring and credit-control functions using state-of-the-art telecommunication technologies like WiMAX. In this paper we pro-pose a prepaid smart metering scheme for Smart Grid application based on centralized authentication and charging using the WiMAX prepaid accounting model. We then discuss its specific application to Demand Response and Roam-ing of Electrical Vehicles. 展开更多
关键词 smart meterING WIMAX smart GRID DEMAND Response Electric VEHICLES
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Investigation of Bandwidth Requirement of Smart Meter Network Using OPNET Modeler 被引量:1
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作者 M. Rahman Amanullah Mto 《Smart Grid and Renewable Energy》 2013年第4期378-390,共13页
Smart meter networks are the backbone for smart electrical distribution grid. Smart meter network requires the bidirectional communications medium and interoperability capability. As thousands of meters are interconne... Smart meter networks are the backbone for smart electrical distribution grid. Smart meter network requires the bidirectional communications medium and interoperability capability. As thousands of meters are interconnected in the smart meter network, it is vital to select an appropriate communication bandwidth to facilitate real-time two-way information flows and this will also allow further uptake of greenhouse-friendly technology options and enhance energy security. Optimized Network Engineering Tools (OPNET) Modeler is one of most powerful simulation tools for the analysis of communication networks. In this paper, several models of different structured smart meter networks were developed with network parameters which were connected with different communication links such as 10 BaseT and 100 BaseT in order to measure propagation delay, throughput, and utilization of the network. It was found that the propagation delay decreases with higher bandwidth. The other network parameters, namely network utilization and network throughput were also analysed. Based on the investigation, it is recommended that the 100 BaseT communication link is suitable for the smart meter network. The outcome of this paper provided a guideline to the future smart meter network developer so as to avoid catastrophic challenges faced by some of the distribution companies. 展开更多
关键词 smart meter NETWORK smart meter ROUTER FIREWALL Server Communication Bandwidth Propagation Delay Throughput Utilization
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Privacy Preservation of Smart Meters Based on Identity Authentication
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作者 Hongbo Hu Xin Zhao +3 位作者 Yalian Wu Mengbiao Huang Ziqi Zhu Qingyu Yang 《Energy and Power Engineering》 2020年第4期53-62,共10页
Smart meters provide a lot of convenience for both power supply and consumption. Due to the frequent transmission of information, it brings great challenges to the privacy preservation of the user’s household power c... Smart meters provide a lot of convenience for both power supply and consumption. Due to the frequent transmission of information, it brings great challenges to the privacy preservation of the user’s household power consumption data in the smart grid. In order to achieve the anonymity of smart meters. A smart meter privacy preservation scheme based on identity authentication is proposed. The third-party certification authority is introduced in this scheme;it issues pseudonym certificates to realize the identity privacy preservation of smart meters. The masking technology with the Advanced Encryption Standard algorithm is used for data aggregation. The results show that our scheme reduces the computational cost and the communication overhead. 展开更多
关键词 smart meter IDENTITY AUTHENTICATION PRIVACY PRESERVATION MASKING Technology
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Design of Real-time Electricity Prices and Wireless Communication Smart Meter
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作者 Hongling Xie Ping Huang +2 位作者 Yanqing Li Liang Zhao Feilong Wang 《Energy and Power Engineering》 2013年第4期1357-1361,共5页
Under the background of smart grid’s real-time electricity prices theory, a real-time electricity prices and wireless communication smart meter was designed. The metering chip collects power consumption information. ... Under the background of smart grid’s real-time electricity prices theory, a real-time electricity prices and wireless communication smart meter was designed. The metering chip collects power consumption information. The real-time clock chip records current time. The communication between smart meter and system master station is achieved by the wireless communication module. The “freescale” micro controller unit displays power consumption information on screen. And the meter feedbacks the power consumption information to the system master station with time-scale and real-time electricity prices. It results that the information exchange between users and suppers can be realized by the smart meter. It fully reflects the demanding for communication of smart grid. 展开更多
关键词 REAL-TIME ELECTRICITY PRICES WIRELESS Communication smart meter FREESCALE
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An Anti-Eavesdropping Method in Data Collection of Smart Meter
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作者 Weiwei Dong Yong Wang +2 位作者 Lin Zhou Kanghua Cao Haiming Li 《Journal of Computer and Communications》 2019年第9期38-49,共12页
At present, DL/T 645-2007 communication protocol is used to collect data for smart meters. However, in the beginning, this protocol is not designed to be a secure protocol and only the function and reliability were ta... At present, DL/T 645-2007 communication protocol is used to collect data for smart meters. However, in the beginning, this protocol is not designed to be a secure protocol and only the function and reliability were taken into account. Plaintext is used in the protocol for data transmission, as a result, attackers can easily sniff the information and cause information leakage. In this paper, man-in-the-middle attack was used to verify that the smart meter data acquisition process was vulnerable when facing third-party attacks, and this can result in data eavesdropping. In order to resist such risks and prevent information being eavesdropped, a real ammeter communication experimental environment was built, it realized two-way identity authentication between data acquisition center and ammeter data center. At the same time, RSA (Rivest-Shamir-Adleman) was used to encrypt the meter data, which encrypted the collection, storage process of meter data and ensured the confidentiality and integrity of the meter data transmission. Compared with other methods, this method had obvious advantages. The analysis showed that this method can effectively prevent the data of smart meters from being eavesdropped. 展开更多
关键词 smart meter Data ACQUISITION Transmission EAVESDROPPING RSA Two-Way AUTHENTICATION
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Secure Communication Networks in the Advanced Metering Infrastructure of Smart Grid
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作者 Feng Ye Yi Qian 《ZTE Communications》 2015年第3期13-20,共8页
In this paper, a security protocol for the advanced metering infrastructure (AMI) in smart grid is proposed. Through the AMI, customers and the service provider achieve two-way communication. Real-time monitoring an... In this paper, a security protocol for the advanced metering infrastructure (AMI) in smart grid is proposed. Through the AMI, customers and the service provider achieve two-way communication. Real-time monitoring and demand response can be applied because of the information exchanged. Since the information contains much privacy of the customer, and the control messages need to be authenticated, security needs to be ensured for the communication in the AM1. Due to the complicated network structure of the AMI, the asymmetric communications, and various security requirements, existing security protocols for other networks can hardly be applied into the AMI directly. Therefore, a security protocol specifically for the AMI to meet the security requirements is proposed. Our proposed security protocol includes initial authentication, secure uplink data aggregation, secure downlink data transmission, and domain secrets update. Compared with existing researches in related areas, our proposed security protocol takes the asymmetric communications of the AMI and various security requirements in smart grid into consideration. 展开更多
关键词 smart grid advanced metering infrastructure network security PRIVACY
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New Hybrid IoT LoRaWAN/IRC Sensors:SMARTWater Metering System
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作者 Vlastimil Slany Petr Koudelka +6 位作者 Eva Krcalova Jan Jobbagy Lukas Danys Rene Jaros Zdenek Slanina Michal Prauzek Radek Martinek 《Computers, Materials & Continua》 SCIE EI 2022年第6期5201-5217,共17页
The massive development of internet of things(IoT)technologies is gaining momentum across all areas of their possible deployment—spanning from Industry 4.0 to eHealth,smart city,agriculture or waste management.This o... The massive development of internet of things(IoT)technologies is gaining momentum across all areas of their possible deployment—spanning from Industry 4.0 to eHealth,smart city,agriculture or waste management.This ongoing development is further pushed forward by the gradual deployment of 5G networks.With 5G capable smart devices,it will be possible to transfer more data with shorter latency thereby resulting in exciting new use cases such as Massive IoT.Massive-IoT(low-power wide area network-LPWAN)enables improved network coverage,long device operational lifetime and a high density of connections.Despite all the advantages of massive-IoT technology,there are certain cases where the original concept cannot be used.Among them are dangerous explosive environments or issues caused by subsurface deployment(operation during winter months or dense greenery).This article presents the concept of a hybrid solution of IoT LoRaWAN(long range wide area network)/IRC-VLC(infrared communication,visible light communication)technology,which combines advantages of both technologies according to the deployment scenario. 展开更多
关键词 IRC/VLC LoRaWAN LPWAN massive IoT smart metering
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An Ad-Hoc Low Cost Wireless Sensor Network for Smart Gas Metering
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作者 Oscar Rorato Silvano Bertoldo +2 位作者 Claudio Lucianaz Marco Allegretti Riccardo Notarpietro 《Wireless Sensor Network》 2013年第3期61-66,共6页
The monitoring of power consumption has become of a great interest in recent years as well as the innovative technologies available to realize Wireless Sensor Networks (WSNs) have experienced a great growth. While sma... The monitoring of power consumption has become of a great interest in recent years as well as the innovative technologies available to realize Wireless Sensor Networks (WSNs) have experienced a great growth. While smart metering technologies for electric energy are already established, as sensors power supply comes directly from power lines, WSN nodes for gas metering should necessarily be equipped with long life batteries. The presented work describes a new prototypal low cost WSN designed ad hoc for gas smart metering. The network has a star topology: each sensor node can be completely integrated with standard reed relay gas meter, and it is capable to measure the gas consumption. The information is sent to the central node (the Access Point, AP) through an RF links. The sensor nodes have been designed with custom electronics and a proprietary firmware, in order to work with a common 3.6 V lithium battery which is able to ensure a life period of about 10 years for each node. Only the AP must be connected directly to electric power. The AP is connected through the RS-232 interface to a control embedded PC equipped with a LAMP (Linux, Apache, MySQL, PHP) framework: it stores all the information coming from each node in a coherent database and allows authorized users to check the network status using a web interface. The WSN is self-learning and it is capable to detect new nodes joining the network without altering the normal operative flow. Moreover e-mail and SMS alerts can be activated to alert if a node is disconnected from the network or some problems occur. A first prototype of the WSN has been already tested achieving good results. 展开更多
关键词 WSN smart Grid smart meterING Gas meterING Energy meterING Electronic BOARD AD-HOC Designed BOARD Low COST
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Load Flow Analysis Framework for Active Distribution Networks Based on Smart Meter Reading System
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作者 Merkebu Zenebe Degefa Robert John Millar +2 位作者 Matti Koivisto Muhammad Humayun Matti Lehtonen 《Engineering(科研)》 2013年第10期1-8,共8页
With the expansion of distributed generation systems and demand response programs, the need to fully utilize distribution system capacity has increased. In addition, the potential bidirectional flow of power on distri... With the expansion of distributed generation systems and demand response programs, the need to fully utilize distribution system capacity has increased. In addition, the potential bidirectional flow of power on distribution networks demands voltage visibility and control at all voltage levels. Distribution system state estimations, however, have traditionally been less prioritized due to the lack of enough measurement points while being the major role player in knowing the real-time system states of active distribution networks. The advent of smart meters at LV loads, on the other hand, is giving relief to this shortcoming. This study explores the potential of bottom up load flow analysis based on customer level Automatic Meter Reading (AMRs) to compute short time forecasts of demands and distribution network system states. A state estimation frame-work, which makes use of available AMR data, is proposed and discussed. 展开更多
关键词 ACTIVE Network DEMAND Response Dynamic Rating LOAD FORECAST LOAD Modeling smart meter State Estimation
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Exploiting the Cellular Infrastructure for Data Transmission in Smart Metering Systems
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作者 Athanasios Giannakopoulos Panayotis G. Cottis 《Journal of Computer and Communications》 2016年第7期31-41,共11页
To implement the access and backhaul networks for Smart Metering (SM) systems various technologies are combined with the existing communications infrastructure. This paper deals with data transmission in SM systems, f... To implement the access and backhaul networks for Smart Metering (SM) systems various technologies are combined with the existing communications infrastructure. This paper deals with data transmission in SM systems, focusing on how the existing cellular networks infrastructure is employed to implement SM access communication networks. The analysis aims at analyzing the role of the cellular communications infrastructure taking into account the spatial distribution and installation points of the smart meters, the urban and topological characteristics of the SM deployment areas and the common practice so far followed by the utilities. It is demonstrated that cellular communications, either exclusively or combined with power line communications, enable immediate and scalable deployment of SM access communication networks at low installation cost, thus constituting the basic option for the implementation of smart metering. 展开更多
关键词 smart metering (SM) SM Access Communication Networks Cellular Communication Networks Power Line Communications
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Technologies Behind the Smart Grid and Internet of Things: A System Survey
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作者 Kuldeep Sharma Arun Malik +3 位作者 Isha Batra A.S.M.Sanwar Hosen Md Abdul Latif Sarker Dong Seog Han 《Computers, Materials & Continua》 SCIE EI 2023年第6期5049-5072,共24页
Electric smart grids enable a bidirectional flow of electricity and information among power system assets.For proper monitoring and con-trolling of power quality,reliability,scalability and flexibility,there is a need... Electric smart grids enable a bidirectional flow of electricity and information among power system assets.For proper monitoring and con-trolling of power quality,reliability,scalability and flexibility,there is a need for an environmentally friendly system that is transparent,sustainable,cost-saving,energy-efficient,agile and secure.This paper provides an overview of the emerging technologies behind smart grids and the internet of things.The dependent variables are identified by analyzing the electricity consumption patterns for optimal utilization and planning preventive maintenance of their legacy assets like power distribution transformers with real-time parameters to ensure an uninterrupted and reliable power supply.In addition,the paper sorts out challenges in the traditional or legacy electricity grid,power generation,transmission,distribution,and revenue management challenges such as reduc-ing aggregate technical and commercial loss by reforming the existing manual or semi-automatic techniques to fully smart or automatic systems.This article represents a concise review of research works in creating components of the smart grid like smart metering infrastructure for postpaid as well as in prepaid mode,internal structure comparison of advanced metering methods in present scenarios,and communication systems. 展开更多
关键词 Electricity consumption BIDIRECTIONAL advanced meter infrastructure energy internet of things smart grid smart meter
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Traffic Scheduling Mechanism Based on Interference Avoidance for Meter Data Collection in Wireless Smart Grid Communication Networks
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作者 SHAO Sujie GUO Shaoyong +2 位作者 QIU Xuesong MENG Luoming LEI Min 《China Communications》 SCIE CSCD 2015年第7期142-153,共12页
Meter Data Collection Building Area Network(MDCBAN) deployed in high rises is playing an increasingly important role in wireless multi-hop smart grid meter data collection. Recently, increasingly numerous application ... Meter Data Collection Building Area Network(MDCBAN) deployed in high rises is playing an increasingly important role in wireless multi-hop smart grid meter data collection. Recently, increasingly numerous application layer data traffic makes MDCBAN be facing serious communication pressure. In addition, large density of meter data collection devices scattered in the limited geographical space of high rises results in obvious communication interference. To solve these problems, a traffic scheduling mechanism based on interference avoidance for meter data collection in MDCBAN is proposed. Firstly, the characteristics of network topology are analyzed and the corresponding traffic distribution model is proposed. Next, a wireless multi-channel selection scheme for different Floor Gateways and a single-channel time unit assignment scheme for data collection devices in the same Floor Network are proposed to avoid interference. At last, a data balanced traffic scheduling algorithm is proposed. Simulation results show that balanced traffic distribution and highly efficient and reliable data transmission can be achieved on the basis of effective interference avoidance between data collection devices. 展开更多
关键词 通信干扰 交通压力 调度机制 无线 通信网络 电网 智能 数据采集设备
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Ensemble Voting-Based Anomaly Detection for a Smart Grid Communication Infrastructure
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作者 Hend Alshede Laila Nassef +1 位作者 Nahed Alowidi Etimad Fadel 《Intelligent Automation & Soft Computing》 SCIE 2023年第6期3257-3278,共22页
Advanced Metering Infrastructure(AMI)is the metering network of the smart grid that enables bidirectional communications between each consumer’s premises and the provider’s control center.The massive amount of data ... Advanced Metering Infrastructure(AMI)is the metering network of the smart grid that enables bidirectional communications between each consumer’s premises and the provider’s control center.The massive amount of data collected supports the real-time decision-making required for diverse applications.The communication infrastructure relies on different network types,including the Internet.This makes the infrastructure vulnerable to various attacks,which could compromise security or have devastating effects.However,traditional machine learning solutions cannot adapt to the increasing complexity and diversity of attacks.The objective of this paper is to develop an Anomaly Detection System(ADS)based on deep learning using the CIC-IDS2017 dataset.However,this dataset is highly imbalanced;thus,a two-step sampling technique:random under-sampling and the Synthetic Minority Oversampling Technique(SMOTE),is proposed to balance the dataset.The proposed system utilizes a multiple hidden layer Auto-encoder(AE)for feature extraction and dimensional reduction.In addition,an ensemble voting based on both Random Forest(RF)and Convolu-tional Neural Network(CNN)is developed to classify the multiclass attack cate-gories.The proposed system is evaluated and compared with six different state-of-the-art machine learning and deep learning algorithms:Random Forest(RF),Light Gradient Boosting Machine(LightGBM),eXtreme Gradient Boosting(XGboost),Convolutional Neural Network(CNN),Long Short-Term Memory(LSTM),and bidirectional LSTM(biLSTM).Experimental results show that the proposed model enhances the detection for each attack class compared with the other machine learning and deep learning models with overall accuracy(98.29%),precision(99%),recall(98%),F_(1) score(98%),and the UNDetection rate(UND)(8%). 展开更多
关键词 Advanced metering infrastructure smart grid cyberattack ensemble voting anomaly detection system CICIDS2017
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对有关电能计量若干问题的思考 被引量:1
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作者 赵伟 赵成 +3 位作者 李世松 仝霞 刘坚 李雪城 《电测与仪表》 北大核心 2024年第1期1-7,共7页
文中基于论证和较全面分析,就不同场景下电能计量所关注的截然不同的问题、更好利用大数据去构建电能表检验新方法、动态电能计量研究面临新挑战、关注超谐波电能计量、不宜将电能计量装置与电能表简单划等号,以及测量准确度不同于测量... 文中基于论证和较全面分析,就不同场景下电能计量所关注的截然不同的问题、更好利用大数据去构建电能表检验新方法、动态电能计量研究面临新挑战、关注超谐波电能计量、不宜将电能计量装置与电能表简单划等号,以及测量准确度不同于测量精度等六个问题,阐述了作者的观点和认识,旨在对开展相关研究,以及更清楚理解相关测量方法及概念等起到促进作用。 展开更多
关键词 智能电能表 电能计量 间谐波 超高次谐波 虚拟标准
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Smart Meters and Under-Frequency Load Shedding
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作者 Krzysztof Billewicz 《Journal of Energy and Power Engineering》 2015年第10期905-911,共7页
关键词 低频减载 智能仪表 电动助力转向系统 电力系统 每股收益 电力供应 紧急情况 支付协议
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Smart Meter Deployment Threat and Vulnerability Analysis and Response
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作者 Steven Dougherty Takaki Saitoh 《Journal of Energy and Power Engineering》 2015年第2期199-213,共15页
关键词 智能电表 安全威胁 部署 漏洞分析 网络安全 基础设施 通信接口 能源管理系统
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Power "Smart Pricing" with and without Smart Meters
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作者 King Min Wang Yu Ju Cheng 《Journal of Energy and Power Engineering》 2013年第7期1316-1330,共15页
关键词 智能电表 成本定价 电力公司 峰谷分时电价 需求响应 公用事业 需求状况 电力供应
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基于智能移动设备的低成本微型作物光谱反射率测量仪设计与实现
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作者 吴金恺 刘乃森 +7 位作者 曹静 胡佳楠 潘嫄嫄 毕然 郭靖宇 王许淇 霍丹琪 张文宇 《江苏农业学报》 CSCD 北大核心 2024年第3期469-477,共9页
为实现作物生长信息的低成本、实时、无损监测,本研究基于光谱分析技术,选择395 nm和800 nm 2个波段,根据光学系统原理和小型化需求,进行基于智能移动设备的低功耗微型作物光谱反射率测量仪研发,包括封装壳体、光学系统和硬件电路设计... 为实现作物生长信息的低成本、实时、无损监测,本研究基于光谱分析技术,选择395 nm和800 nm 2个波段,根据光学系统原理和小型化需求,进行基于智能移动设备的低功耗微型作物光谱反射率测量仪研发,包括封装壳体、光学系统和硬件电路设计及控制系统App开发;并使用积分球和ASD Fieldspec 4 Hi-Res地物光谱仪对测量仪4个通道(395 nm和800 nm太阳光接收通道和作物反射光接收通道)的测量值进行标定,并以反射率为20%、40%、60%、100%的4块标准灰度板为测量对象检验测量仪的准确性。结果表明:4个通道标定方程的决定系数均在0.9980以上,395 nm和800 nm反射率的均方根误差分别为1.46%和1.07%,平均绝对误差分别为1.17%和0.82%;4块标准反射率灰度板在395 nm和800 nm 2个波段测得反射率的相对误差分别小于2.0%和3.6%,变异系数分别在1.36%~4.17%和0.78%~2.36%。该测量仪体积32 cm^(3),质量仅20 g,且具有低成本、高精度、易操作、可升级等特性,可实现基于智能移动设备的作物生长实时监测。 展开更多
关键词 生长监测 智能测量仪 微型化 智能手机 光谱反射率
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