Players are also rewarded for performing well and staying on target with different titles, weapons and much more.
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The goal of Sudden Attack is to complete a series of daily challenges and earn experience points along the way. A special Boot Camp is even provided to teach players the skills they need in a fun way that takes nothing away from the game itself. The controls are very easy to use, while the smooth tutorials that pop up at the start of the game make getting into a breeze. However, people who are new to first person shooter games will have no trouble getting to grips with Sudden Attack. 29–31.Sudden Attack is fast paced and intense and really puts gamers in the heart of the action. Moreno-Munoz, Advanced smart metering infrastructure for future smart homes, in 2015 IEEE 5th International Conference on Consumer Electronics-Berlin (ICCE-Berlin), pp. Guizani, Secure and lightweight authentication scheme for smart metering infrastructure in smart grid. Wilhite,Smart metering, in Leonardo-Energy. Honnavalli, MITM intrusion analysis for advanced metering infrastructure communication in a smart grid environment, in International Conference on Computational Intelligence, Security and Internet of Things, pp. Xiao (ed.), Security and Privacy in Smart Grids (CRC Press, Boca Raton, 2013)
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Sarigiannidis, The challenges of privacy and access control as key perspectives for the future electric smart grid. Alahmad, Resiliency of smart power meters to common security attacks, in ANT/SEIT, pp. Pira,Implementation of WiFi-based single-phase smart meter for Internet of Things (IoT), in 2017 International Electrical Engineering Congress (iEECON), pp. Mahjabin, Implementation of DoS and DDoS attacks on cloud servers. El-Hajj, Smart grid security: threats, vulnerabilities and solutions. Das,Two tier communication architecture for smart meter, in 2013 Fifth International Conference on Communication Systems and Networks (COMSNETS), pp. Ping, Implementation of an SDN-based security defense mechanism against DDoS attacks. Benhaddou, Wireless sensor network applications in smart grid, in 2014 International Renewable and Sustainable Energy Conference (IRSEC), pp. Grüneis, A survey on threats and vulnerabilities in smart metering infrastructures. Ghafurian (eds.), Smart Grid: The Electric Energy System of the Future, vol. The prevention mechanisms are also implemented/suggested for the performed attacks (DDoS, MITM). The attacks were successfully carried out on the simulation environment and the physical smart meter testbed, exposing the vulnerabilities in the current infrastructure.
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The DDoS attack is performed using low orbit ion cannon (LOIC), and the MITM attack is performed using the ARP spoofing technique. The simulation environment is developed using Docker containers. The physical testbed is designed using Arduino mega microcontroller (integrated with ESP8266) and Raspberry Pi microprocessor. The work also includes the execution of attacks like distributed denial of service (DDoS) and man in the middle (MITM) on the physical testbed and simulation environment and implements the prevention mechanisms for the same. The main goal of this work is to create a testbed to analyze the effects of security attacks on the smart metering system and a simulation environment. These systems measure, collect, and analyze energy usage and send the data over communication networks. The smart meter is an intelligent device that has capabilities of communication and management of data. One of the main sub-structures of the smart grid is AMI, i.e., advanced metering infrastructure. A smart grid is an electrical infrastructure that makes use of information, communication, computational intelligence, and consumption to achieve a clean, safe, reliable, resilient, efficient, and sustainable electrical energy system. The electrical energy system of the future should investigate the basic requirements and concerns raised by some utilities, by using the latest technologies to create a sustainable, smarter, and highly efficient smart grid.
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Two dominant factors that impact the future of electrical energy systems of the era are government policies, and the efficiency needs of the consumers.