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Optimal Contract Design Under Asymmetric Information for Cloud-Enabled Internet of Controlled Things

机译:支持云的受控互联网上的不对称信息下的最佳合同设计

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The development of advanced wireless communication technologies and smart embedded control devices makes everything connected, leading to an emerging paradigm of the Internet of Controlled Things (IoCT). IoCT consists of two layers of systems: cyber layer and physical layer. This work aims to establish a holistic framework that integrates the cyber-physical layers of the IoCT through the lens of contract theory. For the cyber layer, we use a FlipIt game to capture the cloud security. We focus on two types of cloud, high-type and low-type, in terms of their provided quality of service (QoS). The cloud's type is of private information which is unknown to the contract maker. Therefore, the control system administrator (CSA) at the physical layer needs to design a menu of two contracts for each type of service provider (SP) due to this asymmetric information structure. According to the received contract, SP decides his cyber defense strategy in the FlipIt game of which the Nash equilibrium determines the QoS of the cloud, and further influences the physical system performance. The objective of CSA is to minimize the payment to the cloud SP and the control cost jointly by designing optimal contracts. Due to the interdependence between the cyber and physical layers in the cloud-enabled IoCT, we need to address the cloud security and contract design problems in an integrative manner. We find that CSA always requires the best QoS from two types of cloud. In addition, under the optimal contracts, the utilities of both SPs are constants. Furthermore, no contracts will be offered to the cloud if the resulting service cannot stabilize the physical system.
机译:高级无线通信技术和智能嵌入式控制设备的开发使其成为连接的一切,导致受控物互联网(IOCT)的新兴范式。 IOCT由两层系统组成:网络层和物理层。这项工作旨在建立一个整体框架,它通过合同理论的镜头整合IOCT的网络物理层。对于网络层,我们使用一个触发游戏来捕获云安全性。我们专注于两种类型的云,高型和低型,就他们提供的服务质量(QoS)。云的类型是合同制造商未知的私人信息。因此,由于该不对称信息结构,物理层的控制系统管理员(CSA)需要为每种类型的服务提供商(SP)来设计两个合同的菜单。据收到的合同,SP决定了他的网络防御策略,其中纳什均衡决定了云的QoS,并进一步影响了物理系统性能。 CSA的目标是通过设计最佳合同来最大限度地减少对云SP的支付和控制成本。由于网络启用的IOCT中网络和物理层之间的相互依存,我们需要以综合方式解决云安全和合同设计问题。我们发现CSA总是需要两种云中最好的QoS。此外,在最佳合约下,两个SPS的实用程序是常数。此外,如果结果的服务无法稳定物理系统,则不会向云提供合同。

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