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首页> 外文期刊>International journal of antennas and propagation >Compact Printed Arrays with Embedded Coupling Mitigation for Energy-Efficient Wireless Sensor Networking
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Compact Printed Arrays with Embedded Coupling Mitigation for Energy-Efficient Wireless Sensor Networking

机译:具有嵌入式耦合缓解功能的紧凑型打印阵列,用于节能型无线传感器网络

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摘要

Wireless sensors emerged as narrowband, resource-constrained devices to provide monitoring services over a wide life span. Future applications of sensor networks are multimedia-driven and include sensor mobility. Thus, sensors must combine small size, large bandwidth, and diversity capabilities. Compact arrays, offering transmit/receive diversity, suffer from strong mutual coupling (MC), which causes lower antenna efficiency, loss of bandwidth, and signal correlation. An efficient technique to reduce coupling in compact arrays is described herein: a defect was inserted in the ground plane (GNDP) area between each pair of elements. The defect disturbed the GNDP currents and offered multidecibel coupling suppression, bandwidth recovery, and reduction of in-band correlation. Minimal pattern distortion was estimated. Computational results were supported by measurements. The bandwidth of unloaded arrays degraded gracefully from 38% to 28% with decreasing interelement distance (0.25λto 0.10λ). Defect-loaded arrays exhibited active impedance bandwidths 37–45%, respectively. Measured coupling was reduced by 15–20 dB.
机译:无线传感器作为一种窄带,资源受限的设备出现,可在较宽的使用寿命内提供监视服务。传感器网络的未来应用是多媒体驱动的,包括传感器移动性。因此,传感器必须结合小尺寸,大带宽和分集功能。提供发射/接收分集的紧凑型阵列遭受强互耦合(MC)的困扰,这会导致天线效率降低,带宽损耗和信号相关性下降。本文描述了一种减少紧凑阵列中耦合的有效技术:在每对元件之间的接地平面(GNDP)区域中插入了一个缺陷。该缺陷干扰了GNDP电流,并提供了多分贝耦合抑制,带宽恢复和带内相关性降低。估计图案失真最小。计算结果得到测量的支持。随着元素间距离的减小(0.25λ到0.10λ),空载阵列的带宽从38%下降到28%。缺陷阵列的有源阻抗带宽分别为37–45%。测得的耦合降低了15–20 dB。

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