Lee Byunghun, Kiani Mehdi, Ghovanloo Maysam
GT-Bionics Laboratory, School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA 30308 USA.
Electrical Engineering Department, Pennsylvania State University, University Park, PA 16802 USA.
IEEE Sens J. 2015 Sep;15(9):4905-4916. doi: 10.1109/JSEN.2015.2430859.
A wirelessly powered homecage system, called the EnerCage-HC, that is equipped with multicoil wireless power transfer, closed-loop power control, optical behavioral tracking, and a graphic user interface is presented for longitudinal electrophysiology and behavioral neuroscience experiments. The EnerCage-HC system can wirelessly power a mobile unit attached to a small animal subject and also track its behavior in real-time as it is housed inside a standard homecage. The EnerCage-HC system is equipped with one central and four overlapping slanted wire-wound coils with optimal geometries to form three- and four-coil power transmission links while operating at 13.56 MHz. Utilizing multicoil links increases the power transfer efficiency (PTE) compared with conventional two-coil links and also reduces the number of power amplifiers to only one, which significantly reduces the system complexity, cost, and heat dissipation. A Microsoft Kinect installed 90 cm above the homecage localizes the animal position and orientation with 1.6-cm accuracy. Moreover, a power management ASIC, including a high efficiency active rectifier and automatic coil resonance tuning, was fabricated in a 0.35-m 4M2P standard CMOS process for the mobile unit. The EnerCage-HC achieves a max/min PTE of 36.3%/16.1% at the nominal height of 7 cm. experiments were conducted on freely behaving rats by continuously delivering 24 mW to the mobile unit for >7 h inside a standard homecage.
介绍了一种名为EnerCage-HC的无线供电笼养系统,该系统配备了多线圈无线电力传输、闭环功率控制、光学行为跟踪和图形用户界面,用于纵向电生理学和行为神经科学实验。EnerCage-HC系统可以无线为连接到小动物受试者的移动单元供电,并在其置于标准笼养环境中时实时跟踪其行为。EnerCage-HC系统配备了一个中央线圈和四个重叠的倾斜绕线线圈,这些线圈具有优化的几何形状,可在13.56 MHz频率下运行,形成三线圈和四线圈电力传输链路。与传统的双线圈链路相比,利用多线圈链路可提高功率传输效率(PTE),并且还将功率放大器的数量减少到仅一个,这显著降低了系统复杂性、成本和散热。安装在笼养环境上方90厘米处的微软Kinect可将动物的位置和方向定位到1.6厘米的精度。此外,为移动单元在0.35微米4M2P标准CMOS工艺中制造了一种电源管理ASIC,包括一个高效有源整流器和自动线圈谐振调谐。EnerCage-HC在7厘米的标称高度下实现了36.3%/16.1%的最大/最小PTE。在标准笼养环境中,通过向移动单元连续输送24毫瓦功率超过7小时,对自由活动的大鼠进行了实验。