Sanghoek Kim
Kyung Hee University · Engineering
About the Lab
Professor Sanghoek Kim's research lab specializes in wireless power transfer (WPT) for biomedical implants, focusing on enhancing energy efficiency and system performance in challenging biological environments. The lab develops advanced electromagnetic modeling and optimization techniques—particularly using the field equivalence principle and PT-symmetric structures—to enable high-efficiency, mid-field power transfer to small, implantable devices. Key research directions include transmitter and receiver design for weakly coupled systems, analytical bounds on power transfer efficiency, and practical implementations using innovative structures like slot arrays and neutral element arrays. The lab also explores the integration of WPT with physiological monitoring and bioelectronic therapies, aiming to overcome limitations of traditional battery-powered implants.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15We analyze wireless power transfer between a source and a weakly coupled implant on the heart. Numerical studies show that mid-field wireless powering achieves much higher power transfer efficiency than traditional inductively coupled systems. With proper system design, power sufficient to operate typical cardiac implants can be received by millimeter-sized coils.
This paper examines transmitter optimization for wirelessly powering a small implant embedded in tissue. The wireless link between the transmitter and receiver is first modeled as a two-port network and an expression for the power transfer efficiency derived. For a given small receiver in a multilayer tissue model, the transmitter is abstracted as a sheet of magnetic current density for which the optimal distribution is analytically found. The optimal transmitter is compared to the point and uni
Implantable bioelectronic devices are becoming useful and prospective solutions for various diseases owing to their ability to monitor or manipulate body functions. However, conventional implantable devices (e.g., pacemaker and neurostimulator) are still bulky and rigid, which is mostly due to the energy storage component. In addition to mechanical mismatch between the bulky and rigid implantable device and the soft human tissue, another significant drawback is that the entire device should be s
We obtain an analytical bound on the efficiency of wireless power transfer to a weakly coupled device. The optimal source is solved for a multilayer geometry in terms of a representation based on the field equivalence principle. The theory reveals that optimal power transfer exploits the properties of the midfield to achieve efficiencies far greater than conventional coil-based designs. As a physical realization of the source, we present a slot array structure whose performance closely approache
Recently, stationary wireless power transfer (WPT) has been widely adopted in commercial devices. However, the current WPT configuration is limited in its operational area and susceptible to operating condition changes, impeding its applications for dynamic environments. To overcome the limitations, we propose a WPT system with laterally aligned neutral elements in parity-time (PT) symmetry, which can widen the operational area with the number of neutrals N . Compared to the conventional multipl
1. Backgrounds and Aims Human being is divided into 4 constitution types(Taeyangin, Soyangin, Taeumin, and Soumin). According to Sasang Constitutional Medicine[SCM] Each constitution has its own incidence, treatment and prevention of disease. The purpose of this study is to find the relation of dietary habits, life styles and Psychosocial stress with obesity in each Sasang Constitution. 2. Methods 975 subjects who have received health examinations and diagnosis of Sasang Constitution at Kyung-he
1. Objectives This paper was written in order to understand formative process of Taeumin's Dry-febrile Symptom. 2. Methods We analysis Taeumin's Dry-febrile Symptom through pathology and prescription in Dongyisusebowonchobongyun, Dongyisusebowongabo-bon, Dongyisusebowonsinchukbon. And we also analysis before study on pathology of Taeumin. 3. Results and Conclusions SCM was controled by Good-Qi. There was explained the strong and weak of Good-Qi to the number of real life. Slightness and Se
Several published studies have reported the need to change the cutoff points of anthropometric indices for obesity. We therefore conducted a cross-sectional study to estimate anthropometric cutoff points predicting high coronary heart disease (CHD) risk in Korean adults. We analyzed the Korean National Health and Nutrition Examination Survey data from 2007 to 2010. A total of 21,399 subjects aged 20 to 79 yr were included in this study (9,204 men and 12,195 women). We calculated the 10-yr Framin
We introduce a method to measure the fat thickness by harnessing the physics of destructive interference. At certain frequencies, when the fat thickness equals a quarter wavelength, the amplitude of the reflected wave is minimized due to the destructive interference. Therefore, by observing the frequency where the reflection is minimized, we are able to deduce the fat thickness. This work demonstrates that this simple method can operate not only on a planar tissue model but also on a cylindrical
We propose a biomedical sensor system for continuous monitoring of glucose concentration. Despite recent advances in implantable biomedical devices, mm sized devices have yet to be developed due to the power limitation of the device in a tissue. We here present a mm sized wireless system with backscattered frequency-modulation communication that enables a low-power operation to read the glucose level from a fluorescent hydrogel sensor. The configuration of the reader structure is optimized for a
Implantable medical devices will play an important role in modern medicine for preventive and post-surgery monitoring, drug delivery, local stimulation, and biomimetic prosthesis. To reduce the risk of wire snapping, and replacement and corrosion of embedded batteries, wireless delivery of energy to these devices is desirable. Current studies in wireless power transmission into biological tissue tend to operate below 10 MHz because of the common belief that lower operating frequency yields highe
RF wireless interface enables remotely powered implantable devices. To maximize the received power under the safety constraint, we analytically solved the optimal current source distribution and investigated the theoretical upper-bound of the efficiency obtainable with planary vertical magnetic current sources. The optimal solution reveals that a finite dimensional source is sufficient to approach the theoretical upper-bound. At the low MHz-range, a coil of approximately 2 cm in diameter is adeq
S-parameters of electrical networks are often extracted using an electromagnetic (EM) simulator, and imported directly or after conversion to rational function models into a transient circuit simulator. However, there are several issues related to frequency-defined models that might prevent successful transient simulation. In this work, the requirements for S-parameter and rational function models in the frequency domain leading to successful transient simulations are studied in detail. Applicat
1. Objectives This study aims to establish the concept and classification of the Delirious Speaking Bad Disease in the Soyain's Exterior Cold Disease induced from the Spleen Affected by Cold. 2. Methods Different editions of 『Donguisusebowon』, including the Gabo version and the Sinchuk version, were compared for differences and similarities in the Soyangin disease. And we discussed other studies done previously. 3. Results and conclusions Soyangin's Delirious Speaking Bad Disease can be underst
The Salisbury‐screen characteristics of the human abdomen are demonstrated. The skin–fat–muscle structure in the human abdomen resembles that of the Salisbury screen, which consists of a resistive sheet, a dielectric slab, and a conducting plane. Using this similarity, the authors can estimate the degree of obesity based on the reflectivity of electromagnetic waves. The Salisbury screen acts as a wave absorber when the thickness of the dielectric matches the quarter wavelength. This characterist
Research Areas
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