1. 1) Tianshu XU et al. : Operation Method for Self-Consumption of Surplus Power Considering Thermal Comfort in Houses Part 1: Overview of Simulation and Validity Evaluation of the Model, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan, Environmental Engineering-II, pp. 1195-1196, 2017.7 徐ら : 住宅における快適性を考慮した自立的運用に関する研究 その1: シミュレーション概要およびモデル妥当性検証, 日本建築学会大会学術講演梗概集, 環境工学-II, pp. 1195-1196, 2017.7
2. 2) Yugo TSUNEOKA et al. : Operation Method for Self-Consumption of Surplus Power Considering Thermal Comfort in Houses Part 2: Evaluation for Feasibility of Self-Consumption Operation, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan, Environmental Engineering-II, pp. 1197-1198, 2017.7 常岡ら : 住宅における快適性を考慮した自立的運用に関する研究 その2: 自立的運用の実現可能性に関する検討, 日本建築学会大会学術講演梗概集, 環境工学-II, pp. 1197-1198, 2017.7
3. 3) Yuka MARUYAMA et al. : Operation Method for Self-Consumption of Surplus Power Considering Thermal Comfort in Houses Part 3: Verification on Multiple Outer Skin Performance, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan, Environmental Engineering-II, pp. 1199-1200, 2017.7 丸山ら : 住宅における快適性を考慮した自立的運用に関する研究 その3: 複数の建物特性における検証, 日本建築学会大会学術講演梗概集, 環境工学-II, pp. 1199-1200, 2017.7
4. 4) Yugo TSUNEOKA et al. : Operation Method for Self-Consumption of Surplus Power Considering Comfort in a Zero Energy House, Technical papers of annual meeting, the Society of Heating, Air-Conditioning and Sanitary Engineers of Japan, pp. 293-296, 2017 常岡ら : 快適性を考慮したゼロ・エネルギーハウスの自立的運用に関する研究, 平成29年度空気調和・衛生工学会大会学術講演論文集, pp. 293-296, 2017
5. 5) Takeshi TAKENAKA et al. : Collaboration Control of Window and Air-Conditioning System in Consideration of Human Thermal Comfort and Energy Saving Part1: Detail about The Control System and Outline of The Target Housing, Summaries of Technical Papers of Annual Meeting, Architectural Institute of Japan, Environmental Engineering-II, pp. 159-160, 2014.7 竹中ら : 熱的快適性・省エネルギー性を考慮した窓システムとエアコンの協調制御 その1: 制御システムと評価対象建物概要, 日本建築学会大会学術講演梗概集, 環境工学-II, pp. 159-160, 2014.7